CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Clinical Pharmacology Considerations for the "Off-the-Shelf" Allogeneic Cell Therapies.
Clinical Pharmacology Considerations for the "Off-the-Shelf" Allogeneic Cell Therapies.
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自体CAR-T 细胞疗法已取得前所未有的临床成功,多款产品获得监管批准用于治疗多种血液系统恶性肿瘤。然而,仍存在若干临床挑战,限制了其在侵袭性疾病中的广泛应用。为应对其中部分挑战,异体细胞疗法正被评估作为替代方案。与自体产品相比,异体产品具有多项优势,如更标准化的“现货型”产品、降低的生产复杂性以及无需桥接治疗。与自体CAR-T 疗法一样,异体细胞疗法也因其体内存活特性、独特的药代动力学或细胞动力学(CKs)以及受多种患者相关和产品相关因素影响的复杂剂量-暴露-反应关系,而面临临床药理学挑战。除此之外,异体细胞疗法还呈现出额外的独特挑战,包括与自体对应产品相比,体内持久性减弱和移植物抗宿主病风险。本综述对自体与异体细胞疗法进行了比较,总结了异体细胞疗法特有的关键工程学方面。
同时重点介绍了从异体细胞疗法项目新兴临床数据中获得的临床药理学认识,尤其关注CK、剂量-暴露-反应关系、淋巴细胞清除方案、重复给药以及可影响CK和患者结局的患者相关和产品相关因素。异体细胞疗法的开发带来了特定的独特挑战和机遇,尤其是在优化淋巴细胞清除和建立重复给药方案方面。本综述强调,临床药理学家通过利用新颖的临床药理学以及建模与仿真方法,完全有能力帮助应对这些挑战。
Autologous chimeric antigen receptor T-cell (CAR-T) therapies have garnered unprecedented clinical success with multiple regulatory approvals for the treatment of various hematological malignancies.
However, there are still several clinical challenges that limit their broad utilization for aggressive disease conditions. To address some of these challenges, allogeneic cell therapies are evaluated as an alternative approach. As compared with autologous products, they offer several advantages, such as a more standardized "off the shelf" product, reduced manufacturing complexity, and no requirement of bridging therapy. As with autologous CAR-T therapies, allogeneic cell therapies also present clinical pharmacology challenges due to their in vivo living nature, unique pharmacokinetics or cellular kinetics (CKs), and complex dose-exposure-response relationships that are impacted by various patient- and product-related factors. On top of that, allogeneic cell therapies present additional unique challenges, including attenuated in vivo persistence and graft-vs.
-host disease risk as compared with autologous counterparts. This review draws comparison between autologous and allogeneic cell therapies, summarizing key engineering aspects unique to allogeneic cell therapy. Clinical pharmacology learnings from emerging clinical data of allogeneic cell therapy programs are also highlighted, with particular emphasis on CK, dose-exposure-response relationship, lymphodepletion regimen, repeat dosing, and patient- and product-related factors that can impact CK and patient outcomes.
There are specific unique challenges and opportunities arising from the development of allogeneic cell therapies, especially in optimizing lymphodepletion and establishing a regimen for repeat dosing. This review highlights how clinical pharmacologists are well positioned to help address these challenges by leveraging novel clinical pharmacology and modeling and simulation approaches.
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