Centre for Advanced Materials, Aaivalayam-Dynamic Integrated Research Academy and Corporations (DIRAC), Coimbatore 641046, India.
J Mater Chem B. 2020 Jun 21;8(23):4990-5013. doi: 10.1039/d0tb00251h. Epub 2020 May 15.
The 2D layered structured material with unique surface terminations and properties have showed great potential in variety of biomedical research fields including drug delivery and cancer therapeutics which forms the major focus of this review. MXenes as a multifunctional two-dimensional (2D) nanomaterial, has also received momentous research interest in oncology resulting from its intriguing structure and fascinating properties of magnetism and photodynamic properties such as luminescent, conductivity, magnetism, non-toxicity and its bio compatibility. This reported review intends to cover exclusively the synthesis and utilization of MXenes in oncological applications, and subsequently its future outlook in cancer therapeutic, diagnostic and theranostics. The versatile and unique physio-chemistry of MXenes permits fine tuning of its properties towards oncological applications ranging from the cancer therapeutic (e.g., photothermal therapy, photodynamic therapy, radiation therapy, chemotherapy) to cancer imaging (e.g., CT/MRI/PA imaging) as well as cancer theranostic applications. We have started the discussion by portraying the broad picture of physio-chemical aspects of MXenes followed by its drug delivery functionalities. Subsequently, ROS mediated therapeutic strategies of photodynamic therapy and radiotherapy as well as light triggered functionalities of MXenes were detailed comprehensively. In the middle of the gallery, various imaging and sensing aspects of MXenes were elucidated. Finally, we have concluded by explaining the combined therapy and diagnostic functions (theranostics) of MXenes. To put it in perspective, the current challenges and new opportunities in MXenes also discussed will give great realistic insights to motivate further research in realizing MXene as an intelligent oncological tool.
二维层状结构材料具有独特的表面末端和性质,在包括药物输送和癌症治疗在内的各种生物医学研究领域显示出巨大的潜力,这构成了本综述的主要重点。MXenes 作为一种多功能二维(2D)纳米材料,由于其有趣的结构和令人着迷的磁性和光动力特性(如发光、导电性、磁性、无毒和生物相容性),在肿瘤学领域也引起了极大的研究兴趣。本报告综述专门涵盖 MXenes 在肿瘤学应用中的合成和利用,以及随后在癌症治疗、诊断和治疗学方面的未来展望。MXenes 的多功能和独特的物理化学性质允许对其性质进行微调,以满足从癌症治疗(例如光热疗法、光动力疗法、放射疗法、化学疗法)到癌症成像(例如 CT/MRI/PA 成像)以及癌症治疗学应用的肿瘤学应用。我们首先通过描绘 MXenes 的物理化学方面的广泛图景,以及其药物输送功能,开始了讨论。随后,详细全面地阐述了 ROS 介导的光动力疗法和放射疗法的治疗策略,以及 MXenes 的光触发功能。在画廊中间,阐明了 MXenes 的各种成像和传感方面。最后,我们通过解释 MXenes 的联合治疗和诊断功能(治疗学)来结束讨论。从实际角度来看,当前对 MXenes 的挑战和新机遇的讨论将为进一步研究实现 MXene 作为一种智能肿瘤学工具提供现实的见解。