
Study to Test the Safety and Tolerability of PF-07062119 in Patients With Selected Advanced or Metastatic...
Gastrointestinal TumorsColorectal Adenocarcinomas2 moreA phase 1, open-label, dose escalation and expansion study of PF-07062119 in patients with selected advanced or metastatic gastrointestinal tumors

Study on Adjuvant Chemotherapy After Total Two-field Lymph Node Dissection of Thoracic Esophageal...
Thoracic Esophageal Squamous Cell CarcinomaPatients with thoracic esophageal squamous cell carcinoma after total two-field lymph node dissection were randomized into the adjuvant chemotherapy group or the postoperative observation group

A Novel Therapeutic Vaccine (EO2401) in Metastatic Adrenocortical Carcinoma, or Malignant Pheochromocytoma/Paraganglioma...
Adrenocortical CarcinomaPheochromocytoma1 moreThis is a multicenter, Phase 1/2, First-In-Human study to assess the safety, tolerability, immunogenicity, and preliminary efficacy of EO2401 in Metastatic Adrenocortical Carcinoma, or Malignant Pheochromocytoma/Paraganglioma.

Study of MAX-40279 in Patients With Relapsed or Refractory Acute Myelogenous Leukemia (AML)
AMLThis is a non-randomized, open-label, single-arm, dose-escalation Phase I study to evaluate the safety and tolerability of MAX-40279-01 in patients with Relapsed or Refractory AML.

LITT and Pembrolizumab in Recurrent Brain Metastasis
MelanomaNon-small Cell Lung Carcinoma (NSCLC)14 moreThis is an open-label, historically controlled pilot study investigating the immune effect of Laser Interstitial ThermotHerapy (LITT)+ pembrolizumab in adult patients with a primary cancer approved by the FDA for treatment with an immune-checkpoint inhibitor who have recurrent brain metastasis after prior stereotactic radiosurgery (SRS).

Decitabine, Venetoclax, and Ponatinib for the Treatment of Philadelphia Chromosome-Positive Acute...
Accelerated Phase Chronic Myelogenous LeukemiaBCR-ABL1 Positive9 moreThis phase II trial studies how well the combination of decitabine, venetoclax, and ponatinib work for the treatment of Philadelphia chromosome-positive acute myeloid leukemia or myeloid blast phase or accelerated phase chronic myelogenous leukemia. Drugs used in chemotherapy such as decitabine, work in different ways to stop the growth of cancer cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Venetoclax may stop the growth of cancer cells by blocking Bcl-2, a protein needed for cancer cell survival. Ponatinib may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Giving decitabine, venetoclax, and ponatinib may help to control Philadelphia chromosome-positive acute myeloid leukemia or myeloid blast phase or accelerated phase chronic myelogenous leukemia.

CAR-20/19-T Cells in Patients With Relapsed Refractory B Cell Malignancies
Non Hodgkin Lymphoma (NHL)Mantle Cell Lymphoma (MCL)6 moreThis is a Phase I/II, interventional, single-arm, open-label, treatment study designed to evaluate the safety and efficacy of Interleukin-7 and Interleukin-15 (IL-7/IL-15) manufactured chimeric antigen receptor (CAR)-20/19-T cells as well as the feasibility of a flexible manufacturing schema in adult patients with B cell malignancies that have failed prior therapies.

