Go Yoon-Young, Ju Won-Min, Lee Chan-Mi, Chae Sung-Won, Song Jae-Jun
Department of Otorhinolaryngology-Head and Neck Surgery, Korea University Guro Hospital, 80 Guro-dong, Guro-gu, Seoul 08308, Korea.
Institute for Health Care Convergence Center, Korea University Guro Hospital, Seoul 08308, Korea.
Biomedicines. 2022 Jan 24;10(2):247. doi: 10.3390/biomedicines10020247.
Vagus nerve stimulation (VNS) is considered a potential method for anti-inflammation due to the involvement of the VN in the cholinergic anti-inflammatory pathway (CAP) formation of a connection between the central nervous system and peripheral immune cells that help relieve inflammation. However, whether a non-invasive transcutaneous auricular VNS (taVNS) modulates the inflammation levels via altering the parameter of taVNS is poorly understood. This study aimed to determine the differential inhibitory effects of taVNS on lipopolysaccharide (LPS)-induced systemic inflammation using electrical stimulation parameters such as pulse frequency and time. The taVNS-promoted CAP activity significantly recovered LPS-induced tissue injuries (lung, spleen, and intestine) and decreased inflammatory cytokine levels and tissue-infiltrated immune cells. Interestingly, the anti-inflammatory capacity of taVNS with 15 Hz was much higher than that of taVNS with 25 Hz. When a cytokine array was used to investigate the changes of inflammation and immune response-related cytokines/chemokines expression in taVNS with 15 Hz or 25 Hz treatment in LPS-induced endotoxemia in mice, most of the expression of cytokines/chemokines associated with pro-inflammation was severely decreased in taVNS with 15 Hz compared to 25 Hz. This study demonstrated that the taVNS parameter could differentially modulate the inflammation levels of animals, suggesting the importance of taVNS parameter selection for use in feasible interventions for acute inflammation treatment.
迷走神经刺激(VNS)被认为是一种潜在的抗炎方法,因为迷走神经参与了胆碱能抗炎通路(CAP)的形成,该通路在中枢神经系统和外周免疫细胞之间建立了联系,有助于减轻炎症。然而,非侵入性经皮耳迷走神经刺激(taVNS)是否通过改变taVNS参数来调节炎症水平,目前尚不清楚。本研究旨在利用脉冲频率和时间等电刺激参数,确定taVNS对脂多糖(LPS)诱导的全身炎症的不同抑制作用。taVNS促进的CAP活性显著恢复了LPS诱导的组织损伤(肺、脾和肠道),并降低了炎症细胞因子水平和组织浸润免疫细胞。有趣的是,15Hz的taVNS抗炎能力远高于25Hz的taVNS。当使用细胞因子阵列研究15Hz或25Hz taVNS处理的LPS诱导的小鼠内毒素血症中炎症和免疫反应相关细胞因子/趋化因子表达的变化时,与25Hz相比,15Hz taVNS中与促炎相关的细胞因子/趋化因子的大多数表达严重降低。本研究表明,taVNS参数可以不同程度地调节动物的炎症水平,这表明在急性炎症治疗的可行干预中,选择taVNS参数具有重要意义。