基于琼脂糖的生物材料:软骨组织工程中的机遇与挑战

Agarose-Based Biomaterials: Opportunities and Challenges in Cartilage Tissue Engineering.

作者信息

Salati Mohammad Amin, Khazai Javad, Tahmuri Amir Mohammad, Samadi Ali, Taghizadeh Ali, Taghizadeh Mohsen, Zarrintaj Payam, Ramsey Josh D, Habibzadeh Sajjad, Seidi Farzad, Saeb Mohammad Reza, Mozafari Masoud

机构信息

Polymer Engineering Department, Faculty of Engineering, Urmia University, Urmia 5756151818, Iran.

Center of Excellence in Electrochemistry, School of Chemistry, College of Science, University of Tehran, Tehran 11155-4563, Iran.

出版信息

Polymers (Basel). 2020 May 18;12(5):1150. doi: 10.3390/polym12051150.

Abstract

The lack of adequate blood/lymphatic vessels as well as low-potential articular cartilage regeneration underlines the necessity to search for alternative biomaterials. Owing to their unique features, such as reversible thermogelling behavior and tissue-like mechanical behavior, agarose-based biomaterials have played a key role in cartilage tissue repair. Accordingly, the need for fabricating novel highly efficient injectable agarose-based biomaterials as hydrogels for restoration of injured cartilage tissue has been recognized. In this review, the resources and conspicuous properties of the agarose-based biomaterials were reviewed. First, different types of signals together with their functionalities in the maintenance of cartilage homeostasis were explained. Then, various cellular signaling pathways and their significant role in cartilage tissue engineering were overviewed. Next, the molecular structure and its gelling behavior have been discussed. Eventually, the latest advancements, the lingering challenges, and future ahead of agarose derivatives from the cartilage regeneration perspective have been discussed.

摘要

缺乏足够的血管/淋巴管以及低潜力的关节软骨再生凸显了寻找替代生物材料的必要性。由于其独特的特性,如可逆的热凝胶行为和类似组织的力学行为,基于琼脂糖的生物材料在软骨组织修复中发挥了关键作用。因此,人们已经认识到需要制造新型高效的基于琼脂糖的可注射生物材料作为水凝胶来修复受损的软骨组织。在这篇综述中,对基于琼脂糖的生物材料的来源和显著特性进行了综述。首先,解释了不同类型的信号及其在维持软骨内环境稳定中的功能。然后,概述了各种细胞信号通路及其在软骨组织工程中的重要作用。接下来,讨论了分子结构及其凝胶行为。最后,从软骨再生的角度讨论了琼脂糖衍生物的最新进展、遗留挑战和未来发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc0e/7285176/7100ff6f6048/polymers-12-01150-g001.jpg

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