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热响应性甲基纤维素水凝胶:从设计到作为智能生物材料的应用

Thermo-Responsive Methylcellulose Hydrogels: From Design to Applications as Smart Biomaterials.

作者信息

Bonetti Lorenzo, De Nardo Luigi, Farè Silvia

机构信息

Department of Chemistry, Materials and Chemical Engineering "G. Natta," Politecnico di Milano, Milan, Italy.

INSTM, National Interuniversity Consortium of Materials Science and Technology, Florence, Italy.

出版信息

Tissue Eng Part B Rev. 2021 Oct;27(5):486-513. doi: 10.1089/ten.TEB.2020.0202. Epub 2020 Dec 8.

Abstract

Methylcellulose (MC) is an attractive material used to produce thermo-responsive hydrogels. They undergo sol-gel transition when a critical temperature is reached, thus modifying their properties (e.g., physicochemical and mechanical) in response to temperature changes. This behavior is particularly attractive when the body temperature acts as a trigger to modulate the thermo-responsive behavior of MC hydrogels. In this regard, exciting advances have been achieved in the field of cell and drug delivery, tissue engineering, and regenerative medicine, making MC a very attractive and versatile biomaterial. This review aims to present MC hydrogels, examining their preparation, physical properties, and tunability of thermal response, lastly moving to a comprehensive depiction of both their conventional and innovative applications for tissue regeneration purposes. In particular, three main families of applications are introduced: (1) gelling systems, which undergo sol-gel transition upon delivery into a target site (e.g., tissue or organ), assisting the regeneration of the latter both in the presence or absence of loading components (e.g., cells, biomolecules, and inorganic materials); (2) three-dimensional (3D) (bio)printing, where the sol-gel transition is induced by heating MC-based (bio)inks after printing, obtaining 3D tissue-engineered substitutes with defined geometries and high shape fidelity; (3) smart culture surfaces, where the hydrophilic/hydrophobic transition of MC is exploited to reach a selective attachment/detachment of cells, offering the possibility to obtain cell sheets and cell bodies for tissue reconstruction without the need of any proteolytic enzyme. The main limitations of MC hydrogels will be then examined, together with current solutions to overcome them. Moreover, an overview of the future directions in the field of MC smart hydrogels will be given, with particular focus on the design of multiresponsive systems capable to respond to multiple stimuli (e.g., chemical and biological stimuli), toward the development of more patient-specific treatments. Finally, an overview of the patents and clinical trials describing the use of MC will be given, retracing the abovementioned families of application.

摘要

甲基纤维素(MC)是一种用于制备热响应水凝胶的有吸引力的材料。当达到临界温度时,它们会发生溶胶-凝胶转变,从而根据温度变化改变其性质(如物理化学性质和机械性质)。当体温作为触发因素来调节MC水凝胶的热响应行为时,这种特性尤其具有吸引力。在这方面,细胞与药物递送、组织工程和再生医学领域已经取得了令人兴奋的进展,使MC成为一种非常有吸引力且用途广泛的生物材料。本综述旨在介绍MC水凝胶,研究其制备方法、物理性质和热响应的可调性,最后全面描述其在组织再生方面的传统和创新应用。特别介绍了三个主要的应用类别:(1)凝胶系统,在递送至目标部位(如组织或器官)时发生溶胶-凝胶转变,在有或没有负载成分(如细胞、生物分子和无机材料)的情况下辅助后者的再生;(2)三维(3D)(生物)打印,通过在打印后加热基于MC的(生物)墨水来诱导溶胶-凝胶转变,从而获得具有确定几何形状和高形状保真度的3D组织工程替代物;(3)智能培养表面,利用MC的亲水/疏水转变实现细胞的选择性附着/脱离,从而有可能在无需任何蛋白水解酶的情况下获得用于组织重建的细胞片和细胞体。随后将研究MC水凝胶的主要局限性以及当前克服这些局限性的解决方案。此外,将概述MC智能水凝胶领域的未来发展方向,特别关注能够响应多种刺激(如化学和生物刺激)的多响应系统的设计,以推动更具患者特异性的治疗方法的发展。最后,将概述描述MC用途的专利和临床试验,追溯上述应用类别。

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