Key Laboratory of Modern Preparation of TCM, Ministry of Education, Jiangxi University of Traditional Chinese Medicine, Nanchang 330004, China.
Key Laboratory of Modern Preparation of TCM, Ministry of Education, Jiangxi University of Traditional Chinese Medicine, Nanchang 330004, China.
Colloids Surf B Biointerfaces. 2024 Jun;238:113888. doi: 10.1016/j.colsurfb.2024.113888. Epub 2024 Apr 1.
Gallium (Ga) is a well-known liquid metals (LMs) that possesses the features, such as fluidity, low viscosity, high electrical and thermal conductivity, and relative low toxicity. Owing to the weak interactions between Ga atoms, Ga LMs can be adopted for fabrication of various Ga LMs-based functional materials via ultrasonic treatment and mechanical grinding. Moreover, many organic compounds/polymers can be coated on the surface of LMs-based materials through coordination between oxidized outlayers of Ga LMs and functional groups of organic components. Over the past decades, different strategies have been reported for synthesizing Ga LMs-based functional materials and their biomedical applications have been intensively investigated. Although some review articles have published over the past few years, a concise review is still needed to advance the latest developments in biomedical fields. The main context can be majorly divided into two parts. In the first section, various strategies for fabrication of Ga LMs-based functional materials via top-down strategies were introduced and discussed. Following that, biomedical applications of Ga LMs-based functional materials were summarized and design Ga LMs-based functional materials with enhanced performance for cancer photothermal therapy (PTT) and PTT combined therapy were highlighted. We trust this review article will be beneficial for scientists to comprehend this promising field and greatly advance future development for fabrication of other Ga LMs-based functional materials with better performance for biomedical applications.
镓(Ga)是一种众所周知的液态金属(LMs),具有流动性、低粘度、高导电性和导热性以及相对较低的毒性等特点。由于 Ga 原子之间的相互作用力较弱,因此可以通过超声波处理和机械研磨来制备各种基于 Ga LMs 的功能材料。此外,许多有机化合物/聚合物可以通过 Ga LMs 的氧化外层与有机成分的官能团之间的配位作用涂覆在 LMs 基材料的表面上。在过去的几十年中,已经报道了许多用于合成 Ga LMs 基功能材料的策略,并对其在生物医学中的应用进行了深入研究。尽管过去几年已经发表了一些综述文章,但仍需要一篇简洁的综述来推进生物医学领域的最新发展。主要内容主要分为两部分。在第一部分中,介绍并讨论了通过自上而下策略制备基于 Ga LMs 的功能材料的各种策略。之后,总结了基于 Ga LMs 的功能材料在生物医学中的应用,并设计了具有增强性能的基于 Ga LMs 的功能材料用于癌症光热治疗(PTT)和 PTT 联合治疗。我们相信,这篇综述文章将有助于科学家理解这一有前途的领域,并极大地推动未来用于生物医学应用的其他具有更好性能的基于 Ga LMs 的功能材料的制备。