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当负(电荷)并非正性时:唾液酸化及其在癌症机制与进展中的作用

When a negative (charge) is not a positive: sialylation and its role in cancer mechanics and progression.

作者信息

Habeeb Issa Funsho, Alao Toheeb Eniola, Delgado Daniella, Buffone Alexander

机构信息

Department of Biomedical Engineering, New Jersey Institute of Technlogy, Newark, NJ, United States.

Chemical and Materials Engineering, New Jersey Institute of Technlogy, Newark, NJ, United States.

出版信息

Front Oncol. 2024 Nov 19;14:1487306. doi: 10.3389/fonc.2024.1487306. eCollection 2024.

Abstract

Sialic acids and sialoglycans are critical actors in cancer progression and metastasis. These terminal sugar residues on glycoproteins and glycolipids modulate key cellular processes such as immune evasion, cell adhesion, and migration. Aberrant sialylation is driven by overexpression of sialyltransferases, resulting in hypersialylation on cancer cell surfaces as well as enhancing tumor aggressiveness. Sialylated glycans alter the structure of the glycocalyx, a protective barrier that fosters cancer cell detachment, migration, and invasion. This bulky glycocalyx also increases membrane tension, promoting integrin clustering and downstream signaling pathways that drive cell proliferation and metastasis. They play a critical role in immune evasion by binding to Siglecs, inhibitory receptors on immune cells, which transmit signals that protect cancer cells from immune-mediated destruction. Targeting sialylation pathways presents a promising therapeutic opportunity to understand the complex roles of sialic acids and sialoglycans in cancer mechanics and progression, which is crucial for developing novel diagnostic and therapeutic strategies that can disrupt these processes and improve cancer treatment outcomes.

摘要

唾液酸和唾液酸聚糖是癌症进展和转移中的关键因素。糖蛋白和糖脂上的这些末端糖残基调节关键的细胞过程,如免疫逃逸、细胞粘附和迁移。唾液酸转移酶的过表达驱动异常唾液酸化,导致癌细胞表面超唾液酸化,并增强肿瘤侵袭性。唾液酸化聚糖改变了糖萼的结构,糖萼是一种促进癌细胞脱离、迁移和侵袭的保护屏障。这种庞大的糖萼还会增加膜张力,促进整合素聚集和驱动细胞增殖与转移的下游信号通路。它们通过与Siglecs(免疫细胞上的抑制性受体)结合在免疫逃逸中发挥关键作用,Siglecs传递保护癌细胞免受免疫介导破坏的信号。靶向唾液酸化途径为理解唾液酸和唾液酸聚糖在癌症机制和进展中的复杂作用提供了一个有前景的治疗机会,这对于开发能够破坏这些过程并改善癌症治疗结果的新型诊断和治疗策略至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad01/11611868/80fee33b3529/fonc-14-1487306-g001.jpg

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