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OX40L 增强树突状细胞的免疫原性并抑制小鼠肿瘤转移

英文原题:OX40L enhances the immunogenicity of dendritic cells and inhibits tumor metastasis in mice.

查看英文原题

OX40L enhances the immunogenicity of dendritic cells and inhibits tumor metastasis in mice.

PubMed 2022/11/30(内容时间) Microbiol Immunol Q4 · IF 1.6(JCR 2025)

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中文摘要

一个保存完好的免疫系统是防止外来入侵或抑制内部突变的有力工具,而这一系统必须在不同病理生理条件下受到共刺激分子的严格控制。其中一个关键分子是表达于活化抗原提呈细胞(APC)上的 OX40L。相应地,其异常与多种免疫性疾病如自身炎症性疾病和过敏相关。

然而,关于 OX40L 在树突状细胞(DC)——体内启动免疫反应最强的 APC——中的免疫调节作用,以及其在疾病环境中抗肿瘤疗效的系统分析,尚未得到恰当开展。

在本研究中,采用功能获得和功能缺失的遗传学方法,揭示 OX40L 是 DC 在体内有效提呈抗原以刺激 CD4+ 以及 CD8+ T 细胞所必需的,但并非抗原摄取所必需。结果,LPS 诱导的 DC 上 OX40L 促进 CD4+ T 细胞向 Th1 分化,但抑制 Treg 分化,这得到其共抑制受体 PD-L1 表达改变的支持。另一方面,CD8+ T 细胞在体内转移的 DC 上 OX40L 表达作用下,也增强了对靶细胞的细胞毒性。

最后,在 DC 介导的肿瘤免疫模型中,OX40L 在 DC 上的强免疫原性作用导致体内更好地抑制转移。总之,我们的结果表明,OX40L 可作为基于 DC 的疫苗中的潜在靶点,以增强体内抗肿瘤疗效。

展开英文摘要原文

A well preserved immune system is a powerful tool to prevent foreign invasion or to suppress internal mutation, which must be tightly controlled by co-stimulatory molecules in different pathophysiological conditions. One such critical molecule is OX40L expressed on activated antigen-presenting cells (APCs). Consistently, its abnormality is associated with various immunological disorders such as autoinflammatory diseases and allergy.

However, a comprehensive analysis of the immune-moderating role of OX40L in dendritic cells (DCs), the most powerful APCs to initiate immune responses in vivo, and investigation of its anti-tumor efficacy in the disease setting have not been performed properly. In this study, genetic approaches for both gain-of-function and reduction-of-function were employed to reveal that OX40L was required for the efficient presentation, but not uptake, of antigens by DCs to stimulate CD4 + , as well as CD8 + T cells in vivo.

As a result, CD4 + T cells were promoted towards Th1, but inhibited on Treg differentiation, by the LPS-induced OX40L on DCs, which was supported by their altered expression of co-inhibitory receptor, PD-L1. CD8 + T cells, on the other hand, also enhanced their cytotoxicity towards target cells in response to OX40L expression on the DCs transferred in vivo.

Finally, in a DC-mediated tumor immunity model, the strong immunogenic roles of OX40L on DCs led to better metastasis inhibition in vivo. Collectively, our results demonstrate that OX40L could serve as a potential target in the DC-based vaccine for enhanced anti-tumor efficacy in vivo.

论文信息

作者
Zhao L、Zhang W、Liu M、Jia R、Wang J、Wang F、Xu Y
单位
Anhui Provincial Key Laboratory for Conservation and Exploitation of Biological Resources, School of Life Sciences, Anhui Normal University, Wuhu, China.China
期刊
Microbiology and immunology2023 Feb
原文标识
PubMed 36345699 · DOI 10.1111/1348-0421.13037