Ahmed Umair, Chang Yao-Chuan, Zafeiropoulos Stefanos, Nassrallah Zeinab, Miller Larry, Zanos Stavros
Institute of Bioelectronic Medicine, Feinstein Institutes for Medical Research, Manhasset, New York, USA.
Donald and Barbara Zucker School of Medicine at Hofstra/Northwell, Hempstead, New York, USA.
Bioelectron Med. 2022 May 30;8(1):9. doi: 10.1186/s42234-022-00091-1.
The vagus nerve is involved in the autonomic regulation of physiological homeostasis, through vast innervation of cervical, thoracic and abdominal visceral organs. Stimulation of the vagus with bioelectronic devices represents a therapeutic opportunity for several disorders implicating the autonomic nervous system and affecting different organs. During clinical translation, vagus stimulation therapies may benefit from a precision medicine approach, in which stimulation accommodates individual variability due to nerve anatomy, nerve-electrode interface or disease state and aims at eliciting therapeutic effects in targeted organs, while minimally affecting non-targeted organs. In this review, we discuss the anatomical and physiological basis for precision neuromodulation of the vagus at the level of nerve fibers, fascicles, branches and innervated organs. We then discuss different strategies for precision vagus neuromodulation, including fascicle- or fiber-selective cervical vagus nerve stimulation, stimulation of vagal branches near the end-organs, and ultrasound stimulation of vagus terminals at the end-organs themselves. Finally, we summarize targets for vagus neuromodulation in neurological, cardiovascular and gastrointestinal disorders and suggest potential precision neuromodulation strategies that could form the basis for effective and safe therapies.
迷走神经通过对颈、胸和腹部内脏器官的广泛支配,参与生理稳态的自主调节。使用生物电子设备刺激迷走神经为多种涉及自主神经系统并影响不同器官的疾病提供了一种治疗机会。在临床转化过程中,迷走神经刺激疗法可能受益于精准医学方法,即刺激能够适应因神经解剖结构、神经-电极界面或疾病状态引起的个体差异,并旨在在目标器官中引发治疗效果,同时对非目标器官的影响最小。在这篇综述中,我们讨论了在神经纤维、束、分支和受支配器官水平上对迷走神经进行精准神经调节的解剖学和生理学基础。然后,我们讨论了精准迷走神经调节的不同策略,包括选择性刺激颈迷走神经束或纤维、刺激终末器官附近的迷走神经分支以及在终末器官自身处对迷走神经末梢进行超声刺激。最后,我们总结了迷走神经调节在神经、心血管和胃肠道疾病中的靶点,并提出了可能构成有效和安全治疗基础的潜在精准神经调节策略。