4.2 Article

Immunohistochemical and ultrastructural identification of telocytes in the lamina propria of human vaginal mucosa

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ACTA HISTOCHEMICA
卷 125, 期 7, 页码 -

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ELSEVIER GMBH
DOI: 10.1016/j.acthis.2023.152094

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Telocytes; CD34+stromal cells; Human vaginal mucosa; Female reproductive system; Confocal laser scanning microscopy; Transmission electron microscopy

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Telocytes (TCs) have been found to exist in the stromal tissue of the human vaginal mucosa and are characterized by their presence in the perivascular networks and release of extracellular vesicles. Further investigation is needed to determine the functions of TCs in vaginal mucosal homeostasis and pathophysiology.
Since their relatively recent discovery, telocytes (TCs) have been described as peculiar cells strategically positioned in the stromal tissue component of multiple organ systems of the mammalian body including female reproductive organs (i.e., ovary, uterine tube, and uterus). Nevertheless, current knowledge of TCs in the vagina is very limited. The present study was therefore undertaken to investigate the existence and characteristics of TCs in the stromal tissue of human vaginal mucosa by means of immunohistochemistry, immunofluorescence confocal microscopy, and transmission electron microscopy. In the vaginal lamina propria, TCs were first identified by CD34 immunohistochemistry that revealed the presence of CD34+ stromal cells arranged in networks, especially around blood vessels. Double immunofluorescence confocal microscopy allowed to precisely distinguish the perivascular networks of CD34+ stromal cells lacking CD31 immunoreactivity from adjacent CD31+ microvessels. All the perivascular networks of TCs/CD34+ stromal cells situated in the vaginal lamina propria coexpressed platelet-derived growth factor receptor alpha, which strengthened their identification as TCs. Instead, vaginal mucosal TCs were immunophenotypically negative for c-kit/CD117. The ultrastructural examination confirmed the presence of TCs, namely stromal cells with characteristic cytoplasmic processes (i.e., telopodes) forming labyrinthine networks around blood vessels and releasing extracellular vesicles. Together, our morphological findings provide the first comprehensive demonstration that TCs reside in the human vaginal lamina propria, thus paving the way for further investigation of their putative functions in vaginal mucosal homeostasis and pathophysiology.

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