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Pembrolizumab + Lenalidomide Post Autologous Stem Cell Transplant (ASCT) in High-risk Multiple Myeloma (MM)

Primary Purpose

Multiple Myeloma

Status
Terminated
Phase
Phase 2
Locations
United States
Study Type
Interventional
Intervention
Pembrolizumab
Lenalidomide
Dexamethasone
Sponsored by
Hackensack Meridian Health
About
Eligibility
Locations
Arms
Outcomes
Full info

About this trial

This is an interventional treatment trial for Multiple Myeloma

Eligibility Criteria

18 Years - 99 Years (Adult, Older Adult)All SexesDoes not accept healthy volunteers

Inclusion Criteria:

  • Be willing and able to provide written informed consent/assent for the trial.
  • Be 18 years of age on day of signing informed consent.
  • Has a confirmed diagnosis of MM based on standard criteria. (See Appendix 2 for MM Diagnostic Criteria.)
  • Is between 60 and 180 days from peripheral blood autologous stem cell transplant.
  • At diagnosis, had MM with measurable disease, defined as:
  • A monoclonal immunoglobulin spike on serum electrophoresis of at least 0.5 g/dL and/or
  • Urine monoclonal levels of at least 200 mg/24 hours
  • For subjects without measurable serum and urine M-protein levels, an abnormal free light chain (FLC) ratio (normal value 0.26 - 1.65) with involved FLC ≥10 mg/dL
  • Radiographic evidence of disease for those without measurable M-spike or free light chains.
  • Has high-risk MM, which must be present at the time of diagnosis, and defined by:

    • International Staging System (ISS) stage 3 (See Appendix 3 for ISS Staging), and/or
    • Deletion 13q by cytogenetics, and/or
    • 1q amplification, 1p deletion, p53 deletions (17p deletions), t(4;14), t(14;16), t(14;20), hypodiploidy, and/or
    • High-risk gene expression profile (GEP) scores
  • Be able to provide a newly obtained bone marrow aspirate/biopsy material for biomarker analysis and disease assessment.
  • Have a performance status of ≤2 on the ECOG Performance Scale (See Appendix 4).
  • Demonstrate adequate organ function as defined in Table 1, all screening labs should be performed within 28 days of treatment initiation.
  • All subjects must agree to follow the regional requirements for lenalidomide counseling, pregnancy testing, and birth control; and be willing and able to comply with the regional requirements (for example, periodic pregnancy tests, safety labs, etc.).
  • Female subjects of childbearing potential should have a negative urine or serum pregnancy test within 10-14 days prior to and again within 24 hours prior to receiving the first dose of pembrolizumab (MK-3475), lenalidomide and dexamethasone or pembrolizumab (MK-3475) and lenalidomide. If the urine test is positive or cannot be confirmed as negative, a serum pregnancy test will be required. Female subjects of childbearing potential should agree to ongoing pregnancy testing.
  • Female subjects of childbearing potential must be willing to use 2 methods of birth control or be surgically sterile, or abstain from heterosexual activity for the course of the study through 120 days after the last dose of study medication (Reference Section 4.7.2). Subjects of childbearing potential are those who have not been surgically sterilized or have not been free from menses for > 2 years.
  • Male subjects must agree to use a latex condom during sexual contact with females of childbearing potential even if they have had a successful vasectomy starting with the first dose of study therapy through 120 days after the last dose of study therapy.
  • Subject is able to swallow capsules and is able to take or tolerate oral medications on a continuous basis.
  • Male subjects should agree to use an adequate method of contraception starting with the first dose of study therapy through 120 days after the last dose of study therapy.

Exclusion Criteria:

  • Is currently participating and receiving study therapy or has participated in a study of an investigational agent and received study therapy or used an investigational device within 4 weeks of the first dose of treatment.
  • Has a diagnosis of immunodeficiency or is receiving systemic steroid therapy or any other form of immunosuppressive therapy within 7 days prior to the first dose of trial treatment. The use of physiologic doses of corticosteroids may be used at the investigator's discretion.
  • Has received an allogeneic stem cell transplant.
  • Has received any myeloma-directed therapy after ASCT.
  • Has a known history of active TB (Bacillus Tuberculosis)
  • Hypersensitivity to pembrolizumab or any of its excipients.
  • Progressive disease from autologous transplantation at the time of screening
  • Has known active central nervous system (CNS) metastases and/or carcinomatous meningitis. Subjects with previously treated brain metastases may participate provided they are stable (without evidence of progression by imaging for at least four weeks prior to the first dose of trial treatment and any neurologic symptoms have returned to baseline), have no evidence of new or enlarging brain metastases, and are not using steroids for at least 7 days prior to trial treatment. This exception does not include carcinomatous meningitis which is excluded regardless of clinical stability.
  • Has active autoimmune disease that has required systemic treatment in the past 2 years (i.e. with use of disease modifying agents, corticosteroids or immunosuppressive drugs). Replacement therapy (eg., thyroxine, insulin, or physiologic corticosteroid replacement therapy for adrenal or pituitary insufficiency, etc.) is not considered a form of systemic treatment.
  • Has known history of, or any evidence of active, non-infectious pneumonitis.
  • Has an active infection requiring intravenous systemic therapy.
  • Has a history or current evidence of any condition, therapy, or laboratory abnormality that might confound the results of the trial, interfere with the subject's participation for the full duration of the trial, or is not in the best interest of the subject to participate, in the opinion of the treating investigator.
  • Has known psychiatric or substance abuse disorders that would interfere with cooperation with the requirements of the trial.
  • Is pregnant or breastfeeding, or expecting to conceive or father children within the projected duration of the trial, starting with the pre-screening or screening visit through 120 days after the last dose of trial treatment.
  • Has received prior therapy with an anti-PD-1, anti-PD-L1, or anti-PD-L2 agent.
  • Has a known history of Human Immunodeficiency Virus (HIV) (HIV 1/2 antibodies).
  • Has known active Hepatitis B (e.g., HBsAg reactive) or Hepatitis C (e.g., HCV RNA [qualitative] is detected).
  • Has received a live vaccine within 30 days of planned start of study therapy.

Sites / Locations

  • John Theurer Cancer Center-Hackensack Meridian Health

Arms of the Study

Arm 1

Arm Type

Experimental

Arm Label

Pembrolizumab + lenalidomide

Arm Description

This is an open label study. Pembrolizumab 200 mg IV every 3 weeks and lenalidomide 25 mg po daily x 14 days and dexamethasone 40 mg po once weekly for a 21-day cycle x 2 cycles. This is followed by pembrolizumab 200 mg every 3 weeks and lenalidomide 25 mg po daily x 14 days for a 21-day cycle x 2 cycles for a total of 4 cycles.

