PROTAC 工程化蛋白/DNA 纳米抗原是癌症免疫治疗中树突状细胞疫苗的有效增强剂
PROTAC-Engineered Protein/DNA Nanoantigen is a Potent Booster for Dendritic Cell Vaccines in Cancer Immunotherapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:A therapeutic DC vaccine with maintained immunological activity exhibits robust anti-tumor efficacy.
A therapeutic DC vaccine with maintained immunological activity exhibits robust anti-tumor efficacy.
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树突状细胞(DCs)疫苗因其在引发反应性肿瘤特异性T细胞应答中的关键作用,成为未来抗肿瘤免疫治疗的主要焦点。肿瘤细胞介导的DCs(TC-DC)活化和肿瘤抗原介导的DCs(TA-DC)活化是临床研究中DC疫苗构建的两种常规模式。前者在生理上模拟肿瘤识别和排斥,显著促进基于DC的免疫识别及向复杂肿瘤微环境(TME)的迁移。
然而,由于TME中可能存在免疫抑制分子,这些TC-DC通常以异常脂质蓄积和肌醇需求激酶1α(IRE1α)-X盒结合蛋白1(XBP1)过度活化为特征,这是由压倒性氧化应激和内质网(ER)应激所引发,导致TC-DC功能障碍。相反,由于不接触免疫抑制性TME,TA-DC疫苗在T细胞致敏和淋巴结(LNs)归巢方面表现更好,但在TME浸润和识别方面相对较弱。
在此,我们制备了一种负载KIRA6的α-生育酚纳米乳(KT-NE),其同时改善功能障碍性脂质负载TC-DC中的氧化应激和ER应激。经KT-NE处理的TC-DC能够维持免疫活性,同时在体内对LNs和肿瘤部位表现出令人满意的趋化性,并通过释放活化的肿瘤反应性T细胞有效抑制恶性进展。
本研究产生了一种新型DC疫苗,其具有识别复杂TME的强大能力以及增强T细胞启动的稳健免疫活性,这可能为DC疫苗的临床设计和应用提供一些启示。
Dendritic cells (DCs) vaccines are a major focus of future anti-tumor immunotherapy for their pivotal role in eliciting reactive tumor-specific T-cell responses. Tumor cell-mediated DCs (TC-DC) activation and tumor antigen-mediated DCs (TA-DC) activation are two conventional modes of DC vaccine construction in clinical studies. The former physiologically mimicks the tumor identification and rejection, significantly contributing to DC-based immune recognition and migration towards the complexed tumor microenvironment (TME).
However, as immunosuppressive molecules may exist in TME, these TC-DC are generally characterized with aberrant lipid accumulation and inositol-requiring kinase 1α (IRE1α)-X-box binding protein 1 (XBP1) hyperactivation, which is provoked by overwhelming oxidative stress and endoplasmic reticulum (ER) stress, resulting in TC-DC malfunction. Oppositely, without contacting immunosuppressive TME, TA-DC vaccines perform better in T-cell priming and lymph nodes (LNs) homing, but are relatively weak in TME infiltration and identification.
Herein, we prepared a KIRA6-loaded α-Tocopherol nanoemulsion (KT-NE), which simultaneously ameliorated oxidative stress and ER stress in the dysfunctional lipid-laden TC-DC. The TC-DC treated by KT-NE could maintain immunological activity, simultaneously, exhibited satisfactory chemotaxis towards LNs and tumor sites in vivo, and effectively suppressed malignant progression by unleashing activated tumor-reactive T cells.
This study generated a new DC-vaccine that owned puissant aptitude to identify complicated TME as well as robust immunological activity to boost T-cell initiation, which may provide some insights into the design and application of DC-vaccines for clinical application.
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