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:Engineered exosomes as an in situ DC-primed vaccine to boost antitumor immunity in breast cancer.
Engineered exosomes as an in situ DC-primed vaccine to boost antitumor immunity in breast cancer.
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HELA-Exos 在小鼠模型和人乳腺癌类器官中均表现出强效抗肿瘤活性,其机制是通过促进 cDC1s 原位活化,从而改善后续肿瘤反应性 CD8+ T 细胞应答。本文提出的策略有望用于生成原位 DC 致敏疫苗,并可推广至多种类型的癌症。方案 1.
树突状细胞(DC)是肿瘤微环境中启动和调节固有免疫与适应性免疫的核心。因此,在许多临床试验中,已开发出多种靶向DC的疫苗以改善癌症免疫治疗。将抗原和佐剂体内靶向递送至DC是开发DC疫苗的重要策略。然而,系统性DC的非特异性激活以及最佳免疫优势肿瘤抗原的制备仍是主要挑战。
我们将免疫原性细胞死亡(ICD)诱导剂人中性粒细胞弹性蛋白酶(ELANE)和Hiltonol(TLR3激动剂)装载到α-乳白蛋白(α-LA)工程化的乳腺癌来源外泌体中,形成原位DC疫苗(HELA-Exos)。通过透射电子显微镜、纳米级流式细胞术和Western blot分析对HELA-Exos进行鉴定。在体外评估了HELA-Exos的靶向、杀伤和免疫激活效应。在免疫健全小鼠和患者来源类器官中探索了HELA-Exos的抑瘤和免疫激活效应。
HELA-Exos具有在乳腺癌细胞中特异性诱导ICD的显著能力。在HELA-Exo诱导癌细胞ICD后,充分暴露于肿瘤抗原和Hiltonol,原位激活了一型常规DC(cDC1),并交叉致敏了肿瘤反应性CD8+ T细胞应答,从而在免疫原性差的三阴性乳腺癌(TNBC)小鼠异种移植模型和患者来源的肿瘤类器官中产生了强效的肿瘤抑制作用。
Dendritic cells (DCs) are central for the initiation and regulation of innate and adaptive immunity in the tumor microenvironment. As such, many kinds of DC-targeted vaccines have been developed to improve cancer immunotherapy in numerous clinical trials. Targeted delivery of antigens and adjuvants to DCs in vivo represents an important approach for the development of DC vaccines. However, nonspecific activation of systemic DCs and the preparation of optimal immunodominant tumor antigens still represent major challenges.
We loaded the immunogenic cell death (ICD) inducers human neutrophil elastase (ELANE) and Hiltonol (TLR3 agonist) into α-lactalbumin (α-LA)-engineered breast cancer-derived exosomes to form an in situ DC vaccine (HELA-Exos). HELA-Exos were identified by transmission electron microscopy, nanoscale flow cytometry, and Western blot analysis. The targeting, killing, and immune activation effects of HELA-Exos were evaluated in vitro. The tumor suppressor and immune-activating effects of HELA-Exos were explored in immunocompetent mice and patient-derived organoids.
HELA-Exos possessed a profound ability to specifically induce ICD in breast cancer cells. Adequate exposure to tumor antigens and Hiltonol following HELA-Exo-induced ICD of cancer cells activated type one conventional DCs (cDC1s) in situ and cross-primed tumor-reactive CD8 + T cell responses, leading to potent tumor inhibition in a poorly immunogenic triple negative breast cancer (TNBC) mouse xenograft model and patient-derived tumor organoids.
HELA-Exos exhibit potent antitumor activity in both a mouse model and human breast cancer organoids by promoting the activation of cDC1s in situ and thus improving the subsequent tumor-reactive CD8 + T cell responses. The strategy proposed here is promising for generating an in situ DC-primed vaccine and can be extended to various types of cancers. Scheme 1. Schematic illustration of HELA-Exos as an in situ DC-primed vaccine for breast cancer. (A) Allogenic breast cancer-derived exosomes isolated from MDA-MB-231 cells were genetically engineered to overexpress α-LA and simultaneously loaded with the ICD inducers ELANE and Hiltonol (TLR3 agonist) to generate HELA-Exos. (B) Mechanism by which HELA-Exos activate DCs in situ in a mouse xenograft model ofTNBC. HELA-Exos specifically homed to the TME and induced ICD in cancer cells, which resulted in the increased release of tumor antigens, Hiltonol, and DAMPs, as well as the uptake of dying tumor cells by cDC1s. The activated cDC1s then cross-primed tumor-reactive CD8+ T cell responses. (C) HELA-Exos activated DCs in situ in the breast cancer patient PBMC-autologous tumor organoid coculture system. ABBREVIATIONS: DCs: dendritic cells; α-LA: α-lactalbumin; HELA-Exos: Hiltonol-ELANE-α-LA-engineered exosomes; ICD: immunogenic cell death; ELANE: human neutrophil elastase; TLR3: Toll-like receptor 3; TNBC: triple-negative breast cancer; TME: tumor microenvironment; DAMPs: damage-associated molecular patterns; cDC1s: type 1 conventional dendritic cells; PBMCs: peripheral blood mononuclear cells.
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