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Published on: February 26, 2014
Cadmium Exposure and Testis Susceptibility: a Systematic Review in Murine Models
Janaina da Silva1, Reggiani Vilela Gonçalves2, Fabiana Cristina Silveira Alves de Melo2
1Department of General Biology, Universidade Federal de Viçosa, Viçosa, Minas Gerais, Brazil.
Abstract:
It is known that cadmium induces damage to the testis. However, the significant cadmium impact on the testicular architecture and the mechanisms involved in this process are not clear. Besides, the relationship between dose, route, and time of exposure and injuries remains poorly understood. Thus, we aimed to assess whether cadmium exposure in any dose, route, and time of exposure causes significant alteration in the testicular tissue of murine models, as well as the main mechanisms involved. We performed a structured search on the Medline/PubMed and Scopus databases to retrieve studies published until September 2018. The results were organized into an Adverse Outcome Pathway (AOP) framework. Also, a bias analysis of included studies was performed. We included 37 studies, and most of them identified significant histopathologies in both tubule and intertubule regarding routes, in a dose- and time-dependent manner. The damages were observed after the first hours of exposure, mainly vascular damages suggesting that vasculature failure is the primary mechanism. The AOP showed that potential molecular initiating events may mimic and interfere with essential elements disrupting proteins (structural and antioxidants), change in the oxidative phosphorylation enzyme activities, and gene expression alteration, which lead to reproductive failure (adverse outcome). Analysis of methodological quality showed that the current evidence is at high risk of bias. Despite the high risk of bias, cadmium triggers significant lesions in the testis of murine models, regarding routes, in a dose- and time-dependent manner, mainly due to vascular changes. Therefore, cadmium is a risk factor for male reproductive health.
Insights
Cadmium exposure significantly damages testicular tissue in mice, affecting both tubules and intertubules. Vascular damage appears to be the primary mechanism, leading to male reproductive health risks.
Area of Science:
- Toxicology
- Reproductive Biology
- Environmental Health
Background:
- Cadmium is a known testicular toxicant, but its precise impact on testicular architecture and the underlying mechanisms remain unclear.
- The relationship between cadmium exposure parameters (dose, route, time) and testicular injury requires further elucidation.
Purpose of the Study:
- To assess the effects of cadmium exposure on murine testicular tissue across various doses, routes, and exposure times.
- To identify the primary mechanisms involved in cadmium-induced testicular damage.
Main Methods:
- A systematic literature review of Medline/PubMed and Scopus databases up to September 2018.
- Organization of findings within an Adverse Outcome Pathway (AOP) framework.
- Performance of a bias analysis on included studies.
Main Results:
- 37 studies revealed significant dose- and time-dependent histopathological alterations in testicular tubules and intertubules.
- Vascular damage was observed early, suggesting vasculature failure as a key mechanism.
- Cadmium exposure disrupts proteins, alters oxidative phosphorylation, and affects gene expression, ultimately leading to reproductive failure.
Conclusions:
- Cadmium exposure causes significant testicular lesions in murine models in a dose-, route-, and time-dependent manner, primarily through vascular changes.
- Despite a high risk of bias in current evidence, cadmium is identified as a risk factor for male reproductive health.

