Faculty of Pharmacy and Pharmaceutical Sciences, Isfahan University of Medical Sciences, Isfahan, Iran.
Regional Centre of Advanced Technologies and Materials, Palacký University in Olomouc, Šlechtitelů 27, 783 71 Olomouc, Czech Republic.
ACS Biomater Sci Eng. 2021 Jun 14;7(6):1900-1913. doi: 10.1021/acsbiomaterials.0c01763. Epub 2021 Apr 14.
MXenes endowed with several attractive physicochemical attributes, namely, specific large surface area, significant electrical conductivity, magnetism, low toxicity, luminescence, and high biocompatibility, have been considered as promising candidates for cancer therapy and theranostics. These two-dimensional (2D) nanostructures endowed with photothermal, chemotherapeutic synergistic, and photodynamic effects have shown promising potential for decidedly effectual and noninvasive anticancer treatments. They have been explored for photothermal/chemo-photothermal therapy (PTT) and for targeted anticancer drug delivery. Remarkably, MXenes with their unique optical properties have been employed for bioimaging and biosensing, and their excellent light-to-heat transition competence renders them an ideal biocompatible and decidedly proficient nanoscaled agent for PTT appliances. However, several important challenging issues still linger regarding their stability in physiological environments, sustained/controlled release of drugs, and biodegradability that need to be addressed. This Perspective emphasizes the latest advancements of MXenes and MXene-based materials in the domain of targeted cancer therapy/diagnosis, with a focus on the current trends, important challenges, and future perspectives.
MXenes 具有多种有吸引力的物理化学特性,例如特定的大表面积、显著的导电性、磁性、低毒性、发光性和高生物相容性,被认为是癌症治疗和治疗学的有前途的候选者。这些二维(2D)纳米结构具有光热、化疗协同和光动力效应,显示出对有效和非侵入性抗癌治疗的有前途的潜力。它们已被探索用于光热/化学光热治疗(PTT)和靶向抗癌药物输送。值得注意的是,具有独特光学特性的 MXenes 已被用于生物成像和生物传感,并且它们出色的光热转换能力使它们成为 PTT 应用的理想生物相容性和高效纳米级试剂。然而,关于它们在生理环境中的稳定性、药物的持续/控制释放和生物降解性仍存在一些重要的挑战问题,需要加以解决。本观点强调了 MXenes 和基于 MXene 的材料在靶向癌症治疗/诊断领域的最新进展,重点介绍了当前的趋势、重要的挑战和未来的展望。