
Rivaroxaban or Aspirin As Thromboprophylaxis in Multiple Myeloma
Multiple Myeloma in RelapseMultiple Myeloma Progression4 moreThe intended study is designed as a a phase IV pragmatic multicenter randomized controlled clinical trial, comparing the impact of two different therapies including ASA vs. Rivaroxaban in newly diagnosed or relapsed and refractory multiple myeloma patients treated with Lenalidomide Dexamethasone (Len-Dex) combination therapy. The pilot feasibility study was conducted in preparation for this randomized controlled trial designed to assess the effect of an intervention.

ASCT With Nivolumab in Patients With Multiple Myeloma
Multiple MyelomaThis is an open-label, single center trial of Autologous Stem Cell Transplantation (ASCT) with nivolumab in multiple myeloma patients to determine the efficacy and safety of ASCT and PD1 inhibitor combination. For this purpose, 30 multiple myeloma patients, who have received induction therapy and have achieved a partial response (PR), stable disease (SD) or progression, and thus have unfavorable prognosis, will be treated with nivolumab administered iv at a dose of 100 mg on days 3 before and 17 after high-dose melphalan with autologous stem cell transplantation.

Biomarker Driven Intensified ChemoImmunotherapy With Early CNS Prophylaxis
LymphomaLarge B-Cell1 moreThis study is testing whether stratification of the patients according to biological risk factors for different treatment groups will improve the outcome of patients with clinically high diffuse large B-cell lymphoma (DLBCL).

CAR-T Cells Combined With Peptide Specific Dendritic Cell in Relapsed/Refractory Leukemia/MDS
LeukemiaAcute Lymphocytic (ALL)3 moreThe main purpose of this study is to verify the safety and potential effectiveness of CART cells combined with peptide specific dendritic cell in relapsed/refractory leukemia.

mDCF + Avelumab in Resectable Esophago-gastric Adenocarcinoma (EGA)
Gastric AdenocarcinomaEsophageal AdenocarcinomaThis is a single-center, single-arm, open-label, Simon 2-stage, phase II trial in up to 55 patients with a potentially resectable, histologically-proven, adenocarcinoma or poorly differentiated carcinoma of the stomach, esophagogastric junction (EGJ), or lower third of the esophagus. Patients will receive neoadjuvant therapy consisting of 4 cycles of avelumab added to the modified chemotherapy regimen of docetaxel, cisplatin, 5- fluorouracil. Following surgery, pathologic response will be assessed. Patients will then receive adjuvant therapy consisting of 4 cycles of mDCF + avelumab. Patients will be followed to assess two-year disease-free survival rates. The primary objective of this study is to assess the effect on pathologic complete response rate (pCR) of adding avelumab to an mDCF regimen. The secondary objectives of this study are to determine the safety of adding avelumab to an mDCF regimen and assess its effect on two-year disease-free survival.

Different Radiation Dose of Neoadjuvant Chemoradiation for Resectable Thoracic Esophageal Squamous...
Esophageal CarcinomaNeoadjuvant Chemoradiotherapy1 moreEsophageal cancer is one of the most common cancers worldwide, while more than half new cases and deaths occurred in China. Surgery is the main curative treatment for this disease, the 5-year survival of EC remains poor, since most diseases are diagnosed at advanced stages. In last decades, several large clinical trials and meta-analyses have demonstrated that neo-adjuvant chemoradiotherapy followed by surgery can significantly increase the overall survival of patients with EC compared with surgery alone, while no effect of nCRT was apparent on postoperative health-related quality of life . However, the optimal radiation dose and surgery timing are still unknown. The investigators hypothesize that patients who receive higher dose (50.4Gy/28F) of neoadjuvant chemoradiation will have better pathologic response and progress-free survival compared to lower dose (41.4Gy/23F) of chemoradiation followed by surgery.

Anti-GD2 CAR T Cells in Pediatric Patients Affected by High Risk and/or Relapsed/Refractory Neuroblastoma...
NeuroblastomaNeuroblastoma Recurrent4 moreThe purpose of this study is to test the safety and efficacy of GD2-CART01, a CAR T cell treatment targeting GD2 in paediatric or young adult patients with High Risk and/or relapsed/refractory Neuroblastoma. A small exploratory cohort of patients with GD2-positive tumors other than Neuroblastoma has also been included.

CBL0137 in Treating Patients With Advanced Extremity Melanoma or Sarcoma
Advanced Cutaneous Melanoma of the ExtremityAdvanced Sarcoma of the Extremity11 moreThis phase I trial studies best dose and side effects of CBL0137 in treating patients with extremity melanoma or sarcoma that has spread to other places in the body. Drugs, such as CBL0137, may work by binding to tumor cell deoxyribonucleic acid (DNA) to stop the cell from growing further.

CS1-CAR T Therapy Following Chemotherapy in Treating Patients With Relapsed or Refractory CS1 Positive...
Recurrent Plasma Cell MyelomaRefractory Plasma Cell MyelomaThis phase I trial studies the side effects and best dose of CS1-chimeric antigen receptor (CAR) T therapy after chemotherapy in treating patients who have CS1 positive multiple myeloma that has come back (relapsed) or does not respond to treatment (refractory). Immune cells can be engineered to kill multiple myeloma cells by inserting a piece of deoxyribonucleic acid (DNA) into the immune cells using a lentiviral vector such as CS1, that allows them to recognize multiple myeloma cells. These engineered immune cells, CS1-CAR T cells, may kill multiple myeloma cells.

Pediatric Classical Hodgkin Lymphoma Consortium Study: cHOD17
Hodgkin LymphomaThis is a phase II study using risk and response-adapted therapy for low, intermediate and high risk classical Hodgkin lymphoma. Chemotherapy regimens will be based on risk group assignment. Low-risk and intermediate- risk patients will be treated with bendamustine, etoposide, Adriamycin® (doxorubicin), bleomycin, Oncovin® (vincristine), vinblastine, and prednisone (BEABOVP) chemotherapy. High-risk patients will receive Adcetris® (brentuximab vedotin), etoposide, prednisone and Adriamycin® (doxorubicin) (AEPA) and cyclophosphamide, Adcetris® (brentuximab vedotin), prednisone and Dacarbazine® (DTIC) (CAPDac) chemotherapy. Residual node radiotherapy will be given at the end of all chemotherapy only to involved nodes that do not have an adequate response (AR) after 2 cycles of therapy for all risk groups.