Zika virus disrupts the barrier structure and Absorption/Secretion functions of the epididymis in mice
Ziyang Sheng1, Na Gao1, Dongying Fan1
1Department of Microbiology, School of Basic Medical Sciences, Capital Medical University, Beijing, China.
Abstract:
Several studies have demonstrated that Zika virus (ZIKV) damages testis and leads to infertility in mice; however, the infection in the epididymis, another important organ of male reproductive health, has gained less attention. Previously, we detected lesions in the epididymis in interferon type I and II receptor knockout male mice during ZIKV infection. Herein, the pathogenesis of ZIKV in the epididymis was further assessed in the infected mice after footpad inoculation. ZIKV efficiently replicated in the epididymis, and principal cells were susceptible to ZIKV. ZIKV infection disrupted the histomorphology of the epididymis, and the effects were characterized by a decrease in the thickness of the epithelial layer and an increase in the luminal diameter, especially at the proximal end. Significant inflammatory cell infiltration was observed in the epididymis accompanied by an increase in the levels of interleukin (IL)-6 and IL-28. The expression of tight junction proteins was downregulated and associated with disordered arrangement of the junctions. Importantly, the expression levels of aquaporin 1 and lipocalin 8, indicators of the absorption and secretion functions of the epididymis, were markedly reduced, and the proteins were redistributed. These events synergistically altered the microenvironment for sperm maturation, disturbed sperm transport downstream, and may impact male reproductive health. Overall, these results provide new insights into the pathogenesis of the male reproductive damage caused by ZIKV infection and the possible contribution of epididymal injury into this process. Therefore, male fertility of the population in areas of ZIKV epidemic requires additional attention.
Insights
Zika virus (ZIKV) infects the epididymis, causing structural damage and inflammation. This injury disrupts sperm maturation and transport, potentially impacting male fertility in ZIKV-affected regions.
Area of Science:
- Reproductive biology
- Virology
- Immunology
Background:
- Zika virus (ZIKV) is known to cause testicular damage and infertility.
- The epididymis, crucial for sperm maturation, has received less attention regarding ZIKV pathogenesis.
Purpose of the Study:
- To investigate the pathogenesis of ZIKV infection in the epididymis.
- To understand the impact of ZIKV on epididymal structure, function, and the male reproductive microenvironment.
Main Methods:
- ZIKV infection in mice via footpad inoculation.
- Histomorphological analysis of the epididymis.
- Measurement of inflammatory markers (IL-6, IL-28).
- Assessment of tight junction proteins and functional indicators (aquaporin 1, lipocalin 8).
Main Results:
- ZIKV efficiently replicated in the epididymis, targeting principal cells.
- Histomorphological changes included decreased epithelial thickness and increased luminal diameter.
- Inflammatory cell infiltration and elevated IL-6 and IL-28 levels were observed.
- Downregulation of tight junction proteins and reduced expression/redistribution of aquaporin 1 and lipocalin 8 occurred.
Conclusions:
- ZIKV infection significantly damages the epididymis, altering its microenvironment.
- Epididymal injury contributes to impaired sperm maturation and transport, potentially affecting male reproductive health.
- Male fertility in ZIKV-endemic areas warrants increased attention due to potential epididymal damage.
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