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比较动物黏液组学:来自普遍存在但研究不足的生物聚合物的功能材料灵感

Comparative Animal Mucomics: Inspiration for Functional Materials from Ubiquitous and Understudied Biopolymers.

作者信息

Cerullo Antonio R, Lai Tsoi Ying, Allam Bassem, Baer Alexander, Barnes W Jon P, Barrientos Zaidett, Deheyn Dimitri D, Fudge Douglas S, Gould John, Harrington Matthew J, Holford Mandë, Hung Chia-Suei, Jain Gaurav, Mayer Georg, Medina Mónica, Monge-Nájera Julian, Napolitano Tanya, Espinosa Emmanuelle Pales, Schmidt Stephan, Thompson Eric M, Braunschweig Adam B

机构信息

The PhD Program in Biochemistry, Graduate Center of the City University of New York, 365 Fifth Avenue, New York, New York 10016, United States.

The Advanced Science Research Center, Graduate Center of the City University of New York, 85 St. Nicholas Terrace, New York, New York 10031, United States.

出版信息

ACS Biomater Sci Eng. 2020 Oct 12;6(10):5377-5398. doi: 10.1021/acsbiomaterials.0c00713. Epub 2020 Sep 14.

Abstract

The functions of secreted animal mucuses are remarkably diverse and include lubricants, wet adhesives, protective barriers, and mineralizing agents. Although present in all animals, many open questions related to the hierarchical architectures, material properties, and genetics of mucus remain. Here, we summarize what is known about secreted mucus structure, describe the work of research groups throughout the world who are investigating various animal mucuses, and relate how these studies are revealing new mucus properties and the relationships between mucus hierarchical structure and hydrogel function. Finally, we call for a more systematic approach to studying animal mucuses so that data sets can be compared, omics-style, to address unanswered questions in the emerging field of mucomics. One major result that we anticipate from these efforts is design rules for creating new materials that are inspired by the structures and functions of animal mucuses.

摘要

分泌型动物黏液的功能极为多样,包括润滑剂、湿黏合剂、保护屏障和矿化剂。尽管黏液存在于所有动物中,但关于其层级结构、材料特性和遗传学仍存在许多未解决的问题。在这里,我们总结了已知的分泌型黏液结构,描述了世界各地研究各种动物黏液的研究小组的工作,并阐述了这些研究如何揭示黏液的新特性以及黏液层级结构与水凝胶功能之间的关系。最后,我们呼吁采用更系统的方法来研究动物黏液,以便能够以组学方式比较数据集,从而解决黏液组学这一新兴领域中未解决的问题。我们预计这些努力将带来的一个主要成果是,得出受动物黏液结构和功能启发而创造新材料的设计规则。

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