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卡铂诱导的选择性内毛细胞损伤

Induction of selective inner hair cell damage by carboplatin.

作者信息

Takeno S, Harrison R V, Mount R J, Wake M, Harada Y

机构信息

Department of Otolaryngology, Hospital for Sick Children, Toronto, Canada.

出版信息

Scanning Microsc. 1994 Mar;8(1):97-106.

PMID:7973504
Abstract

Carboplatin (diammine [1,1 cyclobutane dicarboxylato (2)-0,0'] platinum) is an anti-cancer agent which can be toxic to the inner ear. We have explored the nature of this ototoxicity in the chinchilla. In this species, initial degenerative changes appear to be restricted to the inner hair cell (IHC) regions of the organ of Corti. This finding is intriguing and unusual since all other known ototoxic drugs, such as aminoglycosides, are predominantly associated with outer hair cell damage. In the present study, the mechanism of ototoxicity was investigated by comparing two different routes of carboplatin administration. Carboplatin was administered either intravenously (i.v.) or intraperitoneally (i.p.). The mode of administration influenced electrophysiological and morphological changes. Hearing thresholds were elevated in the i.v. group significantly more than in the i.p. group at all tested frequencies. The degree of hair cell damage was evaluated by scanning electron microscopy at four frequency regions in each cochlea. IHC damage in the i.v. group was significantly more severe than in the i.p. group. Carboplatin effects on a different species, the guinea pig, were also determined to clarify interspecies differences. In the guinea pig, outer hair cell damage occurred sporadically and inner hair cells remained intact. In contrast, chinchilla inner hair cells are susceptible to the ototoxic effects of carboplatin. The degree of hair cell damage appears to be dependent on the peak level of carboplatin rather than on the total dose. This animal model provides a new tool for the investigation of inner and outer hair cell function.

摘要

卡铂(二氨[1,1 - 环丁烷二羧酸根合(2)-O,O']铂)是一种抗癌药物,可能对内耳有毒性。我们已经在毛丝鼠身上探究了这种耳毒性的本质。在这个物种中,最初的退行性变化似乎局限于柯蒂氏器的内毛细胞(IHC)区域。这一发现既有趣又不寻常,因为所有其他已知的耳毒性药物,如氨基糖苷类,主要与外毛细胞损伤有关。在本研究中,通过比较两种不同的卡铂给药途径来研究耳毒性的机制。卡铂通过静脉注射(i.v.)或腹腔注射(i.p.)给药。给药方式影响了电生理和形态学变化。在所有测试频率下,静脉注射组的听力阈值升高幅度明显大于腹腔注射组。通过扫描电子显微镜在每个耳蜗的四个频率区域评估毛细胞损伤程度。静脉注射组的内毛细胞损伤明显比腹腔注射组严重。还测定了卡铂对另一个物种豚鼠的影响,以阐明种间差异。在豚鼠中,外毛细胞损伤偶尔发生,内毛细胞保持完整。相比之下,毛丝鼠的内毛细胞对卡铂的耳毒性作用敏感。毛细胞损伤程度似乎取决于卡铂的峰值水平而非总剂量。这个动物模型为研究内毛细胞和外毛细胞功能提供了一个新工具。

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