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临床试验/NCT05631912
NCT05631912招募中1 期

Autologous TRAC Locus-inserted CD19-targeting Synthetic T-cell Receptor Antigen Receptor T (STAR-T) Cells for Relapsed/Refractory B-cell Non-Hodgkin's Lymphoma

Chinese PLA General Hospital2 个研究点 分布在 1 个国家目标入组 38 人开始时间: 2023年6月30日最近更新:
适应症
干预措施
相关药物

试验速览

阶段
1 期
状态
招募中
发起方
入组人数
38
试验地点
2
主要终点
Phase 1: Incidence of Dose-Limiting Toxicities (DLTs)

研究概览

简要总结

The team has developed a chimeric antigen receptor (CAR) based on T cell receptor (TCR) complex, called synthetic TCR and antigen receptor (STAR). Further, the researchers disrupted the endogenous T-cell receptor α constant (TRAC) locus by CRISPR/cas9, and then knocked in the anti-CD19-STAR construct through TRAC endogenous promoter. In this single center, prospective, open-label, single-arm, phase 1/2 study, the safety and efficacy of autologous CD19-targeting STAR-T cell therapy will be evaluated in patients with relapsed or refractory (r/r) B-cell non-Hodgkin's lymphoma (B-NHL) . A total of 19 to 38 patients are planned to be enrolled and receive CD19-STAR-T cell infusion. Phase 1 (9 to 18 cases) is dose escalation part, and phase 2 (10 to 20 cases) is expansion cohort part.

详细描述

[Introduction]

At present, CAR-T cell therapy targeting CD19 has achieved remarkable efficacy in the treatment of r/r B-NHL. However, at the same time, CAR-T cell treatment has a high incidence of cytokine release syndrome (CRS), immune cell-associated neurotoxicity syndrome (ICANS) and other toxicities. TCR-T is another adoptive T cell therapy, which recognizes the surface and intracellular antigens of target cells presented by major histocompatibility complex (MHC) molecules and engage CD3 signaling machinery, triggering a wide range of TCR-CD3 signaling to kill tumors. TCR-T is characterized by high affinity with target antigen, low toxicity, but difficulty in preparation.

Here, the researchers connected the murine TCR constant regions α and β with the light chain and heavy chain of the murine FMC63 single-chain variable fragment (scFv) respectively to construct a human leukocyte antigen (HLA)-independent antibody TCR chimera, called synthetic T cell receptor and antigen receptor (STAR). Then, researchers introduced an additional interchain disulfide bond by making cysteine mutations within TCRα/β constant regions, and employed hydrophobic substitutions to the TCR-α chain transmembrane domain to improve the receptor's stability on plasma membrane.

Further, the team disrupted the endogenous TRAC locus by CRISPR/cas9, and then knocked in the CD19-STAR construct to this locus, and transcription of CD19-STAR triggered by the TRAC endogenous promoter. TRAC locus knockout can prevent endogenous TCR assembly, and avoid the harm caused by graft-versus host disease (GVHD) as well as random insertion. This specific integration of "two in one" technology can give rise to highly efficient expression of CD19-STAR chimeric molecule on T cell surface, and the subsequent assembly of complete TCR signaling structure.

The molecular structure of STAR in this study: the variable region of TCRα/β chain is replaced with the heavy chain and light chain of FMC63 antibody respectively, the intracellular region of α/β chain is connected with an OX40 costimulatory molecule respectively.

