PO.IM01.11 · 免疫学

唾液酸抑制衔接器介导的T细胞活化

Sialic acid inhibits engager-mediated T cell activation

海报缩略图:唾液酸抑制衔接器介导的T细胞活化
编号 2804 展板 9 时间 4/20 02:00–05:00 区域 Section 7 主讲 Johanna Nimmerfroh, MS
分会场 Immune Checkpoints
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作者与单位 Authors & Affiliations

Johanna Nimmerfroh1, Dinah Heiligensetzer1, Michael Sandholzer1, Anastasiya Börsch2, Heinz Laubli1

1Department of Biomedicine, University Hospital and University of Basel, Basel, Switzerland,2Department of Biomedicine, University of Basel, Basel, Switzerland, Basel, Switzerland

摘要 Abstract

中文摘要
背景:尽管基于T细胞的疗法在某些肿瘤类型中取得了显著成功,但仍有大部分接受癌症免疫治疗的患者疾病进展。因此,识别并阻断介导免疫抑制的替代通路引起了广泛关注。除了经典的基于蛋白质的免疫检查点外,肿瘤相关糖基化——尤其是高唾液酸化——已成为免疫抑制的关键调节因子。肿瘤细胞上含唾液酸的聚糖被认为是糖免疫检查点,能够结合免疫细胞上的抑制性Siglec受体。虽然肿瘤唾液酸化的免疫抑制作用已得到充分确立[1],但新证据表明T细胞自身的唾液酸化[2]也可能促进免疫功能障碍,提示肿瘤微环境中存在一个此前未被充分认识的糖调控层面。 方法:用泛唾液酸酶处理人T细胞,以酶促方式去除表面唾液酸。随后用抗CD3/抗CD28刺激去唾液酸化的T细胞,或将其与双特异性T细胞衔接器和肿瘤靶细胞共培养,继而进行流式细胞术分析。通过单细胞RNA测序结合基于凝集素的聚糖分析,对慢性淋巴细胞白血病(CLL)患者的原代样本进行分析。 结果:我们发现,经唾液酸酶处理的T细胞表现出增强的增殖和活化。在双特异性T细胞衔接器与靶细胞的共培养系统中,我们证明经唾液酸酶处理的T细胞显示出增强的细胞毒性,包括细胞因子产生增加、T细胞增殖和肿瘤细胞杀伤增强。在研究T细胞亚群时,我们观察到唾液酸酶处理尤其降低了初始T细胞的活化阈值。我们的发现利用慢性淋巴细胞白血病(CLL)患者的原代样本得到验证:唾液酸重塑改善了免疫功能。 结论:T细胞上的唾液酸显著调节其功能。以酶促方式去除这些聚糖可增强T细胞反应,并可能有助于克服癌症免疫治疗中的耐药机制。未来研究将探讨T细胞亚型间不同的聚糖特征是否与功能异质性相关。[1] Dobie, C., Skropeta, D. Br J Cancer 2021, 124, 76-90. [2] Edgar, L. J.; Paulson J. C等. ACS Cent Sci 2021, 7, 1508-1515。
查看英文原文 English abstract
Background: Although T cell-based therapies have led to a significant success in certain tumor types, a large proportion of patients receiving cancer immunotherapy still progress with the disease. Thus, there is interest in identifying and blocking alternative pathways mediating immune suppression. Beyond canonical protein-based immune checkpoints, tumor-associated glycosylation-particularly hypersialylation-has emerged as a key modulator of immune suppression. Sialic acid-containing glycans on tumor cells are recognized as glyco-immune checkpoints that engage inhibitory Siglec receptors on immune cells. While the immunosuppressive role of tumor sialylation is well established [1] , new evidence indicates that sialylation of the T cells themselves [2] may also contribute to immune dysfunction, suggesting a previously underappreciated layer of glyco-regulation in the tumor microenvironment. Methods: Human T cells were treated with pan-sialidase to enzymatically remove surface sialic acids. Desialylated T cells were then stimulated with anti-CD3/anti-CD28 or co-cultured with bispecific T cell engagers and tumor target cells, followed by flow cytometry. Primary samples from patients with chronic lymphocytic leukemia (CLL) were analyzed through single-cell RNA sequencing combined with lectin-based glycan profiling. Results: We discovered that T cells treated with sialidase exhibited enhanced proliferation and activation. In a co-culture system with bispecific T cell engagers and target cells, we demonstrated that sialidase-treated T cells showed enhanced cytotoxicity, including increased cytokine production, T cell proliferation, and tumor cell killing. When studying T cell subsets, we observed that sialidase treatment lowered the activation threshold particularly in naïve T cells. Our findings were validated using primary samples from patients with chronic lymphocytic leukemia (CLL): sialic acid remodeling led to improved immune function. Conclusion: Sialic acids on T cells significantly modulate their function. Enzymatic removal of these glycans enhances T cell response and may help overcome resistance mechanisms in cancer immunotherapy. Future studies will investigate whether distinct glycan signatures among T cell subtypes correlate with functional heterogeneity. [1] Dobie, C., Skropeta, D. Br J Cancer 2021 ,124, 76-90. [2] Edgar, L. J.; Paulson J. C et al. ACS Cent Sci 2021 , 7, 1508-1515.
利益披露 Disclosure
J. Nimmerfroh, None.. D. Heiligensetzer, None.. M. Sandholzer, None.. A. Börsch, None.. H. Laubli, None.

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