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全合成基于 TF 的自佐剂疫苗同时触发 iNKT 细胞和 Mincle 并保护小鼠免受肿瘤发展

英文原题:Fully Synthetic TF-Based Self-Adjuvanting Vaccine Simultaneously Triggers iNKT Cells and Mincle and Protects Mice against Tumor Development.

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Fully Synthetic TF-Based Self-Adjuvanting Vaccine Simultaneously Triggers iNKT Cells and Mincle and Protects Mice against Tumor Development.

PubMed 2024/09/20(内容时间) J Med Chem Q1 · IF 7.3(JCR 2025)

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中文摘要

Thomsen-Friedenreich (TF) 抗原已被证明是开发新型治疗性癌症疫苗的一个有前景的靶点。在此,我们开发了一种将 TF 抗原与 KRN7000 和 vizantin 共价偶联的新策略。由此产生的三组分疫苗 KRN7000-TF-vizantin 同时触发恒定自然杀伤 T (iNKT) 细胞和巨噬细胞诱导型 C 型凝集素 (Mincle) 信号通路,激发出比糖蛋白疫苗 TF-KLH/alum 以及相应的两组分偶联疫苗 TF-KRN7000 和 TF-vizantin 强得多的 TF 特异性免疫应答。对 IgG 同种型和细胞因子分泌的分析表明,KRN7000-TF-vizantin 诱导了 Th1/Th2 混合免疫应答,其中 Th1 占主导地位。体内实验证明,KRN7000-TF-vizantin 提高了受肿瘤攻击小鼠的存活率和存活时间,且存活小鼠在未接受任何额外治疗的情况下排斥了进一步的肿瘤攻击。这项工作表明,共价偶联的 KRN7000 和 vizantin 可作为基于 TF 的疫苗载体用于抗肿瘤免疫治疗,具有广阔前景,且 KRN7000-TF-vizantin 极具潜力成为候选疫苗。

展开英文摘要原文

The Thomsen-Friedenreich (TF) antigen has proven to be a promising target for developing novel therapeutic cancer vaccines.

Here, a new strategy that TF antigen covalently coupled with KRN7000 and vizantin was developed. The resulting three-component vaccine KRN7000-TF-vizantin simultaneously triggers invariant natural killer T (iNKT) cells and macrophage-inducible C-type lectin (Mincle) signaling pathways, eliciting much stronger TF-specific immune responses than glycoprotein vaccine TF-KLH/alum and the corresponding two-component conjugate vaccines TF-KRN7000 and TF-vizantin.

The analysis of IgG isotypes and the secretion of cytokines revealed that KRN7000-TF-vizantin induced Th1/Th2 mixed immune responses, where Th1 was dominant. In vivo experiments demonstrated that KRN7000-TF-vizantin increased the survival rate and survival time of tumor-challenged mice, and surviving mice rejected further tumor attacks without any additional treatment.

This work demonstrates that covalently coupled KRN7000 and vizantin could serve as a promising TF-based vaccine carrier for antitumor immune therapy, and KRN7000-TF-vizantin features great potential to be a vaccine candidate.

论文信息

作者
Yang D、Li X、Li J、Liu Z、Li T、Liao P、Luo X、Liu Z
单位
Joint Laboratory for Translational Cancer Research of Chinese Medicine of the Ministry of Education of the People's Republic of China, International Institute for Translational Chinese Medicine, Guangzhou University of Chinese Medicine, Guangzhou 510006, China.China
期刊
Journal of medicinal chemistry2024 Oct 10
原文标识
PubMed 39302195 · DOI 10.1021/acs.jmedchem.4c01631