O-33: Nanosilver Impacts The Testicular Tissue by Reducing The GLUT I Expression in Leydig Cells; Correlation with Germinal Cells RNA Damage

Authors

  • Amin M
  • Malekinejad H
  • Rezazadeh Z
  • Sadrkhanlou RA
Abstract:

Background: Nanosilver (NS) contains silver nanoparticles to control infections delivered from bacteria. The NS compounds as well as being toxic to prokaryotes are highly toxic to mammalian cells. The present study was evaluated the effect of colloidal NS on leydig cells glucose transporter type I (GLUT I) expression, serum level of testosterone, germinal cells RNA damage and spermiogenesis process. Materials and Methods: Twenty four mature male mice were divided into four groups (n=6) as test and controlsham groups. The animals in test groups received the colloid NS in doses of 0.5, 1 and 5 mg/kg and the animals in control-sham group received saline intraperitoneally, during 34 consecutive days. The immunohistochemical and Epi-fluorescent analyses were conducted to evaluate the GLUT I expression and germinal cells RNA damage, respectively. The serum testosterone level was assessed by RIA method. The spermiogenesis index was investigated. Results: The GLUT I expression significantly (p<0.05) decreased in NS-administrated animals. Accordingly, the high dose received mice were manifested with lowest GLUT I on leydig cells. The serum level of testosterone decreased depending on dose. The germinal cells were exhibited with severe RNA damage accomplished with remarkable reduction in the percentage of seminiferous tubules with positive spermiogenesis index. Conclusion: Our data suggest that NS partly by reducing GLUT I expression on the leydig cells membrane down-regulates the cells glucose intake. Therefore, the leydig cells loss their physiologic ability to synthesis testosterone. Ultimately, the induced impairment leads to severe RNA damage in germinal cells which negatively impacts the spermiogenesis process.

Upgrade to premium to download articles

Sign up to access the full text

Already have an account?login

similar resources

O-2: Testosterone and Vitamin E administration Up-Regulates Hsp70 Protein Expression in Varicocele-induced Rats; Correlation with Leydig Cells Steroidogenesis and Germinal Cells RNA Damage

Background: Varicocele (VCL) impacts the testicular tissue partly by down-regulating the antioxidant status accomplished with reducing the intra-testicular endocrine potential. It has been reported that the HSP70 families play a critical role in spermiogenesis. Therefore, current study was aimed to evaluate the protective effect of exogenous testosterone and vitamin E administration on VCL-indu...

full text

P-220: Co-Administration of Testosterone and Vitamin E Inhibited The Atrazine-Induced Damages on Testis; Evidence for RNA Damage and Leydig Cells Steroidogenesis

Background: Atrazine (ATR), an herbicide, is used in order to control broadleaf and grassy weed. ATR has been estimated to impact the testicular tissue both by inhibiting the endocrine system and partly by reducing the antioxidant status. Thus, current study was designed to evaluate the protective effect of vitamin E and testosterone against ATR-induced damages in testicular tissue. Materials a...

full text

P-60: Nano-Particle TiO2 Enhances Apoptosis in Testicular Tissue; Evidence for p53, bcl2, cyp19 Genes Expression

Background: Nano-particle Titanium Dioxide (TiO2) is a noncombustible, odorless powder that is widely used in different fields of industries. Previous reports showed that chronic exposure to TiO2 adversely impacts the testicular tissue and down-regulates the antioxidant capacity and down-regulates the endocrine status of the testicles. Present study was designed in order to identify the role of...

full text

P-31: Dexamethasone and Vitamin E Up-Regulated The Varicocele-Reduced Hsp70 Protein Expression; Correlation with Testicular Tissue Inflammation and Antioxidant Status

Background: The varicocele (VCL) impacts the testicular tissue both by enhancing tissue inflammation and by down-regulating the antioxidant status. On the other hand, in varicocele patient the critical role of Hsp70 in spermiogenesis is identified. Therefore present study was estimated to evaluate the protective effect of testosterone and vitamin E on VCL-decreased Hsp70 expression and on VCL-i...

full text

Aqueous Extract of Nigella sativa Seeds Suppresses Testicular Steroidogenesis In Mice Leydig Cells, in vitro

Nigella sativa (black seed) is an important medicinal herb with folkloric use in wide range of diseases. It is well studied for its biological activities. However, there is limited information regarding its effect on the male reproductive system. This study describes the effect of the aqueous extract of N. sativa (NSE) on testicular steroidogenesis from mice Leydig cells in vitro . Mice tes...

full text

P-8: Protective Effect of Royal Jelly versus Vitamin C against Anemia-Induced Damages in Testicular Tissue

Background: Phenylhydrazine (PHZ) is used to induce experimental anemia in animal models. On the other hand royal jelly is known as antioxidant compound. Therefore, here in present study we aimed to evaluate the protective effect of royal jelly on PHZ-induced damages in testicular tissue and compare its impact with vitamin C. Materials and Methods: Eighteen mature male mice were randomly divide...

full text

My Resources

Save resource for easier access later

Save to my library Already added to my library

{@ msg_add @}


Journal title

volume 7  issue 3

pages  35- 35

publication date 2013-09-01

By following a journal you will be notified via email when a new issue of this journal is published.

Hosted on Doprax cloud platform doprax.com

copyright © 2015-2023