OT exposure resulted in increased ovarian weight, gamma globulin, total number of follicles, and number of corpus luteum (CLs); indicating higher ovulation. The mechanism may involve over-expression of pEGFR followed by downstream
pERK1/2 and subsequently increased ovarian PGE-2 along with enhanced COX-2, HAS-2 82 TSG-6 (matrix deposition proteins) and GDF-9 (oocyte factor) proteins, suggesting that oral exposure of OT may affect the physiology and function of the ovary. Further, in vitro studies showed increased internalization of OT in IEC-6 cells which further supports that orally administered OT may cause altered manifestations as shown above following internalization in mucosal membrane. Cl-amidine research buy find more (C) 2013 Elsevier Inc. All rights reserved.”
“Recently, medical research has seen a strong push toward translational research, or “”bench to bedside”" collaborations, that strive to enhance the utility of laboratory science for improving
medical treatment. The success of that paradigm supports the potential application of the process to other fields, such as risk assessment. Close collaboration among academic, government, and industry scientists may enhance the translation of scientific findings to regulatory decision making. The National Toxicology Program (NTP), National Institute of Environmental Health Sciences (NIEHS), and U.S. Food and Drug Administration (FDA) developed a consortium-based research program to link more effectively academic and guideline-compliant research. ZD1839 order An initial proof-of-concept collaboration, the Consortium Linking Academic and Regulatory Insights
on BPA Toxicity (CLARITY-BPA), uses bisphenol A (BPA) as a test chemical. The CLARITY-BPA program combines a core perinatal guideline-compliant 2-year chronic toxicity study with mechanistic studies/endpoints conducted by academic investigators. Twelve extramural grantees were selected by NIEHS through an RFA-based initiative to participate in the overall study design and conduct disease-relevant investigations using tissues and animals from the core study. While the study is expected to contribute to our understanding of potential effects of BPA, it also has ramifications beyond this specific focus. Through CLARITY-BPA, NIEHS has established an unprecedented level of collaboration among extramural grantees and regulatory researchers. By drawing upon the strengths of academic and regulatory expertise and research approaches, CLARITY-BPA represents a potential new model for filling knowledge gaps, enhancing quality control, informing chemical risk assessment, and identifying new methods or endpoints for regulatory hazard assessments. Published by Elsevier Inc.”
“Dietary phytoestrogens may prevent certain human diseases, but endocrine activity has been reported in animal studies.
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