Outcomes

Primary Outcome Measures

Progression Free Survival (PFS)
PFS will be assessed from the date of ASCT, with day 0 defined as date of stem cell infusion (if tandem transplant the 2nd of 2 transplants will be used) until the date of progression, defined as the date at which the patient starts the next line of therapy or the date of death.

Secondary Outcome Measures

Number of Participants Serious Adverse Events
Safety will be assessed by quantifying the toxicities and grades experienced by subjects who have received pembrolizumab (MK-3475), lenalidomide and dexamethasone, including serious adverse events (SAEs). Result reflects count of participants who experienced an SAE.
Evaluation of Stringent Complete Response, Complete Response, and Very Good Partial Response Rate (sCR + CR + VGPR Rate).
Assessed by the investigator per International Myeloma Working Group criteria(IMWG) uniform response criteria. Result reflects number of participants whose best overall response qualified as sCR, CR, or VGPR in 2 year follow up period.
Number of Participants Who Progressed at 12 Months
Assessed at 12 months; Subjects without documented PD or death will be censored at the last disease assessment date. Those who died without documented PD will be censored at the time of death. Result reflects count of participants who had progressed at 12 months.
Duration of Response (DOR)
Assessed by the investigator per International Myeloma Working Group criteria(IMWG) uniform response criteria. Result reflects count of participants who did not have progressive disease at 2 years.

Full Information

First Posted
May 26, 2016
Last Updated
July 28, 2023
Sponsor
Hackensack Meridian Health
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1. Study Identification

Unique Protocol Identification Number
NCT02906332
Brief Title
Pembrolizumab + Lenalidomide Post Autologous Stem Cell Transplant (ASCT) in High-risk Multiple Myeloma (MM)
Official Title
A Phase II Trial of the Anti -PD-1 Monoclonal Antibody Pembrolizumab (MK-3475) + Lenalidomide + Dexamethasone as Post Autologous Transplant Consolidation in Patients With High-risk Multiple Myeloma
Study Type
Interventional

2. Study Status

Record Verification Date
July 2023
Overall Recruitment Status
Terminated
Why Stopped
FDA Hold Due to Updated Risks
Study Start Date
December 12, 2016 (Actual)
Primary Completion Date
May 2022 (Actual)
Study Completion Date
May 2022 (Actual)

3. Sponsor/Collaborators

Responsible Party, by Official Title
Sponsor
Name of the Sponsor
Hackensack Meridian Health

4. Oversight

Data Monitoring Committee
Yes

5. Study Description

Brief Summary
This is an open-label, Phase II, single center trial of pembrolizumab (MK-3475), lenalidomide and dexamethasone in subjects with high risk Multiple Myeloma (hrMM) post high-dose chemotherapy with autologous stem cell transplantation (ASCT). Patients with high-risk MM defined as those with one of the following abnormalities who have undergone induction therapy followed by single or tandem melphalan -based ASCT will be considered eligible.
Detailed Description
The primary objectives of this trial are to establish the progression free survival (PFS) of ASCT followed by consolidative therapy with pembrolizumab plus lenalidomide and dexamethasone and to evaluate the safety of pembrolizumab plus lenalidomide and dexamethasone following ASCT. The immunological analysis of cells and cytokines pre and post-therapy will be determined from patient bone marrow aspirate and peripheral blood samples as exploratory objectives. The overall composition of the gut microbiome will also be determined in patient stool samples. Patients will be followed by response, EFS/PFS/OS and safety endpoints on an every 3 week basis. Bone marrow aspirate specimens will be obtained at screening and at completing of the study and peripheral blood specimens will be obtained on a monthly basis to evaluate in correlative studies.

6. Conditions and Keywords

Primary Disease or Condition Being Studied in the Trial, or the Focus of the Study
Multiple Myeloma

7. Study Design

Primary Purpose
Treatment
Study Phase
Phase 2
Interventional Study Model
Single Group Assignment
Masking
None (Open Label)
Allocation
N/A
Enrollment
12 (Actual)

