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Screening of Potential Plasticizer Alternatives for Their Toxic Effects on Male Germline Stem Cells. | LitMetric

AI Article Synopsis

  • Plasticizers, specifically phthalate esters, are known to disrupt male reproductive functions and have prompted the search for safer alternatives.
  • Researchers examined the effects of 22 plasticizers (7 in use, 15 newly synthesized) on spermatogonial stem cells (SSCs) to assess their toxicity.
  • The study found that while many compounds showed limited toxicity, DEHP and MEHP were harmful, while two new compounds, BDDB and DOS, were safe and promoted SSC function in tests with recipient mice.

Article Abstract

Plasticizers give flexibility to a wide range of consumer and medical plastic products. Among them, phthalate esters are recognized as endocrine disruptors that target male reproductive functions. With this notion, past studies designed and produced alternative plasticizers that could replace phthalates with limited toxicity to the environment and to male reproductive functions. Here, we focused on one reproductive cell type that was not investigated in past studies-spermatogonial stem cells (SSCs)-and examined in vitro the effects on 22 compounds (seven plasticizers currently in use and 15 newly synthesized potential alternative plasticizers) for their effects on SSCs. Our in vitro compound screening analyses showed that a majority of the compounds examined had a limited level of toxicity to SSCs. Yet, some commercial plasticizers and their derivatives, such as DEHP (di-(2-ethylhexyl) phthalate) and MEHP (mono-(2-ethylhexyl) phthalate), were detrimental at 10 to 10 M. Among new compounds, some of maleate- and fumarate-derivatives showed toxic effects. In contrast, no detrimental effects were detected with two new compounds, BDDB (1,4 butanediol dibenzoate) and DOS (dioctyl succinate). Furthermore, SSCs that were exposed to BDDB and DOS in vitro successfully established spermatogenic colonies in testes of recipient mice after transplantation. These results demonstrate that SSC culture acts as an effective platform for toxicological tests on SSC function and provide novel information that two new compounds, BDDB and DOS, are alternative plasticizers that do not have significant negative impacts on SSC integrity.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9776359PMC
http://dx.doi.org/10.3390/biomedicines10123217DOI Listing

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