RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Dual Checkpoint Aptamer Immunotherapy: Unveiling Tailored Cancer Treatment Targeting CTLA-4 and NKG2A.
Dual Checkpoint Aptamer Immunotherapy: Unveiling Tailored Cancer Treatment Targeting CTLA-4 and NKG2A.
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近期免疫治疗的进展揭示了CTLA-4和PD-1/PD-L1通路在当代肿瘤学中的关键作用,在缓解率和不良反应方面既带来了希望也带来了挑战。
本研究采用计算生物学工具(in silico方法)设计能够结合双受体的适配体,即抑制性CTLA4和NKG2A,从而同时释放T细胞和NK细胞,增强CD8+ T细胞和NK细胞功能以裂解肿瘤细胞。计算分析突出显示AYA22T-R2-13的HADDOCK得分为-78.2 10.2(与CTLA4)、-60.0 4.2(与NKG2A)和-77.5 5.6(与CD94/NKG2A)。通过ELISA和流式细胞术方法确认了适配体与靶标蛋白的结合。使用乳酸脱氢酶(LDH)细胞毒性试验评估体外生物学功能。使用ELISA和流式细胞术的直接和竞争性试验表明,AYA22T-R2-13选择性结合CTLA4和NKG2A蛋白,以及IL-2刺激的T细胞和NK细胞的细胞表面受体。在CTLA4或NKG2A蛋白竞争存在的情况下,这种结合被抑制。
值得注意的是,AYA22T-R2-13对CTLA4或NKG2A的阻断增强了体外人类CD8 T细胞和NK细胞介导的肿瘤细胞裂解。
我们的发现突出了AYA22T-R2-13对CTLA4-B7-1/B7-2(CD80/CD86)或CD94/NKG2A-HLA-E相互作用的精确结合特异性,将其定位为小鼠肿瘤模型中免疫检查点阻断适配体研究的宝贵工具。这些体外研究为进一步增强结合能力以及在动物模型中确立疗效和安全性奠定了有希望的基础。
因此,我们的结果强调了AYA22T-R2-13在癌症免疫治疗中的潜力,其具有高特异性、低毒性以及成本效益高的生产潜力。
Recent strides in immunotherapy have illuminated the crucial role of CTLA-4 and PD-1/PD-L1 pathways in contemporary oncology, presenting both promises and challenges in response rates and adverse effects.
This study employs a computational biology tool (in silico approach) to craft aptamers capable of binding to dual receptors, namely, inhibitory CTLA4 and NKG2A, thereby unleashing both T and NK cells and enhancing CD8 + T and NK cell functions for tumor cell lysis. Computational analysis highlighted AYA22T-R2-13 with HADDOCK scores of -78. 2 10. 2 (with CTLA4), -60. 0 4. 2 (with NKG2A), and -77. 5 5. 6 (with CD94/NKG2A). Confirmation of aptamer binding to targeted proteins was attained via ELISA and flow cytometry methods.
In vitro biological functionality was assessed using lactate dehydrogenase (LDH) cytotoxicity assay. Direct and competitive assays using ELISA and flow cytometry demonstrated the selective binding of AYA22T-R2-13 to CTLA4 and NKG2A proteins, as well as to the cell surface receptors of IL-2-stimulated T cells and NK cells. This binding was inhibited in the presence of competition from CTLA4 or NKG2A proteins. Remarkably, the blockade of CTLA4 or NKG2A by AYA22T-R2-13 augmented human CD8 T cell- and NK cell-mediated tumor cell lysis in vitro.
Our findings highlight the precise binding specificity of AYA22T-R2-13 for CTLA4-B7-1/B7-2 (CD80/CD86) or CD94/NKG2A-HLA-E interactions, positioning it as a valuable tool for immune checkpoint blockade aptamer research in murine tumor models.
These in vitro studies establish a promising foundation for further enhancing binding capacity and establishing efficacy and safety in animal models. Consequently, our results underscore the potential of AYA22T-R2-13 in cancer immunotherapy, offering high specificity, low toxicity, and the potential for cost-effective production.
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