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耳蜗内给药装置在治疗内耳疾病中的作用。

The role of intracochlear drug delivery devices in the management of inner ear disease.

作者信息

Ayoob Andrew M, Borenstein Jeffrey T

机构信息

Harvard University , Cambridge, MA , USA.

出版信息

Expert Opin Drug Deliv. 2015 Mar;12(3):465-79. doi: 10.1517/17425247.2015.974548. Epub 2014 Oct 27.

DOI:10.1517/17425247.2015.974548
PMID:25347140
Abstract

INTRODUCTION

Diseases of the inner ear include those of the auditory and vestibular systems, and frequently result in disabling hearing loss or vertigo. Despite a rapidly expanding pipeline of potential cochlear therapeutics, the inner ear remains a challenging organ for targeted drug delivery, and new technologies are required to deliver these therapies in a safe and efficacious manner. In addition to traditional approaches for direct inner ear drug delivery, novel microfluidics-based systems are under development, promising improved control over pharmacokinetics over longer periods of delivery, ultimately with application towards hair cell regeneration in humans.

AREAS COVERED

Advances in the development of intracochlear drug delivery systems are reviewed, including passive systems, active microfluidic technologies and cochlear prosthesis-mediated delivery. This article provides a description of novel delivery systems and their potential future clinical applications in treating inner ear disease.

EXPERT OPINION

Recent progresses in microfluidics and miniaturization technologies are enabling the development of wearable and ultimately implantable drug delivery microsystems. Progress in this field is being spurred by the convergence of advances in molecular biology, microfluidic flow control systems and models for drug transport in the inner ear. These advances will herald a new generation of devices, with near-term applications in preclinical models, and ultimately with human clinical use for a range of diseases of the inner ear.

摘要

引言

内耳疾病包括听觉和前庭系统疾病,常导致致残性听力损失或眩晕。尽管潜在的耳蜗治疗方法不断涌现,但内耳仍是靶向药物递送的一个具有挑战性的器官,需要新技术以安全有效的方式递送这些疗法。除了传统的内耳直接给药方法外,基于微流控的新型系统正在开发中,有望在更长的给药期内改善药代动力学控制,最终应用于人类毛细胞再生。

涵盖领域

综述了耳蜗给药系统的发展进展,包括被动系统、主动微流控技术和耳蜗假体介导的递送。本文介绍了新型递送系统及其在治疗内耳疾病方面潜在的未来临床应用。

专家观点

微流控和小型化技术的最新进展推动了可穿戴并最终可植入的药物递送微系统的发展。分子生物学、微流控流量控制系统以及内耳药物转运模型等方面的进展共同促进了该领域的进步。这些进展将预示着新一代设备的出现,近期可应用于临床前模型,最终用于人类内耳一系列疾病的临床治疗。

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