第九届先进疗法创新峰会 (ATMP 2025) 将于 2025 年 6 月 17-18 日 在北京龙城温德姆酒店召开。ATMP 峰会一直致力于汇聚全球先进疗法领域的专家和机构。本届峰会继续吸引着来自美国宾夕法尼亚大学佩雷尔曼医学院、帕克癌症免疫疗法研究所、纪念斯隆-凯特琳癌症中心、MD 安德森癌症中心、费城儿童医院、加州大学圣地亚哥分校、美国国立癌症研究所(NCI)、美国国立卫生研究院(NIH)、英国伦敦大学圣乔治医院、新加坡科技研究局(A*STAR)、日本京都大学 iPS 细胞研究所、美国食品药品监督管理局(FDA)、德国埃尔朗根-纽伦堡大学等国际先锋机构的代表参会。同时,国内顶尖高校、科研院所及产业界的嘉宾也将共同参会交流。
本届大会将聚焦先进疗法领域前沿方向,设立外泌体与干细胞创新专题、类器官与器官芯片创新专题、基因治疗创新专题等三大专题板块,将深入探讨从基础研究到临床转化、从技术瓶颈到产业化落地的关键议题。
届时,福流生物将携单分子纳米生物检测产品参会,我们诚挚邀请并欢迎各位专家学者莅临 12 号展位进行交流。
会议信息
时间:2025 年 6 月 17-18 日
地点:北京-昌平-龙城温德姆酒店
展位信息
报告信息
报告标题
In vivo mRNA Delivery for Chimeric Antigen Receptor Engineering in Immune Cells
CAR-T 递送系统的综合表征及实时质控策略
主讲人
王娜 厦门福流生物科技有限公司(应用科学家)
报告时间
6 月 17 日 14:45-15:10
报告地点
Ballroom A – 细胞免疫治疗产品开发与前沿技术创新
摘要
Chimeric Antigen Receptor (CAR) T cell therapy has revolutionized cancer treatment, yet its clinical adoption remains hindered by the complexity, cost, and toxicity of ex vivo manufacturing. A paradigm shift is underway with the advent of in vivo CAR engineering, where lipid nanoparticles (LNPs) or virus like particles (VLPs) are used to deliver CAR-encoding RNA directly into a patient’s immune cells. It bypasses the need for cell harvesting and manipulation outside the body. These key innovations offer new tools to safely and rapidly reprogram T cells or macrophages in situ.
However, efficient in vivo targeting remains challenging: many LNPs accumulate in liver/spleen, and only a fraction of particles carries the payload, leading to modest initial transfection rates. Ensuring enough mRNA enters T cells effectively and elicits a functional response without off-target effects is a key hurdle. Advanced nanoparticle characterization accelerate optimization.
Single-Molecule NanoAnalyzer can size and count LNPs while detecting mRNA loading ratio and encapsulated mRNA, together with surface-bound ligands/antibodies. Such analyses directly measure mRNA copy number per particle, encapsulation efficiency, and antibody/ligand decoration levels. By quantifying these parameters, researchers can refine formulations to maximize in vivo CAR-T conversion efficiency.
会议日程