研究设计

研究类型
Interventional
分配方式
Na
干预模型
Single Group
主要目的
Treatment
盲法
None

入排标准

年龄范围
18 Years 至 75 Years(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Age 18-75 (inclusive).
  • Patients with histologically confirmed CD19-positive B-cell NHL, including the following types defined by the World Health Organization (WHO) 2016:
  • Diffuse large B-cell lymphoma not otherwise specified (DLBCL-NOS), including Activated B-cell type (ABC) / Germinal center B-cell Type (GCB);
  • Primary mediastinal (thymic) large B-cell lymphoma (PMBCL);
  • Transformed follicular lymphoma (TFL);
  • High-grade B-cell lymphoma with MYC and BCL2 and/or BCL6 rearrangements (HGBCL);
  • Follicular lymphoma (FL);
  • Mantle cell lymphoma (MCL) [pathologically confirmed, with documentation of monoclonal B cells that have a chromosome translocation t(11;14)(q13;q32) and/or overexpress cyclin D1];
  • Marginal zone lymphoma (MZL), including nodal or splenic marginal zone B-cell lymphoma and mucosa-associated lymphoid tissue (MALT) lymphoma.
  • Relapse after treatment with ≥2 lines systemic therapy for all the above disease types, or refractory disease for aggressive types (DLBCL-NOS, PMBCL, TFL and HGBCL). Relapse disease is defined as disease progression after last regimen. Refractory disease is defined as no CR to first-line therapy:
  • PD as best response to first-line therapy, or
  • SD as best response after at least 4 cycles of first-line therapy (eg, 4 cycles of R-CHOP), or
  • PR as best response after at least 6 cycles and biopsy-proven residual disease or disease progression ≤ 6 months of therapy, or
  • Refractory post-autologous stem cell transplant (ASCT) i. Disease progression or relapsed less than or equal to 12 months of ASCT (must have biopsy proven recurrence in relapsed individuals) ii. If salvage therapy is given post-ASCT, the individual must have had no response to or relapsed after the last line of therapy.
  • Individuals must have received adequate prior therapy:
  • For MCL, prior therapy must have included:
  • Anthracycline or bendamustine-containing chemotherapy and
  • Anti-CD20 monoclonal antibody (unless investigator determines that tumor is CD20-negative) and
  • Bruton's tyrosine kinase inhibitor (BTKi)
  • For other types, prior therapy must have included:
  • Anti-CD20 monoclonal antibody (unless investigator determines that tumor is CD20-negative) and
  • Anthracycline containing chemotherapy regimen.
  • For individual with transformed FL must have relapse or refractory disease after transformation to DLBCL.
  • The estimated survival time is over 3 months.
  • The Eastern Cooperative Oncology Group (ECOG) score is 0-
  • According to Lugano response criteria 2014, there should be at least one evaluable tumor focus. Evaluable tumor focus was defined as that with the longest diameter of intranodal focus > 1.5cm, the longest diameter of extranodal focus > 1.0cm assessed by computed tomography (CT) or magnetic resonance imaging (MRI).
  • Subjects must be willing to undergo either excised or large-needle lymph node or tissue biopsy, or provide formalin-fixed paraffin-embedded (FFPE) tumor tissue block or freshly cut unstained slides.
  • Functions of important organs meet the following requirements: Echocardiography showed left ventricular ejection fraction ≥50%. Serum creatinine ≤1.5 × upper limit of normal range (ULN) or endogenous creatinine clearance ≥45mL/min (cockcroft-gault formula); Alanine ULN, Total bilirubin ≤1.5× ULN; Pulmonary function: ≤CTCAE grade 1 dyspnea and oxygen saturation of blood (SaO2) ≥91% in indoor air environment.
  • Blood routine (normal values shall not be obtained with growth factors, and hemocytopenia caused by lymphoma invasion of bone marrow is not subject to conditions below): hemoglobin (Hgb) ≥80g/L, neutrophil count (ANC) ≥1×10^6/L, platelet (PLT) ≥75×10^9/L.
  • Pregnancy tests for women of childbearing age shall be negative; Both men and women agreed to use effective contraception during treatment and during the subsequent 1 year.
  • Toxicity from previous antitumor therapy ≤ grade 1 (according to CTCAE version 5.0) or to an acceptable level of inclusion/exclusion criteria (other toxicities such as alopecia and vitiligo considered by the investigator to pose no safety risk to the subject).
  • No obvious hereditary diseases.
  • Able to understand the requirements and matters of the trial, and willing to participate in clinical research as required.
  • Informed consent must be signed.

排除标准

  • During the screening period, there was central nervous system (CNS) invasion or a history of clinically significant central nervous system diseases, such as epilepsy and cerebrovascular diseases.
  • Women who are pregnant or breastfeeding, or who do not agree to use effective contraception during treatment and during the subsequent 1 year.
  • History of allogeneic hematopoietic stem cell transplantation, or organ transplantation.
  • History of other malignancies that have not been in remission.
  • Patients with primary immunodeficiency or autoimmune diseases requiring immunosuppressive therapy.
  • Received radiotherapy within 3 months before enrollment.
  • Received immunotherapy drugs within 4 weeks before enrollment, such as anti-programmed death 1 (PD-1) antibody, anti-programmed death ligand 1 (PD-L1) antibody, CD19/CD3-bispecific antibody, and so on.
  • Patients who received any immunocellular therapy within 6 months before enrollment.
  • Confirmed evidence showing positiveness of anti-CD19 scFv reaction in patient serum.
  • Patients who participated in other clinical trials within 4 weeks prior to enrollment.
  • Uncontrolled infectious diseases or other serious illnesses, including but not limited to infections [e.g., human immunodeficiency virus (HIV) infection or acute or chronic active hepatitis B (HBV) or C (HCV) infection], congestive heart failure, unstable angina, arrhythmias, or that pose an unpredictable risk in the opinion of the attending physician.
  • The presence of uncontrollable serous membrane fluid, such as massive pleural effusion or ascites.
  • A history of stroke or intracranial hemorrhage within 3 months prior to enrollment.
  • Major surgery or trauma occurred within 28 days prior to enrollment, or major side effects have not been recovered.
  • History of allergies to any of the ingredients in cell products.
  • Conditions in which a known mental or physical illness interferes with cooperation with the requirements of the study or disrupts the results or interpretation of the results and, in the opinion of the therapeutic investigator, makes the patient unfit for study participation.
  • There is the situation that the researcher's judgment will interfere with the whole study participation; Situations where there is significant risk to the subject; Or interferes with the interpretation of research data.
  • Inability to understand or unwillingness to sign informed consent.
  • Researchers believe that other reasons are not suitable for clinical trials.

