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Effects of Several Cosmetic Preservatives on ROS-Dependent Apoptosis of Rat Neural Progenitor Cellsopen access

Authors
Ryu, OnjeonPark, Bo KyungBang, MinjiCho, Kyu SukLee, Sung HoonGonzales, Edson Luck T.Yang, Sung MinKim, SeonminEun, Pyeong HwaLee, Joo YoungKim, Kyu-BongShin, Chan YoungKwon, Kyoung Ja
Issue Date
Nov-2018
Publisher
KOREAN SOC APPLIED PHARMACOLOGY
Keywords
Benzalkonium chloride; Diazolidinyl urea; Imidazolidinyl urea; Apoptosis; Cosmetic preservatives; Reactive oxygen species
Citation
BIOMOLECULES & THERAPEUTICS, v.26, no.6, pp 608 - 615
Pages
8
Journal Title
BIOMOLECULES & THERAPEUTICS
Volume
26
Number
6
Start Page
608
End Page
615
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/613
DOI
10.4062/biomolther.2017.221
ISSN
1976-9148
2005-4483
Abstract
Benzalkonium chloride, diazolidinyl urea, and imidazolidinyl urea are commonly used preservatives in cosmetics. Recent reports suggested that these compounds may have cellular and systemic toxicity in high concentration. In addition, diazolidinyl urea and imidazolidinyl urea are known formaldehyde (FA) releasers, raising concerns for these cosmetic preservatives. In this study, we investigated the effects of benzalkonium chloride, diazolidinyl urea, and imidazolidinyl urea on ROS-dependent apoptosis of rat neural progenitor cells (NPCs) in vitro. Cells were isolated and cultured from embryonic day 14 rat cortices. Cultured cells were treated with 1-1,000 nM benzalkonium chloride, and 1-50 mu M diazolidinyl urea or imidazolidinyl urea at various time points to measure the reactive oxygen species (ROS). PI staining, MTT assay, and live-cell imaging were used for cell viability measurements. Western blot was carried out for cleaved caspase-3 and cleaved caspase-8 as apoptotic protein markers. In rat NPCs, ROS production and cleaved caspase-8 expression were increased while the cell viability was decreased in high concentrations of these substances. These results suggest that several cosmetic preservatives at high concentrations can induce neural toxicity in rat brains through ROS induction and apoptosis.
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약학대학 (약학부)
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