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儿童、青少年和年轻成人肿瘤学中的 CAR-T 细胞治疗格局——临床试验的综合分析

英文原题:CAR T-cell therapy landscape in pediatric, adolescent and young adult oncology - A comprehensive analysis of clinical trials.

PubMed 2025/02/01(内容时间) Crit Rev Oncol Hematol Q1 · IF 6.2(JCR 2025)

研究概要

我们的分析从最初40,690项研究中筛选出77项专门针对P-AYA人群的试验,筛选依据为年龄、日期以及与CAR T细胞干预在癌症治疗中相关的特定标准。

中文摘要

嵌合抗原受体(CAR)T细胞疗法已成为癌症治疗中的一种变革性方法,尤其是在血液系统恶性肿瘤方面。该疗法涉及对患者T细胞进行基因改造,以靶向特定的肿瘤抗原,绕过传统的MHC-TCR介导的识别。这一创新标志着向个性化医疗和精准肿瘤学迈出的重要一步。在儿童、青少年和年轻成人(P-AYA)人群中,Tisagenlecleucel(Kymriah)体现了CAR T细胞疗法的成功,在治疗复发或难治性急性淋巴细胞白血病(r/r ALL)方面显示出显著疗效。然而,针对P-AYA患者的CAR T细胞疗法的发展速度不如成人,截至2024年,仅有一项FDA批准用于儿科应用,而成人有六项。若干挑战阻碍了儿科CAR T细胞疗法的发展,包括复杂的生产物流、有限的临床试验机构可及性、限制性的患者入组标准以及财务约束,因此需要更有效的激励措施来促进独立于成人适应症的儿科肿瘤药物开发。为了评估CAR T细胞疗法在P-AYA肿瘤学中的当前格局,我们对截至2024年5月在ClinicalTrials.gov注册的临床试验进行了全面综述。我们的分析从最初按年龄、日期以及与癌症治疗中CAR T细胞干预相关的特定标准筛选出的40,690项研究中,纳入了77项专门针对P-AYA人群的试验。我们发现,其中45%的试验来自美国,30%来自中国。从这些试验中检索到的数据为了解各个方面提供了见解,包括组织学类别、抗原靶点、CAR-T 代次、共刺激结构域、生产工艺、地理分布和资金来源。本综述强调,研究主要集中在血液系统恶性肿瘤,尤其是 B 细胞急性淋巴细胞白血病(B-ALL),并重点关注双抗原靶向(CD19 和 CD22)以应对耐药机制。新兴靶点如用于实体瘤的 GD2 和用于多种癌症的 B7-H3 也显示出前景。此外,大多数试验仍使用带有 4-1BB 共刺激结构域的第二代 CAR-T 构建体,反映出在儿科人群中采取保守策略。我们的发现强调了儿科与成人群体在 CAR T 细胞疗法开发方面的差异,这种差异由不同的生物学、伦理和经济考量所驱动。儿科癌症需要针对儿科肿瘤学独特生物学和遗传构成的专门治疗。然而,研究和药物开发在历史上对儿科需求的关注较少。尽管已有立法努力促进儿科肿瘤药物开发,但仍存在显著缺口。针对 P-AYA 群体的临床试验在患者入组、试验设计和资金方面面临挑战,往往依赖学术和非营利机构。解决这些障碍对于推进儿科肿瘤学中的 CAR T 细胞疗法、改善结局并确保这些脆弱群体公平获得创新治疗至关重要。本综述旨在为未来研究和政策决策提供信息,促进 P-AYA 癌症患者 CAR T 细胞疗法的进步。

展开英文摘要原文

Chimeric Antigen Receptor (CAR) T-cell therapy has emerged as a transformative approach in cancer treatment, particularly for hematologic malignancies. This therapy involves the genetic modification of patients' T-cells to target specific tumor antigens, bypassing the traditional MHC-TCR-mediated recognition. This innovation marks a significant step toward personalized medicine and precision oncology. In the pediatric, adolescent, and young adult (P-AYA) populations, Tisagenlecleucel (Kymriah ) exemplifies the success of CAR T-cell therapy, demonstrating significant efficacy in treating relapsed or refractory acute lymphoblastic leukemia (r/r ALL). However, the development of CAR T-cell therapies for P-AYA patients has not progressed as rapidly as for adults, with only one FDA approval for pediatric applications compared to six for adults up to 2024. Several challenges hinder the development of pediatric CAR T-cell therapies, including complex production logistics, limited clinical site access, restrictive patient eligibility criteria, and financial constraints, necessitating more effective incentives for pediatric oncology drug development independent of adult indications. To assess the current landscape of CAR T-cell therapy in P-AYA oncology, we conducted a comprehensive review of clinical trials registered on ClinicalTrials.gov up to May 2024. Our analysis included 77 trials exclusively targeting the P-AYA population from an initial pool of 40,690 studies filtered by age, dates, and specific criteria related to CAR T-cell interventions in cancer therapy. We found that 45 % of these trials originated from the USA and 30 % from China. The data retrieved from these trials provided insights into various aspects, including histological categories, antigenic targets, CAR-T generations, costimulatory domains, manufacturing processes, geographical distribution, and funding sources. This review highlighted a predominant focus on hematologic malignancies, particularly B-cell acute lymphoblastic leukemia (B-ALL), with significant attention to dual antigen targeting (CD19 and CD22) to address resistance mechanisms. Emerging targets such as GD2 for solid tumors and B7-H3 for various cancers also showed promise. Additionally, most trials still utilize second-generation CAR-T constructs with 4-1BB costimulatory domains, reflecting a conservative approach in pediatric populations. Our findings underscore the disparity in CAR T-cell therapy development between pediatric and adult populations, driven by distinct biological, ethical, and economic considerations. Pediatric cancers require specialized treatments tailored to the unique biology and genetic makeup of pediatric oncology. However, research and drug development have historically focused less on pediatric needs. Despite legislative efforts to promote pediatric oncology drug development, significant gaps remain. Clinical trials for P-AYA populations face challenges in patient enrollment, trial design, and funding, often relying on academic and non-profit institutions. Addressing these barriers is critical for advancing CAR T-cell therapy in pediatric oncology, improving outcomes, and ensuring equitable access to innovative treatments for these vulnerable populations. This review aims to inform future research and policy decisions, promoting advancements in CAR T-cell therapy for P-AYA cancer patients.

论文信息

作者
Martínez-Gamboa DA、Hans R、Moreno-Cortes E、Figueroa-Aguirre J、Garcia-Robledo JE、Vargas-Cely F、Booth N、Castro-Martinez DA
单位
Division of Hematology and Medical Oncology, Mayo Clinic, Phoenix, AZ, USA; Cancer Research and Cellular Therapies Laboratory, Mayo Clinic, Phoenix, AZ, USA. Electronic address: martinezgamboa.davidarturo@mayo.edu.United States
文献类型
综述
期刊
Critical reviews in oncology/hematology2025 May
原文标识
PubMed 39900318 · DOI 10.1016/j.critrevonc.2025.104648