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超声辅助微泡经圆窗膜帮助内耳递药。

Ultrasound-aided microbubbles facilitate the delivery of drugs to the inner ear via the round window membrane.

机构信息

Graduate Institute of Medical Sciences, National Defense Medical Center, Taipei, Taiwan, ROC.

出版信息

J Control Release. 2013 Apr 28;167(2):167-74. doi: 10.1016/j.jconrel.2013.01.028. Epub 2013 Feb 4.

Abstract

The round window membrane (RWM) acts as a barrier between the middle ear and cochlea and can serve as a crucial route for therapeutic medications entering the inner ear via middle ear applications. In this study, we targeted the practical application of microbubbles (MBs) ultrasound on increasing the RWM permeability for facilitating drug or medication delivery to the inner ear. Using biotin-fluorescein isothiocyanate conjugates (biotin-FITC) as delivery agents and guinea pig animal models, we showed that MB ultrasound exposure can improve the inner ear system use of biotin-FITC delivery via the RWM by approximately 3.5 to 38 times that of solely soaking biotin-FITC around the RWM for spontaneous diffusion. We also showed that there was significant enhancement of hair cell uptake of gentamicin in animals whose tympanic bullas were soaked with MB-mixed gentamicin-Texas Red or gentamicin and exposed to ultrasound. Furthermore, increased permeability of the RWM from acoustic cavitation of MBs could also be visualized immediately following ultrasound exposure by using Alexa Fluor 488-conjugated phalloidin as a tracer. Most importantly, such applications had no resulting damage to the integrity of the RWM or deterioration of the hearing thresholds assessed by auditory brainstem responses. We herein provide a basis for MB ultrasound-mediated techniques with therapeutic medication delivery to the inner ear for future application in humans.

摘要

圆窗膜 (RWM) 作为中耳和耳蜗之间的屏障,可以作为通过中耳应用将治疗药物递送入内耳的重要途径。在这项研究中,我们针对微泡 (MB) 超声增加 RWM 通透性以促进药物或药物递送至内耳的实际应用。使用生物素-荧光素异硫氰酸酯缀合物 (biotin-FITC) 作为递送剂和豚鼠动物模型,我们表明,MB 超声暴露可以通过 RWM 将生物素-FITC 的内耳系统利用率提高约 3.5 至 38 倍,而仅将生物素-FITC 浸泡在 RWM 周围进行自发扩散。我们还表明,在用 MB 混合庆大霉素-Texas Red 或庆大霉素浸泡的动物的鼓室内,毛细胞摄取庆大霉素的能力显著增强,并暴露于超声下。此外,MB 空化的 RWM 通透性增加也可以通过使用 Alexa Fluor 488 缀合的鬼笔环肽作为示踪剂在超声暴露后立即可视化。最重要的是,这种应用对内耳的圆窗膜完整性或听觉脑干反应评估的听力阈值没有造成任何损害。我们在此为 MB 超声介导的技术提供了基础,用于向内耳输送治疗药物,以便将来在人类中应用。

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