The BioRobotics Institute and Department of Excellence in Robotics & AI, The BioRobotics Institute, Scuola Superiore Sant'Anna, Pisa, Italy.
Bertarelli Foundation Chair in Translational NeuroEngineering, Centre for Neuroprosthetics and Institute of Bioengineering, École Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.
J Neural Eng. 2021 Mar 17;18(4). doi: 10.1088/1741-2552/abe6b9.
Bioelectronic medicine (BM) is an emerging new approach for developing novel neuromodulation therapies for pathologies that have been previously treated with pharmacological approaches. In this review, we will focus on the neuromodulation of autonomic nervous system (ANS) activity with implantable devices, a field of BM that has already demonstrated the ability to treat a variety of conditions, from inflammation to metabolic and cognitive disorders. Recent discoveries about immune responses to ANS stimulation are the laying foundation for a new field holding great potential for medical advancement and therapies and involving an increasing number of research groups around the world, with funding from international public agencies and private investors. Here, we summarize the current achievements and future perspectives for clinical applications of neural decoding and stimulation of the ANS. First, we present the main clinical results achieved so far by different BM approaches and discuss the challenges encountered in fully exploiting the potential of neuromodulatory strategies. Then, we present current preclinical studies aimed at overcoming the present limitations by looking for optimal anatomical targets, developing novel neural interface technology, and conceiving more efficient signal processing strategies. Finally, we explore the prospects for translating these advancements into clinical practice.
生物电子医学(BM)是一种新兴的方法,用于开发针对以前用药物治疗的疾病的新型神经调节疗法。在这篇综述中,我们将重点介绍使用植入式设备对自主神经系统(ANS)活动进行神经调节,这是 BM 的一个领域,已经证明能够治疗多种疾病,从炎症到代谢和认知障碍。最近关于对 ANS 刺激的免疫反应的发现为一个新的领域奠定了基础,该领域具有很大的医学进步和治疗潜力,吸引了来自世界各地的越来越多的研究小组,得到了国际公共机构和私人投资者的资金支持。在这里,我们总结了目前用于 ANS 神经解码和刺激的临床应用的主要成果和未来展望。首先,我们介绍了不同 BM 方法迄今为止取得的主要临床成果,并讨论了充分利用神经调节策略潜力所遇到的挑战。然后,我们介绍了目前的临床前研究,旨在通过寻找最佳的解剖靶点、开发新型神经接口技术和构思更有效的信号处理策略来克服当前的局限性。最后,我们探讨了将这些进展转化为临床实践的前景。