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首页> 外文期刊>Archives of Toxicology >Ceramide/sphingomyelin cycle involvement in gentamicin-induced cochlear hair cell death
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Ceramide/sphingomyelin cycle involvement in gentamicin-induced cochlear hair cell death

机译:神经酰胺/鞘磷脂循环参与庆大霉素诱导的耳蜗毛细胞死亡

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Ceramide, a sphingolipid metabolite, regulates diverse cellular processes including apoptosis, cell senescence, the cell cycle, and cellular differentiation. Exogenously administered ceramide reportedly increased cochlear hair cell death due to gentamicin-induced ototoxicity. Ceramide is mainly generated via a ceramide/sphingomyelin cycle by sphingomyelinase and sphingomyelin synthase or via de novo synthesis by serine palmitoyltransferase and ceramide synthase. This study was designed to investigate the possible involvement of neutral sphingomyelinase, sphingomyelin synthase, or serine palmitoyltransferase in hair cell death due to gentamicin. The basal turns of the organ of Corti of Sprague-Dawley rats were dissected on postnatal days 3-5. Cochlear cultures were exposed to media containing 35 mu M gentamicin for 48 h to assess the effects of GW4869 (a neutral sphingomyelinase inhibitor), 2-hydroxyoleic acid (a sphingomyelin synthase activator), and myriocin (a serine palmitoyltransferase inhibitor). Hair cell loss was significantly decreased in the presence of GW4869 or 2-hydroxyoleic acid. Myriocin had no significant effects against gentamicin-induced hair cell loss. In addition, neutral sphingomyelinase was activated by gentamicin exposure. The present findings strongly suggest that the ceramide/sphingomyelin cycle plays an important role in the protection of hair cells against gentamicin-induced ototoxicity.
机译:神经酰胺,一种鞘脂代谢物,调节多种细胞过程,包括细胞凋亡,细胞衰老,细胞周期和细胞分化。据报道,由于庆大霉素诱导的耳毒性,外用神经酰胺可增加耳蜗毛细胞死亡。神经酰胺主要通过鞘磷脂酶和鞘磷脂合酶通过神经酰胺/鞘磷脂循环产生,或通过丝氨酸棕榈酰转移酶和神经酰胺合酶从头合成而产生。这项研究旨在调查中性鞘磷脂酶,鞘磷脂合酶或丝氨酸棕榈酰转移酶可能与庆大霉素导致的毛细胞死亡有关。在出生后第3-5天解剖Sprague-Dawley大鼠Corti器官的基底转弯。将耳蜗培养物暴露于含有35μM庆大霉素的培养基中48小时,以评估GW4869(中性鞘磷脂酶抑制剂),2-羟基油酸(鞘磷脂合酶激活剂)和myriocin(丝氨酸棕榈酰转移酶抑制剂)的作用。在GW4869或2-羟基油酸的存在下,毛细胞损失明显减少。 Myriocin对庆大霉素诱导的毛细胞丢失没有明显的作用。此外,庆大霉素暴露可激活中性鞘磷脂酶。本研究结果强烈表明,神经酰胺/鞘磷脂循环在保护毛细胞抵抗庆大霉素诱导的耳毒性中起重要作用。

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