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基于神经节苷脂抗原和α-半乳糖神经酰胺的癌症疫苗的化学合成与免疫学评价

英文原题:Chemical synthesis and immunological evaluation of cancer vaccines based on ganglioside antigens and α-galactosylceramide.

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Chemical synthesis and immunological evaluation of cancer vaccines based on ganglioside antigens and α-galactosylceramide.

PubMed 2024/06/21(内容时间) RSC Med Chem Q2 · IF 4.6(JCR 2025)

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中文摘要

iNKT 细胞——常被称为免疫系统的“瑞士军刀”——已成为癌症疫苗治疗中的核心参与者。激活 iNKT 细胞的糖脂,如 α-半乳糖神经酰胺(αGalCer),能够增强针对共同递送癌症抗原的免疫反应,并已被应用于自佐剂抗肿瘤疫苗的设计中。

在此背景下,本工作聚焦于神经节苷脂肿瘤相关碳水化合物抗原(TACAs),即 GM3 和 (Neu5Gc)GM3 抗原的化学合成、其与 αGalCer 的偶联,以及将其配制为脂质体作为体内递送的高效平台。含有 GM3-αGalCer、(Neu5Gc)GM3-αGalCer 以及两种偶联物等摩尔量的脂质体已被充分表征,并且其激活 iNKT 细胞的能力已在小鼠和人类细胞检测中通过离体实验得到证实。这些候选物在体内免疫研究中进行了测试,证明其能够诱导 T H 1 和 T H 2 细胞因子,从而产生所有亚类的 IgG 抗体。

值得注意的是,该研究还证明,针对这两种 TACA 单独及联合产生的血清抗体具有交叉反应性。这一发现对未来疫苗设计具有影响——即使选择了高度肿瘤选择性的抗原,所产生的抗体反应也可能比预期更广泛。

展开英文摘要原文

iNKT cells - often referred as the "Swiss Army knife" of the immune system - have emerged as central players in cancer vaccine therapies. Glycolipids activating iNKT cells, such as α-galactosylceramide (αGalCer), can enhance the immune response against co-delivered cancer antigens and have been applied in the design of self-adjuvanting anti-tumor vaccines. In this context, this work focuses on the chemical synthesis of ganglioside tumor-associated carbohydrate antigens (TACAs), namely GM3 and (Neu5Gc)GM3 antigens, their conjugation to αGalCer, and their formulation into liposomes as an efficient platform for their in vivo delivery.

Liposomes containing GM3-αGalCer, (Neu5Gc)GM3-αGalCer, and equimolar amounts of the two conjugates have been fully characterized and their ability to activate iNKT cell has been confirmed ex vivo in mouse and human cell assays. The candidates were tested in in vivo immunization studies, demonstrating an ability to induce both T H 1 and T H 2 cytokines leading to the production of all subclasses of IgG antibodies.

Notably, the study also demonstrated that serum antibodies raised against the two TACAs, alone and in combination, were cross-reactive. This finding has consequences for future vaccine designs - even if a highly tumor-selective antigen is chosen, the resulting antibody response may be broader than anticipated.

论文信息

作者
Romanò C、Jiang H、Tahvili S、Wei P、Keiding UB、Clergeaud G、Skovbakke SL、Blomberg AL
单位
Center for Nanomedicine & Theranostics, Department of Chemistry, Technical University of Denmark Kemitorvet 207 2800 Kgs. Lyngby Denmark mhc@kemi.dtu.dk.Denmark
期刊
RSC medicinal chemistry2024 Aug 14
原文标识
PubMed 39149099 · DOI 10.1039/d4md00387j