2011 journal article

Collagen-PCL Sheath-Core Bicomponent Electrospun Scaffolds Increase Osteogenic Differentiation and Calcium Accretion of Human Adipose-Derived Stem Cells

JOURNAL OF BIOMATERIALS SCIENCE-POLYMER EDITION, 22(13), 1695–1712.

By: C. Haslauer n, A. Moghe n, J. Osborne n, B. Gupta n & E. Loboa n

author keywords: Biomedical applications; tissue engineering; fibers; nanostructures; human adipose-derived stem cells; electrospinning
MeSH headings : Adipose Tissue / cytology; Adipose Tissue / metabolism; Bone and Bones; Calcium / metabolism; Cell Differentiation; Cell Proliferation; Collagen / chemistry; Humans; Microscopy, Electron, Scanning; Nanofibers / chemistry; Osteogenesis; Polyesters / chemistry; Polymers; Stem Cells / cytology; Stem Cells / metabolism; Tissue Engineering; Tissue Scaffolds
TL;DR: The sheath-core composite fibers significantly increased calcium accretion of hASCs, indicating that collagen–PCL sheath–core bicomponent structures have potential for bone tissue engineering applications using h ASCs. (via Semantic Scholar)
UN Sustainable Development Goal Categories
Source: Web Of Science
Added: August 6, 2018

2009 journal article

Effect of the addition of a fugitive salt on electrospinnability of poly(epsilon-caprolactone)

POLYMER, 50(14), 3311–3318.

By: A. Moghe n, R. Hufenus, S. Hudson n & B. Gupta n

author keywords: Nanofibers; Conductivity; Pyridine
UN Sustainable Development Goal Categories
Source: Web Of Science
Added: August 6, 2018

2009 journal article

Hybrid nanofiber structures for tissue engineering

AATCC Review, 9(10), 43–47.

By: A. Moghe & B. Gupta

Source: NC State University Libraries
Added: August 6, 2018

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