This is an application to establish an interdisciplinary reproductive, developmental, and endocrine toxicology training program for the education of 4 predoctoral and 3 postdoctoral candidates in biochemical, cellular and neurobehavioral aspects of reproductive, developmental and endocrine toxicology at the University of Illinois. This program will provide comprehensive training in cellular and molecular toxicology and the broader areas of environmental sciences, including toxicological pathology, fate of xenobiotics in vivo, and risk assessment, and will enable trainees to establish successful careers at other universities, industries, and government research and regulatory activities. This new training program in reproductive, developmental, and endocrine toxicology is an extension of the existing curriculum offered by the Interdisciplinary Environmental Toxicology Program (IETP) established at the University of Illinois in the mid 1980s. Eight of the ten faculty members of the proposed program are members of the IETP. Graduate students will be enrolled in and obtain their degrees from any of the seven participating departments. Predoctoral trainees will spend their first two years completing course work, beginning research projects and preparing for qualifying and preliminary exams. To participate in this training program the students will be required to receive training in general toxicology, biochemistry, molecular biology, reproductive physiology, endocrinology and statistics. By the end of the second year, research will be conducted full time. Formal and informal seminars, a guest speaker program, scientific meeting presentations and preparation of a research grant proposal application will complete the training of the students. The large number of funded projects and the existing collaborations among the preceptors will further increase the research opportunities and interactions of the trainees.

Agency
National Institute of Health (NIH)
Institute
National Institute of Environmental Health Sciences (NIEHS)
Type
Institutional National Research Service Award (T32)
Project #
5T32ES007326-04
Application #
6604040
Study Section
Environmental Health Sciences Review Committee (EHS)
Program Officer
Shreffler, Carol K
Project Start
2000-07-01
Project End
2005-06-30
Budget Start
2003-07-01
Budget End
2004-06-30
Support Year
4
Fiscal Year
2003
Total Cost
$270,874
Indirect Cost
Name
University of Illinois Urbana-Champaign
Department
Veterinary Sciences
Type
Schools of Veterinary Medicine
DUNS #
041544081
City
Champaign
State
IL
Country
United States
Zip Code
61820
Warner, Genoa R; Flaws, Jodi A (2018) Bisphenol A and Phthalates: How Environmental Chemicals Are Reshaping Toxicology. Toxicol Sci 166:246-249
Biehl, Matthew J; Kaylan, Kerim B; Thompson, Robert J et al. (2018) Cellular fate decisions in the developing female anteroventral periventricular nucleus are regulated by canonical Notch signaling. Dev Biol 442:87-100
Kougias, Daniel G; Cortes, Laura R; Moody, Laura et al. (2018) Effects of Perinatal Exposure to Phthalates and a High-Fat Diet on Maternal Behavior and Pup Development and Social Play. Endocrinology 159:1088-1105
Brehm, Emily; Rattan, Saniya; Gao, Liying et al. (2018) Prenatal Exposure to Di(2-Ethylhexyl) Phthalate Causes Long-Term Transgenerational Effects on Female Reproduction in Mice. Endocrinology 159:795-809
Rattan, Saniya; Brehm, Emily; Gao, Liying et al. (2018) Prenatal exposure to di(2-ethylhexyl) phthalate disrupts ovarian function in a transgenerational manner in female mice. Biol Reprod 98:130-145
Hekman, Jessica P; Johnson, Jennifer L; Edwards, Whitney et al. (2018) Anterior Pituitary Transcriptome Suggests Differences in ACTH Release in Tame and Aggressive Foxes. G3 (Bethesda) 8:859-873
Kougias, Daniel G; Sellinger, Elli P; Willing, Jari et al. (2018) Perinatal exposure to an environmentally relevant mixture of phthalates results in a lower number of neurons and synapses in the medial prefrontal cortex and decreased cognitive flexibility in adult male and female rats. J Neurosci :
Eckstrum, Kirsten S; Edwards, Whitney; Banerjee, Annesha et al. (2018) Effects of Exposure to the Endocrine-Disrupting Chemical Bisphenol A During Critical Windows of Murine Pituitary Development. Endocrinology 159:119-131
Patel, Shreya; Brehm, Emily; Gao, Liying et al. (2017) Bisphenol A Exposure, Ovarian Follicle Numbers, and Female Sex Steroid Hormone Levels: Results From a CLARITY-BPA Study. Endocrinology 158:1727-1738
Rattan, Saniya; Zhou, Changqing; Chiang, Catheryne et al. (2017) Exposure to endocrine disruptors during adulthood: consequences for female fertility. J Endocrinol 233:R109-R129

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