PO.IM01.07 · 免疫学

利用人血小板裂解物增强用于CAR-NK疗法的NK细胞的无饲养层扩增、存活、效力及生产后稳定性

Enhanced feeder-free expansion, survival, potency and post manufacture stability of NK cells for CAR-NK therapies using human platelet lysate

海报缩略图:利用人血小板裂解物增强用于CAR-NK疗法的NK细胞的无饲养层扩增、存活、效力及生产后稳定性
编号 131 展板 5 时间 4/19 02:00–05:00 区域 Section 7 主讲 Vanesa Alonso-Camino, PhD
分会场 Alternative Cell Type and in Situ Cell Therapies
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作者与单位 Authors & Affiliations

Vanesa Alonso-Camino, Andrew Sullivan

Mill Creek Life Sciences, Rochester, MN

摘要 Abstract

中文摘要
自然杀伤(NK)细胞已成为一个有前景的嵌合抗原受体(CAR)工程化平台,与CAR-T细胞相比,其具有固有的抗肿瘤活性和良好的安全性。与T细胞不同,NK细胞属于先天免疫系统,无需事先抗原致敏,这使其成为“即用型”同种异体疗法的有吸引力选择。CAR-NK细胞的临床关注度激增,全球已注册超过50项试验,其驱动因素在于其细胞因子释放综合征和移植物抗宿主病风险的降低。尽管有这些优势,CAR-NK疗法的广泛应用仍面临两大挑战:获得临床相关的NK细胞数量以及确保生产后的稳定性。NK细胞比T细胞数量更少,体外扩增能力有限,且寿命短。传统方法依赖饲养细胞共培养,通常使用肿瘤来源的细胞系,这带来了技术和监管上的障碍,并产生不一致的结果。为解决这些局限,我们开发了一种使用人血小板裂解物(hPL)的无饲养层扩增方案,在保留表型和细胞毒功能的同时实现了强健的NK细胞增殖。除扩增之外,我们还聚焦于CAR-NK生产中的一个关键瓶颈——冷冻保存。在基于hPL的培养后,使用专有的冷冻保存溶液和方案,我们实现了显著改善的NK细胞存活、激活性受体表达的维持以及解冻后抗肿瘤效力的保留。这一进展缓解了CAR-NK生产的物流挑战,支持可规模化、即用型细胞治疗产品。我们的整合方法——将高效的无饲养层扩增与优化的冷冻保存相结合——代表了迈向可靠、高质量CAR-NK疗法临床应用的重要一步。
查看英文原文 English abstract
Natural killer (NK) cells have emerged as a promising platform for chimeric antigen receptor (CAR) engineering, offering inherent anti-tumor activity and a favorable safety profile compared to CAR-T cells. Unlike T cells, NK cells belong to the innate immune system and do not require prior antigen sensitization, making them attractive for “off-the-shelf” allogeneic therapies. Clinical interest in CAR-NK cells has surged, with over 50 trials registered globally, driven by their reduced risk of cytokine release syndrome and graft-versus-host disease. Despite these advantages, the widespread adoption of CAR-NK therapies faces two major challenges: achieving clinically relevant NK cell numbers and ensuring post-manufacturing stability. NK cells are less abundant than T cells, exhibit limited in vitro expansion capacity, and have a short lifespan. Traditional methods rely on feeder cell co-culture, often using tumor-derived lines, which introduces technical and regulatory hurdles and yields inconsistent results. To address these limitations, we developed a feeder-free expansion protocol using human platelet lysate (hPL), enabling robust NK cell proliferation while preserving phenotype and cytotoxic function. Beyond expansion, we focused on a critical bottleneck in CAR-NK manufacturing-cryopreservation. Using proprietary cryopreservation solutions and protocols following hPL-based culture, we achieved significantly improved NK cell survival, maintenance of activating receptor expression, and retention of anti-tumor potency post-thaw. This advancement mitigates the logistical challenges of CAR-NK production, supporting scalable, ready-to-use cell therapy products. Our integrated approach-combining efficient feeder-free expansion with optimized cryopreservation-represents a major step toward reliable, high-quality CAR-NK therapies for clinical application.
利益披露 Disclosure
V. Alonso-Camino, None.. A. Sullivan, None.

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