4.8 Article

Endothelialized microvessels fabricated by microfluidics facilitate osteogenic differentiation and promote bone repair

期刊

ACTA BIOMATERIALIA
卷 142, 期 -, 页码 85-98

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.actbio.2022.01.055

关键词

Endothelialized biomimetic microvessels; Alginate-collagen hydrogel; Microfluidics; GelMA; Bone repair

资金

  1. National Natural Science Foundation of China [81925027, 82111530157, 31872748, 32171350]
  2. Natural Science Foundation of Jiangsu Province [BK20191150]
  3. Jiangsu Provincial Special Program of Med-ical Science [BL2012004]
  4. Priority Academic Program De-velopment program of Jiangsu Higher Education Institutions

向作者/读者索取更多资源

Vascularization is a critical factor in bone tissue engineering, and lack of endothelialization remains a challenge. This study developed a technique to fabricate endothelialized biomimetic microvessels using microfluidic technology, which showed promising results in promoting osteogenesis and bone regeneration both in vitro and in vivo. These findings suggest that endothelialized BMVs could be an effective strategy in bone tissue engineering.
In bone tissue engineering, vascularization is one of the critical factors that limit the effect of biomaterials for bone repair. While various approaches have been tried to build vascular networks in bone grafts, lack of endothelialization still constitutes a major technical hurdle. In this study, we have developed a facile technique to fabricate endothelialized biomimetic microvessels (BMVs) from alginate-collagen composite hydrogels within a single step using microfluidic technology. BMVs with different sizes could be readily prepared by adjusting the flow rate of microfluids. All BMVs supported perfusion and outward penetration of substances in the tube. Endothelial cells could adhere and proliferate on the inner wall of tubes. It was also found that the expression of CD31 and secretion of BMP-2 and PDGF-BB were higher in the rat umbilical vein endothelial cells (RUVECs) in BMVs than those cultured on hydrogel. When co-cultured with bone marrow mesenchymal stem cells (BMSCs), endothelialized BMVs promoted the osteogenic differentiation of BMSCs compared to those in acellular BMV group. In vivo , markedly enhanced new bone formation was achieved by endothelialized BMVs in a rat critical-sized calvarial defect model compared to those with non-endothelialized BMVs or without BMVs. Together, findings from both in vitro and in vivo studies have proven that endothelialized BMVs function to facilitate osteogenesis and promote bone regeneration, and therefore might present an effective strategy in bone tissue engineering. Statement of significance In bone tissue engineering, limited vascularization is one of the critical factors that limit the effect of biomaterials for bone repair. In this study, we developed a facile technique to fabricate endothelialized biomimetic microvessels (BMVs) from alginate-collagen composite hydrogels within a single step using microfluidic technology. Both in vitro and in vivo studies have proven that endothelialized BMVs function to facilitate osteogenesis and promote bone regeneration, and therefore might present an effective strategy in bone tissue engineering. (c) 2022 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

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