8. Arms, Groups, and Interventions

Arm Title
Pembrolizumab + lenalidomide
Arm Type
Experimental
Arm Description
This is an open label study. Pembrolizumab 200 mg IV every 3 weeks and lenalidomide 25 mg po daily x 14 days and dexamethasone 40 mg po once weekly for a 21-day cycle x 2 cycles. This is followed by pembrolizumab 200 mg every 3 weeks and lenalidomide 25 mg po daily x 14 days for a 21-day cycle x 2 cycles for a total of 4 cycles.
Intervention Type
Drug
Intervention Name(s)
Pembrolizumab
Other Intervention Name(s)
Keytruda
Intervention Description
Pembrolizumab 200 mg IV every 3 weeks x 2 cycles. This is followed by followed by pembrolizumab 200 mg IV every 3 weeks for 2 additional cycles.
Intervention Type
Drug
Intervention Name(s)
Lenalidomide
Other Intervention Name(s)
Revlimid
Intervention Description
Lenalidomide 25 mg po daily x 14 days once weekly for a 21-day cycle x 2 cycles. This is followed by lenalidomide 25 mg po daily x 14 days for a 21-day cycle x 2 cycles for 2 additional cycles.
Intervention Type
Drug
Intervention Name(s)
Dexamethasone
Other Intervention Name(s)
Decadron
Intervention Description
Dexamethasone 40 mg po once weekly for a 21-day cycle x 2 cycles only.
Primary Outcome Measure Information:
Title
Progression Free Survival (PFS)
Description
PFS will be assessed from the date of ASCT, with day 0 defined as date of stem cell infusion (if tandem transplant the 2nd of 2 transplants will be used) until the date of progression, defined as the date at which the patient starts the next line of therapy or the date of death.
Time Frame
Up to 3 years
Secondary Outcome Measure Information:
Title
Number of Participants Serious Adverse Events
Description
Safety will be assessed by quantifying the toxicities and grades experienced by subjects who have received pembrolizumab (MK-3475), lenalidomide and dexamethasone, including serious adverse events (SAEs). Result reflects count of participants who experienced an SAE.
Time Frame
Up to 3 years
Title
Evaluation of Stringent Complete Response, Complete Response, and Very Good Partial Response Rate (sCR + CR + VGPR Rate).
Description
Assessed by the investigator per International Myeloma Working Group criteria(IMWG) uniform response criteria. Result reflects number of participants whose best overall response qualified as sCR, CR, or VGPR in 2 year follow up period.
Time Frame
Every 3 weeks (day 1 of every 21-day treatment cycle +/- 7 days) through 12 weeks.
Title
Number of Participants Who Progressed at 12 Months
Description
Assessed at 12 months; Subjects without documented PD or death will be censored at the last disease assessment date. Those who died without documented PD will be censored at the time of death. Result reflects count of participants who had progressed at 12 months.
Time Frame
Time from Day 0 (transplant) and date of enrollment to study completion (through 12 weeks) by investigator assessment.
Title
Duration of Response (DOR)
Description
Assessed by the investigator per International Myeloma Working Group criteria(IMWG) uniform response criteria. Result reflects count of participants who did not have progressive disease at 2 years.
Time Frame
Interval between date of first response and date of study completion (through 12 weeks)
Other Pre-specified Outcome Measures:
Title
Comparison in Bone Marrow Aspirates of the Extent of Pre-pembrolizumab (MK-3475), Lenalidomide and Dexamethasone PD-L1 Expression and Change From Baseline PD-L1 Expression in Responders Versus Non-responders
Description
Comparison of change from baseline in bone marrow aspirate/biopsy PD-L1 expression between responders with longer duration of response and non-responders or responders with a short duration of response will be performed using mixed regression analysis. Longitudinal analysis of bone marrow aspirate/biopsy PD-L1 expression over time will be examined using mixed model repeated measure design with levels observed serially over time and response type (long responders vs short responders/non-response) as a fixed variable.
Time Frame
Bone marrow aspirate specimens will be obtained at screening and at week 15 (completion of cycle 4).
Title
Assessment of Immune Phenotype in Bone Marrow Aspirates and Peripheral Blood Samples and Plasma Cytokines.
Description
Assays for these studies include flow cytometry, TCR Immunoseq for Vbeta CDR3 highest frequency specificities, real-time PCR analysis and multiplex cytokine ELISA. These data will be aggregated before and after treatment in responders versus non-responders.
Time Frame
Obtained monthly through week 12 (cycle 4 day 1).
Title
Assessment of T Cell Repertoire in Bone Marrow Aspirates and Peripheral Blood Samples.
Description
Assays for these studies include flow cytometry, TCR Immunoseq for Vbeta CDR3 highest frequency specificities, and real-time PCR analysis. T cells (CD8+) data will be aggregated before and after treatment in responders versus non-responders.
Time Frame
Obtained monthly through week 12 (cycle 4 day 1).
Title
Assessment of Plasma Cytokines
Description
Multiplex cytokine ELISA studies will assess inflammatory cytokine (TNF-alpha, IL-2, IL-4, IL-6, IL-10) data and will be aggregated before and after treatment in responders versus non-responders.
Time Frame
Obtained monthly through week 12 (cycle 4 day 1).
Title
Identification and Assessment of Specific Intestinal Microbial Strains (Via Stool Specimens) Associated With Improved Outcome in Autologous Stem Cell Transplantation Patients Treated With PEM+LEN+DEX Compared to PEM+LEN.
Description
A 16S ribosomal RNA (rRNA) miSeq Illumina platform will be used for overall microbial composition and quantitative real-time PCR analysis will validate the specific microbial strains identified by miSeq.
Time Frame
Stool specimens at screening or cycle 1, day 1, cycle 2 day 1, cycle 3 day 1, cycle 4 day 1, at completion of cycle 4, and at 90 days post treatment or start of new anti cancer therapy. Stool samples will also be collected at confirmation of response.

