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The efficacy of chronic zinc oxide nanoparticles using on testicular damage in the streptozotocin-induced diabetic rat model
Authors:Eman I. El-behery  Nesma I. El-naseery  Hanaa M. El-Ghazali  Yaser H.A. Elewa  Eman A.A. Mahdy  Enas El-Hady  Mervat M.H. Konsowa
Affiliation:1. Anatomy & Embryology Department, Faculty of Veterinary Medicine, Zagazig University, 44519, Zagazig, Egypt;2. Department of Histology and Cytology, Faculty of Veterinary Medicine, Zagazig University, Zagazig 44519, Egypt;3. Laboratory of Anatomy, Basic Veterinary Sciences, Faculty of Veterinary Medicine, Hokkaido University, Sapporo 060-0818, Japan
Abstract:Testicular impairment is a common complication of Diabetes mellitus (DM). Zinc Oxide Nanoparticles (ZnO NPs) are a novel agent for Zn delivery with antidiabetic and antioxidant activities. However, few reports were recorded on it. The current study aimed to investigate the possible ameliorating effect of ZnO NPs treatment on testicular tissues alterations in streptozotocin (STZ)-induced diabetic rats. Therefore, thirty mature male Wistar rats were divided into three main groups: Control group (n?=?18) was subdivided equally into three subgroups (negative control, vehicle and ZnO NPs), Diabetic group (n?=?6) and ZnO NPs-treated diabetic group (n?=?6). Induction of diabetes was done by a single intraperitoneal injection of STZ (60?mg/kg bw). The rats were orally treated by ZnO NPs (10?mg/kg bw) for 30 constitutive days. At the end of the experiment, blood glucose and serum testosterone levels were measured. Also, testicular tissues were obtained for histopathological investigations and immunohistochemical staining with anti-PCNA (proliferating cell marker), anti-ssDNA (apoptotic cell marker), anti-SOX9 (Sertoli cell marker), anti-Stella (spermatogonia marker), anti-STRA8 (preleptotene and early-leptotene spermatocytes marker), anti-DMC1 (leptotene and zygotene spermatocytes marker), anti-Dnmt3a (a marker for cells under DNA methylation) and anti-α-SMA (peritubular myoid cell marker). The biochemical analysis revealed that diabetes resulted in a significant elevation in blood glucose level and a reduction in serum testosterone level. Moreover, histopathological investigations revealed disorganized seminiferous epithelium and sever hyalinization with vacuolization of the testicular interstitium containing Leydig cells. The immunohistochemical findings support spermatogenesis impairment in the diabetic group. However, ZnO NPs treatment restores architecture of seminiferous epithelium and Leydig cells. Furthermore, more PCNA, SOX9, Stella, STRA8, DMC1 and Dnmt3a immunopositive cells with an improvement of peritubular α-SMA immunopositive expression, as well as few ssDNA-immunopositive cells were detected in the seminiferous epithelium. This study suggested the possible protective role of orally administered ZnO NPs on testicular alterations in the STZ-induced diabetic group via steroidogenesis and spermatogenesis enhancement. In addition, further researches are acquired for evaluation mechanism of ZnO NPs treatment via oral or parenteral routes in a dose-dependent manner to identify the more effective route and dose in the treatment of testicular diabetic complications.
Keywords:α-SMA  alpha-smooth muscle actin  DM  diabetes mellitus  DMC1  dosage suppressor of mck1 homolog, meiosis-specific homologous recombination  Dnmt3a  DNA methyltransferases a  PCNA  proliferating cell nuclear antigen  ssDNA  single strand DNA  SOX9  SRY (sex determining region Y)-box 9  STRA8  stimulated by retinoic acid gene 8  STZ  streptozotocin  ZN  zinc  ZnO NPs  zinc oxide nanoparticles  Diabetes  Zinc oxide nanoparticles  Testes  Immunohistochemistry
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