TY - JOUR
T1 - A Purification Technique for Adipose-Derived Stromal Cell Cultures Leads to a More Regenerative Cell Population
AU - Conway, Renee F.
AU - Okarski, Kevin M.
AU - Szivek, John A.
N1 - Funding Information:
University of Arizona's Undergraduate Biology Research Program from the University of Arizona Vice President for Research [Undergraduate student support award]. The authors thank Dr. J. Hardy for providing tissue discards. We also thank the UACC/ARL Cytometry Core Facility at the Arizona Cancer Center in Tucson, AZ for their technical expertise and help analyzing some cytometry data.
Publisher Copyright:
© 2018, Copyright © 2018 Taylor & Francis Group, LLC.
PY - 2019/7/4
Y1 - 2019/7/4
N2 - It has been demonstrated that adipose-derived stromal cells (ASCs) are a regenerative cell population with potential uses for bone and cartilage regeneration. However, the biomarker expression and heterogeneity of the population has not been thoroughly characterized. By analyzing biomarker expression, we aimed to understand the composition of ASC populations extracted using a common extraction technique in comparison to ASC populations given an additional purification step. Human adipose tissue samples were collected, and ASCs were extracted from these samples using a common, published extraction technique (primary extraction). These cells were cultured and half were given an additional purification. The primarily-extracted and purified cell populations were analyzed for biomarkers that correspond to specific cell types. The addition of the purification technique reduced the number of cells expressing hematopoietic and endothelial biomarkers and did not cause the yield of mesenchymal stem cell biomarker-expressing cells to decrease. Biomarkers corresponding to erythrocytes and lymphocytes were lost during the primary extraction, and biomarkers corresponding to most granulocytes and progenitor cells were lost during the additional purification. Biomarkers identifying dendritic cells, monocytes/macrophages, neutrophils, vascular endothelial cells, smooth muscle cells, and pericytes were upregulated in purified cell populations while those identifying fibroblasts and adipocytes were downregulated. Pluripotency biomarkers were more highly expressed in purified cell populations. These results demonstrate that the most commonly utilized adipose tissue recovery and ASC extraction technique leads to a heterogeneous cell population in which further purification of this population, as described in this manuscript, isolates a cell subset that has more regenerative potential.
AB - It has been demonstrated that adipose-derived stromal cells (ASCs) are a regenerative cell population with potential uses for bone and cartilage regeneration. However, the biomarker expression and heterogeneity of the population has not been thoroughly characterized. By analyzing biomarker expression, we aimed to understand the composition of ASC populations extracted using a common extraction technique in comparison to ASC populations given an additional purification step. Human adipose tissue samples were collected, and ASCs were extracted from these samples using a common, published extraction technique (primary extraction). These cells were cultured and half were given an additional purification. The primarily-extracted and purified cell populations were analyzed for biomarkers that correspond to specific cell types. The addition of the purification technique reduced the number of cells expressing hematopoietic and endothelial biomarkers and did not cause the yield of mesenchymal stem cell biomarker-expressing cells to decrease. Biomarkers corresponding to erythrocytes and lymphocytes were lost during the primary extraction, and biomarkers corresponding to most granulocytes and progenitor cells were lost during the additional purification. Biomarkers identifying dendritic cells, monocytes/macrophages, neutrophils, vascular endothelial cells, smooth muscle cells, and pericytes were upregulated in purified cell populations while those identifying fibroblasts and adipocytes were downregulated. Pluripotency biomarkers were more highly expressed in purified cell populations. These results demonstrate that the most commonly utilized adipose tissue recovery and ASC extraction technique leads to a heterogeneous cell population in which further purification of this population, as described in this manuscript, isolates a cell subset that has more regenerative potential.
KW - adipose-derived stromal cells
KW - biomarkers
KW - isolation
KW - mesenchymal stem cells
KW - purification
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U2 - 10.1080/08941939.2017.1423420
DO - 10.1080/08941939.2017.1423420
M3 - Article
C2 - 29388858
AN - SCOPUS:85041572008
SN - 0894-1939
VL - 32
SP - 381
EP - 392
JO - Journal of Investigative Surgery
JF - Journal of Investigative Surgery
IS - 5
ER -