Literature DB >> 25926439

Heat Stress Alters Ovarian Insulin-Mediated Phosphatidylinositol-3 Kinase and Steroidogenic Signaling in Gilt Ovaries.

Jackson Nteeba1, M Victoria Sanz-Fernandez1, Robert P Rhoads2, Lance H Baumgard1, Jason W Ross1, Aileen F Keating3.   

Abstract

Heat stress (HS) compromises a variety of reproductive functions in several mammalian species. Inexplicably, HS animals are frequently hyperinsulinemic despite marked hyperthermia-induced hypophagia. Our objectives were to determine the effects of HS on insulin signaling and components essential to steroid biosynthesis in the pig ovary. Female pigs (35 ± 4 kg) were exposed to constant thermoneutral (20°C; 35%-50% humidity; n = 6) or HS conditions (35°C; 20%-35% humidity; n = 6) for either 7 (n = 10) or 35 days (n = 12). After 7 days, HS increased (P < 0.05) ovarian mRNA abundance of the insulin receptor (INSR), insulin receptor substrate 1 (IRS1), protein kinase B subunit 1 (AKT1), low-density lipoprotein receptor (LDLR), luteinizing hormone receptor (LHCGR), and aromatase (CYP19a). After 35 days, HS increased INSR, IRS1, AKT1, LDLR, LHCGR, CYP19a, and steroidogenic acute regulatory protein (STAR) ovarian mRNA abundance. In addition, after 35 days, HS increased ovarian phosphorylated IRS1 (pIRS1), phosphorylated AKT (pAKT), STAR, and CYP19a protein abundance. Immunostaining analysis revealed similar localization of INSR and pAKT1 in the cytoplasmic membrane and oocyte cytoplasm, respectively, of all stage follicles, and in theca and granulosa cells. Collectively, these results demonstrate that HS alters ovarian insulin-mediated PI3K signaling pathway members, which likely impacts follicle activation and viability. In summary, environmentally induced HS is an endocrine-disrupting exposure that modifies ovarian physiology and potentially compromises production of ovarian hormones essential for fertility and pregnancy maintenance.
© 2015 by the Society for the Study of Reproduction, Inc.

Entities:  

Keywords:  hyperinsulinemia; hyperthermia; infertility; ovary

Mesh:

Substances:

Year:  2015        PMID: 25926439     DOI: 10.1095/biolreprod.114.126714

Source DB:  PubMed          Journal:  Biol Reprod        ISSN: 0006-3363            Impact factor:   4.285


  14 in total

1.  Impact of heat stress during the follicular phase on porcine ovarian steroidogenic and phosphatidylinositol-3 signaling.

Authors:  Mackenzie J Dickson; Candice L Hager; Ahmad Al-Shaibi; Porsha Q Thomas; Lance H Baumgard; Jason W Ross; Aileen F Keating
Journal:  J Anim Sci       Date:  2018-06-04       Impact factor: 3.159

2.  Impact of repeated lipopolysaccharide administration on ovarian signaling during the follicular phase of the estrous cycle in post-pubertal pigs.

Authors:  Katie L Bidne; Sara S Kvidera; Jason W Ross; Lance H Baumgard; Aileen F Keating
Journal:  J Anim Sci       Date:  2018-09-07       Impact factor: 3.159

3.  Impact of heat stress on prolactin-mediated ovarian JAK-STAT signaling in postpubertal gilts.

Authors:  Crystal M Roach; Katie L Bidne; Matthew R Romoser; Jason W Ross; Lance H Baumgard; Aileen F Keating
Journal:  J Anim Sci       Date:  2022-07-01       Impact factor: 3.338

4.  Housing Conditions and a Challenge with Lipopolysaccharide on the Day of Estrus Can Influence Gene Expression of the Corpus Luteum in Gilts.

Authors:  Arthur Nery da Silva; Luana Alves; Germana Vizzotto Osowski; Leandro Sabei; Priscila Assis Ferraz; Guilherme Pugliesi; Mariana Groke Marques; Ricardo Zanella; Adroaldo José Zanella
Journal:  Genes (Basel)       Date:  2022-04-26       Impact factor: 4.141

5.  Porcine endometrial heat shock proteins are differentially influenced by pregnancy status, heat stress, and altrenogest supplementation during the peri-implantation period.

Authors:  Malavika K Adur; Jacob T Seibert; Matthew R Romoser; Katie L Bidne; Lance H Baumgard; Aileen F Keating; Jason W Ross
Journal:  J Anim Sci       Date:  2022-07-01       Impact factor: 3.338

6.  Heat stress during the luteal phase decreases luteal size but does not affect circulating progesterone in gilts1.

Authors:  Katie L Bidne; Matthew R Romoser; Jason W Ross; Lance H Baumgard; Aileen F Keating
Journal:  J Anim Sci       Date:  2019-10-03       Impact factor: 3.159

7.  Ameliorative effect of ginseng extract on phthalate and bisphenol A reprotoxicity during pregnancy in rats.

Authors:  Islam M Saadeldin; Mohamed A Hussein; Aida Hamid Suleiman; Mahmoud G Abohassan; Mona M Ahmed; Amr A Moustafa; Abdullah F Moumen; Ayman Abdel-Aziz Swelum
Journal:  Environ Sci Pollut Res Int       Date:  2018-05-18       Impact factor: 4.223

8.  Differentiating between the effects of heat stress and lipopolysaccharide on the porcine ovarian heat shock protein response1.

Authors:  Jacob T Seibert; Malavika K Adur; Ronald B Schultz; Porsha Q Thomas; Zoe E Kiefer; Aileen F Keating; Lance H Baumgard; Jason W Ross
Journal:  J Anim Sci       Date:  2019-12-17       Impact factor: 3.159

9.  Absence of glyphosate-induced effects on ovarian folliculogenesis and steroidogenesis.

Authors:  Shanthi Ganesan; Bailey C McGuire; Aileen F Keating
Journal:  Reprod Toxicol       Date:  2020-06-24       Impact factor: 3.143

10.  Bisphenol S enhances gap junction intercellular communication in ovarian theca cells.

Authors:  Jeremy Gingrich; Yong Pu; Brad L Upham; Madeline Hulse; Sarah Pearl; Denny Martin; Anita Avery; Almudena Veiga-Lopez
Journal:  Chemosphere       Date:  2020-09-14       Impact factor: 7.086

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