Engineered Customizable Microvessels for Progressive Vascularization in Large Regenerative Implants.

Advanced healthcare materials 2022 Vol.11(4) p. e2101836

Li C, Han X, Ma Z, Jie T, Wang J, Deng L, Cui W

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Abstract

Inspired by the rapid angiogenesis of natural microvessels in vivo, engineered customizable microvessels (ECMVs) are developed which can naturally angiogenic sprout and induce vascular network formation via combing a celluar coaxial microfluidic extrusion technique with microsurgery post-process. ECMVs can be used for customization of primarily pre-vascularized soft tissue regenerative implants with personalized shape and vascular density with the aid of sacrificial printing technology. After collaborating with surrounding cells, ECMVs angiogenic sprouted and formed daughter vascular networks. Through techniques such as injection and suturing, ECMVs can also be introduced into large bone repair implants for pre-vascularization and osteogenesis promotion. Furthermore, the microvessel networks with personalized shapes are customized by connecting the coaxial microfluidic system to a 3D printer. It is further demonstrated that the vascularization promotion and anastomose with host vessels of the ECMVs in vivo. Thus, ECMVs provide a simple engineering strategy for rapid vascularization of clinically large regenerative soft/hard tissue implants.

추출된 의학 개체 (NER)

유형영어 표현한국어 / 풀이UMLS CUI출처등장
시술 microsurgery 미세수술 dict 1
해부 Microvessels scispacy 1
해부 sprout scispacy 1
해부 soft tissue scispacy 1
해부 cells scispacy 1
해부 ECMVs → engineered customizable microvessels scispacy 1
해부 bone scispacy 1
해부 tissue scispacy 1
약물 sacrificial scispacy 1
기타 vascular network scispacy 1
기타 vascular scispacy 1
기타 vascular networks scispacy 1
기타 microvessel networks scispacy 1

MeSH Terms

Microvessels; Neovascularization, Physiologic; Osteogenesis; Printing, Three-Dimensional; Tissue Engineering; Tissue Scaffolds

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