研究组 & 干预措施

Autologous TRAC locus-inserted CD19-targeting STAR-T cells

Experimental

A conditioning chemotherapy regimen of fludarabine and cyclophosphamide (FC regimen) will be administered followed by investigational treatment, autologous targeting CD19 synthetic T-cell receptor antigen receptor T cells.

Post leukapheresis, administration of short half-life chemo-agents, Bruton tyrosine kinase inhibitor (BTKi) and/or dexamethasone should be considered to bridge the following FC regimen in patients with bulky tumor burden, rapidly aggressive progression, and/or indications of imperious symptom control.

干预措施: Autologous CD19-STAR-T cell (Biological)

Autologous TRAC locus-inserted CD19-targeting STAR-T cells

Experimental

A conditioning chemotherapy regimen of fludarabine and cyclophosphamide (FC regimen) will be administered followed by investigational treatment, autologous targeting CD19 synthetic T-cell receptor antigen receptor T cells.

Post leukapheresis, administration of short half-life chemo-agents, Bruton tyrosine kinase inhibitor (BTKi) and/or dexamethasone should be considered to bridge the following FC regimen in patients with bulky tumor burden, rapidly aggressive progression, and/or indications of imperious symptom control.

干预措施: Fludarabine (Drug)

Autologous TRAC locus-inserted CD19-targeting STAR-T cells

Experimental

A conditioning chemotherapy regimen of fludarabine and cyclophosphamide (FC regimen) will be administered followed by investigational treatment, autologous targeting CD19 synthetic T-cell receptor antigen receptor T cells.

Post leukapheresis, administration of short half-life chemo-agents, Bruton tyrosine kinase inhibitor (BTKi) and/or dexamethasone should be considered to bridge the following FC regimen in patients with bulky tumor burden, rapidly aggressive progression, and/or indications of imperious symptom control.

干预措施: Cyclophosphamide (Drug)

结局指标

主要结局

Phase 1: Incidence of Dose-Limiting Toxicities (DLTs)

时间窗: First infusion date of CD19-STAR-T cells up to 28 days

DLT was defined as CD19-STAR-T cells-related events with onset within first 28 days following infusion: The development of Grade (G) 3 or higher grade CRS lasting \> 2 weeks; Any CD19-STAR-T cells-related AE requiring intubation; All G4 non-hematologic toxicities.

Phase 1: Recommended phase 2 dose (RP2D)

时间窗: 12 months

The recommended dose for phase 2 was determined through phase 1 study.

Phase 1: Incidence of Adverse Events (AEs)

时间窗: 12 months

AE is defined as any adverse medical event from the date of randomization to 12 months after CD19-STAR-T cells infusion. Among them, CRS and ICANS were graded according to American Society for Transplantation and Cellular Therapy (ASTCT) criteria. Other AEs were graded according to common terminology criteria for adverse events (CTCAE) v5.0.

Phase 1: Maximum tolerated dose (MTD)

时间窗: 12 months

MTD is defined as the highest dose level of less than or equal to 2 DLT among the 6 subjects finally determined.

Phase 2: Best objective Response Rate

时间窗: 12 months

The incidence of complete response (CR), partial response (PR), stable disease (SD), progressive disease (PD), or unevaluable (UE) as the best response to treatment assessed by investigators and based on the Lugano 2014 assessment criterion.

次要结局

  • Phase 2: Overall Survival (OS)(12 months after the first infusion of CD19-STAR-T cells)
  • Pharmacodynamics: Peak level of cytokines in serum (phase 1 and phase 2)(Up to 28 days after infusion)
  • Phase 2: Duration of Response (DOR)(12 months)
  • Pharmacokinetics: Persistence of CD19-STAR-T (phase 1 and phase 2)(12 months)
  • Phase 2: Progression Free Survival (PFS)(12 months after the first infusion of CD19-STAR-T cells)
  • Phase 2: Time to response (TTR)(12 months)
  • Pharmacokinetics: Number and copy number of CD19-STAR-T cells (phase 1 and phase 2)(12 months)

研究者

发起方
Chinese PLA General Hospital
申办方类型
Other
责任方
Principal Investigator
主要研究者

Han weidong

Director of Biotherapeutic Department

Chinese PLA General Hospital

研究点 (2)

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