Item request has been placed!
×
Item request cannot be made.
×
Processing Request
Meniscal fibrocartilage regeneration inspired by meniscal maturational and regenerative process.
Item request has been placed!
×
Item request cannot be made.
×
Processing Request
- Author(s): Wenqiang Yan1,2,3; Maihemuti Maimaitimin1,2,3; Yue Wu1,2,3; Yifei Fan1,2,3; Shuang Ren1,2,3; Fengyuan Zhao1,2,3; Chenxi Cao1,2,3; Xiaoqing Hu1,2,3 ; Jin Cheng1,2,3 ; Yingfang Ao1,2,3
- Source:
Science Advances. 11/10/2023, Vol. 9 Issue 45, p1-20. 20p.
- Subject Terms:
- Additional Information
- Abstract:
Meniscus is a complex and crucial fibrocartilaginous tissue within the knee joint. Meniscal regeneration remains to be a scientific and translational challenge. We clarified that mesenchymal stem cells (MSCs) participated in meniscal maturation and regeneration using MSC-tracing transgenic mice model. Here, inspired by meniscal natural maturational and regenerative process, we developed an effective and translational strategy to facilitate meniscal regeneration by three-dimensionally printing biomimetic meniscal scaffold combining autologous synovium transplant, which contained abundant intrinsic MSCs. We verified that this facilitated anisotropic meniscus-like tissue regeneration and protected cartilage from degeneration in large animal model. Mechanistically, the biomechanics and matrix stiffness up-regulated Piezo1 expression, facilitating concerted activation of calcineurin and NFATc1, further activated YAP-pSmad2/3-SOX9 axis, and consequently facilitated fibrochondrogenesis of MSCs during meniscal regeneration. In addition, Piezo1 induced by biomechanics and matrix stiffness up-regulated collagen cross-link enzyme expression, which catalyzed collagen cross-link and thereby enhanced mechanical properties of regenerated tissue. [ABSTRACT FROM AUTHOR]
- Abstract:
Copyright of Science Advances is the property of American Association for the Advancement of Science and its content may not be copied or emailed to multiple sites or posted to a listserv without the copyright holder's express written permission. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. (Copyright applies to all Abstracts.)
No Comments.