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Construction of developmentally inspired periosteum-like tissue for bone regeneration

Medicine and Health

Construction of developmentally inspired periosteum-like tissue for bone regeneration

K. Dai, S. Deng, et al.

This groundbreaking research by Kai Dai and collaborators focuses on innovative periosteum-like tissue engineering using BMP-2-loaded scaffolds. The creation of tissue that mimics natural bone development promises significant advancements in regenerative medicine, especially for older populations. Discover how the addition of chondroitin sulfate enhances bone regenerative capabilities!

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~3 min • Beginner • English
Abstract
The periosteum, a highly vascularized thin tissue, has excellent osteogenic and bone regenerative abilities. The generation of periosteum-mimicking tissue has become a novel strategy for bone defect repair and regeneration, especially in critical-sized bone defects caused by trauma and bone tumor resection. Here, we utilized a bone morphogenetic protein-2 (BMP-2)-loaded scaffold to create periosteum-like tissue (PT) in vivo, mimicking the mesenchymal condensation during native long bone development. We found that BMP-2-induced endochondral ossification plays an indispensable role in the construction of PTs. Moreover, we confirmed that BMP-2-induced PTs exhibit a similar architecture to the periosteum and harbor abundant functional periosteum-like tissue-derived cells (PTDCs), blood vessels, and osteochondral progenitor cells. Interestingly, we found that the addition of chondroitin sulfate (CS), an essential component of the extracellular matrix (ECM), could further increase the abundance and enhance the function of recruited PTDCs from the PTs and finally increase the regenerative capacity of the PTs in autologous transplantation assays, even in old mice. This novel biomimetic strategy for generating PT through in vivo endochondral ossification deserves further clinical translation.
Publisher
Bone Research
Published On
Jan 03, 2022
Authors
Kai Dai, Shunshu Deng, Yuanman Yu, Fuwei Zhu, Jing Wang, Changsheng Liu
Tags
periosteum
bone regeneration
BMP-2
scaffold
osteogenic
chondroitin sulfate
regenerative medicine
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