Frontier Institute of Science and Technology, Xi'an Jiaotong University, Xi'an 710000, China.
Department of Respiratory and Critical Care Medicine, The Second Affiliated Hospital of Xi'an Jiaotong University, Xi'an, 710004, China.
ACS Nano. 2023 Oct 24;17(20):19526-19549. doi: 10.1021/acsnano.3c01913. Epub 2023 Oct 7.
The reconstruction engineering of tissue defects accompanied by major diseases including cancer, infection, and inflammation is one of the important challenges in clinical medicine. The development of innovative tissue engineering strategies such as multifunctional bioactive materials presents a great potential to overcome the challenge of disease-impaired tissue regeneration. As the major representative of two-dimensional nanomaterials, MXenes have shown multifunctional physicochemical properties and have been diffusely studied as multimodal nanoplatforms in the field of biomedicine. This review summarized the recent advances in the multifunctional properties of MXenes and integrated regeneration-therapy applications of MXene-based biomaterials, including tissue regeneration-tumor therapy, tissue regeneration-infection therapy, and tissue regeneration-inflammation therapy. MXenes have been recognized as good candidates for promoting tissue regeneration and treating diseases through photothermal therapy, regulating cell behavior, and drug and gene delivery. The current challenges and future perspectives of MXene-based biomaterials in integrated regeneration-therapy are also discussed well in this review. In summary, MXene-based biomaterials have shown promising potential for integrated tissue regeneration and disease treatment due to their favorable physicochemical properties and bioactive functions. However, there are still many obstacles and challenges that must be addressed for the regeneration-therapy applications of MXene-based biomaterials, including understanding the bioactive mechanism, ensuring long-term biosafety, and improving their targeting therapy capacity.
组织缺损的重建工程伴随着癌症、感染和炎症等重大疾病,是临床医学的重要挑战之一。多功能生物活性材料等创新组织工程策略的发展为克服疾病损害组织再生的挑战提供了巨大潜力。作为二维纳米材料的主要代表,MXenes 具有多功能物理化学性质,并已作为多模式纳米平台在生物医学领域得到广泛研究。本综述总结了 MXenes 的多功能特性及其基于 MXene 的生物材料的再生-治疗应用的最新进展,包括组织再生-肿瘤治疗、组织再生-感染治疗和组织再生-炎症治疗。MXenes 通过光热疗法、调节细胞行为以及药物和基因传递被认为是促进组织再生和治疗疾病的良好候选物。本综述还很好地讨论了基于 MXene 的生物材料在综合再生-治疗中的当前挑战和未来展望。总之,由于其有利的物理化学性质和生物活性功能,基于 MXene 的生物材料在综合组织再生和疾病治疗方面显示出了有前途的潜力。然而,基于 MXene 的生物材料的再生-治疗应用仍然存在许多障碍和挑战,包括了解生物活性机制、确保长期生物安全性和提高其靶向治疗能力。