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PMID: 19144962 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

A single, mild, transient scrotal heat stress causes hypoxia and oxidative stress in mouse testes, which induces germ cell death.

Biology of reproduction ·Vol. 80 ·No. 5 ·2009-05-00 ·Pages 913-9

Paul C, Teng S, Saunders PT

Abstract

Spermatogenesis is a temperature-dependent process, and increases in scrotal temperature can disrupt its progression. We previously showed that heat stress causes DNA damage in germ cells, an increase in germ cell death (as seen on TUNEL staining), and subfertility. The present study evaluated the stress response in mouse testes following a single mild transient scrotal heat exposure (40 degrees C or 42 degrees C for 30 min). We investigated markers of three types of stress response, namely, hypoxia, oxidative stress, and apoptosis. Heat stress caused an increase in expression of hypoxia-inducible factor 1 alpha (Hif1a) mRNA expression and translocation of HIF1A protein to the germ cell nucleus, consistent with hypoxic stress. Increased expression of heme oxygenase 1 (Hmox1) and the antioxidant enzymes glutathione peroxidase 1 (GPX1) and glutathione S-transferase alpha (GSTA) was consistent with a robust oxidative stress response. Germ cell death was associated with an increase in expression of the effector caspase cleaved caspase 3 and a decrease in expression of the protein inhibitor of caspase-activated DNase (ICAD). Reduced expression of ICAD contributes to increased activity of caspase-activated DNase and is consistent with the increased rates of DNA fragmentation that have been detected previously using TUNEL staining. These studies confirmed that transient mild testicular hyperthermia results in temperature-dependent germ cell death and demonstrated that elevated temperature results in a complex stress response, including induction of genes associated with oxidative stress and hypoxia.

MeSH Terms
Animals Apoptosis Base Sequence Caspase 3/metabolism DNA Primers/genetics Hot Temperature/adverse effects Hypoxia/etiology,metabolism,pathology Hypoxia-Inducible Factor 1, alpha Subunit/genetics,metabolism Male Mice Mice, Inbred C57BL Models, Biological Oxidative Stress RNA, Messenger/genetics,metabolism Scrotum/injuries Spermatogenesis Spermatozoa/metabolism,pathology Testis/injuries,pathology,physiopathology
Chemicals
DNA Primers Hif1a protein, mouse Hypoxia-Inducible Factor 1, alpha Subunit RNA, Messenger Casp3 protein, mouse Caspase 3
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Paul Catriona
Queen's Medical Research Institute, Edinburgh, Scotland.
Teng Serena
Saunders Philippa T K
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Article Info
Journal
Biology of reproduction
Abbr.
Biol Reprod
ISSN
0006-3363
Published
2009-05-00
Epub
2009-00-14
Pages
913-9
Language
English
Region
United States
NLM ID
0207224
PMCID
PMC2709966
Subset
IM
Grants
Medical Research Council · MC_U127685841 · United Kingdom
Medical Research Council · MC_U127685844 · United Kingdom
Medical Research Council · U.1276.00.002.00003.01 (85841) · United Kingdom
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