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甲氟喹会损害器官型培养中的前庭毛细胞。

Mefloquine damage vestibular hair cells in organotypic cultures.

机构信息

Center for Hearing and Deafness, State University of New York at Buffalo, 137 Cary Hall, Buffalo, NY 14214, USA.

出版信息

Neurotox Res. 2011 Jul;20(1):51-8. doi: 10.1007/s12640-010-9221-z. Epub 2010 Sep 22.

Abstract

Mefloquine is an effective and widely used anti-malarial drug; however, some clinical reports suggest that it can cause dizziness, balance, and vestibular disturbances. To determine if mefloquine might be toxic to the vestibular system, we applied mefloquine to organotypic cultures of the macula of the utricle from postnatal day 3 rats. The macula of the utricle was micro-dissected out as a flat surface preparation and cultured with 10, 50, 100, or 200 μM mefloquine for 24 h. Specimens were stained with TRITC-conjugated phalloidin to label the actin in hair cell stereocilia and TO-PRO-3 to visualize cell nuclei. Some utricles were also labeled with fluorogenic caspase-3, -8, or -9 indicators to evaluate the mechanism of programmed cell death. Mefloquine treatment caused a dose-dependent loss of utricular hair cells. Treatment with 10 μM caused a slight reduction, 50 μM caused a significant reduction, and 200 μM destroyed nearly all the hair cells. Hair cell nuclei in mefloquine-treated utricles were condensed and fragmented, morphological features of apoptosis. Mefloquine-treated utricles were positive for the extrinsic initiator caspase-8 and intrinsic initiator caspase-9 and downstream executioner caspase-3. These results indicate that mefloquine can induce significant hair cell degeneration in the postnatal rat utricle and that mefloquine-induced hair cell death is initiated by both caspase-8 and caspase-9.

摘要

盐酸甲氟喹是一种有效的、广泛使用的抗疟药物;然而,一些临床报告表明它可能会引起头晕、平衡和前庭功能障碍。为了确定盐酸甲氟喹是否对前庭系统有毒性,我们将盐酸甲氟喹应用于出生后 3 天大鼠的耳石器前庭斑的器官型培养物中。耳石器前庭斑被微分离为平面准备物,并在 10、50、100 或 200 μM 的盐酸甲氟喹中培养 24 小时。标本用 TRITC 标记的鬼笔环肽标记毛细胞静纤毛中的肌动蛋白,并用 TO-PRO-3 可视化细胞核。一些耳石器也用荧光 caspase-3、-8 或 -9 指示剂标记,以评估程序性细胞死亡的机制。盐酸甲氟喹处理导致前庭毛细胞呈剂量依赖性丧失。10 μM 处理导致轻微减少,50 μM 处理导致显著减少,200 μM 处理几乎破坏了所有的毛细胞。盐酸甲氟喹处理的耳石器中的毛细胞细胞核浓缩和碎片化,这是细胞凋亡的形态特征。盐酸甲氟喹处理的耳石器中,外源性起始 caspase-8 和内源性起始 caspase-9 以及下游执行 caspase-3 呈阳性。这些结果表明,盐酸甲氟喹可以诱导新生大鼠前庭中显著的毛细胞退化,并且盐酸甲氟喹诱导的毛细胞死亡是由 caspase-8 和 caspase-9 共同启动的。

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