Barth Stephan W, Lehner Martin D, Dietz Gunnar P H, Schulze Holger
Department of Global Medical Affairs, Dr. Willmar Schwabe GmbH & Co. KG, Karlsruhe, Germany.
Department of Preclinical Research & Development, Dr. Willmar Schwabe GmbH & Co. KG, Karlsruhe, Germany.
Mol Cell Neurosci. 2021 Oct;116:103669. doi: 10.1016/j.mcn.2021.103669. Epub 2021 Sep 22.
Tinnitus is defined as the perception of sound in the absence of external acoustic stimuli. Frequent comorbidities or associated factors are depression, anxiety, concentration problems, insomnia, resignation, helplessness, headache, bruxism, or social isolation, just to name a few. Although many therapeutic approaches have already been tested with varying success, there still is no cure available for tinnitus. The search for an effective treatment has been hampered by the fact that the mechanisms of tinnitus development are still not fully understood, although several models are available and discussed in this review. Our review will give a brief overview about preclinical models, presenting the heterogeneity of tinnitus sub-types depending on the different inner ear and brain structures involved in tinnitus etiology and pathogenesis. Based on these models we introduce the different target structures and transmitter systems implicated in tinnitus development and provide an extensive overview on preclinical drug-based therapeutic approaches that have been explored in various animal models. As the special extract from Ginkgo biloba leaves EGb 761® has been the most widely tested drug in both non-clinical tinnitus models as well as in clinical trials, a special focus will be given to EGb 761®. The efficacy of terpene lactones, flavone glycosides and proanthocyanidines with their distinct contribution to the overall efficacy profile of the multi-constituent drug EGb 761® will be discussed.
耳鸣被定义为在没有外部声刺激时对声音的感知。常见的合并症或相关因素包括抑郁、焦虑、注意力不集中、失眠、顺从、无助、头痛、磨牙症或社交孤立等,仅举几例。尽管已经测试了许多治疗方法,取得了不同程度的成功,但耳鸣仍然无法治愈。尽管在本综述中讨论了几种模型,但耳鸣发生机制仍未完全了解,这一事实阻碍了寻找有效治疗方法的进程。我们的综述将简要概述临床前模型,根据耳鸣病因和发病机制中涉及的不同内耳和脑结构,展示耳鸣亚型的异质性。基于这些模型,我们介绍了与耳鸣发生相关的不同靶结构和递质系统,并对在各种动物模型中探索的基于药物的临床前治疗方法进行了广泛概述。由于银杏叶特殊提取物EGb 761®在非临床耳鸣模型和临床试验中都是测试最广泛的药物,因此将特别关注EGb 761®。将讨论萜类内酯、黄酮苷和原花青素对多成分药物EGb 761®整体疗效的不同贡献及其疗效。