10. Eligibility

Sex
All
Minimum Age & Unit of Time
18 Years
Maximum Age & Unit of Time
99 Years
Accepts Healthy Volunteers
No
Eligibility Criteria
Inclusion Criteria: Be willing and able to provide written informed consent/assent for the trial. Be 18 years of age on day of signing informed consent. Has a confirmed diagnosis of MM based on standard criteria. (See Appendix 2 for MM Diagnostic Criteria.) Is between 60 and 180 days from peripheral blood autologous stem cell transplant. At diagnosis, had MM with measurable disease, defined as: A monoclonal immunoglobulin spike on serum electrophoresis of at least 0.5 g/dL and/or Urine monoclonal levels of at least 200 mg/24 hours For subjects without measurable serum and urine M-protein levels, an abnormal free light chain (FLC) ratio (normal value 0.26 - 1.65) with involved FLC ≥10 mg/dL Radiographic evidence of disease for those without measurable M-spike or free light chains. Has high-risk MM, which must be present at the time of diagnosis, and defined by: International Staging System (ISS) stage 3 (See Appendix 3 for ISS Staging), and/or Deletion 13q by cytogenetics, and/or 1q amplification, 1p deletion, p53 deletions (17p deletions), t(4;14), t(14;16), t(14;20), hypodiploidy, and/or High-risk gene expression profile (GEP) scores Be able to provide a newly obtained bone marrow aspirate/biopsy material for biomarker analysis and disease assessment. Have a performance status of ≤2 on the ECOG Performance Scale (See Appendix 4). Demonstrate adequate organ function as defined in Table 1, all screening labs should be performed within 28 days of treatment initiation. All subjects must agree to follow the regional requirements for lenalidomide counseling, pregnancy testing, and birth control; and be willing and able to comply with the regional requirements (for example, periodic pregnancy tests, safety labs, etc.). Female subjects of childbearing potential should have a negative urine or serum pregnancy test within 10-14 days prior to and again within 24 hours prior to receiving the first dose of pembrolizumab (MK-3475), lenalidomide and dexamethasone or pembrolizumab (MK-3475) and lenalidomide. If the urine test is positive or cannot be confirmed as negative, a serum pregnancy test will be required. Female subjects of childbearing potential should agree to ongoing pregnancy testing. Female subjects of childbearing potential must be willing to use 2 methods of birth control or be surgically sterile, or abstain from heterosexual activity for the course of the study through 120 days after the last dose of study medication (Reference Section 4.7.2). Subjects of childbearing potential are those who have not been surgically sterilized or have not been free from menses for > 2 years. Male subjects must agree to use a latex condom during sexual contact with females of childbearing potential even if they have had a successful vasectomy starting with the first dose of study therapy through 120 days after the last dose of study therapy. Subject is able to swallow capsules and is able to take or tolerate oral medications on a continuous basis. Male subjects should agree to use an adequate method of contraception starting with the first dose of study therapy through 120 days after the last dose of study therapy. Exclusion Criteria: Is currently participating and receiving study therapy or has participated in a study of an investigational agent and received study therapy or used an investigational device within 4 weeks of the first dose of treatment. Has a diagnosis of immunodeficiency or is receiving systemic steroid therapy or any other form of immunosuppressive therapy within 7 days prior to the first dose of trial treatment. The use of physiologic doses of corticosteroids may be used at the investigator's discretion. Has received an allogeneic stem cell transplant. Has received any myeloma-directed therapy after ASCT. Has a known history of active TB (Bacillus Tuberculosis) Hypersensitivity to pembrolizumab or any of its excipients. Progressive disease from autologous transplantation at the time of screening Has known active central nervous system (CNS) metastases and/or carcinomatous meningitis. Subjects with previously treated brain metastases may participate provided they are stable (without evidence of progression by imaging for at least four weeks prior to the first dose of trial treatment and any neurologic symptoms have returned to baseline), have no evidence of new or enlarging brain metastases, and are not using steroids for at least 7 days prior to trial treatment. This exception does not include carcinomatous meningitis which is excluded regardless of clinical stability. Has active autoimmune disease that has required systemic treatment in the past 2 years (i.e. with use of disease modifying agents, corticosteroids or immunosuppressive drugs). Replacement therapy (eg., thyroxine, insulin, or physiologic corticosteroid replacement therapy for adrenal or pituitary insufficiency, etc.) is not considered a form of systemic treatment. Has known history of, or any evidence of active, non-infectious pneumonitis. Has an active infection requiring intravenous systemic therapy. Has a history or current evidence of any condition, therapy, or laboratory abnormality that might confound the results of the trial, interfere with the subject's participation for the full duration of the trial, or is not in the best interest of the subject to participate, in the opinion of the treating investigator. Has known psychiatric or substance abuse disorders that would interfere with cooperation with the requirements of the trial. Is pregnant or breastfeeding, or expecting to conceive or father children within the projected duration of the trial, starting with the pre-screening or screening visit through 120 days after the last dose of trial treatment. Has received prior therapy with an anti-PD-1, anti-PD-L1, or anti-PD-L2 agent. Has a known history of Human Immunodeficiency Virus (HIV) (HIV 1/2 antibodies). Has known active Hepatitis B (e.g., HBsAg reactive) or Hepatitis C (e.g., HCV RNA [qualitative] is detected). Has received a live vaccine within 30 days of planned start of study therapy.
Overall Study Officials:
First Name & Middle Initial & Last Name & Degree
Noa Biran, M.D.
Organizational Affiliation
Hackensack Meridian Health
Official's Role
Principal Investigator
Facility Information:
Facility Name
John Theurer Cancer Center-Hackensack Meridian Health
City
Hackensack
State/Province
New Jersey
ZIP/Postal Code
07601
Country
United States

