γδ T 细胞调节小细胞肺癌中的抗肿瘤免疫
γδ T cells modulate anti-tumor immunity in small cell lung cancer.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Transduction of γδ T cells with Baboon envelope pseudotyped lentiviral vector encoding chimeric antigen receptors for translational and clinical applications.
Transduction of γδ T cells with Baboon envelope pseudotyped lentiviral vector encoding chimeric antigen receptors for translational and clinical applications.
分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。
γδ T 细胞是过继性细胞治疗中一个有前景的细胞平台。其天然的抗肿瘤反应性和不依赖 HLA 的靶细胞识别能力,使其成为异体过继性免疫治疗临床干预中一个有吸引力的平台。探索异体 γδ T 细胞疗法的早期临床试验已显示出令人鼓舞的安全性特征。
然而,其治疗疗效,尤其是针对实体瘤的疗效,仍然有限。这凸显出需要进一步优化 γδ T 细胞产品以提高抗肿瘤效力,例如通过表达嵌合抗原受体(CAR)诱导增强的靶向性。
然而,CAR-γδ T 细胞疗法开发中的一个关键挑战一直是优化标准载体形式的转导效率,以实现最佳的 CAR 转基因表达,进而产生最佳的治疗产品。
在此,我们提出了一种使用狒狒包膜假型化慢病毒载体(BaEV-LV)增强 γδ T 细胞中 CAR 转基因表达的有效方法,并将其与传统的 vesicular-stomatitis-virus-G protein(VSV-G)LV 进行比较。BaEV-LV 显著提高了 CAR 对 γδ T 细胞的转导效率,同时保留了未转导 γδ T 细胞有益的细胞产物组成和表型。用 BaEV-LV CAR 转导的 γδ T 细胞在 2D 和 3D 体外模型中均表现出对表达 B7H3 的肿瘤细胞显著增强的细胞毒性。
我们的发现代表了 CAR-γδ T 细胞工程的一项重大进展,为癌症免疫治疗提供了一条有前景的新途径,将 Vγ9Vδ2 T 细胞的独特特性与 CAR 技术的靶向特异性相结合。该方法与 CliniMACS Prodigy ® 等自动化封闭系统平台兼容,便于在符合药品生产质量管理规范(GMP)的条件下生产用于临床试验的产品。这一特性显著提升了工程化 γδ T 细胞的转化潜力,为开发下一代基于 γδ T 细胞的免疫疗法铺平了道路。
γδ T cells represent a promising cell platform for adoptive cell therapy. Their natural anti-tumor reactivity and HLA-independent target cell recognition make them an attractive platform for allogeneic adoptive immunotherapy clinical interventions. Initial clinical trials exploring allogeneic γδ T-cell therapies have demonstrated encouraging safety profiles.
However, their therapeutic efficacy, especially against solid tumors, remains limited. This highlights the need for further optimization of γδ T cell products to improve anti-tumor potency, such as the increased targeting induced by the expression of a chimeric antigen receptors (CAR).
However, a critical challenge in the development of CAR-γδ T cell therapies has been optimizing transduction efficiency with standard vector formats allowing for optimal CAR transgene expression that then produces an optimal therapeutic product.
Here we present an effective method for enhancing CAR transgene expression in γδ T cells using a Baboon-pseudotyped lentiviral vector (BaEV-LV), comparing it to the conventional vesicular-stomatitis-virus-G protein (VSV-G) LVs.
BaEV-LV significantly enhanced the transduction efficiency of γδ T cells with CARs, while conserving the beneficial cell product composition and phenotype of untransduced γδ T cells. The γδ T cells transduced with BaEV-LV CARs demonstrated significantly enhanced cytotoxicity against B7H3-expressing tumor cells in both 2D and 3D in vitro models.
Our findings represent a significant advancement in CAR-γδ T cell engineering, offering a promising new avenue for cancer immunotherapy that combines the unique properties of Vγ9Vδ2 T cells with the targeted specificity of CAR technology.
This method is compatible with automated closed-system platforms such as the CliniMACS Prodigy ® , facilitating Good Manufacturing Practice (GMP)-compliant production for clinical trials. This feature significantly enhances the translational potential of engineered γδ T cells, paving the way for the development of next-generation γδ T cell-based immunotherapies.
在 PubMed 查看 → 出版商原文(DOI) 全文 PDF(PMC)· 可下载 治疗专题与资料阅读指南 资料来源与翻译说明 报告译文或资料问题 →
MEMBER ACCOUNT
登录成功会直接打开下一页。