1월16일_Combined activation of methylparaben
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작성자 환경독성학 작성일15-03-17 23:03 조회520회 댓글0건관련링크
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Combined Activation of Methyl Paraben by Light Irradiation and Esterase
Metabolism toward Oxidative DNA Damage Yoshinori Okamoto,† Tomohiro Hayashi,
Shinpei Matsunami, Koji Ueda, and Nakao Kojima* Faculty of Pharmacy, Meijo
UniVersity, 150 Yagotoyama, Tempaku-ku, Nagoya 468-8503, Japan Received February
19, 2008 Methyl paraben (MP) is often used as a preservative in foods, drugs,
and cosmetics because of its high reliability in safety based on the rapid
excretion and nonaccumulation following administration. Light irradiation
sometimes produces unexpected activity from chemicals such as MP; furthermore,
there is ample opportunity for MP to be exposed to sunlight. Here, we
investigated whether MP shows DNA damage after sunlight irradiation. Two major
photoproducts, p-hydroxybenzoic acid (PHBA) and 3-hydroxy methyl paraben
(MP-3OH), were detected after sunlight irradiation to an aqueous MP solution.
Both photoproducts were inactive in the in vitro DNA damage assay that measures
oxidized guanine formed in calf thymus DNA in the presence of divalent copper
ion, a known mediator of oxidative DNA damage. Simulated MP metabolism using
dermal tissues after light irradiation produced these two photoproducts, which
reacted with a microsomal fraction (S9) of the skin. A metabolite from MP-3OH,
not PHBA, caused distinct DNA damage in the in vitro assay. This active
metabolite was identified as protocatechuic acid, a hydrolyzed MP-3OH product.
In addition, NADH, a cellular reductant, enhanced DNA damage by approximately
five times. These results suggest that reactive oxygen species generated by the
redox cycle via metal ion and catechol autoxidation are participating in
oxidative DNA damage. This study reveals that MP might cause skin damage
involving carcinogenesis through the combined activation of sunlight irradiation
and skin esterases.
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