12. IPD Sharing Statement

Plan to Share IPD
No
Citations:
PubMed Identifier
26590773
Citation
Taur Y, Jenq RR, Ubeda C, van den Brink M, Pamer EG. Role of intestinal microbiota in transplantation outcomes. Best Pract Res Clin Haematol. 2015 Jun-Sep;28(2-3):155-61. doi: 10.1016/j.beha.2015.10.013. Epub 2015 Oct 22.
Results Reference
background
PubMed Identifier
24264990
Citation
Viaud S, Saccheri F, Mignot G, Yamazaki T, Daillere R, Hannani D, Enot DP, Pfirschke C, Engblom C, Pittet MJ, Schlitzer A, Ginhoux F, Apetoh L, Chachaty E, Woerther PL, Eberl G, Berard M, Ecobichon C, Clermont D, Bizet C, Gaboriau-Routhiau V, Cerf-Bensussan N, Opolon P, Yessaad N, Vivier E, Ryffel B, Elson CO, Dore J, Kroemer G, Lepage P, Boneca IG, Ghiringhelli F, Zitvogel L. The intestinal microbiota modulates the anticancer immune effects of cyclophosphamide. Science. 2013 Nov 22;342(6161):971-6. doi: 10.1126/science.1240537.
Results Reference
background
PubMed Identifier
24264989
Citation
Iida N, Dzutsev A, Stewart CA, Smith L, Bouladoux N, Weingarten RA, Molina DA, Salcedo R, Back T, Cramer S, Dai RM, Kiu H, Cardone M, Naik S, Patri AK, Wang E, Marincola FM, Frank KM, Belkaid Y, Trinchieri G, Goldszmid RS. Commensal bacteria control cancer response to therapy by modulating the tumor microenvironment. Science. 2013 Nov 22;342(6161):967-70. doi: 10.1126/science.1240527.
Results Reference
background
PubMed Identifier
26541610
Citation
Vetizou M, Pitt JM, Daillere R, Lepage P, Waldschmitt N, Flament C, Rusakiewicz S, Routy B, Roberti MP, Duong CP, Poirier-Colame V, Roux A, Becharef S, Formenti S, Golden E, Cording S, Eberl G, Schlitzer A, Ginhoux F, Mani S, Yamazaki T, Jacquelot N, Enot DP, Berard M, Nigou J, Opolon P, Eggermont A, Woerther PL, Chachaty E, Chaput N, Robert C, Mateus C, Kroemer G, Raoult D, Boneca IG, Carbonnel F, Chamaillard M, Zitvogel L. Anticancer immunotherapy by CTLA-4 blockade relies on the gut microbiota. Science. 2015 Nov 27;350(6264):1079-84. doi: 10.1126/science.aad1329. Epub 2015 Nov 5.
Results Reference
background
PubMed Identifier
26541606
Citation
Sivan A, Corrales L, Hubert N, Williams JB, Aquino-Michaels K, Earley ZM, Benyamin FW, Lei YM, Jabri B, Alegre ML, Chang EB, Gajewski TF. Commensal Bifidobacterium promotes antitumor immunity and facilitates anti-PD-L1 efficacy. Science. 2015 Nov 27;350(6264):1084-9. doi: 10.1126/science.aac4255. Epub 2015 Nov 5.
Results Reference
background
PubMed Identifier
20516428
Citation
Disis ML. Immune regulation of cancer. J Clin Oncol. 2010 Oct 10;28(29):4531-8. doi: 10.1200/JCO.2009.27.2146. Epub 2010 Jun 1.
Results Reference
background
PubMed Identifier
12091876
Citation
Dong H, Strome SE, Salomao DR, Tamura H, Hirano F, Flies DB, Roche PC, Lu J, Zhu G, Tamada K, Lennon VA, Celis E, Chen L. Tumor-associated B7-H1 promotes T-cell apoptosis: a potential mechanism of immune evasion. Nat Med. 2002 Aug;8(8):793-800. doi: 10.1038/nm730. Epub 2002 Jun 24. Erratum In: Nat Med 2002 Sep;8(9):1039.
Results Reference
background
PubMed Identifier
11910893
Citation
Sharpe AH, Freeman GJ. The B7-CD28 superfamily. Nat Rev Immunol. 2002 Feb;2(2):116-26. doi: 10.1038/nri727.
Results Reference
background
PubMed Identifier
12538684
Citation
Brown JA, Dorfman DM, Ma FR, Sullivan EL, Munoz O, Wood CR, Greenfield EA, Freeman GJ. Blockade of programmed death-1 ligands on dendritic cells enhances T cell activation and cytokine production. J Immunol. 2003 Feb 1;170(3):1257-66. doi: 10.4049/jimmunol.170.3.1257.
Results Reference
background
PubMed Identifier
20636820
Citation
Francisco LM, Sage PT, Sharpe AH. The PD-1 pathway in tolerance and autoimmunity. Immunol Rev. 2010 Jul;236:219-42. doi: 10.1111/j.1600-065X.2010.00923.x.
Results Reference
background
PubMed Identifier
17363529
Citation
Thompson RH, Dong H, Lohse CM, Leibovich BC, Blute ML, Cheville JC, Kwon ED. PD-1 is expressed by tumor-infiltrating immune cells and is associated with poor outcome for patients with renal cell carcinoma. Clin Cancer Res. 2007 Mar 15;13(6):1757-61. doi: 10.1158/1078-0432.CCR-06-2599.
Results Reference
background
PubMed Identifier
17717638
Citation
Talmadge JE, Donkor M, Scholar E. Inflammatory cell infiltration of tumors: Jekyll or Hyde. Cancer Metastasis Rev. 2007 Dec;26(3-4):373-400. doi: 10.1007/s10555-007-9072-0.
Results Reference
background
PubMed Identifier
9646237
Citation
Usubutun A, Ayhan A, Uygur MC, Ozen H, Toklu C, Ruacan S. Prognostic factors in renal cell carcinoma. J Exp Clin Cancer Res. 1998 Mar;17(1):77-81.
Results Reference
background
PubMed Identifier
18698040
Citation
Al-Shibli KI, Donnem T, Al-Saad S, Persson M, Bremnes RM, Busund LT. Prognostic effect of epithelial and stromal lymphocyte infiltration in non-small cell lung cancer. Clin Cancer Res. 2008 Aug 15;14(16):5220-7. doi: 10.1158/1078-0432.CCR-08-0133.
Results Reference
background
PubMed Identifier
20385003
Citation
Deschoolmeester V, Baay M, Van Marck E, Weyler J, Vermeulen P, Lardon F, Vermorken JB. Tumor infiltrating lymphocytes: an intriguing player in the survival of colorectal cancer patients. BMC Immunol. 2010 Apr 12;11:19. doi: 10.1186/1471-2172-11-19.
Results Reference
background
PubMed Identifier
9584053
Citation
Diez M, Pollan M, Enriquez JM, Dominguez P, Santana A, Tobaruela E, Muguerza JM, Arrieta F, Rodriguez A, Ruiz A. Histopathologic prognostic score in colorectal adenocarcinomas. Anticancer Res. 1998 Jan-Feb;18(1B):689-94.
Results Reference
background
PubMed Identifier
17008531
Citation
Galon J, Costes A, Sanchez-Cabo F, Kirilovsky A, Mlecnik B, Lagorce-Pages C, Tosolini M, Camus M, Berger A, Wind P, Zinzindohoue F, Bruneval P, Cugnenc PH, Trajanoski Z, Fridman WH, Pages F. Type, density, and location of immune cells within human colorectal tumors predict clinical outcome. Science. 2006 Sep 29;313(5795):1960-4. doi: 10.1126/science.1129139.
