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伪装的骗子:透明质酸在细胞外基质中的矛盾作用

A Trickster in Disguise: Hyaluronan's Ambivalent Roles in the Matrix.

作者信息

Bohaumilitzky Lena, Huber Ann-Kathrin, Stork Eva Maria, Wengert Simon, Woelfl Franziska, Boehm Heike

机构信息

Institute of Pharmacy and Molecular Biotechnology, University of Heidelberg, Heidelberg, Germany.

CSF Biomaterials, Max Planck Institute for Medical Research, Heidelberg, Germany.

出版信息

Front Oncol. 2017 Oct 9;7:242. doi: 10.3389/fonc.2017.00242. eCollection 2017.

Abstract

Hyaluronan (HA) is a simple but diverse glycosaminoglycan. It plays a major role in aging, cellular senescence, cancer, and tissue homeostasis. In which way HA affects the surrounding tissues greatly depends on the molecular weight of HA. Whereas high molecular weight HA is associated with homeostasis and protective effects, HA fragments tend to be linked to the pathologic state. Furthermore, the interaction of HA with its binding partners, the hyaladherins, such as CD44, is essential for sustaining tissue integrity and is likewise related to cancer. The naked mole rat, a rodent species, possesses a special form of very high molecular weight (vHMW) HA, which is associated with the extraordinary cancer resistance and longevity of those animals. This review addresses HA and its diverse facets: from HA synthesis to degradation, from oligomeric HA to vHMW-HA and from its beneficial properties to the involvement in pathologies. We further discuss the functions of HA in the naked mole rat and compare them to human conditions. Though intensively researched, this simple polymer bears some secrets that may hold the key for a better understanding of cellular processes and the development of diseases, such as cancer.

摘要

透明质酸(HA)是一种简单但多样的糖胺聚糖。它在衰老、细胞衰老、癌症和组织稳态中发挥着重要作用。HA影响周围组织的方式很大程度上取决于HA的分子量。高分子量HA与稳态和保护作用相关,而HA片段往往与病理状态有关。此外,HA与其结合伴侣(如CD44等黏附素)的相互作用对于维持组织完整性至关重要,并且同样与癌症相关。裸鼹鼠是一种啮齿动物,拥有一种特殊形式的非常高分子量(vHMW)HA,这与这些动物非凡的抗癌能力和长寿有关。本综述阐述了HA及其多个方面:从HA的合成到降解,从寡聚HA到vHMW - HA,以及从其有益特性到参与病理过程。我们还讨论了HA在裸鼹鼠中的功能,并将它们与人类情况进行比较。尽管已进行了深入研究,但这种简单的聚合物仍有一些秘密,可能是更好理解细胞过程和疾病(如癌症)发展的关键。

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