Cryptorchidism, or undescended testis, is one of the most common male congenital anomalies, occurring in 2-4% of boys. It is non-syndromic and unilateral in the majority of cases, yet is often associated with bilateral impairment of germ cell development and subsequent infertility and/or malignancy. Neither the physiology nor the pathogenesis of this complex and heterogeneous disease are well understood but available data suggest the presence of multiple susceptibility loci. In addition, estrogens, antiandrogens and many environmental pollutants with endocrine-disrupting effects produce cryptorchidism in experimental animals after fetal exposure, it is likely that manifestation of the human disease is the result of gene-environment interactions. Several genes have been identified as strong candidates for cryptorchidism in targeted deletion studies. These include insl3, Great/LGR8, Desrt/MRF2, hoxA10 and hoxA11. We hypothesize that allelic variants in these genes are associated with susceptibility.to cryptorchidism and that this risk is modulated by the fetal hormonal milieu, which can be altered by genetic as well as extrinsic environmental factors. The overall goals of this project are to to elucidate the molecular mechanisms of normal and abnormal testicular descent in a rat model and to initiate a case-control study to measure biomarkers of effect and candidate genes that are associated with human cryptorchidism.
Specific aims will be to: (1) screen candidate genes for cryptorchidism, identified from differential expression studies and other rodent models, for mutations using DHPLC and sequencing in a rat model of cryptorchidism; (2) initiate a case-control study of cryptorchidism to study biomarkers of exposure and effect including (a) expression of androgen and estrogen receptors using real time RT-PCR and (b) germ cell differentiation using FACS analysis of spermatogonial markers in target tissues and (3) identify and study allelic variants in candidate genes for cryptorchidism using a case-control design that will be validated by transmission disequalibrium testing. The long-term goals of this work will be to study gene-environment interaction in the etiology of cryptorchidism and to identify, predict and, when possible, minimize risk factors that contribute to this common disease.

Agency
National Institute of Health (NIH)
Institute
National Center for Research Resources (NCRR)
Type
Exploratory Grants (P20)
Project #
1P20RR020173-01
Application #
6973096
Study Section
Special Emphasis Panel (ZRR1-RI-5 (02))
Project Start
2004-09-07
Project End
2005-07-31
Budget Start
2004-09-07
Budget End
2005-07-31
Support Year
1
Fiscal Year
2004
Total Cost
$162,865
Indirect Cost
Name
Alfred I. Du Pont Hosp for Children
Department
Type
DUNS #
038004941
City
Wilmington
State
DE
Country
United States
Zip Code
19803
Nagao, Kyoko; Morlet, Thierry; Haley, Elizabeth et al. (2018) Neurophysiology of hearing in patients with mucopolysaccharidosis type IV. Mol Genet Metab 123:472-478
Brescia, AnneMarie C; Simonds, Megan M; McCahan, Suzanne M et al. (2018) Prior to extension, Transcriptomes of fibroblast-like Synoviocytes from extended and Polyarticular juvenile idiopathic arthritis are indistinguishable. Pediatr Rheumatol Online J 16:3
Brescia, AnneMarie C; Simonds, Megan M; Sullivan, Kathleen E et al. (2017) Secretion of pro-inflammatory cytokines and chemokines and loss of regulatory signals by fibroblast-like synoviocytes in juvenile idiopathic arthritis. Proteomics Clin Appl 11:
Kubaski, Francyne; Brusius-Facchin, Ana Carolina; Mason, Robert W et al. (2017) Elevation of glycosaminoglycans in the amniotic fluid of a fetus with mucopolysaccharidosis VII. Prenat Diagn 37:435-439
Khan, Shaukat; Alméciga-Díaz, Carlos J; Sawamoto, Kazuki et al. (2017) Mucopolysaccharidosis IVA and glycosaminoglycans. Mol Genet Metab 120:78-95
Kubaski, Francyne; Suzuki, Yasuyuki; Orii, Kenji et al. (2017) Glycosaminoglycan levels in dried blood spots of patients with mucopolysaccharidoses and mucolipidoses. Mol Genet Metab 120:247-254
Robbins, Alan K; Mateson, Abigail B; Khandha, Ashutosh et al. (2016) Fetal Rat Gubernaculum Mesenchymal Cells Adopt Myogenic and Myofibroblast-Like Phenotypes. J Urol 196:270-8
Koenighofer, M; Hung, C Y; McCauley, J L et al. (2016) Mutations in RIT1 cause Noonan syndrome - additional functional evidence and expanding the clinical phenotype. Clin Genet 89:359-66
Tomatsu, Shunji; Azario, Isabella; Sawamoto, Kazuki et al. (2016) Neonatal cellular and gene therapies for mucopolysaccharidoses: the earlier the better? J Inherit Metab Dis 39:189-202
Khan, Shaukat A; Dong, Hailong; Joyce, Jennifer et al. (2016) Fibulin-2 is essential for angiotensin II-induced myocardial fibrosis mediated by transforming growth factor (TGF)-?. Lab Invest 96:773-83

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