Laboratory for Soft Bioelectronics Interface, Institute of Microengineering, Institute of Bioengineering, Centre for Neuroprosthetics, Ecole Polytechnique Fédérale de Lausanne (EPFL), Geneva, Switzerland.
Department of Neurobiology, Harvard Medical School, Boston, MA, USA.
Nat Biotechnol. 2021 Feb;39(2):179-185. doi: 10.1038/s41587-020-0673-2. Epub 2020 Sep 21.
Activation of nociceptor sensory neurons by noxious stimuli both triggers pain and increases capillary permeability and blood flow to produce neurogenic inflammation, but whether nociceptors also interact with the immune system remains poorly understood. Here we report a neurotechnology for selective epineural optogenetic neuromodulation of nociceptors and demonstrate that nociceptor activation drives both protective pain behavior and inflammation. The wireless optoelectronic system consists of sub-millimeter-scale light-emitting diodes embedded in a soft, circumneural sciatic nerve implant, powered and driven by a miniaturized head-mounted control unit. Photostimulation of axons in freely moving mice that express channelrhodopsin only in nociceptors resulted in behaviors characteristic of pain, reflecting orthodromic input to the spinal cord. It also led to immune reactions in the skin in the absence of inflammation and potentiation of established inflammation, a consequence of the antidromic activation of nociceptor peripheral terminals. These results reveal a link between nociceptors and immune cells, which might have implications for the treatment of inflammation.
伤害性刺激激活伤害感受器感觉神经元,不仅会引发疼痛,还会增加毛细血管通透性和血流,从而产生神经源性炎症,但伤害感受器是否与免疫系统相互作用仍知之甚少。本文报道了一种用于选择性神经外膜光遗传神经调节的神经技术,并证实伤害感受器的激活会引发保护性疼痛行为和炎症。该无线光电系统由毫米级发光二极管组成,嵌入在柔软的、环绕神经的坐骨神经植入物中,由小型头戴式控制单元供电和驱动。在自由活动的小鼠中,对仅在伤害感受器中表达通道视紫红质的轴突进行光刺激,会引发疼痛行为,这反映了对脊髓的顺行输入。它还会导致皮肤出现免疫反应,而不会引发炎症,并且会增强已建立的炎症,这是伤害感受器外周末端逆行激活的结果。这些结果揭示了伤害感受器和免疫细胞之间的联系,这可能对炎症的治疗有影响。