单细胞追踪揭示黑色素瘤 TIL 治疗过程中肿瘤反应性 T 细胞的可塑性
Single-cell tracking reveals tumor-reactive T cell plasticity during melanoma TIL therapy.
TIL(肿瘤浸润淋巴细胞)过继细胞治疗可在转移性黑色素瘤中诱导持久缓解,然而在体外扩增过程中及回输后,调控肿瘤反应性T细胞命运的克隆和转录动态仍知之甚少。
英文原题:A Myeloid-Specific Endogenous TRP1-CAR Knock-in Mouse Model for Melanoma-Targeted Immunotherapy.
该髓系特异性TRP1-CAR敲入模型在体外显示出抗肿瘤活性,并在体内延缓了黑色素瘤进展。它为研究与持续性内源性CAR表达相关的抗肿瘤活性和初步安全性观察提供了一个概念验证框架。
恶性黑色素瘤具有高度侵袭性,且易产生治疗耐药。嵌合抗原受体巨噬细胞(CAR-M)疗法在实体瘤中具有前景,但传统的体外工程化CAR-M在体内持久性有限,使长期安全性评估变得复杂。本研究建立了一种髓系特异性、内源性表达酪氨酸酶相关蛋白1(TRP1)-CAR的小鼠模型,以评估抗肿瘤活性和安全性。
TRP1-CAR被条件性敲入Rosa26位点,并与溶菌酶2(Lyz2)-Cre小鼠杂交,以生成髓系特异性表达TRP1-CAR的小鼠(TRP1-CAR M)。通过流式细胞术、组织免疫荧光、组织病理学和血液学评估CAR信号和基线观察结果。在体外评估吞噬作用、细胞毒性和炎症相关基因表达。在两个独立队列中使用同基因B16-Fluc-GFP黑色素瘤模型,以评估肿瘤生长、生存期、瘤内CD8 + T细胞浸润和组织病理学。
在外周血以及肺、肝、脾的F4/80阳性巨噬细胞区域检测到CAR信号。在基线条件下,所检查的组织中未观察到明显的组织病理学异常或血液学变化。TRP1-CAR M -BMDMs对B16-Fluc-GFP细胞表现出增强的吞噬和细胞毒活性,同时在共培养系统中伴有炎症相关基因表达的改变。在体内,TRP1-CAR M小鼠表现出肿瘤生长延迟(P < 0.0001)和生存期延长(P = 0.0005),并伴有瘤内CD8 + T细胞浸润增加。
BACKGROUND: Malignant melanoma is highly aggressive and prone to therapeutic resistance. Chimeric antigen receptor macrophage (CAR-M) therapy is promising for solid tumors, but conventional ex vivo-engineered CAR-M has limited in vivo persistence, complicating longer-term safety evaluation. This study established a myeloid-specific, endogenously expressed tyrosinase-related protein 1 (TRP1)-CAR mouse model to assess antitumor activity and safety. METHODS: TRP1-CAR was conditionally knocked into the Rosa26 locus and crossed with Lysozyme 2 (Lyz2) -Cre mice to generate mice with myeloid-specific TRP1-CAR expression (TRP1-CAR M ). CAR signals and baseline observations were assessed by flow cytometry, tissue immunofluorescence, histopathology, and hematology. Phagocytosis, cytotoxicity, and inflammation-related gene expression were evaluated in vitro. A syngeneic B16-Fluc-GFP melanoma model was used in two independent cohorts to assess tumor growth, survival, intratumoral CD8 + T-cell infiltration, and histopathology. RESULTS: CAR signals were detected in peripheral blood and in F4/80-positive macrophage-containing areas of the lung, liver, and spleen. No overt histopathological abnormalities or hematological changes were observed in the tissues examined under baseline conditions. TRP1-CAR M -BMDMs showed enhanced phagocytic and cytotoxic activity against B16-Fluc-GFP cells, accompanied by altered inflammation-related gene expression in the co-culture system. In vivo, TRP1-CAR M mice showed delayed tumor growth (P < 0.0001) and prolonged survival (P = 0.0005), with increased intratumoral CD8 + T-cell infiltration. CONCLUSION: This myeloid-specific TRP1-CAR knock-in model showed in vitro antitumor activity and delayed melanoma progression in vivo. It provides a proof-of-concept framework for investigating antitumor activity and preliminary safety observations associated with sustained endogenous CAR expression.
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