Literature DB >> 9724029

Keratinocyte growth factor injected into female mouse neonates stimulates uterine and vaginal epithelial growth.

Y K Hom1, P Young, A A Thomson, G R Cunha.   

Abstract

Estradiol (E2) stimulates epithelial growth in the female genital tract via estrogen receptors (ER) in the stroma using paracrine mechanisms. Keratinocyte growth factor (KGF), a member of the fibroblast growth factor family, is produced by mesenchymal cells and is mitogenic for epithelial cells making it a strong candidate as a paracrine mediator. Transcripts for KGF and the KGF receptor were detected in the neonatal mouse uterus and vagina. Treatment of neonatal mice with KGF elicited changes in uterine and vaginal epithelium within five days and induced long term effects in these tissues. Newborn female Balb/c mice were injected daily with 5 microg/g body weight of KGF or saline for five days. KGF-treated mice exhibited a 5- to 6-fold increase in uterine epithelial BrdU-labeling index and a 4- and 5-fold increase in vaginal epithelial BrdU-labeling index vs. respective saline-treated controls. Histological sections of KGF-treated uteri revealed dramatic increases in epithelial surface area due to extensive folding of the luminal epithelium. In some areas, the evaginated luminal epithelium invaded zones normally occupied by myometrium. Vaginal epithelium was thicker than that of saline-treated controls following 5 days of KGF treatment. When KGF-treated newborn mice grew to adulthood and were ovariectomized, vaginal smears exhibited persistent diestrus in all animals. Histologic analysis demonstrated a thick parakeratotic vaginal epithelium (approximately 10 cell layers) 9 days postovariectomy in adult neonatally KGF-treated mice. Our studies indicate that KGF injected into neonates markedly stimulated proliferation of neonatal uterine and vaginal epithelium and elicited long-term, persistent abnormal changes in vaginal epithelium.

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Year:  1998        PMID: 9724029     DOI: 10.1210/endo.139.9.6182

Source DB:  PubMed          Journal:  Endocrinology        ISSN: 0013-7227            Impact factor:   4.736


  10 in total

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2.  Keratinocyte Growth Factor Stimulates Macrophage Inflammatory Protein 3α and Keratinocyte-derived Chemokine Secretion by Mouse Uterine Epithelial Cells.

Authors:  Severina N Haddad; Charles R Wira
Journal:  Am J Reprod Immunol       Date:  2010-09       Impact factor: 3.886

3.  Innate Immunity in the Female Reproductive Tract: Role of Sex Hormones in Regulating Uterine Epithelial Cell Protection Against Pathogens.

Authors:  Daniel O Ochiel; John V Fahey; Mimi Ghosh; Severina N Haddad; Charles R Wira
Journal:  Curr Womens Health Rev       Date:  2008-05

4.  Uterine gland formation in mice is a continuous process, requiring the ovary after puberty, but not after parturition.

Authors:  C Allison Stewart; Sara J Fisher; Ying Wang; M David Stewart; Sylvia C Hewitt; Karina F Rodriguez; Kenneth S Korach; Richard R Behringer
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5.  The Role of Fgf Signaling on Epithelial Cell Differentiation in Mouse Vagina.

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6.  Progesterone inhibits uterine gland development in the neonatal mouse uterus.

Authors:  Justyna Filant; Huaijun Zhou; Thomas E Spencer
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7.  Estradiol regulation of constitutive and keratinocyte growth factor-induced CCL20 and CXCL1 secretion by mouse uterine epithelial cells.

Authors:  Severina N Haddad; Charles R Wira
Journal:  Am J Reprod Immunol       Date:  2014-05-08       Impact factor: 3.886

8.  Fibroblast growth factor receptor two (FGFR2) regulates uterine epithelial integrity and fertility in mice.

Authors:  Justyna Filant; Franco J DeMayo; James K Pru; John P Lydon; Thomas E Spencer
Journal:  Biol Reprod       Date:  2014-01-16       Impact factor: 4.285

9.  Activated vitamin D3 and pro-activated vitamin D3 attenuate induction of permanent changes caused by neonatal estrogen exposure in the mouse vagina.

Authors:  Manabu Matsuda; Keiko Kurosaki; Naomichi Okamura
Journal:  J Reprod Dev       Date:  2014-04-25       Impact factor: 2.214

10.  Topical KGF treatment as a therapeutic strategy for vaginal atrophy in a model of ovariectomized mice.

Authors:  Simona Ceccarelli; Sirio D'Amici; Enrica Vescarelli; Paolo Coluccio; Pietro Matricardi; Cira di Gioia; Pierluigi Benedetti Panici; Ferdinando Romano; Luigi Frati; Antonio Angeloni; Cinzia Marchese
Journal:  J Cell Mol Med       Date:  2014-08-01       Impact factor: 5.310

  10 in total

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