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二氟甲基鸟氨酸及其对映体的耳毒性特征

Characterization of the ototoxicity of difluoromethylornithine and its enantiomers.

作者信息

McWilliams M L, Chen G D, Fechter L D

机构信息

University of Oklahoma, Health Sciences Center, College of Pharmacy, 1110 N. Stonewall, Oklahoma City, Oklahoma 73190, USA.

出版信息

Toxicol Sci. 2000 Jul;56(1):124-32. doi: 10.1093/toxsci/56.1.124.

Abstract

Difluoromethylornithine (DFMO) is an irreversible inhibitor of ornithine decarboxylase (ODC), the essential enzyme in mammalian polyamine biosynthesis (Pasic et al., 1997, Arch. Otolaryngol. Head Neck Surg. 123[12], 1281-1286). This cancer chemotherapeutic agent has significant ototoxic potential. Because the DFMO enantiomers differ in their ability to block ODC, the present study was designed to compare the ototoxic potential of each enantiomer with the racemic form of this drug for the rat and guinea pig. Determining differential ototoxicity of the enantiomers is one preliminary step in determining the optimal form of DFMO to use in human cancer chemotherapy. Daily intubation with D,L-DFMO does not produce any auditory dysfunction in rats with doses between 200 mg/kg/day and 1. 2 g/kg/day for up to 8 weeks, despite the fact that doses of 800 and 1200 mg/kg/day depressed body weight gain. In contrast to the data observed in rats, substantial ototoxicity was observed when guinea pigs were injected ip with doses of D,L-DFMO between 500 mg/kg/day and 1 g/kg/day. D,L-DFMO produced loss of compound action potential sensitivity, but not of cochlear microphonic amplitude. This finding correlated with histological data revealing loss of both outer and inner hair cells in the cochlea with inner more affected than outer hair cells, particularly in the basal turn. Higher exposure doses (2-3 g/kg/day) resulted in significant general toxicity including impaired growth and some mortality. When the enantiomers were evaluated in the guinea pig, it was found that 1 g/kg/day D-DFMO did not produce any significant hearing impairment, whereas 1 g/kg/day of the L-enantiomer of DFMO generated a threshold shift that surpassed that of 1 g/kg/day of the D,L-DFMO treatment.

摘要

二氟甲基鸟氨酸(DFMO)是鸟氨酸脱羧酶(ODC)的不可逆抑制剂,ODC是哺乳动物多胺生物合成中的关键酶(帕西克等人,1997年,《耳鼻喉科头颈外科文献》123[12],1281 - 1286)。这种癌症化疗药物具有显著的耳毒性潜力。由于DFMO对映体在阻断ODC的能力上存在差异,本研究旨在比较每种对映体与该药物外消旋形式对大鼠和豚鼠的耳毒性潜力。确定对映体的差异耳毒性是确定用于人类癌症化疗的DFMO最佳形式的初步步骤之一。每天给大鼠经口插管给予200毫克/千克/天至1.2克/千克/天剂量的消旋DFMO,持续8周,未产生任何听觉功能障碍,尽管800和1200毫克/千克/天的剂量会抑制体重增加。与在大鼠中观察到的数据相反,当豚鼠腹腔注射500毫克/千克/天至1克/千克/天剂量的消旋DFMO时,观察到了明显的耳毒性。消旋DFMO导致复合动作电位敏感性丧失,但未导致耳蜗微音电位幅度丧失。这一发现与组织学数据相关,该数据显示耳蜗中外毛细胞和内毛细胞均有损失,内毛细胞比外毛细胞受影响更严重,特别是在基底转。更高的暴露剂量(2 - 3克/千克/天)导致显著的全身毒性,包括生长受损和一些死亡。当在豚鼠中评估对映体时,发现1克/千克/天的D - DFMO未产生任何显著的听力损害,而1克/千克/天的DFMO的L - 对映体产生的阈值偏移超过了1克/千克/天的消旋DFMO治疗产生的阈值偏移。

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