Šimaiová Veronika, Almášiová Viera, Holovská Katarína, Kisková Terézia, Horváthová Františka, Ševčíková Zuzana, Tóth Štefan, Raček Adam, Račeková Enikő, Beňová Katarína, Dvořák Petr, Cigánková Viera
Department of Anatomy, Histology and Physiology, Institute of Histology and Embryology, University of Veterinary Medicine and Pharmacy in Košice, Slovakia.
Department of Animal Physiology, Institute of Biology and Ecology, Faculty of Sciences, Pavol Jozef Šafárik University in Košice, Slovakia.
Histol Histopathol. 2019 Apr;34(4):391-403. doi: 10.14670/HH-18-049. Epub 2018 Sep 27.
Nowadays, mobile devices that emit non-ionizing electromagnetic radiation (EMR) are predominantly used by juveniles and pubescents. The aim of the present study was to evaluate the effect of whole body pulsed EMR on the juvenile Wistar albino rat testis at a frequency of 2.45 GHz and mean power density of 2.8 mW/cm².
The investigated animals (n=24) were divided into two control and two EMR groups (5 and 6 week old rats; 6 rats per group). Both EMR groups were irradiated continually for 3 weeks (2h/day) from postnatal days 14 and 21, respectively.
EMR caused an irregular shape of seminiferous tubules with desquamated immature germ cells in the lumen, a large number of empty spaces along the seminiferous epithelium and dilated and congested blood vessels in the interstitial tissue of the testis. The cytoplasm of Sertoli cells showed strong vacuolization and damaged organelles, with the cytoplasm full of different heterophagic and lipid vacuoles or the cytoplasm of spermatocytes with swollen mitochondria in both irradiated groups. A significant increase in the total tubular area of seminiferous tubules was observed in both EMR groups compared with controls (P<0.001). A significant increase in the TUNEL-positive apoptotic nuclei (P<0.01) was accompanied by a significant rise in both Cu-Zn-SOD (P<0.01) and Mn-SOD (P<0.001) positive cells in the 6 week old experimental rats compared to control animals.
Our results confirmed a harmful effect of non-ionizing radiation on the structure and ultrastructure of the juvenile rat testis.
如今,发射非电离电磁辐射(EMR)的移动设备主要被青少年使用。本研究的目的是评估频率为2.45 GHz、平均功率密度为2.8 mW/cm²的全身脉冲EMR对幼年Wistar白化大鼠睾丸的影响。
将受试动物(n = 24)分为两个对照组和两个EMR组(5周龄和6周龄大鼠;每组6只)。两个EMR组分别从出生后第14天和第21天开始连续照射3周(每天2小时)。
EMR导致生精小管形状不规则,管腔内有脱屑的未成熟生殖细胞,生精上皮沿线有大量空隙,睾丸间质组织中的血管扩张和充血。在两个照射组中,支持细胞的细胞质均表现出强烈的空泡化和细胞器损伤,细胞质中充满不同的异噬性和脂质空泡,或者精母细胞的细胞质中线粒体肿胀。与对照组相比,两个EMR组的生精小管总管腔面积均显著增加(P < 0.001)。与对照动物相比,6周龄实验大鼠中TUNEL阳性凋亡细胞核显著增加(P < 0.01),同时Cu-Zn-SOD(P < 0.01)和Mn-SOD(P < 0.001)阳性细胞均显著增加。
我们的结果证实了非电离辐射对幼年大鼠睾丸结构和超微结构的有害影响。