Abstract
Fifteen years after their discovery, telocytes (TCs) are yet perceived as a new stromal cell type. Their presence was initially documented peri-digestively, and gradually throughout the interstitia of many (non-)cavitary mammalian, human, and avian organs, including skin. Each time, TCs proved to be involved in diverse spatial relations with elements of interstitial (ultra)structure (blood vessels, nerves, immune cells, etc.). To date, transmission electron microscopy (TEM) remained the single main microscopic technique able to correctly and certainly attest TCs by their well-acknowledged (ultra)structure. In skin, dermal TCs reiterate almost all (ultra)structural features ascribed to TCs in other locations, with apparent direct implications in skin physiology and/or pathology. TCs’ uneven distribution within skin, mainly located in stem cell niches, suggests involvement in either skin homeostasis or dermatological pathologies. On the other hand, different skin diseases involve different patterns of disruption of TCs’ structure and ultrastructure. TCs’ cellular cooperation with other interstitial elements, their immunological profile, and their changes during remission of diseases suggest their role(s) in tissue regeneration/repair processes. Thus, expanding the knowledge on dermal TCs could offer new insights into the natural skin capacity of self-repairing. Moreover, it would become attractive to consider that augmenting dermal TCs’ presence/density could become an attractive therapeutic alternative for treating various skin defects.
Reference93 articles.
1. The skin as a social organ;Morrison;Exp. Brain Res.,2009
2. Skin substitutes for acute and chronic wound healing: An updated review;Dai;J. Dermatol. Treat.,2020
3. Tottoli, E.M., Dorati, R., Genta, I., Chiesa, E., Pisani, S., and Conti, B. (2020). Skin Wound Healing Process and New Emerging Technologies for Skin Wound Care and Regeneration. Pharmaceutics, 12.
4. Cellular and biological factors involved in healing wounds and burns and treatment options in tissue engineering;Yeganeh;Regen. Med.,2022
5. Interstitial cells of Cajal in pancreas;Popescu;J. Cell. Mol. Med.,2005
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