4.7 Review

2D Nanomaterials for Tissue Engineering and Regenerative Nanomedicines: Recent Advances and Future Challenges

期刊

ADVANCED HEALTHCARE MATERIALS
卷 10, 期 7, 页码 -

出版社

WILEY
DOI: 10.1002/adhm.202001743

关键词

black phosphorus; graphene; regenerative nanomedicine; tissue repair; transition metal dichalcogenide

资金

  1. National Key Research and Development Program of China [2019YFB2203503]
  2. National Natural Science Fund [61875138, U1801254, 31870943, 61961136001]
  3. Science and Technology Project of Guangdong Province [2018A050506040, 2018A050506019, 2018A050506021]
  4. Science and Technology Program of Guangzhou [201907010032, 201907010037]
  5. Academician Expert Workstation of Guangzhou [20200115-11]
  6. International Science and Technology Cooperation Project of Huangpu District/Guangzhou Development District [2018GH16, 2019GH11]
  7. Key Areas and Development Program of Guangzhou [202007020006]
  8. Marine Economy Development Project of Department of Natural Resources of Guangdong Province [GDNRC[2020]041]
  9. China Postdoctoral Science Foundation [2020M672784]
  10. Instrumental Analysis Center of Shenzhen University (Xili Campus)

向作者/读者索取更多资源

This review discusses the latest advances in the application of 2D nanomaterials in regenerative medicine, particularly in repairing skin, bone, and cartilage tissues. It also provides reviews on other applications, including cardiac muscle regeneration, skeletal muscle repair, nerve regeneration, etc. The challenges and prospects of using 2D nanomaterials in regenerative medicine are also discussed in the review.
Regenerative medicine has become one of the hottest research topics in medical science that provides a promising way for repairing tissue defects in the human body. Due to their excellent physicochemical properties, the application of 2D nanomaterials in regenerative medicine has gradually developed and has been attracting a wide range of research interests in recent years. In particular, graphene and its derivatives, black phosphorus, and transition metal dichalcogenides are applied in all the aspects of tissue engineering to replace or restore tissues. This review focuses on the latest advances in the application of 2D-nanomaterial-based hydrogels, nanosheets, or scaffolds that are engineered to repair skin, bone, and cartilage tissues. Reviews on other applications, including cardiac muscle regeneration, skeletal muscle repair, nerve regeneration, brain disease treatment, and spinal cord healing are also provided. The challenges and prospects of applications of 2D nanomaterials in regenerative medicine are discussed.

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