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水凝胶微球助力器官芯片系统:创新与应用

Hydrogel Microspheres Empowering Organ-on-a-Chip Systems: Innovations and Applications.

作者信息

Liu Jiacheng, Du Chengcheng, Chen Jinping, Tang Bochen, Liu Senrui, Tan Jianye, Luo Xuefeng, Zhan Jingdi, Liu Junyan, Chen Zhuolin, Zhang Yichi, Li Zhong Alan, Huang Wei, Lei Yiting

机构信息

Department of Orthopaedic Surgery, The First Affiliated Hospital of Chongqing Medical University, Chongqing, 400016, China.

Chongqing Municipal Health Commission, Key Laboratory of Musculoskeletal Regeneration and Translational Medicine, Chongqing, 400016, China.

出版信息

Small. 2025 Jul 20:e2504563. doi: 10.1002/smll.202504563.

Abstract

Organ-on-a-chip (OoC) is an in vitro platform that uses microfluidic technology to simulate the microphysiological environment of human organs. It can reconstruct tissue architecture, mechanical microenvironments, and biochemical signaling. Since its inception, OoC technology has evolved from 2D static cultures to 3D dynamic biomimetic models. It is widely used in physiological and disease modeling, drug development and screening, and personalized medicine. In recent years, with the rapid progress in materials science and manufacturing technologies, hydrogel microspheres (HMs) with excellent biocompatibility and tunable properties have become a focus in biomedical research. HMs can mimic the properties of the extracellular matrix (ECM) and address the problem of lacking biochemical and biophysical signals in traditional OoC systems. This has greatly promoted the development of OoC technology and given it new abilities, such as accurately simulating cellular niche microenvironments, building complex system models and 3D tissue networks, encapsulating and delivering target cells or therapeutic agents, and studying intercellular and inter-organ crosstalk. This review introduces the concept, characteristics, and fabrication strategies of OoC systems, discusses the materials and methods for HM fabrication and integration, explores recent applications of HMs in OoC platforms, and offers insights into the development of "smart" HMs for advanced OoC systems.

摘要

器官芯片(OoC)是一种体外平台,它利用微流控技术来模拟人体器官的微观生理环境。它可以重建组织结构、力学微环境和生化信号。自诞生以来,器官芯片技术已从二维静态培养发展到三维动态仿生模型。它广泛应用于生理和疾病建模、药物开发与筛选以及个性化医疗。近年来,随着材料科学和制造技术的快速发展,具有优异生物相容性和可调特性的水凝胶微球(HMs)已成为生物医学研究的一个焦点。水凝胶微球可以模拟细胞外基质(ECM)的特性,并解决传统器官芯片系统中缺乏生化和生物物理信号的问题。这极大地推动了器官芯片技术的发展,并赋予其新的能力,如精确模拟细胞生态位微环境、构建复杂系统模型和三维组织网络、封装和递送靶细胞或治疗剂,以及研究细胞间和器官间的相互作用。本文综述介绍了器官芯片系统的概念、特点和制造策略,讨论了水凝胶微球的制造和整合材料与方法,探讨了水凝胶微球在器官芯片平台中的最新应用,并对用于先进器官芯片系统的“智能”水凝胶微球的发展提供了见解。

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