AI Article Synopsis

  • hASC (human adipose-derived stromal/stem cells) are crucial for creating in vitro models of human adipose tissue, which aid in soft tissue regeneration and drug development.
  • A systematic review highlighted a lack of consensus on the methods for cultivating and assessing hASC for these applications, with only a few studies exploring the effects of different 3D culture conditions on fat cell development.
  • The findings emphasize the need for standardized methods and better assays to characterize the functionality of adipose tissue, essential for validating 3D microphysiological systems (MPS) in drug discovery while reducing reliance on animal testing.

Article Abstract

Human adipose-derived stromal/stem cells (hASC) are widely used for in vitro modeling of physiologically relevant human adipose tissue. These models are useful for the development of tissue constructs for soft tissue regeneration and 3-dimensional (3D) microphysiological systems (MPS) for drug discovery. In this systematic review, we report on the current state of hASC culture and assessment methods for adipose tissue engineering using 3D MPS. Our search efforts resulted in the identification of 184 independent records, of which 27 were determined to be most relevant to the goals of the present review. Our results demonstrate a lack of consensus on methods for hASC culture and assessment for the production of physiologically relevant in vitro models of human adipose tissue. Few studies have assessed the impact of different 3D culture conditions on hASC adipogenesis. Additionally, there has been a limited use of assays for characterizing the functionality of adipose tissue in vitro. Results from this study suggest the need for more standardized culture methods and further analysis on in vitro tissue functionality. These will be necessary to validate the utility of 3D MPS as an in vitro model to reduce, refine, and replace in vivo experiments in the drug discovery regulatory process.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8227575PMC
http://dx.doi.org/10.3390/cells10061378DOI Listing

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