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The Role of Various Factors in Neural Differentiation of Human Umbilical Cord Mesenchymal Stem Cells with a Special Focus on the Physical Stimulants. | LitMetric

AI Article Synopsis

  • - Human umbilical cord matrix-derived mesenchymal stem cells (hUCMs) are promising for cell therapy and regenerative medicine, particularly for treating neurodegenerative diseases due to their ability to differentiate into neural cells.
  • - The review highlights factors affecting hUCMs' differentiation into neural and glial cells, such as physical, chemical, and biological stimuli, with a focus on various environmental conditions.
  • - While there is evidence that stimuli like light can enhance neural differentiation in hUCMs, more research is needed to understand the exact mechanisms and establish optimal conditions for their clinical use.

Article Abstract

Human umbilical cord matrix-derived mesenchymal stem cells (hUCMs) are considered as ideal tools for cell therapy procedures and regenerative medicine. The capacity of these cells to differentiate into neural lineage cells make them potentially important in the treatment of various neurodegenerative diseases. An electronic search was performed in Web of Science, PubMed/MEDLINE, Scopus and Google Scholar databases for articles published from January 1990 to March 2022. This review discusses the current knowledge on the effect of various factors, including physical, chemical and biological stimuli which play a key role in the differentiation of hUCMs into neural and glial cells. Moreover, the currently understood molecular mechanisms involved in the neural differentiation of hUCMs under various environmental stimuli are reviewed. Various stimuli, especially physical stimuli and specifically different light sources, have revealed effects on neural differentiation of mesenchymal stem cells, including hUCMs; however, due to the lack of information about the exact mechanisms, there is still a need to find optimal conditions to promote the differentiation capacity of these cells which in turn can lead to significant progress in the clinical application of hUCMs for the treatment of neurological disorders.

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Source
http://dx.doi.org/10.2174/1574888X18666230124151311DOI Listing

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