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In Vivo Microinjection and Electroporation of Mouse Testis
Published on: August 23, 2014
Perturbation of epigenetic processes by doxorubicin in the mouse testis
Oluwajoba O Akinjo1, Timothy W Gant1, Emma L Marczylo1
1Toxicology Department , CRCE , PHE , Chilton , Oxfordshire OX11 0RQ , UK .
Abstract:
Epigenetic processes play a major role in normal mammalian development, particularly during gametogenesis and early embryogenesis. Thus, perturbation of epigenetic processes in the testis by xenobiotics could have a major impact on testicular function and fertility, and potentially affect the development and health of subsequent generations. There has been substantial research into the epigenetic toxicity of environmental exposures over the last decade. However, few studies have focussed on pharmaceutical drugs, which due to the nature of their use are typically found at much higher concentrations within exposed individuals than environmental chemicals. Here, we investigated genome-wide changes in testicular mRNA transcription, microRNA expression and DNA methylation to assess the contribution of epigenetic mechanisms to the testicular toxicity induced by doxorubicin (DOX) as a representative, widely used and well-characterised anti-cancer drug. We demonstrated that DOX is able to induce transcriptional, microRNA and DNA methylation changes, which perturb pathways involved in stress/cell death and survival and testicular function and lead to germ cell loss and reproductive organ damage. This identified potential novel mechanisms of DOX-induced testicular toxicity for further focussed investigations. Such work is required to fully assess the role of epigenetics in toxicity, determine whether single and/or multigenerational epigenetic toxicity is a real public health concern, and begin to develop and incorporate relevant epigenetic endpoints into regulatory toxicology.
Insights
Doxorubicin (DOX) causes testicular toxicity by altering genome-wide epigenetic markers, including DNA methylation and microRNA expression. These changes impact pathways crucial for testicular function, leading to reproductive organ damage and germ cell loss.
Area of Science:
- Reproductive toxicology
- Epigenetics
- Developmental biology
Background:
- Epigenetic processes are vital for mammalian development, especially in germ cells.
- Xenobiotic exposure can disrupt testicular epigenetics, impacting fertility and offspring health.
- Pharmaceuticals, unlike environmental chemicals, reach higher concentrations in individuals, necessitating toxicity studies.
Purpose of the Study:
- To investigate genome-wide epigenetic changes in the testis induced by doxorubicin (DOX).
- To assess the role of epigenetic mechanisms in DOX-induced testicular toxicity.
- To identify novel mechanisms of toxicity for future research and regulatory toxicology.
Main Methods:
- Genome-wide mRNA transcription analysis
- MicroRNA expression profiling
- DNA methylation analysis
Main Results:
- DOX induced significant changes in testicular mRNA transcription, microRNA expression, and DNA methylation.
- These epigenetic alterations affected pathways related to stress, cell death, survival, and testicular function.
- DOX exposure led to germ cell loss and damage to reproductive organs.
Conclusions:
- Epigenetic modifications are key mechanisms underlying doxorubicin-induced testicular toxicity.
- Further research is needed to understand single and multigenerational epigenetic toxicity.
- Incorporating epigenetic endpoints into regulatory toxicology is crucial for assessing drug safety.
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