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1.
ALTEX ; 30(3): 353-77, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-23861079

RESUMO

To address the pressing need for better in vitro testicular toxicity models, a workshop sponsored by the International Life Sciences Institute (ILSI), the Health and Environmental Science Institute (HESI), and the Johns Hopkins Center for Alternatives to Animal Testing (CAAT), was held at the Mt. Washington Conference Center in Baltimore, MD, USA on October 26-27, 2011. At this workshop, experts in testis physiology, toxicology, and tissue engineering discussed approaches for creating improved in vitro environments that would be more conducive to maintaining spermatogenesis and steroidogenesis and could provide more predictive models for testicular toxicity testing. This workshop report is intended to provide scientists with a broad overview of relevant testicular toxicity literature and to suggest opportunities where bioengineering principles and techniques could be used to build improved in vitro testicular models for safety evaluation. Tissue engineering techniques could, conceivably, be immediately implemented to improve existing models. However, it is likely that in vitro testis models that use single or multiple cell types will be needed to address such endpoints as accurate prediction of chemically induced testicular toxicity in humans, elucidation of mechanisms of toxicity, and identification of possible biomarkers of testicular toxicity.


Assuntos
Efeitos Colaterais e Reações Adversas Relacionados a Medicamentos , Poluentes Ambientais/toxicidade , Testículo/efeitos dos fármacos , Alternativas aos Testes com Animais , Animais , Biomarcadores , Técnicas de Cultura de Células , Células Cultivadas , Humanos , Masculino , Modelos Biológicos , Valor Preditivo dos Testes , Testículo/citologia , Testes de Toxicidade/métodos
3.
Toxicol Sci ; 69(2): 332-43, 2002 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-12377982

RESUMO

Androgens secreted by the testes bind the androgen receptor in developing target tissues to induce the expression of genes required for male sexual differentiation and development. Androgen concentration and androgen receptor levels vary in male reproductive target tissues during development. Exposure to environmental androgen antagonists during critical windows of fetal and postnatal development can inhibit male sexual development by blocking transcription of androgen-dependent genes. As the sensitivity to androgen antagonists under conditions of varying androgen concentrations and varying androgen receptor levels is unknown, we used a luciferase reporter assay to investigate the transcriptional effects of a known androgen antagonist (the vinclozolin metabolite M2) at different androgen concentrations and different androgen receptor levels. The ability of M2 to inhibit transcription was greater at lower concentrations of androgen (5alpha-dihydrotestosterone) and androgen receptor. The data were modeled to determine the dose-response surface of M2 and androgen receptor concentrations at different 5alpha-dihydrotestosterone levels and the relationship of the 3 components to the response. The model and hypothesis testing results suggest that, at 0.01 and 0.1 nM 5alpha-dihydrotestosterone concentrations within the expected in vivo range of free androgen levels during development, the response-surface shapes were similar and the interaction of the androgen receptor and M2 concentrations to the response were similarly antagonistic. Thus, two components of the developmental stage, androgen and androgen receptor concentrations, are critical for sensitivity to the inhibitory effects of an androgen antagonist.


Assuntos
Antagonistas de Androgênios/toxicidade , Di-Hidrotestosterona/farmacologia , Oxazóis/toxicidade , Receptores Androgênicos/efeitos dos fármacos , Algoritmos , Animais , DNA/biossíntese , DNA/genética , Relação Dose-Resposta a Droga , Genes Reporter/efeitos dos fármacos , Haplorrinos , Humanos , Luciferases/genética , Masculino , Modelos Biológicos , Modelos Estatísticos , Dinâmica não Linear
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