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Exposure to manganese during sertoli cell formation and proliferation disturbs early testicular development in rats.
Gomes-Silva, Ana Priscila; Cunha de Medeiros, Paloma da; Silva, Laís Nogueira; Da Silva Araújo Santiago, Marcella; Perobelli, Juliana Elaine.
Affiliation
  • Gomes-Silva AP; Laboratory of Experimental Toxicology - LATOEX, Universidade Federal de São Paulo, Instituto do Mar, Carvalho de Mendonça, 144, 11070-100 Santos, SP, Brazil.
  • Cunha de Medeiros PD; Laboratory of Experimental Toxicology - LATOEX, Universidade Federal de São Paulo, Instituto do Mar, Carvalho de Mendonça, 144, 11070-100 Santos, SP, Brazil.
  • Silva LN; Laboratory of Experimental Toxicology - LATOEX, Universidade Federal de São Paulo, Instituto do Mar, Carvalho de Mendonça, 144, 11070-100 Santos, SP, Brazil.
  • Da Silva Araújo Santiago M; Laboratory of Experimental Toxicology - LATOEX, Universidade Federal de São Paulo, Instituto do Mar, Carvalho de Mendonça, 144, 11070-100 Santos, SP, Brazil.
  • Perobelli JE; Laboratory of Experimental Toxicology - LATOEX, Universidade Federal de São Paulo, Instituto do Mar, Carvalho de Mendonça, 144, 11070-100 Santos, SP, Brazil. Electronic address: jperobelli@unifesp.br.
Reprod Toxicol ; 120: 108447, 2023 09.
Article in En | MEDLINE | ID: mdl-37499885
Manganese (Mn) is a metal and important micronutrient. However, exposure to supraphysiological levels of Mn, which occur through fungicides, atmospheric emissions, drainages, and spills, has been related to health risks, including morphometric changes in the male reproductive organs and impairment on gametogenesis and sperm quality, impacting the fertile ability of adult animals. Despite the relevance of the fetal/perinatal period for toxicological studies on Mn, previous data only deal with the physical and neurological development of the offspring, without mentioning their reproductive development. The present study investigated whether exposure to Mn during fetal/perinatal phase, specifically during the period of formation and proliferation of Sertoli cells, impairs the reproductive development of male offspring in early postnatal life. Therefore, pregnant Wistar rats were randomly distributed into 3 experimental groups: Ctl (received saline solution), Mn-9 (received 9 mg/kg of MnCl2), and Mn-90 (received 90 mg/kg of MnCl2). The female rats received the experimental treatment by gavage from gestational day 13 to lactational day 15, i.e., postnatal day (PND) 15 of the pups. Oxidative damage to the genetic material of germ and Sertoli cells, together with a decrease in connexin 43 immunolabeling were observed in the testis of male pups evaluated at PND 15. In addition, an increase in the seminiferous tubules presenting slight epithelium vacuolization and cells with eosinophilic cytoplasm were observed, without apparent epididymal changes. In conclusion, it was demonstrated that Mn perturbed the initial testicular development by altering Sertoli cell integrity through oxidative insult, which may compromise the spermatogenesis in the long-term.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Sertoli Cells / Manganese Limits: Animals / Pregnancy Language: En Journal: Reprod Toxicol Journal subject: EMBRIOLOGIA / MEDICINA REPRODUTIVA / TOXICOLOGIA Year: 2023 Document type: Article Affiliation country: Brazil Country of publication: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Sertoli Cells / Manganese Limits: Animals / Pregnancy Language: En Journal: Reprod Toxicol Journal subject: EMBRIOLOGIA / MEDICINA REPRODUTIVA / TOXICOLOGIA Year: 2023 Document type: Article Affiliation country: Brazil Country of publication: United States