CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:IR-780 Dye-based Targeting of Cancer-associated Fibroblasts Improves Cancer Immunotherapy by Increasing Intra-tumoral T Lymphocytes Infiltration.
IR-780 Dye-based Targeting of Cancer-associated Fibroblasts Improves Cancer Immunotherapy by Increasing Intra-tumoral T Lymphocytes Infiltration.
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本研究提供了一种独特的策略,通过靶向调控 CAFs 来抑制肿瘤微环境中的 ECM 蛋白沉积,从而破坏 T 细胞屏障,进一步促进肿瘤对 PD-L1 单克隆抗体的响应。IR-780 已被提出作为一种潜在的治疗性小分子佐剂,以增强免疫治疗的效果。
针对程序性死亡(PD)-1/PD-L1通路的免疫检查点抑制剂(ICIs)免疫治疗已被证明仅对一部分癌症患者有效,而其余患者可能表现出低应答或在初始应答后产生耐药性。既往研究表明,肿瘤微环境中癌症相关成纤维细胞(CAFs)分泌的大量富含胶原的基质通过减少浸润性细胞毒性T细胞,是某些肿瘤免疫治疗的关键障碍之一。然而,目前仍缺乏通过靶向CAFs来控制细胞外基质的有效治疗策略。
通过体内或离体近红外荧光成像、共聚焦近红外荧光成像和CAFs分离检测,评估了CAFs对IR-780的增强摄取。通过qPCR、western blot和流式细胞术检测了IR-780对纤维化表型的下调作用及体外CAFs杀伤效果。在EMT6和MC38皮下异种移植小鼠模型上评估了IR-780对抗PD-L1的体内治疗增强作用。
IR-780已被证明优先被CAFs摄取并在线粒体中积累。进一步的结果表明,低剂量IR-780可下调纤维化表型,而高剂量IR-780可在体外直接杀死CAFs和EMT6细胞。此外,IR-780显著抑制了皮下EMT6和MC38异种移植瘤中肿瘤周围基质的细胞外基质(ECM)蛋白沉积,这增加了深部肿瘤中TIL(肿瘤浸润淋巴细胞)(TILs)的比例,并进一步促进了抗PD-L1的治疗效果。
Immune-checkpoint inhibitors (ICIs) against programmed death (PD)-1/PD-L1 pathway immunotherapy have been demonstrated to be effective in only a subset of patients with cancer, while the rest may exhibit low response or may develop drug resistance after initially responding. Previous studies have indicated that extensive collagen-rich stroma secreted by cancer-associated fibroblasts (CAFs) within the tumor microenvironment is one of the key obstructions of the immunotherapy for some tumors by decreasing the infiltrating cytotoxic T cells. However, there is still a lack of effective therapeutic strategies to control the extracellular matrix by targeting CAFs.
The enhanced uptake of IR-780 by CAFs was assessed by using in vivo or ex vivo nearinfrared fluorescence imaging, confocal NIR fluorescent imaging, and CAFs isolation testing. The fibrotic phenotype down-regulation effects and in vitro CAFs killing effect of IR-780 were tested by qPCR, western blot, and flow cytometry. The in vivo therapeutic enhancement of anti-PD-L1 by IR-780 was evaluated on EMT6 and MC38 subcutaneous xenograft mice models.
IR-780 has been demonstrated to be preferentially taken up by CAFs and accumulate in the mitochondria. Further results identified low-dose IR-780 to downregulate the fibrotic phenotype, while high-dose IR-780 could directly kill both CAFs and EMT6 cells in vitro. Moreover, IR-780 significantly inhibited extracellular matrix (ECM) protein deposition in the peri-tumoral stroma on subcutaneous EMT6 and MC38 xenografts, which increased the proportion of tumor-infiltrating lymphocytes (TILs) in the deep tumor and further promoted anti-PD-L1 therapeutic efficacy.
This work provides a unique strategy for the inhibition of ECM protein deposition in the tumor microenvironment by targeted regulating of CAFs, which destroys the T cell barrier and further promotes tumor response to PD-L1 monoclonal antibody. IR-780 has been proposed as a potential therapeutic small-molecule adjuvant to promote the effect of immunotherapy.
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