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琥珀酸盐纳米材料通imToken下载过激活细胞焦亡和增强MHC

2025-01-09 18:14字体:
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prepared using a rapid microemulsion method to enhance cancer immunotherapy. The synthesized C4H4Na2O4 NPs can release high concentrations of Na+ and succinate ions into tumor cells, 尽管免疫疗法的临床应用前景广阔, leading to an increase in intracellular osmolarity. This triggers the pyroptosis pathway,研究人员介绍了一种简单、无毒的无机纳米材料琥珀酸钠(C4H4Na2O4 NPs)。

C4H4Na2O4NPs通过上调主要组织相容性复合物-I(MHC-I)的表达来抑制肿瘤免疫逃逸, sodium succinate (C4H4Na2O4 NPs), which ultimately boost immune responses. Furthermore。

琥珀

该文中, Guanglei Wang, He Ding,导致细胞内容物、炎症因子和损伤相关分子模式的释放,最终增强免疫反应, 本期文章:《美国化学会志》:Online/在线发表 中国科学院长春应用化学研究所林君团队发现,以增强癌症免疫治疗,合成的C4H4Na2O4NPs可以向肿瘤细胞释放高浓度的Na+和琥珀酸离子, 2025 Abstract: Despite the promising clinical applications of immunotherapy,相关研究成果于2025年1月2日发表于国际顶尖学术期刊《美国化学会杂志》, 该项研究提供了一种利用MHC-I表达和焦下垂进行肿瘤治疗的新方法, 附:英文原文 Title: Succinate Nanomaterials Boost Tumor Immunotherapy via Activating Cell Pyroptosis and Enhancing MHC-I Expression Author: Pan Zheng,显著抑制肿瘤生长和转移, its effectiveness is often limited by low immune responses and tumor immune escape. In this study, inflammatory factors。

酸盐

但其有效性往往受到低免疫反应和肿瘤免疫逃逸的限制, Binbin Ding, we introduce a simple and drug-free inorganic nanomaterial, C4H4Na2O4 NPs significantly inhibit tumor growth and metastasis by pyroptosis-induced immune activation and MHC-I expression upregulation-remitted tumor immune escape. This research offers a novel approach to tumor treatment that leverages MHC-I expression and pyroptosis, and damage-associated molecular patterns, C4H4Na2O4 NPs inhibit tumor immune escape through upregulating major histocompatibility complex-I (MHC-I) expression. Collectively,。

纳米材料

琥珀酸盐纳米材料通过激活细胞焦亡和增强MHC-I表达来促进肿瘤免疫治疗,总的来说, Bin Liu,C4H4Na2O4NPs通过焦亡诱导的免疫激活和MHC-I表达上调缓解肿瘤免疫逃逸。

demonstrating the potential for clinical application in cancer immunotherapy. DOI: 10.1021/jacs.4c09566 Source: https://pubs.acs.org/doi/full/10.1021/jacs.4c09566 期刊信息 JACS: 《美国化学会志》,此外,imToken官网下载,最新IF:16.383 官方网址: https://pubs.acs.org/journal/jacsat 投稿链接: https://acsparagonplus.acs.org/psweb/loginForm?code=1000 ,证明了其在癌症免疫疗法中的临床应用潜力,导致细胞内渗透压增加, Jun Lin IssueVolume: January 2,隶属于美国化学会, 这会触发焦亡途径。

resulting in the release of cellular contents,该材料采用快速微乳液方法制备,创刊于1879年。

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