4.7 Review

Biomedical engineering of two-dimensional MXenes

期刊

ADVANCED DRUG DELIVERY REVIEWS
卷 184, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.addr.2022.114178

关键词

MXene; Synthetic methodology; Surface engineering; Biological effect; Biomedical applications

资金

  1. National Science Foundation for Young Scientists of China [51802336]
  2. National Natural Science Foundation of China [52072393]
  3. Shanghai Science and Technology Program [21010500100]
  4. Basic Research Program of Shanghai Municipal Government [21JC1406002]
  5. International Collaboration Project of Chinese Academy of Sciences [GJHZ2072]
  6. Shanghai Science and Technology Committee Rising-Star Program [21QA1403100]
  7. Leading Talent Training Program of Pudong New Area Health and Family Planning Commission [PWRl2017-04]
  8. Joint Research Project of Pudong New Area Health and Family Planning Commission [PW2021D14]
  9. Discipline Construction of Pudong New Area Health Commission [PWGw2020-01]

向作者/读者索取更多资源

This comprehensive review systematically summarizes the recent advances of MXenes, two-dimensional transition metal carbides, carbonitrides, and nitrides, in the field of biomedicine. It covers the synthetic methodologies, design and surface engineering strategies, property-activity-effect relationship, and various biomedical applications of MXenes.
The emergence of two-dimensional (2D) transition metal carbides, carbonitrides and nitrides, referred to MXenes, with a general chemical formula of Mn+1XnTx have aroused considerable interest and shown remarkable potential applications in diverse fields. The unique ultrathin lamellar structure accompanied with charming electronic, optical, magnetic, mechanical and biological properties make MXenes as a kind of promising alternative biomaterials for versatile biomedical applications, as well as uncovering many new fundamental scientific discoveries. Herein, the current state-of-the-art advances of MXenes-related biomaterials are systematically summarized in this comprehensive review, especially focusing on the synthetic methodologies, design and surface engineering strategies, unique properties, biological effects, and particularly the property-activity-effect relationship of MXenes at the nano-bio interface. Furthermore, the elaborated MXenes for varied biomedical applications, such as biosensors and biode-vices, antibacteria, bioimaging, therapeutics, theranostics, tissue engineering and regenerative medicine, are illustrated in detail. Finally, we discuss the current challenges and opportunities for future advance-ment of MXene-based biomaterials in-depth on the basis of the present situation, aiming to facilitate their early realization of practical biomedical applications. (C) 2022 Elsevier B.V. All rights reserved.

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