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刺激响应水凝胶在组织工程和再生医学应用中的进展:朝着改善 3D 打印结构设计的综述。

Advances in Stimuli-responsive Hydrogels for Tissue Engineering and Regenerative Medicine Applications: A Review Towards Improving Structural Design for 3D Printing.

机构信息

Wits Advanced Drug Delivery Platform Research Unit, Department of Pharmacy and Pharmacology, School of Therapeutic Sciences, Faculty of Health Sciences, University of the Witwatersrand, 7 York Road, Parktown, Johannesburg, Gauteng, 2193, South Africa.

出版信息

Curr Pharm Des. 2023;29(40):3187-3205. doi: 10.2174/0113816128246888230920060802.

Abstract

The physicochemical properties of polymeric hydrogels render them attractive for the development of 3D printed prototypes for tissue engineering in regenerative medicine. Significant effort has been made to design hydrogels with desirable attributes that facilitate 3D printability. In addition, there is significant interest in exploring stimuli-responsive hydrogels to support automated 3D printing into more structurally organised prototypes such as customizable bio-scaffolds for regenerative medicine applications. Synthesizing stimuli-responsive hydrogels is dependent on the type of design and modulation of various polymeric materials to open novel opportunities for applications in biomedicine and bio-engineering. In this review, the salient advances made in the design of stimuli-responsive polymeric hydrogels for 3D printing in tissue engineering are discussed with a specific focus on the different methods of manipulation to develop 3D printed stimuli-responsive polymeric hydrogels. Polymeric functionalisation, nano-enabling and crosslinking are amongst the most common manipulative attributes that affect the assembly and structure of 3D printed bio-scaffolds and their stimuli- responsiveness. The review also provides a concise incursion into the various applications of stimuli to enhance the automated production of structurally organized 3D printed medical prototypes.

摘要

高分子水凝胶的物理化学性质使其成为组织工程中 3D 打印原型的理想选择,用于再生医学。人们已经做出了巨大的努力来设计具有理想属性的水凝胶,以促进 3D 打印的可打印性。此外,人们还非常关注探索刺激响应水凝胶,以支持自动化 3D 打印到更结构化的原型,如用于再生医学应用的可定制生物支架。合成刺激响应水凝胶取决于各种聚合物材料的设计类型和调制,为在生物医学和生物工程中的应用开辟了新的机会。在这篇综述中,讨论了用于组织工程中 3D 打印的刺激响应高分子水凝胶的设计方面的显著进展,特别关注了用于开发 3D 打印刺激响应高分子水凝胶的不同操纵方法。聚合物功能化、纳米化和交联是影响 3D 打印生物支架的组装和结构及其刺激响应的最常见的操纵属性。该综述还简要介绍了各种刺激物的应用,以增强结构组织的 3D 打印医疗原型的自动化生产。

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