scholarly journals Enhanced wound healing using a 3D printed VEGF-mimicking peptide incorporated hydrogel patch in a pig model

Author(s):  
Mi Jin Jang ◽  
SeungKuk Bae ◽  
Yeon-Seop Jung ◽  
Jong Chul Kim ◽  
Junsik Kim ◽  
...  
Keyword(s):  
2021 ◽  
Vol 12 (1) ◽  
Author(s):  
Xinchen Du ◽  
Le Wu ◽  
Hongyu Yan ◽  
Zhuyan Jiang ◽  
Shilin Li ◽  
...  

AbstractDeveloping an anti-infective shape-memory hemostatic sponge able to guide in situ tissue regeneration for noncompressible hemorrhages in civilian and battlefield settings remains a challenge. Here we engineer hemostatic chitosan sponges with highly interconnective microchannels by combining 3D printed microfiber leaching, freeze-drying, and superficial active modification. We demonstrate that the microchannelled alkylated chitosan sponge (MACS) exhibits the capacity for water and blood absorption, as well as rapid shape recovery. We show that compared to clinically used gauze, gelatin sponge, CELOX™, and CELOX™-gauze, the MACS provides higher pro-coagulant and hemostatic capacities in lethally normal and heparinized rat and pig liver perforation wound models. We demonstrate its anti-infective activity against S. aureus and E. coli and its promotion of liver parenchymal cell infiltration, vascularization, and tissue integration in a rat liver defect model. Overall, the MACS demonstrates promising clinical translational potential in treating lethal noncompressible hemorrhage and facilitating wound healing.


Author(s):  
Ovidio Catanzano ◽  
Lisa Elviri ◽  
Carlo Bergonzi ◽  
Annalisa Bianchera ◽  
Ruggero Bettini ◽  
...  

2017 ◽  
Vol 18 (11) ◽  
pp. 3802-3811 ◽  
Author(s):  
Laura G. Bracaglia ◽  
Michael Messina ◽  
Shira Winston ◽  
Che-Ying Kuo ◽  
Max Lerman ◽  
...  

1994 ◽  
Vol 23 (3) ◽  
pp. 624 ◽  
Author(s):  
A.A. Ernst ◽  
J. Pomerantz ◽  
T.G. Nick ◽  
M. Landry ◽  
J. Limbaugh

2009 ◽  
Vol 17 (5) ◽  
pp. 717-729 ◽  
Author(s):  
Joyce W. Wong ◽  
Corrie Gallant-Behm ◽  
Colin Wiebe ◽  
Karen Mak ◽  
David A. Hart ◽  
...  

2022 ◽  
Vol 13 ◽  
pp. 204173142110630
Author(s):  
Peng Chang ◽  
Shijie Li ◽  
Qian Sun ◽  
Kai Guo ◽  
Heran Wang ◽  
...  

Traditional tissue engineering skin are composed of living cells and natural or synthetic scaffold. Besize the time delay and the risk of contamination involved with cell culture, the lack of autologous cell source and the persistence of allogeneic cells in heterologous grafts have limited its application. This study shows a novel tissue engineering functional skin by carrying minimal functional unit of skin (MFUS) in 3D-printed polylactide-co-caprolactone (PLCL) scaffold and collagen gel (PLCL + Col + MFUS). MFUS is full-layer micro skin harvested from rat autologous tail skin. 3D-printed PLCL elastic scaffold has the similar mechanical properties with rat skin which provides a suitable environment for MFUS growing and enhances the skin wound healing. Four large full-thickness skin defects with 30 mm diameter of each wound are created in rat dorsal skin, and treated either with tissue engineering functional skin (PLCL + Col + MFUS), or with 3D-printed PLCL scaffold and collagen gel (PLCL + Col), or with micro skin islands only (Micro skin), or without treatment (Normal healing). The wound treated with PLCL + Col + MFUS heales much faster than the other three groups as evidenced by the fibroblasts migration from fascia to the gap between the MFUS dermis layer, and functional skin with hair follicles and sebaceous gland has been regenerated. The PLCL + Col treated wound heals faster than normal healing wound, but no skin appendages formed in PLCL + Col-treated wound. The wound treated with micro skin islands heals slower than the wounds treated either with tissue engineering skin (PLCL + Col + MFUS) or with PLCL + Col gel. Our results provide a new strategy to use autologous MFUS instead “seed cells” as the bio-resource of engineering skin for large full-thickness skin wound healing.


2021 ◽  
pp. 118924
Author(s):  
Luis Diaz-Gomez ◽  
Iago Gonzalez-Prada ◽  
Rosendo Millan ◽  
Andres Da Silva-Candal ◽  
Ana Bugallo-Casal ◽  
...  

Author(s):  
Atabak Ghanizadeh Tabriz ◽  
Dennis Douroumis ◽  
Joshua Boateng

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