Differential responses to steroid hormones in fibroblasts from the vocal fold, trachea, and esophagus.

Endocrinology

Departments of Anatomy and Neurobiology (S.M., K.I.M., M.K.) and Otolaryngology-Head and Neck Surgery (S.M., T.N., Y.S., H.B., R.H., H.S., Y.H.), Kyoto Prefectural University of Medicine, Kyoto 602-8566, Japan.

Published: March 2015

AI Article Synopsis

  • Fibroblasts are influenced by steroid hormones, with varying responses based on tissue type, particularly in the cervicothoracic regions examined.
  • The study compared fibroblast responses to steroid hormones in vocal folds, trachea, and esophagus from male rats.
  • Key findings show that androgen receptors are more prevalent in vocal fold fibroblasts, and while testosterone, estradiol, and corticosterone inhibit fibroblast growth, only testosterone enhances certain gene expressions in vocal fold fibroblasts.

Article Abstract

There is accumulating evidence that fibroblasts are target cells for steroids such as sex hormones and corticoids. The characteristics of fibroblasts vary among tissues and organs. Our aim in this study is to examine differences in responses to steroid hormones among fibroblasts from different cervicothoracic regions. We compared the actions of steroid hormones on cultured fibroblasts from the vocal folds, which are considered to be the primary target of steroid hormones, and the trachea and esophagus in adult male rats. Expression of steroid hormone receptors (androgen receptor, estrogen receptor α, and glucocorticoid receptor) was identified by immunofluorescence histochemistry. Androgen receptor was much more frequently expressed in fibroblasts from the vocal fold than in those from the trachea and esophagus. Cell proliferation analysis showed that administration of testosterone, estradiol, or corticosterone suppressed growth of all 3 types of fibroblasts. However, mRNA expression for extracellular matrix-associated genes, including procollagen I and III and elastin, and hyaluronic acid synthase I was elevated only by addition of testosterone to fibroblasts from the vocal fold. These results indicate that each steroid hormone exerts region-specific effects on cervicothoracic fibroblasts with different properties through binding to specific receptors.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4330318PMC
http://dx.doi.org/10.1210/en.2014-1605DOI Listing

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