Literature DB >> 15749936

Cell surface and transcriptional characterization of human adipose-derived adherent stromal (hADAS) cells.

Adam J Katz1, Ashok Tholpady, Sunil S Tholpady, Hulan Shang, Roy C Ogle.   

Abstract

Adult human subcutaneous adipose tissue contains cells with intriguing multilineage developmental plasticity, much like marrow-derived mesenchymal stem cells. Putative stem or progenitor cells from fat have been given many different names in the literature, reflecting an early and evolving consensus regarding their phenotypic characterization. The study reported here used microarrays to evaluate over 170 genes relating to angiogenesis and extracellular matrix in undifferentiated, early-passage human adipose-derived adherent stromal (hADAS) cells isolated from three separate donors. The hADAS populations unanimously transcribed 66% of the screened genes, and 83% were transcribed by at least two of the three populations. The most highly transcribed genes relate to functional groupings such as cell adhesion, matrix proteins, growth factors and receptors, and proteases. The transcriptome of hADAS cells demonstrated by this work reveals many similarities to published profiles of bone marrow mesenchymal stem cells (MSCs). In addition, flow analysis of over 24 hADAS cell surface proteins (n = 7 donors) both confirms and expands on the existing literature and reveals strong intergroup correlation, despite an inconsistent nomenclature and the lack of standardized protocols for cell isolation and culture. Finally, based on flow analysis and reverse transcription polymerase chain reaction studies, our results suggest that hADAS cells do not express several proteins that are implicated as markers of "stemness" in other stem cell populations, including telomerase, CD133, and the membrane transporter ABCG2.

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Year:  2005        PMID: 15749936     DOI: 10.1634/stemcells.2004-0021

Source DB:  PubMed          Journal:  Stem Cells        ISSN: 1066-5099            Impact factor:   6.277


  175 in total

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Review 4.  Adipose tissue stem cells meet preadipocyte commitment: going back to the future.

Authors:  William P Cawthorn; Erica L Scheller; Ormond A MacDougald
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5.  Defining essential stem cell characteristics in adipose-derived stromal cells extracted from distinct anatomical sites.

Authors:  Patrick C Sachs; Michael P Francis; Min Zhao; Jenni Brumelle; Raj R Rao; Lynne W Elmore; Shawn E Holt
Journal:  Cell Tissue Res       Date:  2012-05-25       Impact factor: 5.249

6.  Subcutaneous adipocytes may become osteoblasts.

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Review 7.  The potential of adipose stem cells in regenerative medicine.

Authors:  Bettina Lindroos; Riitta Suuronen; Susanna Miettinen
Journal:  Stem Cell Rev Rep       Date:  2011-06       Impact factor: 5.739

8.  Mesenchymal Stem or Stromal Cells: Toward a Better Understanding of Their Biology?

Authors:  Ulrich Lindner; Jan Kramer; Jürgen Rohwedel; Peter Schlenke
Journal:  Transfus Med Hemother       Date:  2010-03-15       Impact factor: 3.747

9.  Micromanipulation of culture niche permits long-term expansion of dental pulp stem cells--an economic and commercial angle.

Authors:  Vijayendran Govindasamy; Veronica Sainik Ronald; Swapnil Totey; Salina Binti Din; Wan Mahadzir Bin Wan Mustafa; Satish Totey; Zubaidah Zakaria; Ramesh R Bhonde
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10.  Isolating adipose-derived mesenchymal stem cells from lipoaspirate blood and saline fraction.

Authors:  Michael P Francis; Patrick C Sachs; Lynne W Elmore; Shawn E Holt
Journal:  Organogenesis       Date:  2010 Jan-Mar       Impact factor: 2.500

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