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1.
Bioelectromagnetics ; 45(5): 235-248, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38725116

ABSTRACT

With advances in technology, the emission of radiofrequency radiation (RFR) into the environment, particularly from mobile devices, has become a growing concern. Tyro 3, Axl, and Mer (TAM) receptors and their ligands are essential for spermatogenesis and testosterone production. RFR has been shown to induce testicular cell apoptosis by causing inflammation and disrupting homeostasis. This study aimed to investigate the role of TAM receptors and ligands in the maintenance of homeostasis and elimination of apoptotic cells in the testes (weeks), short-term sham exposure (sham/1 week), and middle-term sham exposure (sham/10 weeks). Testicular morphology was assessed using hematoxylin-eosin staining, while immunohistochemical staining was performed to assess expression levels of TAM receptors and ligands in the testes of all groups. The results showed that testicular morphology was normal in the control, sham/1 week, and sham/10 weeks groups. However, abnormal processes of spermatogenesis and seminiferous tubule morphology were observed in RFR exposure groups. Cleaved Caspase 3 immunoreactivity showed statistically significant difference in 1 and 10 weeks exposure groups compared to control group. Moreover, there was no significant difference in the immunoreactivity of Tyro 3, Axl, Mer, Gas 6, and Pros 1 between groups. Moreover, Tyro 3 expression in Sertoli cells was statistically significantly increased in RFR exposure groups compared to the control. Taken together, the results suggest that RFR exposure negatively affects TAM signalling, preventing the clearance of apoptotic cells, and this process may lead to infection and inflammation. As a result, rat testicular morphology and function may be impaired.


Subject(s)
Radio Waves , Receptor Protein-Tyrosine Kinases , Testis , Male , Animals , Testis/metabolism , Testis/radiation effects , Receptor Protein-Tyrosine Kinases/metabolism , Radio Waves/adverse effects , Rats , Ligands , Apoptosis/radiation effects , Axl Receptor Tyrosine Kinase , Rats, Wistar , Spermatogenesis/radiation effects , Caspase 3/metabolism , Rats, Sprague-Dawley , Time Factors , Intercellular Signaling Peptides and Proteins
2.
Turk J Med Sci ; 53(6): 1614-1620, 2023.
Article in English | MEDLINE | ID: mdl-38813514

ABSTRACT

Background/aim: This study investigated the possible degeneration in cochlear morphology induced by preeclampsia (PE) and the therapeutic/preventive effect of vitamin D (Vit D) and magnesium sulfate (MgSO4) used separately and together on feto-maternal outcomes. Materials and methods: We created PE in rats using a reduced uterine perfusion pressure (RUPP) animal model and recorded blood pressure (BP), embryonic survival (ES), and embryonic weight (EW) and evaluated cochlear morphology by electron microscopy. Results: The PE group had elevated BP, a decreased number and weight of live pups, and significant degeneration in the cochlea compared to the sham group. In the PEV group, we observed significant beneficial effects of Vit D supplementation at 14.5 and 19.5 dpc in terms of BP (p < 0.05), EW (p < 0.001), and cochlear degeneration compared to the PE group. In the PEM group, BP (p < 0.05) and cochlear degeneration nearly reached the level found in the sham group. However, although the EW was statistically different in the PE group, it did not reach sham group levels. We also observed that BP returned to sham level (p < 0.01) and noticed significant increases in the EW (p < 0.0001) and ES (p = 0.017) in the PEMV group compared to the PE group. According to the scanning electron microscope results, combined administration of VitD and MgSO4 is more effective than separate administration in improving cochlear degeneration induced by PE. Conclusion: The administration of Vit D and MgSO4 during pregnancy has beneficial effects on PE pathology and may play a significant role in preventing PE-related complications, including cochlear degeneration.


Subject(s)
Cochlea , Magnesium Sulfate , Pre-Eclampsia , Vitamin D , Animals , Magnesium Sulfate/pharmacology , Pre-Eclampsia/prevention & control , Pre-Eclampsia/drug therapy , Female , Pregnancy , Cochlea/drug effects , Cochlea/pathology , Cochlea/ultrastructure , Vitamin D/pharmacology , Rats , Disease Models, Animal , Rats, Sprague-Dawley
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