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脂多糖通过 TNF 信号通路呈剂量依赖性减少豚鼠动物模型中的耳蜗血流。

Lipopolysaccharide decreases cochlear blood flow dose dependently in a guinea pig animal model via TNF signaling.

机构信息

Department of Otorhinolaryngology, Head and Neck Surgery, Ludwig-Maximilians-University of Munich, Munich, Germany.

Walter Brendel Centre of Experimental Medicine, University of Munich Hospital, Munich, Germany.

出版信息

Microcirculation. 2021 May;28(4):e12681. doi: 10.1111/micc.12681. Epub 2021 Feb 14.

Abstract

OBJECTIVE

To evaluate the effect of Lipopolysaccharide (LPS), a bacterial endotoxin on cochlear microcirculation, and its mode of action.

METHODS

Twenty-five Dunkin-Hartley guinea pigs were divided into five groups of five animals each. After surgical preparation, cochlear microcirculation was quantified by in vivo fluorescence microscopy. Placebo or LPS (1 mg, 10 µg, and 100 ng) was applied topically, and microcirculation was measured before and twice after application. A fifth group was pretreated with etanercept, a tumor necrosis factor (TNF) antagonist, and afterward the lowest LPS concentrations that yielded significant results (10 µg) were applied.

RESULTS

In the groups that had been treated with 1 mg and 10 µg LPS, a significant drop in cochlear microcirculation was observed after 30 (.791 ± .089 Arbitrary Units (AU), compared to baseline, and .888 ± .071AU) and 60 (.756 ± .101 AU and .817 ± .124 AU, respectively) minutes. The groups that had been treated with 100 ng LPS and that had been pretreated with etanercept showed no significant change in cochlear blood flow compared to placebo.

CONCLUSION

Lipopolysaccharide shows a dose-dependent effect on cochlear microcirculation; this effect can already be observed after 30 min. Pretreatment with etanercept can abrogate this effect, indicating that TNF mediates the effect of LPS on cochlear microcirculation.

摘要

目的

评估脂多糖(LPS),一种细菌内毒素对耳蜗微循环的影响及其作用方式。

方法

将 25 只 Dunkin-Hartley 豚鼠分为五组,每组 5 只。经过手术准备后,通过活体荧光显微镜定量测量耳蜗微循环。局部应用安慰剂或 LPS(1mg、10μg 和 100ng),并在应用前和应用后两次测量微循环。第五组预先用依那西普(一种肿瘤坏死因子(TNF)拮抗剂)处理,然后应用产生显著结果的最低 LPS 浓度(10μg)。

结果

在接受 1mg 和 10μg LPS 治疗的组中,耳蜗微循环在 30 分钟(0.791±0.089 个任意单位(AU),与基线相比,和 0.888±0.071AU)和 60 分钟(0.756±0.101 AU 和 0.817±0.124 AU)后观察到明显下降。接受 100ng LPS 治疗的组和接受依那西普预处理的组与安慰剂相比,耳蜗血流无明显变化。

结论

脂多糖对耳蜗微循环有剂量依赖性影响;这种作用在 30 分钟后即可观察到。依那西普预处理可阻断这种作用,表明 TNF 介导了 LPS 对耳蜗微循环的影响。

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