Results Reference
background
PubMed Identifier
20924634
Citation
Hiraoka N. Tumor-infiltrating lymphocytes and hepatocellular carcinoma: molecular biology. Int J Clin Oncol. 2010 Dec;15(6):544-51. doi: 10.1007/s10147-010-0130-1. Epub 2010 Oct 6.
Results Reference
background
PubMed Identifier
18705415
Citation
Nobili C, Degrate L, Caprotti R, Franciosi C, Leone BE, Trezzi R, Romano F, Uggeri F, Uggeri F. Prolonged survival of a patient affected by pancreatic adenocarcinoma with massive lymphocyte and dendritic cell infiltration after interleukin-2 immunotherapy. Report of a case. Tumori. 2008 May-Jun;94(3):426-30. doi: 10.1177/030089160809400323.
Results Reference
background
PubMed Identifier
20482675
Citation
Hodi FS, Dranoff G. The biologic importance of tumor-infiltrating lymphocytes. J Cutan Pathol. 2010 Apr;37 Suppl 1(0 1):48-53. doi: 10.1111/j.1600-0560.2010.01506.x.
Results Reference
background
PubMed Identifier
19717085
Citation
Kloor M. Lymphocyte infiltration and prognosis in colorectal cancer. Lancet Oncol. 2009 Sep;10(9):840-1. doi: 10.1016/S1470-2045(09)70245-1. No abstract available.
Results Reference
background
PubMed Identifier
17602225
Citation
Hillen F, Baeten CI, van de Winkel A, Creytens D, van der Schaft DW, Winnepenninckx V, Griffioen AW. Leukocyte infiltration and tumor cell plasticity are parameters of aggressiveness in primary cutaneous melanoma. Cancer Immunol Immunother. 2008 Jan;57(1):97-106. doi: 10.1007/s00262-007-0353-9. Epub 2007 Jun 30.
Results Reference
background
PubMed Identifier
18941457
Citation
Lee HE, Chae SW, Lee YJ, Kim MA, Lee HS, Lee BL, Kim WH. Prognostic implications of type and density of tumour-infiltrating lymphocytes in gastric cancer. Br J Cancer. 2008 Nov 18;99(10):1704-11. doi: 10.1038/sj.bjc.6604738. Epub 2008 Oct 21.
Results Reference
background
PubMed Identifier
18791714
Citation
Leffers N, Gooden MJ, de Jong RA, Hoogeboom BN, ten Hoor KA, Hollema H, Boezen HM, van der Zee AG, Daemen T, Nijman HW. Prognostic significance of tumor-infiltrating T-lymphocytes in primary and metastatic lesions of advanced stage ovarian cancer. Cancer Immunol Immunother. 2009 Mar;58(3):449-59. doi: 10.1007/s00262-008-0583-5. Epub 2008 Sep 13.
Results Reference
background
PubMed Identifier
10704469
Citation
Nishimura H, Honjo T, Minato N. Facilitation of beta selection and modification of positive selection in the thymus of PD-1-deficient mice. J Exp Med. 2000 Mar 6;191(5):891-8. doi: 10.1084/jem.191.5.891.
Results Reference
background
PubMed Identifier
20735382
Citation
Liotta F, Gacci M, Frosali F, Querci V, Vittori G, Lapini A, Santarlasci V, Serni S, Cosmi L, Maggi L, Angeli R, Mazzinghi B, Romagnani P, Maggi E, Carini M, Romagnani S, Annunziato F. Frequency of regulatory T cells in peripheral blood and in tumour-infiltrating lymphocytes correlates with poor prognosis in renal cell carcinoma. BJU Int. 2011 May;107(9):1500-6. doi: 10.1111/j.1464-410X.2010.09555.x. Epub 2010 Aug 24.
Results Reference
background
PubMed Identifier
25559415
Citation
Siegel RL, Miller KD, Jemal A. Cancer statistics, 2015. CA Cancer J Clin. 2015 Jan-Feb;65(1):5-29. doi: 10.3322/caac.21254. Epub 2015 Jan 5.
Results Reference
background
PubMed Identifier
15491289
Citation
Phekoo KJ, Schey SA, Richards MA, Bevan DH, Bell S, Gillett D, Moller H; Consultant Haematologists, South Thames Haematology Specialist Committee. A population study to define the incidence and survival of multiple myeloma in a National Health Service Region in UK. Br J Haematol. 2004 Nov;127(3):299-304. doi: 10.1111/j.1365-2141.2004.05207.x.
Results Reference
background
PubMed Identifier
20664057
Citation
Sant M, Allemani C, Tereanu C, De Angelis R, Capocaccia R, Visser O, Marcos-Gragera R, Maynadie M, Simonetti A, Lutz JM, Berrino F; HAEMACARE Working Group. Incidence of hematologic malignancies in Europe by morphologic subtype: results of the HAEMACARE project. Blood. 2010 Nov 11;116(19):3724-34. doi: 10.1182/blood-2010-05-282632. Epub 2010 Jul 27. Erratum In: Blood. 2011 Mar 24;117(12):3477.
Results Reference
background
PubMed Identifier
22045184
Citation
Smith A, Howell D, Patmore R, Jack A, Roman E. Incidence of haematological malignancy by sub-type: a report from the Haematological Malignancy Research Network. Br J Cancer. 2011 Nov 22;105(11):1684-92. doi: 10.1038/bjc.2011.450. Epub 2011 Nov 1.
Results Reference
background
PubMed Identifier
18332230
Citation
Kyle RA, Rajkumar SV. Multiple myeloma. Blood. 2008 Mar 15;111(6):2962-72. doi: 10.1182/blood-2007-10-078022.
Results Reference
background
PubMed Identifier
19541364
Citation
Raab MS, Podar K, Breitkreutz I, Richardson PG, Anderson KC. Multiple myeloma. Lancet. 2009 Jul 25;374(9686):324-39. doi: 10.1016/S0140-6736(09)60221-X. Epub 2009 Jun 21.
Results Reference
background
PubMed Identifier
17975015
Citation
Kumar SK, Rajkumar SV, Dispenzieri A, Lacy MQ, Hayman SR, Buadi FK, Zeldenrust SR, Dingli D, Russell SJ, Lust JA, Greipp PR, Kyle RA, Gertz MA. Improved survival in multiple myeloma and the impact of novel therapies. Blood. 2008 Mar 1;111(5):2516-20. doi: 10.1182/blood-2007-10-116129. Epub 2007 Nov 1.
Results Reference
background
PubMed Identifier
9850028
Citation
Combination chemotherapy versus melphalan plus prednisone as treatment for multiple myeloma: an overview of 6,633 patients from 27 randomized trials. Myeloma Trialists' Collaborative Group. J Clin Oncol. 1998 Dec;16(12):3832-42. doi: 10.1200/JCO.1998.16.12.3832.
Results Reference
background
PubMed Identifier
21799510
Citation
