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A Novel Approach for Facile Synthesis of Biocompatible PVA-Coated PLA Nanofibers as Composite Membrane Scaffolds for Enhanced Osteoblast Proliferation
Book PartAbstract: This chapter discusses a novel approach for facile synthesis of biocompatible poly(vinyl alcohol) PVPalabras claves:Biocompatibility, Bone tissue regeneration, Electrospun nanofibers, Hydrothermal roteAutores:Abdal-hay A., Abdel Salam Hamdy Makhlouf, Pablo Vanegas PeraltaFuentes:googlescopusA novel simple in situ biomimetic and simultaneous deposition of bonelike apatite within biopolymer matrix as bone graft substitutes
ArticleAbstract: A novel simple in situ biomimetic strategy used for the first time for rapid induction of bonelike aPalabras claves:Biocompatibility, Biomaterials, Bone graft substitutes, Bone tissue engineering, nanocompositeAutores:Abdal-hay A., Abdel Salam Hamdy Makhlouf, Khalil K.A., Lim J.H.Fuentes:scopusCorrigendum to "Preparation and characterization of vertically arrayed hydroxyapatite nanoplates on electrospun nanofibers for bone tissue engineering" [Chem. Eng. J. (2014) 612-622] DOI: 10.1016/j.cej.2014.05.118
OtherAbstract:Palabras claves:Autores:Abdal-hay A., Abdel Salam Hamdy Makhlouf, Engel F.B., Lim J.H., Pablo Vanegas PeraltaFuentes:scopusAir jet spray of nylon 6 membrane structures for bone tissue engineering
ArticleAbstract: A novel porous nylon 6 (N6) scaffold with high and low porosity was designed using a facile, one-stePalabras claves:Air jet spray, Biomaterials, Biomimetic, Bone tissue engineering, Electrospinning, Nylon 6Autores:A Abdal-Hay, Abdal-hay A., Lim J.K., Pablo Vanegas PeraltaFuentes:googlerraaescopusFabrication of durable high performance hybrid nanofiber scaffolds for bone tissue regeneration using a novel, simple in situ deposition approach of polyvinyl alcohol on electrospun nylon 6 nanofibers
ArticleAbstract: This article reports a novel, simple in situ process for the deposition of polyvinyl alcohol (PVA) tPalabras claves:Biomaterials, Bone tissue regeneration, Hybrid nanofibers, Hydrothermal deposition, Nanofiber scaffolds, Nylon 6Autores:Abdal-hay A., Abdel Salam Hamdy Makhlouf, Khalil K.A.Fuentes:scopusFabrication of highly porous biodegradable biomimetic nanocomposite as advanced bone tissue scaffold
ArticleAbstract: Development of bioinspired or biomimetic materials is currently a challenge in the field of tissue rPalabras claves:Bioactive materials, Bioinspired materials, Nanocomposite scaffold, Tissue engineeringAutores:Abdal-hay A., Abdel Salam Hamdy Makhlouf, Al-Jassir F.F., Khalil K.A.Fuentes:scopusNovel bone regeneration matrix for next-generation biomaterial using a vertical array of carbonated hydroxyapatite nanoplates coated onto electrospun nylon 6 nanofibers
ArticleAbstract: For the first time, a novel method for nucleation and deposition of vertically arrayed carbonated hyPalabras claves:Biomaterials, Bone-regeneration, Electrospun nylon 6, Hydroxyapatite nanoplates, nanofibers, NanostructuresAutores:Abdal-hay A., Abdel Salam Hamdy Makhlouf, Khalil K.A., Lim J.H., Morsi Y., Salam HamdyFuentes:rraaescopusIn vitro bioactivity of implantable Ti materials coated with PVAc membrane layer
ArticleAbstract: A novel, simple and efficient approach for designing a 3-D structure of poly(vinyl acetate) (PVAc) fPalabras claves:Biomedical Implant Materials, Cell attachmentAutores:A Abdal-Hay, Abdal-hay A., Abdel Salam Hamdy Makhlouf, Abdellah M.Y., Lim J.H.Fuentes:rraaescopusPreparation and characterization of vertically arrayed hydroxyapatite nanoplates on electrospun nanofibers for bone tissue engineering
ArticleAbstract: The aim of this study is to develop a facile and an efficient approach for providing the electrospunPalabras claves:Chain conformation, Hydroxyapatite, Nano-structures, Nylon 6, Surface treatmentsAutores:A Abdal-Hay, Abdal-hay A., Abdel Salam Hamdy Makhlouf, Engel F.B., Lim J.H., Pablo Vanegas PeraltaFuentes:googlerraaescopus