CD81 通过阻断 CD274/PD-L1 的选择性自噬降解驱动放射抵抗性胶质母细胞瘤的免疫逃逸
CD81 drives immune evasion in radioresistant glioblastoma by blocking selective autophagic degradation of CD274/PD-L1.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Dendritic cell-derived exosome (DEX) therapy for digestive system cancers: Recent advances and future prospect.
Dendritic cell-derived exosome (DEX) therapy for digestive system cancers: Recent advances and future prospect.
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肿瘤介导的免疫抑制是基于树突状细胞(DC)的癌症疫苗开发的基本障碍,尽管这些疫苗能够刺激宿主抗肿瘤CD8 T细胞免疫,但未能产生有意义的治疗反应。外泌体是通过内吞途径产生的纳米级无活性膜囊泡。它们对细胞间通讯至关重要。
此外,DC来源的外泌体(DEXs)含有MHC I/II类分子(MHCI/II),这些分子常与抗原和共刺激分子形成复合物,因此能够致敏针对特定抗原的CD4和CD8 T细胞。事实上,在消化系统肿瘤的临床前模型中,与DC疫苗相比,DEXs疫苗在根除肿瘤方面已显示出更好的抗肿瘤疗效。
此外,肿瘤抗原肽(TAA)的选择过程仍有改进空间。当选择正确的抗原肽时,DCs会释放高度靶向的外泌体,这可能有助于创建能引发更有针对性免疫反应的基于DEXs的抗肿瘤疫苗。加之其对肿瘤免疫抑制的抵抗性,基于DEXs的癌症疫苗被誉為治疗消化系统肿瘤优于DC疫苗的无细胞治疗性疫苗。在这篇综述中,将讨论DEXs癌症疫苗的当前研究以及潜在的未来方向。
Tumor-mediated immunosuppression is a fundamental obstacle to the development of dendritic cell (DC)-based cancer vaccines, which despite their ability to stimulate host anti-tumor CD8 T cell immunity, have not been able to generate meaningful therapeutic responses. Exosomes are inactive membrane vesicles that are nanoscale in size and are produced by the endocytic pathway. They are essential for intercellular communication.
Additionally, DC-derived exosomes (DEXs) contained MHC class I/II (MHCI/II), which is frequently complexed with antigens and co-stimulatory molecules and is therefore able to prime CD4 and CD8 T cells that are specific to particular antigens. Indeed, vaccines with DEXs have been shown to exhibit better anti-tumor efficacy in eradicating tumors compared to DC vaccines in pre-clinical models of digestive system tumors. Also, there is room for improvement in the tumor antigenic peptide (TAA) selection process.
DCs release highly targeted exosomes when the right antigenic peptide is chosen, which could aid in the creation of DEX-based antitumor vaccines that elicit more targeted immune responses. Coupled with their resistance to tumor immunosuppression, DEXs-based cancer vaccines have been heralded as the superior alternative cell-free therapeutic vaccines over DC vaccines to treat digestive system tumors. In this review, current studies of DEXs cancer vaccines as well as potential future directions will be deliberated.
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