Kumar SK, Lee JH, Lahuerta JJ, Morgan G, Richardson PG, Crowley J, Haessler J, Feather J, Hoering A, Moreau P, LeLeu X, Hulin C, Klein SK, Sonneveld P, Siegel D, Blade J, Goldschmidt H, Jagannath S, Miguel JS, Orlowski R, Palumbo A, Sezer O, Rajkumar SV, Durie BG; International Myeloma Working Group. Risk of progression and survival in multiple myeloma relapsing after therapy with IMiDs and bortezomib: a multicenter international myeloma working group study. Leukemia. 2012 Jan;26(1):149-57. doi: 10.1038/leu.2011.196. Epub 2011 Jul 29. Erratum In: Leukemia. 2012 May;26(5):1153. Nari, Hareth [corrected to Nahi, Hareth].
Results Reference
background
PubMed Identifier
17363736
Citation
Liu J, Hamrouni A, Wolowiec D, Coiteux V, Kuliczkowski K, Hetuin D, Saudemont A, Quesnel B. Plasma cells from multiple myeloma patients express B7-H1 (PD-L1) and increase expression after stimulation with IFN-gamma and TLR ligands via a MyD88-, TRAF6-, and MEK-dependent pathway. Blood. 2007 Jul 1;110(1):296-304. doi: 10.1182/blood-2006-10-051482. Epub 2007 Mar 15.
Results Reference
background
PubMed Identifier
12218188
Citation
Iwai Y, Ishida M, Tanaka Y, Okazaki T, Honjo T, Minato N. Involvement of PD-L1 on tumor cells in the escape from host immune system and tumor immunotherapy by PD-L1 blockade. Proc Natl Acad Sci U S A. 2002 Sep 17;99(19):12293-7. doi: 10.1073/pnas.192461099. Epub 2002 Sep 6.
Results Reference
background
PubMed Identifier
21536144
Citation
Hallett WH, Jing W, Drobyski WR, Johnson BD. Immunosuppressive effects of multiple myeloma are overcome by PD-L1 blockade. Biol Blood Marrow Transplant. 2011 Aug;17(8):1133-45. doi: 10.1016/j.bbmt.2011.03.011. Epub 2011 Apr 12.
Results Reference
background
PubMed Identifier
18483370
Citation
Berger R, Rotem-Yehudar R, Slama G, Landes S, Kneller A, Leiba M, Koren-Michowitz M, Shimoni A, Nagler A. Phase I safety and pharmacokinetic study of CT-011, a humanized antibody interacting with PD-1, in patients with advanced hematologic malignancies. Clin Cancer Res. 2008 May 15;14(10):3044-51. doi: 10.1158/1078-0432.CCR-07-4079.
Results Reference
background
PubMed Identifier
21146205
Citation
Cavo M, Tacchetti P, Patriarca F, Petrucci MT, Pantani L, Galli M, Di Raimondo F, Crippa C, Zamagni E, Palumbo A, Offidani M, Corradini P, Narni F, Spadano A, Pescosta N, Deliliers GL, Ledda A, Cellini C, Caravita T, Tosi P, Baccarani M; GIMEMA Italian Myeloma Network. Bortezomib with thalidomide plus dexamethasone compared with thalidomide plus dexamethasone as induction therapy before, and consolidation therapy after, double autologous stem-cell transplantation in newly diagnosed multiple myeloma: a randomised phase 3 study. Lancet. 2010 Dec 18;376(9758):2075-85. doi: 10.1016/S0140-6736(10)61424-9. Epub 2010 Dec 9. Erratum In: Lancet. 2011 Nov 26;378(9806):1846.
Results Reference
background
PubMed Identifier
21961181
Citation
Boyd KD, Ross FM, Tapper WJ, Chiecchio L, Dagrada G, Konn ZJ, Gonzalez D, Walker BA, Hockley SL, Wardell CP, Gregory WM, Child JA, Jackson GH, Davies FE, Morgan GJ; NCRI Haematology Oncology Studies Group. The clinical impact and molecular biology of del(17p) in multiple myeloma treated with conventional or thalidomide-based therapy. Genes Chromosomes Cancer. 2011 Oct;50(10):765-74. doi: 10.1002/gcc.20899.
Results Reference
background
PubMed Identifier
21292777
Citation
Munshi NC, Anderson KC, Bergsagel PL, Shaughnessy J, Palumbo A, Durie B, Fonseca R, Stewart AK, Harousseau JL, Dimopoulos M, Jagannath S, Hajek R, Sezer O, Kyle R, Sonneveld P, Cavo M, Rajkumar SV, San Miguel J, Crowley J, Avet-Loiseau H; International Myeloma Workshop Consensus Panel 2. Consensus recommendations for risk stratification in multiple myeloma: report of the International Myeloma Workshop Consensus Panel 2. Blood. 2011 May 5;117(18):4696-700. doi: 10.1182/blood-2010-10-300970. Epub 2011 Feb 3.
Results Reference
background
PubMed Identifier
26240224
Citation
Palumbo A, Avet-Loiseau H, Oliva S, Lokhorst HM, Goldschmidt H, Rosinol L, Richardson P, Caltagirone S, Lahuerta JJ, Facon T, Bringhen S, Gay F, Attal M, Passera R, Spencer A, Offidani M, Kumar S, Musto P, Lonial S, Petrucci MT, Orlowski RZ, Zamagni E, Morgan G, Dimopoulos MA, Durie BG, Anderson KC, Sonneveld P, San Miguel J, Cavo M, Rajkumar SV, Moreau P. Revised International Staging System for Multiple Myeloma: A Report From International Myeloma Working Group. J Clin Oncol. 2015 Sep 10;33(26):2863-9. doi: 10.1200/JCO.2015.61.2267. Epub 2015 Aug 3.
Results Reference
background
PubMed Identifier
22160383
Citation
Neben K, Lokhorst HM, Jauch A, Bertsch U, Hielscher T, van der Holt B, Salwender H, Blau IW, Weisel K, Pfreundschuh M, Scheid C, Duhrsen U, Lindemann W, Schmidt-Wolf IG, Peter N, Teschendorf C, Martin H, Haenel M, Derigs HG, Raab MS, Ho AD, van de Velde H, Hose D, Sonneveld P, Goldschmidt H. Administration of bortezomib before and after autologous stem cell transplantation improves outcome in multiple myeloma patients with deletion 17p. Blood. 2012 Jan 26;119(4):940-8. doi: 10.1182/blood-2011-09-379164. Epub 2011 Dec 8.
Results Reference
background
PubMed Identifier
17105813
Citation
Shaughnessy JD Jr, Zhan F, Burington BE, Huang Y, Colla S, Hanamura I, Stewart JP, Kordsmeier B, Randolph C, Williams DR, Xiao Y, Xu H, Epstein J, Anaissie E, Krishna SG, Cottler-Fox M, Hollmig K, Mohiuddin A, Pineda-Roman M, Tricot G, van Rhee F, Sawyer J, Alsayed Y, Walker R, Zangari M, Crowley J, Barlogie B. A validated gene expression model of high-risk multiple myeloma is defined by deregulated expression of genes mapping to chromosome 1. Blood. 2007 Mar 15;109(6):2276-84. doi: 10.1182/blood-2006-07-038430. Epub 2006 Nov 14.
Results Reference
background
PubMed Identifier
21836613
Citation
