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基质细胞经唾液酸/Siglec 轴调控结直肠癌固有免疫细胞表型与功能

英文原题:Stromal cells modulate innate immune cell phenotype and function in colorectal cancer via the Sialic acid/Siglec axis.

PubMed 2025/10/19(内容时间) J Immunother Cancer Q1 · IF 11.7(JCR 2025)

研究概要

基质细胞唾液酸化通过唾液酸/Siglec 轴调节结直肠癌中的固有免疫抑制。

中文摘要

背景:免疫抑制性肿瘤微环境会降低基质丰富肿瘤的免疫应答效能,包括共识分子亚型4型结直肠癌(CRC)。作为癌相关成纤维细胞(CAF)前体的间充质基质细胞(MSC)可通过抑制抗肿瘤免疫应答促进癌症进展。肿瘤糖链过度唾液酸化会结合免疫细胞上的Siglec受体,导致免疫功能障碍,但其在基质介导的先天免疫抑制中的作用尚不明确。方法:研究者利用转录表达谱、免疫组化和流式细胞术,分别检测CRC组织、原代人正常组织相关成纤维细胞(NAF)、CAF及肿瘤条件培养基处理的MSC(MSC-TCS)中的唾液酸化、唾液酸及Siglec配体。通过人原代基质细胞与免疫细胞离体共培养,评估基质细胞唾液酸化对巨噬细胞和NK细胞的影响,并以流式细胞术和实时成像检测Siglec-10、免疫细胞表型标志物及功能。在具有免疫功能的Balb/c CT26小鼠模型中,研究者分别接种经或未经条件处理的基质细胞诱导肿瘤,并比较基质细胞预先接受唾液酸转移酶抑制剂(3FAX)或唾液酸酶(E610)处理的效果;随后以流式细胞术评估肿瘤及次级淋巴组织中的巨噬细胞和NK细胞。结果:与上皮癌细胞相比,CRC肿瘤中的基质细胞(包括CAF)高度唾液酸化,并伴有唾液酸转移酶ST6GALNAC6高表达。遗传性敲低ST6GALNAC6可降低MSC中基质细胞Siglec-10配体的表达。CAF和MSC-TCS诱导巨噬细胞和NK细胞表达Siglec-10,并损害巨噬细胞吞噬功能和NK细胞细胞毒性。唾液酸酶处理降低了Siglec-10表达,恢复了巨噬细胞和NK细胞的抗肿瘤功能。体内及离体去唾液酸化基质细胞可增强巨噬细胞活化(CD11b+CD80+),并降低淋巴组织中免疫抑制标志物(CD206、PD-L1、Siglec-G)的表达,提示全身性抗肿瘤免疫得以持续。肿瘤内NK细胞Siglec-G表达较高且细胞毒性受损;对基质细胞进行唾液酸酶处理后,颗粒酶B表达显著增加。在炎症性肿瘤模型中,炎症性肿瘤条件培养基处理的MSC(MSC-iTCS)会促进转移并诱导NK细胞和巨噬细胞表达Siglec-G;唾液酸转移酶抑制可逆转这些变化,进一步说明基质调节会影响炎症性肿瘤中的先天免疫细胞功能。结论:基质细胞唾液酸化通过唾液酸/Siglec轴调节CRC中的先天免疫抑制。靶向基质唾液酸化可恢复NK细胞细胞毒性并激活巨噬细胞,为逆转基质丰富肿瘤的免疫抑制、制定治疗策略提供了新思路。

展开英文摘要原文

BACKGROUND: The immunosuppressive tumor microenvironment reduces immune response effectiveness in stromal-rich tumors, including consensus molecular subtype 4 colorectal cancer (CRC). Mesenchymal stromal cells (MSCs), precursors to cancer-associated fibroblasts (CAFs), promote cancer progression by suppressing anti-tumor immune responses. Hypersialylation of glycans on tumors engages Siglec receptors on immune cells, driving immune dysfunction, but its role in stromal-mediated suppression of innate immunity remains unclear. METHODS: Sialylation, Sialic acids and Siglec ligands were measured on CRC tissue, primary human normal-associated fibroblasts (NAFs), CAFs, and tumor-conditioned MSCs (MSC TCS ) using transcriptional profiles, immunohistochemistry and flow cytometry, respectively. The effect of stromal cell sialylation on macrophages and NK cells was assessed in ex vivo human primary stromal and immune cell co-cultures, and expression of Siglec-10 and immune cell phenotype markers and function was measured by flow cytometry and real-time imaging. Using an immunocompetent Balb/c CT26 mouse model, we induced tumors with/without conditioned stromal cells, with/without pretreatment of stromal cells with sialyltransferase inhibitor (3FAX) or sialidase (E610). We assessed the effect of stromal cell sialylation on macrophages and NK cells in the tumor and secondary lymphoid tissues by flow cytometry. RESULTS: Stromal cells, including CAFs, in CRC tumors are highly sialylated compared with epithelial cancer cells and are associated with high expression of the sialyltransferase ST6GALNAC6 . Genetic knockdown of ST6GALNAC6 reduced the expression of stromal cell Siglec-10 ligands in MSCs. CAFs and MSC TCS induced Siglec-10 on macrophages and NK cells and impaired macrophage phagocytosis and NK cell cytotoxicity. Sialidase treatment reduced Siglec-10 expression, restoring macrophage and NK cell antitumor functions. In vivo and ex vivo , desialylation of stromal cells increased macrophage activation (CD11b + CD80 + ) and reduced immunosuppressive marker expression (CD206, PD-L1, Siglec-G) in lymphoid tissues, indicating sustained systemic anti-tumor immunity. Intratumoral NK cells exhibited high Siglec-G expression and impaired cytotoxicity, and granzyme B expression significantly increased with sialidase treatment of stromal cells. In an inflammatory tumor model, inflammatory tumor-conditioned MSCs (MSC iTCS ) promoted metastasis and Siglec-G induction on NK cells and macrophages, both reversed by sialyltransferase inhibition, underscoring the effects of stromal modulation of innate immune cell function in inflammatory tumors. CONCLUSIONS: Stromal cell sialylation modulates innate immune suppression in CRC via the sialic acid/Siglec axis. Targeting stromal sialylation restores NK cytotoxicity and macrophage activation, offering novel insights that may shape therapeutic strategies for reversing immunosuppression in stromal-rich tumors.

论文信息

作者
O'Neill A、Zakaria N、Bull C、Egan H、Corry SM、Leonard NA、O'Meara C、Howard L
第一作者单位
Discipline of Pharmacology and Therapeutics, School of Medicine, College of Medicine, Nursing and Health Sciences, University of Galway, Galway, Ireland.Ireland
通讯作者单位
Discipline of Pharmacology and Therapeutics, School of Medicine, College of Medicine, Nursing and Health Sciences, University of Galway, Galway, Ireland aideen.ryan@universityofgalway.ie.Ireland
期刊
Journal for immunotherapy of cancer2025 Oct 19
原文标识
PubMed 41111063 · DOI 10.1136/jitc-2025-012491