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Droplet-based bioprinting enables the fabrication of cell–hydrogel–microfibre composite tissue precursors 被引量:3
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作者 Marcin Kotlarz Ana M.Ferreira +2 位作者 Piergiorgio Gentile stephen j.russell Kenneth Dalgarno 《Bio-Design and Manufacturing》 SCIE EI CAS CSCD 2022年第3期512-528,共17页
Composites offer the option of coupling the individual benefits of their constituents to achieve unique material properties,which can be of extra value in many tissue engineering applications.Strategies combining hydr... Composites offer the option of coupling the individual benefits of their constituents to achieve unique material properties,which can be of extra value in many tissue engineering applications.Strategies combining hydrogelswith fibre-based scaffolds can create tissue constructs with enhanced biological and structural functionality.However,developing efficient and scalable approaches to manufacture such composites is challenging.Here,we use a droplet-based bioprinting system called reactive jet impingement(ReJI)to integrate a cell-laden hydrogel with a microfibrous mesh.This system uses microvalves connected to different bioink reservoirs and directed to continuously jet bioink droplets at one another in mid-air,where the droplets react and form a hydrogel that lands on a microfibrous mesh.Cell–hydrogel–fibre composites are produced by embedding human dermal fibroblasts at two different concentrations(5×10^(6) and 30×10^(6) cells/mL)in a collagen–alginate–fibrin hydrogel matrix and bioprinted onto a fibre-based substrate.Our results show that both types of cell–hydrogel–microfibre composite maintain high cell viability and promote cell–cell and cell–biomaterial interactions.The lower fibroblast density triggers cell proliferation,whereas the higher fibroblast density facilitates faster cellular organisation and infiltration into the microfibres.Additionally,the fibrous component of the composite is characterised by high swelling properties and the quick release of calcium ions.The data indicate that the created composite constructs offer an efficient way to create highly functional tissue precursors for laminar tissue engineering,particularly for wound healing and skin tissue engineering applications. 展开更多
关键词 BIOPRINTING Hydrogel–fibre composites High-cell-density hydrogels Composite manufacturing
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抗感染纺织材料在医疗及伤口敷料中的应用(英文)
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作者 王晓东 stephen j.russell 《西安工程大学学报》 CAS 2009年第2期10-17,共8页
以医用纺织品和纤维类伤口敷料为中心,回顾了国际上近几年在抗感染纺织品方面的研究进展.近年来,人们对银(包括纳米银)和铜在抗感染方面的应用非常重视.抗感染材料有较高的技术前景及应用价值,但其安全性、抗药性和对环境的影响也成为... 以医用纺织品和纤维类伤口敷料为中心,回顾了国际上近几年在抗感染纺织品方面的研究进展.近年来,人们对银(包括纳米银)和铜在抗感染方面的应用非常重视.抗感染材料有较高的技术前景及应用价值,但其安全性、抗药性和对环境的影响也成为今天的课题和挑战.对于抗感染纺织材料,其光稳定性,以及磨损和洗涤对材料的功能的影响是人们关注的问题. 展开更多
关键词 抗感染 伤口敷料 纺织材料
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