Literature DB >> 14758221

Chondrogenic potential of multipotential cells from human adipose tissue.

Jerry I Huang1, Patricia A Zuk, Neil F Jones, Min Zhu, H Peter Lorenz, Marc H Hedrick, Prosper Benhaim.   

Abstract

The use of stem cells for cell-based tissue-engineering strategies represents a promising alternative for the repair of cartilaginous defects. The multilineage potential of a population of putative mesodermal stem cells obtained from human lipoaspirates, termed processed lipoaspirate cells, was previously characterized. The chondrogenic potential of those cells was confirmed with a combination of histological and molecular approaches. Processed lipoaspirate cells under high-density micromass culture conditions, supplemented with transforming growth factor-beta1, insulin, transferrin, and ascorbic acid, formed well-defined nodules within 48 hours of induction and expressed the cartilaginous markers collagen type II, chondroitin-4-sulfate, and keratan sulfate. Reverse transcription polymerase chain reaction analysis confirmed the expression of collagen type II and the cartilage-specific proteoglycan aggrecan. In summary, human adipose tissue may represent a novel plentiful source of multipotential stem cells capable of undergoing chondrogenesis in vitro.

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Year:  2004        PMID: 14758221     DOI: 10.1097/01.PRS.0000101063.27008.E1

Source DB:  PubMed          Journal:  Plast Reconstr Surg        ISSN: 0032-1052            Impact factor:   4.730


  50 in total

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Review 2.  The potential of adipose stem cells in regenerative medicine.

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4.  Analysis of the material properties of early chondrogenic differentiated adipose-derived stromal cells (ASC) using an in vitro three-dimensional micromass culture system.

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5.  Monolayer cell expansion conditions affect the chondrogenic potential of adipose-derived stem cells.

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6.  Undifferentiated human adipose-derived stromal/stem cells loaded onto wet-spun starch-polycaprolactone scaffolds enhance bone regeneration: nude mice calvarial defect in vivo study.

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7.  The effects of cyclic hydrostatic pressure on chondrogenesis and viability of human adipose- and bone marrow-derived mesenchymal stem cells in three-dimensional agarose constructs.

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8.  In vitro Differentiation Potential of Mesenchymal Stem Cells.

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9.  Differential gene expression in adipose stem cells cultured in allogeneic human serum versus fetal bovine serum.

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10.  Ferumoxytol: a new, clinically applicable label for stem-cell tracking in arthritic joints with MRI.

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Journal:  Nanomedicine (Lond)       Date:  2013-03-27       Impact factor: 5.307

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