Literature DB >> 23619775

Role of CD271 enrichment in the isolation of mesenchymal stromal cells from umbilical cord blood.

Armin Attar1, Arash Ghalyanchi Langeroudi, Attyieh Vassaghi, Iman Ahrari, Mohsen Khosravi Maharlooei, Ahmad Monabati.   

Abstract

Isolation of mesenchymal stromal cells (MSCs) from the umbilical cord blood (UCB) has a success rate of 25% and is frequently contaminated by osteoclast-like cells (OLCs). CD271 is a well-known marker for the enrichment of bone marrow (BM) MSCs. We have assessed the effect of CD271 isolation on the isolation rate of MSCs from UCB. Twenty-one samples of UCB were collected. Ten samples of UCB and five of BM underwent CD271 isolation using magnetic activated cell sorting. The other 11 UCB samples were used as the control. The isolated cells were cultured and MSC isolation was confirmed with respect to morphology, flow cytometry, adipogenic and osteogenic differentiation potentials. CD271-positive UCB cells did not show outgrowth despite 54.5% MSCs isolation in the non-enriched portion. No OLC was noted in the CD271-enriched group, but 66% of the non-enriched samples were contaminated. All the CD271-positive BM cells formed MSC colonies. Although the per cent of CD271+ cells showed no difference between BM-mononuclear cells (MNCs) and UCB-MNCs, the haematopoietic marker, CD45, was found in a higher percentage of CD271-positive UCB-MNCs. The results of our study indicate that, although CD271 is a valuable marker for enrichment of MSCs from BM, it does not contribute to isolation of MSCs from UCB. In this source, most of the CD271+ cells are from haematopoietic origin, and possibly the process of isolation may eliminate the very low frequent MSCs and the isolation therefore fails.
© 2013 International Federation for Cell Biology.

Entities:  

Keywords:  CD271; mesenchymal stem cell; mesenchymal stromal cell; osteoclast like cell; umbilical cord blood

Mesh:

Substances:

Year:  2013        PMID: 23619775     DOI: 10.1002/cbin.10117

Source DB:  PubMed          Journal:  Cell Biol Int        ISSN: 1065-6995            Impact factor:   3.612


  14 in total

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4.  The assessment of CD146-based cell sorting and telomere length analysis for establishing the identity of mesenchymal stem cells in human umbilical cord.

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Journal:  F1000Res       Date:  2014-06-11

5.  Purification of Stem Cells from Oral Pyogenic Granuloma Tissue.

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6.  Low-affinity Nerve Growth Factor Receptor (CD271) Heterogeneous Expression in Adult and Fetal Mesenchymal Stromal Cells.

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Journal:  Sci Rep       Date:  2018-06-18       Impact factor: 4.379

7.  Ex vivo identification and characterization of a population of CD13(high) CD105(+) CD45(-) mesenchymal stem cells in human bone marrow.

Authors:  Carmen Muñiz; Cristina Teodosio; Andrea Mayado; Ana Teresa Amaral; Sergio Matarraz; Paloma Bárcena; Maria Luz Sanchez; Iván Alvarez-Twose; María Diez-Campelo; Andrés C García-Montero; Juan F Blanco; Maria Consuelo Del Cañizo; Javier del Pino Montes; Alberto Orfao
Journal:  Stem Cell Res Ther       Date:  2015-09-07       Impact factor: 6.832

8.  Dental pulp polyps contain stem cells comparable to the normal dental pulps.

Authors:  Armin Attar; Mohamadreza B Eslaminejad; Maryam S Tavangar; Razieh Karamzadeh; Ali Dehghani-Nazhvani; Yasamin Ghahramani; Fariba Malekmohammadi; Seyed M Hosseini
Journal:  J Clin Exp Dent       Date:  2014-02-01

9.  Identification of Mesenchymal Stem Cell Marker STRO-1 in Oral Reactive Lesions by Immunofluorescence Method.

Authors:  Ali Dehghani Nazhvani; Seyed-Mojtaba Hosseini; Bita Tahoori; Maryam-Sadat Tavangar; Armin Attar
Journal:  J Dent (Shiraz)       Date:  2015-09

10.  The association of plasma high-sensitivity C-reactive protein level with rheumatic heart disease: The possible role of inflammation.

Authors:  Armin Attar; Parvin Marzban; Alireza Moaref; Kamran Aghasadeghi
Journal:  Indian Heart J       Date:  2017-08-26
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