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用于生物医学应用的具有结构色的自组装羟丙基纤维素

Self-Assembled Hydroxypropyl Celluloses With Structural Colors for Biomedical Applications.

作者信息

Zhang Zhuohao, Shang Luoran

机构信息

Shanghai Xuhui Central Hospital Zhongshan-Xuhui Hospital, and the Shanghai Key Laboratory of Medical Epigenetics, the International Co-laboratory of Medical Epigenetics and Metabolism (Ministry of Science and Technology) Institutes of Biomedical Sciences Fudan University Shanghai China.

出版信息

Smart Med. 2025 Apr 20;4(2):e70004. doi: 10.1002/smmd.70004. eCollection 2025 Jun.

Abstract

Hydroxypropyl cellulose (HPC), a cellulose derivative with biocompatibility, edibility, and exceptional solubility in many polar solvents, holds significant potential for biomedical applications. Within a specific concentration range, HPC undergoes self-assembly to form cholesteric liquid crystals, which display distinct structural colors. These colors result from the interaction between incident light and the periodic nano-architecture of HPC, providing long-lasting visual effects that can be dynamically adjusted by factors such as concentration, temperature, and functional additives. This review includes the mechanisms underlying the genesis of structural colors and the regulation of HPCs while summarizing advanced techniques for fabricating HPC-based materials with diverse configurations. Furthermore, through representative examples, we highlight the multifaceted applications of these materials in sensors, bionic skins, drug delivery, and anti-counterfeiting labels. We also propose strategies to address current research and application challenges with the goal of exploring the potential of structural color HPCs for scientific breakthroughs and societal well-being. We hope this review catalyzes HPC-based structural color materials' advancement and future biomedical applications.

摘要

羟丙基纤维素(HPC)是一种具有生物相容性、可食用性且在许多极性溶剂中具有出色溶解性的纤维素衍生物,在生物医学应用方面具有巨大潜力。在特定浓度范围内,HPC会进行自组装形成胆甾相液晶,呈现出独特的结构颜色。这些颜色是由入射光与HPC的周期性纳米结构之间的相互作用产生的,提供了持久的视觉效果,可通过浓度、温度和功能添加剂等因素进行动态调节。本综述包括结构颜色产生的机制以及HPC的调控,同时总结了制造具有不同构型的基于HPC的材料的先进技术。此外,通过代表性实例,我们强调了这些材料在传感器、仿生皮肤、药物递送和防伪标签等方面的多方面应用。我们还提出了解决当前研究和应用挑战的策略,目标是探索结构颜色HPC在科学突破和社会福祉方面的潜力。我们希望本综述能促进基于HPC的结构颜色材料的发展及其未来的生物医学应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10c2/12010047/fbbc759a46f3/SMMD-4-e70004-g001.jpg

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