Development of hydroxyapatite-coated nonwovens for efficient isolation of somatic stem cells from adipose tissues
Adipose-derived stem cells (ASCs) are an attractive cell source for cell therapy. Despite the increasing number of clinical applications, the methodology for ASC isolation is not optimized for every individual. In this study, we developed an effective material to stabilize explant cultures from smal...
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Veröffentlicht in: | Regenerative therapy 2022-12, Vol.21, p.52-61 |
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Sprache: | eng |
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Zusammenfassung: | Adipose-derived stem cells (ASCs) are an attractive cell source for cell therapy. Despite the increasing number of clinical applications, the methodology for ASC isolation is not optimized for every individual. In this study, we developed an effective material to stabilize explant cultures from small-fragment adipose tissues.
Polypropylene/polyethylene nonwoven sheets were coated with hydroxyapatite (HA) particles. Adipose fragments were then placed on these sheets, and their ability to trap tissue was monitored during explant culture. The yield and properties of the cells were compared to those of cells isolated by conventional collagenase digestion.
Hydroxyapatite-coated nonwovens immediately trapped adipose fragments when placed on the sheets. The adhesion was stable even in culture media, leading to cell migration and proliferation from the tissue along with the nonwoven fibers. A higher fiber density further enhanced cell growth. Although cells on nonwoven explants could not be fully collected with cell dissociation enzymes, the cell yield was significantly higher than that of conventional monolayer culture without impacting stem cell properties.
Hydroxyapatite-coated nonwovens are useful for the effective primary explant culture of connective tissues without enzymatic cell dissociation.
•Hydroxyapatite-coated nonwovens enable explant culture of adipose tissue.•ASCs migrated and proliferated from the tissue explants along the fibers in nonwovens.•Nonwoven explants had significantly higher cell yield than conventional culture.•Nonwoven culture did not impact stem cell properties of ASCs. |
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ISSN: | 2352-3204 2352-3204 |
DOI: | 10.1016/j.reth.2022.05.009 |