Effect of bacterial endotoxins on superovulated mouse embryos in vivo: is CSF-1 involved in endotoxin-induced pregnancy loss?

Infect Dis Obstet Gynecol

Molecular Biology and Reproductive Immunology Laboratory, School of Studies in Biochemistry, Jiwaji University, Gwalior, India.

Published: August 2007

AI Article Synopsis

  • CSF-1 is crucial for mammalian embryonic development and implantation, and its expression can be affected by external factors like bacterial LPS.
  • Research shows that LPS treatment leads to a significant number of abnormal embryos in both normal and superovulated mice, indicating implantation issues.
  • The alteration in CSF-1 expression levels and patterns during the preimplantation period after LPS exposure suggests it may contribute to the observed implantation failures.

Article Abstract

Mammalian embryonic development is regulated by several cytokines and growth factors from embryonic or maternal origins. Since CSF-1 plays important role in embryonic development and implantation, we investigated its role in gram-negative bacterial LPS-induced implantation failure. The effect of LPS on normal (nonsuperovulated) and superovulated in vivo-produced embryos was assessed by signs of morphological degeneration. A significantly similar number of morphologically degenerated embryos recovered from both nonsuperovulated and superovulated LPS treated animals on day 2.5 of pregnancy onwards were morphologically and developmentally abnormal as compared to their respective controls (P < .001. Normal CSF-1 expression level and pattern were also altered through the preimplantation period in the mouse embryos and uterine horns after LPS treatment. This deviation from the normal pattern and level of CSF-1 expression in the preimplantation embryos and uterine tissues suggest a role for CSF-1 in LPS-induced implantation failure.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1779607PMC
http://dx.doi.org/10.1155/IDOG/2006/32050DOI Listing

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