Skip to content
Open access · OA via OpenAlex

Immunophenotype of Human Adipose-Derived Cells: Temporal Changes in Stromal-Associated and Stem Cell–Associated Markers

James B. Mitchell, Kevin R. McIntosh, Sanjin Zvonic, Sara M. Garrett, Z. Elizabeth Floyd, Amy L. Kloster, Yuan Di C. Halvorsen, Robert W. Storms, Brian C. Goh, Gail Kilroy, Xiying Wu, Jeffrey M. Gimble

Stem Cells · 2005 · ▲ 1,115 citations

Abstract

Adipose tissue represents an abundant and accessible source of multipotent adult stem cells and is used by many investigators for tissue engineering applications; however, not all laboratories use cells at equivalent stages of isolation and passage. We have compared the immunophenotype of freshly isolated human adipose tissue-derived stromal vascular fraction (SVF) cells relative to serial-passaged adipose-derived stem cells (ASCs). The initial SVF cells contained colony-forming unit fibroblasts at a frequency of 1:32. Colony-forming unit adipocytes and osteoblasts were present in the SVF cells at comparable frequencies (1:28 and 1:16, respectively). The immunophenotype of the adipose-derived cells based on flow cytometry changed progressively with adherence and passage. Stromal cell-associated markers (CD13, CD29, CD44, CD63, CD73, CD90, CD166) were initially low on SVF cells and increased significantly with successive passages. The stem cell-associated marker CD34 was at peak levels in the SVF cells and/or early-passage ASCs and remained present, although at reduced levels, throughout the culture period. Aldehyde dehydrogenase and the multidrug-resistance transport protein (ABCG2), both of which have been used to identify and characterize hematopoietic stem cells, are expressed by SVF cells and ASCs at detectable levels. Endothelial cell-associated markers (CD31, CD144 or VE-cadherin, vascular endothelial growth factor receptor 2, von Willebrand factor) were expressed on SVF cells and did not change significantly with serial passage. Thus, the adherence to plastic and subsequent expansion of human adipose-derived cells in fetal bovine serum-supplemented medium selects for a relatively homogeneous cell population, enriching for cells expressing a stromal immunophenotype, compared with the heterogeneity of the crude SVF.

◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:

Read at source →

Provenance

Source
OpenAlex
DOI
10.1634/stemcells.2005-0234
Canonical
link ↗
Fetched
2026-06-21 MST

Cite this

APA
Mitchell, J.B., McIntosh, K.R., Zvonic, S., Garrett, S.M., Floyd, Z.E., Kloster, A.L., Halvorsen, Y.D.C., Storms, R.W., Goh, B.C., Kilroy, G., Wu, X., &amp; Gimble, J.M. (2005). Immunophenotype of Human Adipose-Derived Cells: Temporal Changes in Stromal-Associated and Stem Cell–Associated Markers. <em>Stem Cells</em>. https://doi.org/10.1634/stemcells.2005-0234
Vancouver
Mitchell JB, McIntosh KR, Zvonic S, Garrett SM, Floyd ZE, Kloster AL, et al. Immunophenotype of Human Adipose-Derived Cells: Temporal Changes in Stromal-Associated and Stem Cell–Associated Markers. Stem Cells. 2005. doi:10.1634/stemcells.2005-0234.
BibTeX
@article{james2005Immuno, title = {Immunophenotype of Human Adipose-Derived Cells: Temporal Changes in Stromal-Associated and Stem Cell–Associated Markers}, author = {James B. Mitchell and Kevin R. McIntosh and Sanjin Zvonic and Sara M. Garrett and Z. Elizabeth Floyd and Amy L. Kloster and Yuan Di C. Halvorsen and Robert W. Storms and Brian C. Goh and Gail Kilroy and Xiying Wu and Jeffrey M. Gimble}, journal = {Stem Cells}, year = {2005}, doi = {10.1634/stemcells.2005-0234}, }

Research neighborhood

References, citing works, and semantically nearest findings. Click a node to open it.

Related findings