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Telocytes. | LitMetric

Telocytes.

Biomol Concepts

Published: December 2011

AI Article Synopsis

  • The text reviews the characteristics and history of a new type of connective tissue cell known as telocytes (TC), previously called interstitial Cajal-like cells (ICLC).
  • The identification and study of TC have used various methods, such as microscopy and electron tomography, revealing their unique features, particularly the long, thin extensions called telopodes.
  • Although TC may share similarities with other stromal cells like fibroblasts and have suggested roles in organ regeneration and repair, their specific functions and immunophenotypes are still not definitively established.

Article Abstract

Here, we review the history, morphology, immunohistochemical phenotype, and presumptive roles of a new type of interstitial tissue cells, formerly called interstitial Cajal-like cells (ICLC) and by 2010 named 'telocytes' (TC). Many different techniques have been used to characterize TC and provide their unequivocal identification: (i) in vitro, cultures and isolated cells; (ii) in situ, fixed specimens examined by light and fluorescence microscopy, transmission (TEM) and scanning electron microscopy, and electron tomography. TEM allowed sure identification and characterization of the most peculiar feature of TC: the long, thin, and convoluted prolongations named 'telopodes'. An enormous variety of antibodies have been tested, but presently none are reliable to specifically label TC. TC have a mesenchymal origin and are resident connective tissue (stromal) cells. Possible identification with 'already identified' stromal cell types (fibroblasts, fibrocytes, fibroblast-like cells, and mesenchymal stromal cells) is discussed. We conclude that in adulthood, most of the TC have the morphology of fibrocytes. Apparently, immunocytochemistry suggests that a variety of TC populations showing different, likely organ-specific, immunophenotypes might exist. Several roles have been hypothesized for TC: mechanical roles, intercellular signaling, guiding and nursing of immature cells during organogenesis, and being themselves a pool of precursors for many of the mesenchyme-derived cells in adulthood; however, none of these roles have been proven yet. On the basis of the available data, we propose TC may be key players in organ regeneration and repair.

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Source
http://dx.doi.org/10.1515/BMC.2011.039DOI Listing

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