Acute lymphoblastic leukemia (ALL) is the most common malignancy in children and the second most frequent acute leukemia in adults. B-cell ALL constitutes approximately 85% of all ALL diagnoses. In Pakistan, ALL represents the most prevalent haematological malignancy presenting to tertiary centres, with AFBMTC receiving the largest national referral volume for haematological malignancies and transplantation. First-line combination chemotherapy achieves complete remission (CR) in \>95% of paediatric patients; however, 15-20% relapse. Outcomes following first relapse are substantially inferior: second-line salvage chemotherapy achieves CR2 in 30-50% of patients, and long-term event-free survival (EFS) after conventional chemotherapy alone is \<10%. Outcomes in adult ALL are even more dismal, with OS at 5 years below 40% even in first CR without allogeneic transplant. Patients with primary refractory ALL or multiply relapsed ALL have an unmet medical need for novel therapeutic approaches. The classical paradigm of chemotherapy followed by allogeneic haematopoietic stem cell transplantation (allo-HSCT) is limited by donor availability, conditioning-related mortality, and inability to achieve remission before transplant.
1.2 CD19 as a Therapeutic Target CD19 is a B-lineage surface glycoprotein expressed on the majority of B-cell ALL blasts, retained through disease evolution, and absent on haematopoietic stem cells, non-haematopoietic tissues, and most normal tissues. CD19 expression is confirmed in \>95% of B-ALL cases, making it the optimal target for immunotherapy. The only significant on-target off-tumour consequence is B-cell aplasia and hypogammaglobulinaemia, which are clinically manageable with immunoglobulin replacement. 1.3 CAR-T Cell Therapy: Scientific and Clinical Rationale Chimeric antigen receptor T-cell (CAR-T) therapy involves ex vivo genetic modification of autologous T cells to express a synthetic receptor comprising: (1) an extracellular antigen-binding domain (anti-CD19 scFv), (2) a hinge and transmembrane domain, (3) an intracellular costimulatory domain (4-1BB/CD137), and (4) a CD3ζ signalling domain. Upon infusion, CAR-T cells recognise CD19+ target cells in an MHC-independent manner, inducing direct cytotoxicity, cytokine release, and in vivo proliferation. The 4-1BB costimulatory domain (used in this protocol) confers superior persistence and memory formation compared to CD28-based constructs, as demonstrated in seminal studies from the University of Pennsylvania and subsequently confirmed in the ELIANA global Phase II trial of tisagenlecleucel (Maude et al., NEJM 2018), which demonstrated an overall remission rate of 81% and 12-month EFS of 50% in heavily pre-treated paediatric and young adult r/r B-ALL. 1.4 Institutional Rationale and LMIC Context AFBMTC is Pakistan's first and largest haematology and cellular therapy centre, established in 2001 under NUMS, with a cumulative experience of \>2,000 allogeneic, autologous, and haploidentical HSCTs. AFBMTC possesses critical institutional infrastructure for CAR-T implementation including GMP-equivalent cleanroom facilities, validated cryopreservation and leukapheresis capabilities, and an established mesenchymal stromal cell (MSC) GMP program with over a decade of experience - directly translatable to CAR-T manufacturing quality standards. Access to commercially approved CAR-T products (tisagenlecleucel, axicabtagene ciloleucel) is prohibitively expensive and effectively unavailable in Pakistan. AFBMTC's model of on-site CAR-T manufacturing using an internationally validated lentiviral vector platform (BIOCCUS, China) and automated closed-system bioreactor technology (CELLBRI) - analogous to the NexCAR19 program (ImmunoACT/IIT Bombay, India) in the LMIC context - provides a feasible, cost-recoverable, and sustainable approach to making this therapy accessible. This pilot study represents Pakistan's first academic CAR-T trial and aims to demonstrate manufacturing feasibility, safety, and early efficacy to support future regulatory approval and programme scale-up. 1.5 Investigational Product Description The investigational product is autologous anti-CD19 CAR-T cells generated from patient-derived peripheral blood T cells using: * Lentiviral vector: BIOCCUS-supplied, replication-deficient third-generation lentiviral vector encoding the anti-CD19 CAR transgene (CD19 scFv-CD8 hinge/TM-4-1BB-CD3ζ) * Ex vivo manufacturing: CELLBRI automated closed-system bioreactor platform at AFBMTC GMP-equivalent cell therapy laboratory * CAR construct: Single-chain variable fragment (scFv) targeting human CD19, fused to CD8α hinge and transmembrane domain, 4-1BB (CD137) costimulatory domain, and CD3ζ activation domain * Cell source: Non-mobilised leukapheresis product from the patient * Administration: Single intravenous infusion following lymphodepleting chemotherapy
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
10
CAR-T Cell infusion therapy will be given
National University of Medical Sciences, Clinical Trial Unit
Rawalpindi, Pakistan
RECRUITINGTo evaluate the safety and feasibility of autologous anti-CD19 CAR-T cell therapy manufactured at AFBMTC using the BIOCCUS lentiviral vector and CELLBRI automated expansion system in patients aged 5-50 years with relapsed or refractory B-cell ALL.
Primary Safety Incidence/grade of CRS (ASTCT) Day 0-28
Time frame: 1 year after infusion of CAR-T
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