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用于制造 3D/4D 智能水凝胶及其生物医学应用的创新技术 - 全面综述。

Innovative technologies for the fabrication of 3D/4D smart hydrogels and its biomedical applications - A comprehensive review.

机构信息

Department of Medicinal and Applied Chemistry, Kaohsiung Medical University (KMU), Kaohsiung City 807, Taiwan.

Department of Chemistry, Amity Institute of Applied Sciences, Amity University, Noida, UP, India.

出版信息

Adv Colloid Interface Sci. 2024 Jun;328:103163. doi: 10.1016/j.cis.2024.103163. Epub 2024 May 7.

Abstract

Repairing and regenerating damaged tissues or organs, and restoring their functioning has been the ultimate aim of medical innovations. 'Reviving healthcare' blends tissue engineering with alternative techniques such as hydrogels, which have emerged as vital tools in modern medicine. Additive manufacturing (AM) is a practical manufacturing revolution that uses building strategies like molding as a viable solution for precise hydrogel manufacturing. Recent advances in this technology have led to the successful manufacturing of hydrogels with enhanced reproducibility, accuracy, precision, and ease of fabrication. Hydrogels continue to metamorphose as the vital compatible bio-ink matrix for AM. AM hydrogels have paved the way for complex 3D/4D hydrogels that can be loaded with drugs or cells. Bio-mimicking 3D cell cultures designed via hydrogel-based AM is a groundbreaking in-vivo assessment tool in biomedical trials. This brief review focuses on preparations and applications of additively manufactured hydrogels in the biomedical spectrum, such as targeted drug delivery, 3D-cell culture, numerous regenerative strategies, biosensing, bioprinting, and cancer therapies. Prevalent AM techniques like extrusion, inkjet, digital light processing, and stereo-lithography have been explored with their setup and methodology to yield functional hydrogels. The perspectives, limitations, and the possible prospects of AM hydrogels have been critically examined in this study.

摘要

修复和再生受损的组织或器官,并恢复其功能一直是医学创新的最终目标。“复兴医疗保健”将组织工程与水凝胶等替代技术融合在一起,水凝胶已成为现代医学中的重要工具。增材制造(AM)是一种实用的制造革命,它使用成型等构建策略作为精确水凝胶制造的可行解决方案。该技术的最新进展导致具有增强的可重复性、准确性、精度和易于制造的水凝胶的成功制造。水凝胶继续作为 AM 的重要兼容生物墨水基质发生变化。AM 水凝胶为可以加载药物或细胞的复杂 3D/4D 水凝胶铺平了道路。通过基于水凝胶的 AM 设计的仿生 3D 细胞培养是生物医学试验中一种开创性的体内评估工具。这篇简要综述重点介绍了在生物医学领域中添加制造的水凝胶的制备和应用,例如靶向药物输送、3D 细胞培养、多种再生策略、生物传感、生物打印和癌症治疗。本研究探讨了挤出、喷墨、数字光处理和立体光刻等流行的 AM 技术,以及它们的设置和方法,以产生功能性水凝胶。对 AM 水凝胶的观点、局限性和可能的前景进行了批判性检查。

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