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The Immunogenicity of Human Adipose‐Derived Cells: Temporal Changes In Vitro

Stem Cells · 2006 · Vol. 24(5) · pp. 1246–1253
Kevin R. McIntoshSanjin ZvonicSara M. GarrettJames B. MitchellZ. Elizabeth FloydLora HammillAmy L. KlosterYuan Di C. HalvorsenJenny P.‐Y. TingRobert W. StormsBrian C. GohGail KilroyXiying WuJeffrey M. Gimble

Abstract

Regenerative medical techniques will require an abundant source of human adult stem cells that can be readily available at the point of care. The ability to use unmatched allogeneic stem cells will help achieve this goal. Since adipose tissue represents an untapped reservoir of human cells, we have compared the immunogenic properties of freshly isolated, collagenase-digested human adipose tissue-derived stromal vascular fraction cells (SVFs) relative to passaged, plastic-adherent adipose-derived stem cells (ASCs). Parallel studies have shown that adherence to plastic and subsequent expansion of human adipose-derived cells selects for a relatively homogeneous cell population based on immunophenotype. Consistent with these findings, the presence of hematopoietic-associated markers (CD11a, CD14, CD45, CD86, and histocompatible locus antigen-DR [HLA-DR]) detected on the heterogeneous SVF cell population decreased upon subsequent passage of the ASCs. In mixed lymphocyte reactions (MLRs), SVFs, and early passage ASCs stimulated proliferation by allogeneic responder T cells. In contrast, the ASCs beyond passage P1 failed to elicit a response from T cells. Indeed, late passage ASCs actually suppressed the MLR response. Although these results support the feasibility of allogeneic human ASC transplantation, confirmatory in vivo animal studies will be required.

Mesenchymal stem cell researchBiomedical Ethics and RegulationPluripotent Stem Cells ResearchBiologyAdipose tissueStromal vascular fractionStem cellPopulationImmunologyTransplantationStromal cellCell biologyCancer research

MeSH terms

Adipose TissueBone Marrow CellsCell AdhesionCell SeparationCells, CulturedHumansLymphocyte ActivationT-LymphocytesTime FactorsAntigens, CDImmunophenotypingStromal CellsAdipocytes

Funding

  • Pennington Biomedical Research Foundation
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