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三氯生:体外对人牙龈细胞的细胞毒性、作用方式及凋亡诱导

Triclosan: cytotoxicity, mode of action, and induction of apoptosis in human gingival cells in vitro.

作者信息

Zuckerbraun H L, Babich H, May R, Sinensky M C

机构信息

Department of Biology, Stern College for Women, Yeshiva University, New York, NY 10016, USA.

出版信息

Eur J Oral Sci. 1998 Apr;106(2 Pt 1):628-36. doi: 10.1046/j.0909-8836.1998.eos106204.x.

Abstract

The in vitro cytotoxicology of triclosan, the active ingredient in some mouthrinses and dentifrices used in the prevention and treatment of gingivitis and plaque, was studied using the Smulow-Glickman (S-G) human gingival epithelial cell line. The 24 h midpoint cytotoxicity value was 0.05-0.06 mM triclosan as assessed with the neutral red (NR) assay. Triclosan is used in dentifrices in combination with either zinc citrate or sodium fluoride (NaF). The sequence of potencies of these test agents, as assessed with the NR assay, was triclosan>zinc citrate>>NaF; combinations of triclosan + zinc citrate and triclosan + NaF were additive in their toxicities. Damage to the integrity of the plasma membrane, as assessed by the leakage of lactic acid dehydrogenase during a 3-h exposure, was initially evident with 0.1 mM triclosan. When exposed to triclosan for 3 d, a lag in the growth kinetics of the S-G cells was first observed at 0.01 mM triclosan. A reduction in attachment of S-G cells to dentin chips, previously exposed to triclosan for 1 h, was noted at 0.25 mM triclosan and greater. Triclosan-induced cell death was apparently by apoptosis, as noted by fluorescence microscopy and DNA agarose gel electrophoresis of extracted oligonucleosomal fragments.

摘要

三氯生是一些用于预防和治疗牙龈炎及牙菌斑的漱口水和牙膏中的活性成分,利用斯穆洛 - 格利克曼(S - G)人牙龈上皮细胞系对其体外细胞毒性进行了研究。通过中性红(NR)试验评估,三氯生24小时的半数细胞毒性值为0.05 - 0.06 mM。三氯生在牙膏中与柠檬酸锌或氟化钠(NaF)联合使用。通过NR试验评估,这些受试剂的效力顺序为三氯生>柠檬酸锌>>NaF;三氯生 + 柠檬酸锌和三氯生 + NaF的组合在毒性上具有相加作用。通过3小时暴露期间乳酸脱氢酶的泄漏评估,细胞膜完整性的损伤在三氯生浓度为0.1 mM时最初明显可见。当S - G细胞暴露于三氯生3天时,在三氯生浓度为0.01 mM时首次观察到生长动力学出现滞后。在三氯生浓度为0.25 mM及更高时,注意到先前暴露于三氯生1小时的S - G细胞与牙本质片的附着减少。如通过荧光显微镜和提取的寡核小体片段的DNA琼脂糖凝胶电泳所观察到的,三氯生诱导的细胞死亡显然是通过凋亡实现的。

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