利用刺激反应生物材料进行先进的生物医学应用

IF 22.5
Ziming Liao, Tingting Liu, Zhimin Yao, Tian Hu, Xiaoyuan Ji, Bin Yao
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引用次数: 0

摘要

细胞行为与体内微环境和内源性途径错综复杂地交织在一起。引导细胞行为达到特定目标的能力可以通过外部刺激来实现,特别是电、光、超声和磁,同时通过生物材料介导的反应加以利用。由于与生物材料的相互作用,这些外部触发因素成为体内的焦点,促进了一系列细胞通路:电信号传递、生化信号、药物释放、细胞负荷和机械应力调节。刺激反应生物材料在生物医学研究中具有巨大的潜力,成为跨学科研究的关键焦点。这篇综述系统地阐述了普遍存在的物理刺激及其相应的生物材料反应机制。此外,它深入研究了生物材料在生物医学领域的应用。对不同的物理刺激技术进行了平衡的评估,并讨论了它们的优点和局限性。本文综述了物理刺激反应型生物材料在疾病治疗中的发展趋势,并概述了其应用前景和未来发展潜力。这篇综述有望为推进智能、刺激反应的生物材料激发新的概念。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Harnessing stimuli-responsive biomaterials for advanced biomedical applications

Harnessing stimuli-responsive biomaterials for advanced biomedical applications

Cell behavior is intricately intertwined with the in vivo microenvironment and endogenous pathways. The ability to guide cellular behavior toward specific goals can be achieved by external stimuli, notably electricity, light, ultrasound, and magnetism, simultaneously harnessed through biomaterial-mediated responses. These external triggers become focal points within the body due to interactions with biomaterials, facilitating a range of cellular pathways: electrical signal transmission, biochemical cues, drug release, cell loading, and modulation of mechanical stress. Stimulus-responsive biomaterials hold immense potential in biomedical research, establishing themselves as a pivotal focal point in interdisciplinary pursuits. This comprehensive review systematically elucidates prevalent physical stimuli and their corresponding biomaterial response mechanisms. Moreover, it delves deeply into the application of biomaterials within the domain of biomedicine. A balanced assessment of distinct physical stimulation techniques is provided, along with a discussion of their merits and limitations. The review aims to shed light on the future trajectory of physical stimulus-responsive biomaterials in disease treatment and outline their application prospects and potential for future development. This review is poised to spark novel concepts for advancing intelligent, stimulus-responsive biomaterials.

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CiteScore
17.20
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