Mostrando 10 resultados de: 13
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scopus(13)
Characterization of cultured epithelial cells using a novel technique not requiring enzymatic digestion for subculturing
ArticleAbstract: Our laboratory had developed a methodology to expand epithelial cells in culture by growing keratinoPalabras claves:cell culture, Epithelia cell, ePUK, Keratinocyte, Oral mucosaAutores:Antonio Peramo, Feinberg S.E., Marcelo C.L.Fuentes:scopusBioartifical mucosa: Delivery of biomaterials to the skin-percutaneous device interface in in vitro human organotypic skin cultures
Conference ObjectAbstract: We have developed an in vitro culture system composed of organotypic human skin expiants interfacedPalabras claves:Implant interface, medical device, osseointegration, Port access devices, Skin biomaterialAutores:Antonio Peramo, Goldstein S.A., Marcelo C.L., Martin D.C.Fuentes:scopusBioengineering the skin-implant interface: The use of regenerative therapies in implanted devices
ArticleAbstract: This discussion and review article focuses on the possible use of regenerative techniques applied toPalabras claves:Biointerfacial engineering, Biopolymeric skin interface, Regenerative engineering, Regenerative interface, Skin biointerfaceAutores:Antonio Peramo, Marcelo C.L.Fuentes:scopusContinuous delivery of biomaterials to the skin-percutaneous device interface using a fluid pump: Thoughts and progress
ArticleAbstract: We have developed an in vitro culture system composed of organotypic human skin explants interfacedPalabras claves:Implant interface, Implants, medical device, osseointegration, Skin biomaterialAutores:Antonio Peramo, Goldstein S.A., Marcelo C.L., Martin D.C.Fuentes:scopusNanomedicine in thrombosis
OtherAbstract:Palabras claves:Autores:Antonio PeramoFuentes:scopusNovel organotypic cultures of human skin explants with an implant-tissue biomaterial interface
ArticleAbstract: A novel in vitro culture system of organotypic human skin explants interfacing with external fixatorPalabras claves:External fixation, Implant interface, Organotypic culture, Skin biomaterial, Wound healingAutores:Antonio Peramo, Goldstein S.A., Marcelo C.L., Martin D.C.Fuentes:scopusImplementing tissue engineering and regenerative medicine solutions in medical implants
ArticleAbstract: BackgroundSurgical implants are widely used in the medical field but their long-term performance isPalabras claves:drug delivery, Implant interface, medical device, regenerative medicine, Tissue engineeringAutores:Antonio Peramo, Ye D.Fuentes:scopusIn situ polymerization of a conductive polymer in acellular muscle tissue constructs
ArticleAbstract: We present a method to chemically deposit a conductive polymer, poly(3,4-ethylenedioxythiophene) (PEPalabras claves:Autores:Antonio Peramo, Cederna P., Martin D.C., Povlich L., Spanninga S., Urbanchek M.Fuentes:scopusIn vitro integration of human skin dermis with porous cationic hydrogels
ArticleAbstract: Porous poly(DMAA-co-AMTAC) hydrogels, fabricated using the inverted colloid crystal method, were usePalabras claves:Cationic hydrogel, Dermal integration, Porous scaffolds, Skin biomaterial, Wound healingAutores:Antonio Peramo, Bahng J.H., Kotov N., Marcelo C.L., Martin D.C.Fuentes:scopusIn vivo electrical conductivity across critical nerve gaps using poly(3,4-ethylenedioxythiophene)- Coated neural interfaces
ArticleAbstract: Background: Bionic limbs require sensitive, durable, and physiologically relevant bidirectional contPalabras claves:Autores:Antonio Peramo, Cederna P., Egeland B., Kipke D., Kuzon W., Martin D.C., Richardson-Burns S., Urbanchek M.Fuentes:scopus