非钛MXenes:生物医学应用中新型生物相容性和可生物降解的候选材料。

Non-Ti MXenes: new biocompatible and biodegradable candidates for biomedical applications.

作者信息

Gayathri Vijayakumar G, Richard Bartholomew, Chacko Jithin Thomas, Bayry Jagadeesh, Rasheed P Abdul

机构信息

Department of Biological Sciences and Engineering, Indian Institute of Technology Palakkad, Palakkad, Kerala, 678 557, India.

Department of Chemistry, Indian Institute of Technology Palakkad, Palakkad, Kerala, 678 557, India.

出版信息

J Mater Chem B. 2025 Jan 22;13(4):1212-1228. doi: 10.1039/d4tb01904k.

Abstract

MXenes are a class of two-dimensional nanomaterials with the general formula MXT, where M denotes a transition metal, X denotes either carbon or nitrogen and T refers to surface terminations, such as -OH, -O, -F or -Cl. The unique properties of MXenes, including their tunable surface chemistry and high surface area-to-volume ratio, make them promising candidates for various biomedical applications, such as targeted drug delivery, photothermal therapy and so on. Among the family of MXenes, titanium (Ti)-based MXenes, especially TiCT, have been extensively explored for biomedical applications. However, despite their potential, Ti-based MXenes have shown some limitations, such as low biocompatibility. Recent studies have also indicated that Ti MXenes may disrupt spermatogenesis and accumulate in the uterus. Non-Ti MXenes are emerging as promising alternatives to Ti-based MXenes due to their superior biodegradability and enhanced biocompatibility. Recently, non-Ti MXenes have been explored for a range of biomedical applications, including drug delivery, photothermal therapy, chemodynamic therapy and sonodynamic therapy. In addition, some non-Ti MXenes exhibit enzyme-mimicking activity, such as superoxide dismutase and peroxidase-like functions, which play a major role in scavenging reactive oxygen species (ROS). This review discusses the properties of non-Ti MXenes, such as biocompatibility, biodegradability, antibacterial activity, and neuroprotective effects, highlighting their potential in various biomedical applications. These properties can be leveraged to mitigate oxidative stress and develop safe and innovative strategies for managing chronic diseases. This review provides a comprehensive analysis of the various biomedical applications of non-Ti MXenes, including their use in drug delivery and combinatorial therapies and as nanozymes for sensing and therapeutic purposes. The theranostic applications of non-Ti MXenes are also discussed. Finally, the antibacterial properties of non-Ti MXenes and the proposed mechanisms are discussed. The review concludes with a summary of the key findings and future perspectives. In short, this review provides a thorough analysis of the biomedical applications of non-Ti MXenes, emphasizing their unique properties, potential opportunities and challenges in the field.

摘要

MXenes是一类二维纳米材料,通式为MXT,其中M表示过渡金属,X表示碳或氮,T表示表面端基,如-OH、-O、-F或-Cl。MXenes的独特性质,包括其可调谐的表面化学性质和高的表面积与体积比,使其成为各种生物医学应用的有前途的候选材料,如靶向药物递送、光热疗法等。在MXenes家族中,基于钛(Ti)的MXenes,尤其是TiCT,已被广泛探索用于生物医学应用。然而,尽管它们具有潜力,但基于钛的MXenes也显示出一些局限性,如生物相容性低。最近的研究还表明,Ti MXenes可能会破坏精子发生并在子宫中积累。非Ti MXenes因其优异的生物降解性和增强的生物相容性而成为基于Ti的MXenes的有前途的替代品。最近,非Ti MXenes已被探索用于一系列生物医学应用,包括药物递送、光热疗法、化学动力疗法和声动力疗法。此外,一些非Ti MXenes表现出酶模拟活性,如超氧化物歧化酶和过氧化物酶样功能,它们在清除活性氧(ROS)中起主要作用。本综述讨论了非Ti MXenes的性质,如生物相容性、生物降解性、抗菌活性和神经保护作用,突出了它们在各种生物医学应用中的潜力。这些性质可用于减轻氧化应激,并开发用于管理慢性病的安全和创新策略。本综述对非Ti MXenes的各种生物医学应用进行了全面分析,包括它们在药物递送和联合疗法中的应用以及作为用于传感和治疗目的的纳米酶的应用。还讨论了非Ti MXenes的诊疗应用。最后,讨论了非Ti MXenes的抗菌性能及其提出的机制。综述最后总结了关键发现和未来展望。简而言之,本综述对非Ti MXenes的生物医学应用进行了深入分析,强调了它们在该领域的独特性质、潜在机会和挑战。

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