CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Harnessing Notch Signaling to Enhance the Generation and Functionality of Human Conventional Type 1 Dendritic Cells for Cancer Immunotherapy Applications.
Harnessing Notch Signaling to Enhance the Generation and Functionality of Human Conventional Type 1 Dendritic Cells for Cancer Immunotherapy Applications.
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基于树突状细胞(DC)的疫苗 Sipuleucel-T 仍是 FDA 唯一批准上市的癌症疫苗。尽管在众多试验中已确立其针对癌症和感染的安全性与疗效,但长期临床获益有限。大多数试验采用的是来源于血液单核细胞的 DC,但新出现的证据强调了经典 1 型 DC(cDC1)在触发强效抗肿瘤免疫应答中的独特作用,以及其在多种癌症中瘤内浸润与良好预后相关。然而,外周血中 cDC1 稀少,且体外生成它们存在挑战,这阻碍了对其生物学的更深入理解及其作为细胞疫苗的广泛应用。在本研究中,我们提出了一种无血清培养体系,能够从脐带血或外周血来源的 CD34+ 祖细胞生成数十亿个人 cDC1。该系统利用 Notch 信号对 cDC1 分化的需求,生成的 DC 与体内 cDC1 高度相似,表现出包括细胞抗原交叉呈递在内的功能。这一稳健的方案使得 cDC1 可规模化生产,用于基础生物学研究和治疗应用。
A dendritic cell (DC)-based vaccine, Sipuleucel-T, remains the sole FDA-approved cancer vaccine. Despite their established safety and efficacy against cancers and infections in numerous trials, long-term clinical benefits have been modest. Most trials have employed DCs derived from blood monocytes, but emerging evidence underscores the unique role of conventional type 1 DCs (cDC1) in triggering potent antitumor immune responses and their intratumoral infiltration with favorable prognoses in many cancers.
However, the scarcity of cDC1s in peripheral blood and the challenges in generating them in vitro have hindered a deeper understanding of their biology and their widespread application as cellular vaccines. In this study, we present a serum-free culture system capable of generating billions of human cDC1s from CD34+ progenitors derived from cord or peripheral blood.
The system leverages the requirement of Notch signaling for cDC1 differentiation and generates DCs that closely resemble in vivo cDC1s, exhibiting functions including cellular antigen cross-presentation. This robust protocol enables the scalable production of cDC1s for both fundamental biological research and therapeutic applications.
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