Programmed release of vascular endothelial growth factor and exosome from injectable chitosan nanofibrous microsphere-based PLGA-PEG-PLGA hydrogel for enhanced bone regeneration
International Journal of Biological Macromolecules, ISSN: 0141-8130, Vol: 253, Issue: Pt 1, Page: 126721
2023
- 29Citations
- 41Captures
- 2Mentions
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Example: if you select the 1-year option for an article published in 2019 and a metric category shows 90%, that means that the article or review is performing better than 90% of the other articles/reviews published in that journal in 2019. If you select the 3-year option for the same article published in 2019 and the metric category shows 90%, that means that the article or review is performing better than 90% of the other articles/reviews published in that journal in 2019, 2018 and 2017.
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Metrics Details
- Citations29
- Citation Indexes29
- 29
- Captures41
- Readers41
- 41
- Mentions2
- News Mentions2
- 2
Most Recent News
An Injectable Hydrogel Bioimplant Loaded with Engineered Exosomes and Triple Anti-Tuberculosis Drugs with Potential for Treating Bone and Joint Tuberculosis
Jiayan Huang,1,* Han Li,2,* Yuting Mei,1 Pengcheng Yi,1 Yunyao Ren,1 Yunjuan Wang,3 Limei Han,1 Qiusha Tang,3 Dongfang Liu,3 Wei Chen,4 Yanli An,5 Chunmei Hu1 1Department
Article Description
The healing of large bone defects remains a significant challenge in clinical practice. Accelerating both angiogenesis and osteogenesis can promote effective bone healing. In the natural healing process, angiogenesis precedes osteogenesis, providing a blood supply that supports the subsequent progression of osteogenesis. Developing a biomimetic scaffold that mimics the in vivo environment and promotes the proper sequence of vascularization followed by ossification is crucial for successful bone regeneration. In this study, a novel injectable dual-drug programmed releasing chitosan nanofibrous microsphere-based poly(D, l -lactide- co -glycolide)-b-poly(ethylene glycol)-b-poly(D, l -lactide-co-glycolide) (PLGA-PEG-PLGA) hydrogel is fabricated by incorporating vascular endothelial growth factor (VEGF) and microspheres loaded with dental pulp stem cells-derived exosomes (DPSCs-Exo). Rapid release of VEGF promotes the swift initiation of angiogenesis, while DPSCs-Exo release ensures persistent osteogenesis. Our results demonstrate that chitosan microsphere-based PLGA-PEG-PLGA hydrogel significantly promotes angiogenesis in human umbilical vascular endothelial cells and enhances the osteogenic differentiation of pre-osteoblasts. Furthermore, in vivo transplantation of this injectable chitosan microsphere-based PLGA-PEG-PLGA hydrogel into calvarial bone defects markedly promotes bone formation. Overall, our study provides a promising approach for improving bone regeneration by temporally replicating the behavior of angiogenesis and osteogenesis.
Bibliographic Details
http://www.sciencedirect.com/science/article/pii/S0141813023036188; http://dx.doi.org/10.1016/j.ijbiomac.2023.126721; http://www.scopus.com/inward/record.url?partnerID=HzOxMe3b&scp=85169926303&origin=inward; http://www.ncbi.nlm.nih.gov/pubmed/37673168; https://linkinghub.elsevier.com/retrieve/pii/S0141813023036188; https://dx.doi.org/10.1016/j.ijbiomac.2023.126721
Elsevier BV
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