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Azithromycin Kills Invasive Aggregatibacter actinomycetemcomitans in Gingival Epithelial Cells

机译:阿奇霉素杀死牙龈上皮细胞中侵袭性聚集的放线菌放线菌

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摘要

Aggregatibacter actinomycetemcomitans invades periodontal pocket epithelium and is therefore difficult to eliminate by periodontal scaling and root planing. It is susceptible to azithromycin, which is taken up by many types of mammalian cells. This led us to hypothesize that azithromycin accumulation by gingival epithelium could enhance the killing of intraepithelial A. actinomycetemcomitans. [3H]azithromycin transport by Smulow-Glickman gingival epithelial cells and SCC-25 oral epithelial cells was characterized. To test our hypothesis, we infected cultured Smulow-Glickman cell monolayers with A. actinomycetemcomitans (Y4 or SUNY 465 strain) for 2 h, treated them with gentamicin to eliminate extracellular bacteria, and then incubated them with azithromycin for 1 to 4 h. Viable intracellular bacteria were released, plated, and enumerated. Azithromycin transport by both cell lines exhibited Michaelis-Menten kinetics and was competitively inhibited by l-carnitine and several other organic cations. Cell incubation in medium containing 5 μg/ml azithromycin yielded steady-state intracellular concentrations of 144 μg/ml in SCC-25 cells and 118 μg/ml in Smulow-Glickman cells. Azithromycin induced dose- and time-dependent intraepithelial killing of both A. actinomycetemcomitans strains. Treatment of infected Smulow-Glickman cells with 0.125 μg/ml azithromycin killed approximately 29% of the intraepithelial CFU of both strains within 4 h, while treatment with 8 μg/ml azithromycin killed ≥82% of the CFU of both strains (P < 0.05). Addition of carnitine inhibited the killing of intracellular bacteria by azithromycin (P < 0.05). Thus, human gingival epithelial cells actively accumulate azithromycin through a transport system that facilitates the killing of intraepithelial A. actinomycetemcomitans and is shared with organic cations.
机译:放线杆菌聚合酶侵袭牙周袋上皮,因此很难通过牙周结垢和根部清除消除。它对阿奇霉素敏感,阿奇霉素被许多类型的哺乳动物细胞吸收。这使我们假设牙龈上皮积累阿奇霉素可以增强对上皮内放线放线杆菌的杀伤。表征了[ 3 H]阿奇霉素通过Smulow-Glickman牙龈上皮细胞和SCC-25口腔上皮细胞的转运。为了检验我们的假设,我们用放线放线杆菌(Y4或SUNY 465菌株)感染培养的Smulow-Glickman细胞单层2 h,用庆大霉素处理以消除细胞外细菌,然后将它们与阿奇霉素孵育1至4 h。释放,铺板并计数活的细胞内细菌。两种细胞系对阿奇霉素的转运均表现出Michaelis-Menten动力学,并且被左旋肉碱和其他几种有机阳离子竞争性抑制。在含有5μg/ ml阿奇霉素的培养基中进行细胞孵育,在SCC-25细胞中的稳态细胞内浓度为144μg/ ml,在Smulow-Glickman细胞中的稳态细胞内浓度为118μg/ ml。阿奇霉素诱导两种放线放线杆菌菌株的剂量和时间依赖性上皮内杀伤。用0.125μg/ ml阿奇霉素处理感染的Smulow-Glickman细胞在4小时内杀死了这两种菌株的约29%的上皮内CFU,而用8μg/ ml阿奇霉素处理则杀死了两种菌株的≥82%(P <0.05 )。添加肉碱可抑制阿奇霉素杀死细胞内细菌(P <0.05)。因此,人牙龈上皮细胞通过运输系统活跃地积累阿奇霉素,该运输系统促进杀死上皮内放线放线杆菌并与有机阳离子共享。

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