Study of B7-H3-Specific CAR T Cell Locoregional Immunotherapy for Diffuse Intrinsic Pontine Glioma/Diffuse...
Central Nervous System TumorDiffuse Intrinsic Pontine Glioma11 moreThis is a Phase 1 study of central nervous system (CNS) locoregional adoptive therapy with autologous CD4+ and CD8+ T cells lentivirally transduced to express a B7H3-specific chimeric antigen receptor (CAR) and EGFRt. CAR T cells are delivered via an indwelling catheter into the tumor resection cavity or ventricular system in children and young adults with diffuse intrinsic pontine glioma (DIPG), diffuse midline glioma (DMG), and recurrent or refractory CNS tumors. A child or young adult meeting all eligibility criteria, including having a CNS catheter placed into the tumor resection cavity or into their ventricular system, and meeting none of the exclusion criteria, will have their T cells collected. The T cells will then be bioengineered into a second-generation CAR T cell that targets B7H3-expressing tumor cells. Patients will be assigned to one of 3 treatment arms based on location or type of their tumor. Patients with supratentorial tumors will be assigned to Arm A, and will receive their treatment into the tumor cavity. Patients with either infratentorial or metastatic/leptomeningeal tumors will be assigned to Arm B, and will have their treatment delivered into the ventricular system. The first 3 patients enrolled onto the study must be at least 15 years of age and assigned to Arm A or Arm B. Patients with DIPG will be assigned to Arm C and have their treatment delivered into the ventricular system. The patient's newly engineered T cells will be administered via the indwelling catheter for two courses. In the first course patients in Arms A and B will receive a weekly dose of CAR T cells for three weeks, followed by a week off, an examination period, and then another course of weekly doses for three weeks. Patients in Arm C will receive a dose of CAR T cells every other week for 3 weeks, followed by a week off, an examination period, and then dosing every other week for 3 weeks. Following the two courses, patients in all Arms will undergo a series of studies including MRI to evaluate the effect of the CAR T cells and may have the opportunity to continue receiving additional courses of CAR T cells if the patient has not had adverse effects and if more of their T cells are available. The hypothesis is that an adequate amount of B7H3-specific CAR T cells can be manufactured to complete two courses of treatment with 3 or 2 doses given on a weekly schedule followed by one week off in each course. The other hypothesis is that B7H3-specific CAR T cells can safely be administered through an indwelling CNS catheter or delivered directly into the brain via indwelling catheter to allow the T cells to directly interact with the tumor cells for each patient enrolled on the study. Secondary aims of the study will include evaluating CAR T cell distribution with the cerebrospinal fluid (CSF), the extent to which CAR T cells egress or traffic into the peripheral circulation or blood stream, and, if tissues samples from multiple timepoints are available, also evaluate disease response to B7-H3 CAR T cell locoregional therapy.

Carbon Ion Re-Radiotherapy in Patients With Recurrent or Progressive Locally Advanced Head-and-Neck...
Locally Advanced Head-and-Neck CancerAfter multimodal therapy of head-and-neck tumors, patients often develop local recurrence, locally progressive disease or second primary tumors. In this highly pre-treated patient cohort, therapeutic options are limited. Patients that are not candidates for salvage surgery may benefit from re-irradiation. Despite recent technical advances, re-irradiation is associated with severe side effects. Carbon ion Re-Radiotherapy (reCIRT) has shown encouraging results in retrospective analyses with moderate toxicity. In the current Phase-II CARE-trial, reCIRT and conventional photon re-irradiation in patients with recurrent or progressive locally advanced head-and-neck cancer will be assessed regarding toxicity/ safety, local progression-free survival, overall survival and quality-of-life.

Toripalimab in Combination With Axitinib in Patients With Localized Mucosal Melanoma
Mucosal MelanomaThis study is one monocentric, single-arm, open, phase Ⅱ clinical study to evaluate the safety and efficacy of Toripalimab monoclonal injection (Tuo Yi) combined with axitinib tablet (Inlyta®) as neoadjuvant therapy for localized mucosal melanoma. Primary objective: To evaluate pathological response (pCR+pPR) rate of Toripalimab combined with axitinib as neoadjuvant therapy for localized mucosal melanoma. The subjects will receive Toripalimab and Axitinib combined therapy after enrollment, and receive operation 2 weeks after the last dose of Axitinib. Toripalimab will be given for a total of 4 cycles (8 weeks), whereas Axitinib will be given for a total of 8 weeks.The subjects can receive Toripalimab for up to one year after the operation.