Boyd KD, Ross FM, Chiecchio L, Dagrada GP, Konn ZJ, Tapper WJ, Walker BA, Wardell CP, Gregory WM, Szubert AJ, Bell SE, Child JA, Jackson GH, Davies FE, Morgan GJ; NCRI Haematology Oncology Studies Group. A novel prognostic model in myeloma based on co-segregating adverse FISH lesions and the ISS: analysis of patients treated in the MRC Myeloma IX trial. Leukemia. 2012 Feb;26(2):349-55. doi: 10.1038/leu.2011.204. Epub 2011 Aug 12.
Results Reference
background
PubMed Identifier
21119086
Citation
Landgren O, Waxman AJ. Multiple myeloma precursor disease. JAMA. 2010 Dec 1;304(21):2397-404. doi: 10.1001/jama.2010.1713.
Results Reference
background
PubMed Identifier
10384139
Citation
Corral LG, Haslett PA, Muller GW, Chen R, Wong LM, Ocampo CJ, Patterson RT, Stirling DI, Kaplan G. Differential cytokine modulation and T cell activation by two distinct classes of thalidomide analogues that are potent inhibitors of TNF-alpha. J Immunol. 1999 Jul 1;163(1):380-6.
Results Reference
background
PubMed Identifier
16840727
Citation
Richardson PG, Blood E, Mitsiades CS, Jagannath S, Zeldenrust SR, Alsina M, Schlossman RL, Rajkumar SV, Desikan KR, Hideshima T, Munshi NC, Kelly-Colson K, Doss D, McKenney ML, Gorelik S, Warren D, Freeman A, Rich R, Wu A, Olesnyckyj M, Wride K, Dalton WS, Zeldis J, Knight R, Weller E, Anderson KC. A randomized phase 2 study of lenalidomide therapy for patients with relapsed or relapsed and refractory multiple myeloma. Blood. 2006 Nov 15;108(10):3458-64. doi: 10.1182/blood-2006-04-015909. Epub 2006 Jul 13.
Results Reference
background
PubMed Identifier
16925483
Citation
Richardson PG, Mitsiades C, Hideshima T, Anderson KC. Lenalidomide in multiple myeloma. Expert Rev Anticancer Ther. 2006 Aug;6(8):1165-73. doi: 10.1586/14737140.6.8.1165.
Results Reference
background
PubMed Identifier
18032763
Citation
Weber DM, Chen C, Niesvizky R, Wang M, Belch A, Stadtmauer EA, Siegel D, Borrello I, Rajkumar SV, Chanan-Khan AA, Lonial S, Yu Z, Patin J, Olesnyckyj M, Zeldis JB, Knight RD; Multiple Myeloma (009) Study Investigators. Lenalidomide plus dexamethasone for relapsed multiple myeloma in North America. N Engl J Med. 2007 Nov 22;357(21):2133-42. doi: 10.1056/NEJMoa070596.
Results Reference
background
PubMed Identifier
18032762
Citation
Dimopoulos M, Spencer A, Attal M, Prince HM, Harousseau JL, Dmoszynska A, San Miguel J, Hellmann A, Facon T, Foa R, Corso A, Masliak Z, Olesnyckyj M, Yu Z, Patin J, Zeldis JB, Knight RD; Multiple Myeloma (010) Study Investigators. Lenalidomide plus dexamethasone for relapsed or refractory multiple myeloma. N Engl J Med. 2007 Nov 22;357(21):2123-32. doi: 10.1056/NEJMoa070594. Erratum In: N Engl J Med. 2009 Jul 30;361(5):544.
Results Reference
background
PubMed Identifier
12384400
Citation
Richardson PG, Schlossman RL, Weller E, Hideshima T, Mitsiades C, Davies F, LeBlanc R, Catley LP, Doss D, Kelly K, McKenney M, Mechlowicz J, Freeman A, Deocampo R, Rich R, Ryoo JJ, Chauhan D, Balinski K, Zeldis J, Anderson KC. Immunomodulatory drug CC-5013 overcomes drug resistance and is well tolerated in patients with relapsed multiple myeloma. Blood. 2002 Nov 1;100(9):3063-7. doi: 10.1182/blood-2002-03-0996.
Results Reference
background
Citation
Chen C, R.D., Siegel D, et al., Expanded access program (EAP) for lenalidomide plus dexamethasoen in over 1400 subjects with relapsed or refractory multiple myeloma. Blood (ASH Annual Meeting Abstracts), 2006. 108(Abstract 3556).
Results Reference
background
PubMed Identifier
19853510
Citation
Rajkumar SV, Jacobus S, Callander NS, Fonseca R, Vesole DH, Williams ME, Abonour R, Siegel DS, Katz M, Greipp PR; Eastern Cooperative Oncology Group. Lenalidomide plus high-dose dexamethasone versus lenalidomide plus low-dose dexamethasone as initial therapy for newly diagnosed multiple myeloma: an open-label randomised controlled trial. Lancet Oncol. 2010 Jan;11(1):29-37. doi: 10.1016/S1470-2045(09)70284-0. Epub 2009 Oct 21. Erratum In: Lancet Oncol. 2010 Jan;11(1):14.
Results Reference
background
PubMed Identifier
25184863
Citation
Benboubker L, Dimopoulos MA, Dispenzieri A, Catalano J, Belch AR, Cavo M, Pinto A, Weisel K, Ludwig H, Bahlis N, Banos A, Tiab M, Delforge M, Cavenagh J, Geraldes C, Lee JJ, Chen C, Oriol A, de la Rubia J, Qiu L, White DJ, Binder D, Anderson K, Fermand JP, Moreau P, Attal M, Knight R, Chen G, Van Oostendorp J, Jacques C, Ervin-Haynes A, Avet-Loiseau H, Hulin C, Facon T; FIRST Trial Team. Lenalidomide and dexamethasone in transplant-ineligible patients with myeloma. N Engl J Med. 2014 Sep 4;371(10):906-17. doi: 10.1056/NEJMoa1402551.
Results Reference
background
PubMed Identifier
16855634
Citation
Durie BG, Harousseau JL, Miguel JS, Blade J, Barlogie B, Anderson K, Gertz M, Dimopoulos M, Westin J, Sonneveld P, Ludwig H, Gahrton G, Beksac M, Crowley J, Belch A, Boccadaro M, Cavo M, Turesson I, Joshua D, Vesole D, Kyle R, Alexanian R, Tricot G, Attal M, Merlini G, Powles R, Richardson P, Shimizu K, Tosi P, Morgan G, Rajkumar SV; International Myeloma Working Group. International uniform response criteria for multiple myeloma. Leukemia. 2006 Sep;20(9):1467-73. doi: 10.1038/sj.leu.2404284. Epub 2006 Jul 20. Erratum In: Leukemia. 2006 Dec;20(12):2220. Leukemia. 2007 May;21(5):1134.
Results Reference
background
PubMed Identifier
18774632
Citation
Palumbo A, Dimopoulos M, San Miguel J, Harousseau JL, Attal M, Hussein M, Knop S, Ludwig H, von Lilienfeld-Toal M, Sonneveld P. Lenalidomide in combination with dexamethasone for the treatment of relapsed or refractory multiple myeloma. Blood Rev. 2009 Mar;23(2):87-93. doi: 10.1016/j.blre.2008.07.003. Epub 2008 Sep 6.
Results Reference
background

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Pembrolizumab + Lenalidomide Post Autologous Stem Cell Transplant (ASCT) in High-risk Multiple Myeloma (MM)

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