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首页> 外文期刊>Frontiers in Cellular Neuroscience >Natural Bizbenzoquinoline Derivatives Protect Zebrafish Lateral Line Sensory Hair Cells from Aminoglycoside Toxicity
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Natural Bizbenzoquinoline Derivatives Protect Zebrafish Lateral Line Sensory Hair Cells from Aminoglycoside Toxicity

机译:天然Bizbenzoquinoline衍生物保护斑马鱼侧线感觉毛细胞免受氨基糖苷毒性。

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摘要

Moderate to severe hearing loss affects 360 million people worldwide and most often results from damage to sensory hair cells. Hair cell damage can result from aging, genetic mutations, excess noise exposure, and certain medications including aminoglycoside antibiotics. Aminoglycosides are effective at treating infections associated with cystic fibrosis and other life-threatening conditions such as sepsis, but cause hearing loss in 20–30% of patients. It is therefore imperative to develop new therapies to combat hearing loss and allow safe use of these potent antibiotics. We approach this drug discovery question using the larval zebrafish lateral line because zebrafish hair cells are structurally and functionally similar to mammalian inner ear hair cells and respond similarly to toxins. We screened a library of 502 natural compounds in order to identify novel hair cell protectants. Our screen identified four bisbenzylisoquinoline derivatives: berbamine, E6 berbamine, hernandezine, and isotetrandrine, each of which robustly protected hair cells from aminoglycoside-induced damage. Using fluorescence microscopy and electrophysiology, we demonstrated that the natural compounds confer protection by reducing antibiotic uptake into hair cells and showed that hair cells remain functional during and after incubation in E6 berbamine. We also determined that these natural compounds do not reduce antibiotic efficacy. Together, these natural compounds represent a novel source of possible otoprotective drugs that may offer therapeutic options for patients receiving aminoglycoside treatment.
机译:中度至重度听力损失影响全世界3.6亿人,最常见的原因是感觉毛细胞受损。头发细胞受损可能是由于衰老,基因突变,过多的噪音暴露以及某些药物(包括氨基糖苷类抗生素)引起的。氨基糖苷类药物可有效治疗与囊性纤维化和其他危及生命的疾病如败血症相关的感染,但会导致20%至30%的患者听力下降。因此,必须开发新的疗法来对抗听力损失并允许安全使用这些有效的抗生素。我们使用幼虫斑马鱼侧线来解决这个药物发现问题,因为斑马鱼的毛细胞在结构和功能上与哺乳动物的内耳毛细胞相似,并且对毒素的反应也相似。我们筛选了502种天然化合物的文库,以鉴定新型毛细胞保护剂。我们的屏幕确定了四种双苄基异喹啉衍生物:贝巴明,E6贝巴明,hernandezine和异粉防己碱,每种衍生物都能强有力地保护毛发细胞免受氨基糖苷诱导的伤害。使用荧光显微镜和电生理学,我们证明了天然化合物可通过减少抗生素吸收进入毛细胞而赋予保护作用,并表明在E6贝巴明中孵育期间和之后,毛细胞仍保持功能。我们还确定这些天然化合物不会降低抗生素功效。这些天然化合物共同代表了可能的耳保护药物的新来源,这些药物可能为接受氨基糖苷治疗的患者提供治疗选择。

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