No consistent evidence for the anti-inflammatory effect of vagus nerve stimulation in humans: A systematic review and meta-analysis

被引:6
作者
Schiweck, Carmen [1 ]
Sausmekat, Sonja [1 ]
Zhao, Tong [1 ]
Jacobsen, Leona [1 ]
Reif, Andreas [1 ]
Thanarajah, Sharmili Edwin [1 ,2 ]
机构
[1] Goethe Univ Frankfurt, Dept Psychiat Psychosomat & Psychotherapy, D-60054 Frankfurt, Germany
[2] Max Planck Inst Metab Res, Cologne, Germany
关键词
Vagus Nerve Stimulation; Cholinergic Anti-inflammatory Pathway; Inflammation; Vagal; Immune System; Cytokine; Tumour necrosis factor; Interleukins; Inflammatory Reflex; DOUBLE-BLIND; CYTOKINES; INFLAMMATION;
D O I
10.1016/j.bbi.2023.12.008
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Vagus nerve stimulation (VNS) has been identified as an innovative immunosuppressive treatment strategy in rodent studies. However, its' clinical potential is still unclear. Therefore, we aimed to assess whether VNS can reduce inflammatory proteins and/or immune cells in humans, through a pre-registered systematic review and meta-analysis according to PRISMA guidelines. The databases Cochrane, Pubmed and World of Knowledge were searched in duplicate up to the 3rd of March 2022 and publications from identified clinical trial registrations were identified until 20th of August 2023. Studies were included if they provided peer-reviewed data for humans who received VNS as short-term (<=1 day) or long-term (>=2 days-365 days) stimulation and reported at least one cytokine or immune cell after treatment. Screening of title, abstract, full text, and data extraction was performed in duplicate by two independent reviewers. Data were pooled using a random-effects model and metaregression was performed for moderating factors. Reporting bias was assessed. The standardized mean difference (Hedge's g) was used to indicate overall differences of cytokine data (mean and standard deviation or median and interquartile range at the study level) to test our a-priori hypothesis. The systematic review of 36 studies with 1135 participants (355 receiving a control/sham condition and 780 receiving VNS) revealed antiinflammatory effects of VNS for cytokines in several reports, albeit often in subgroup analyses, but our metaanalyses of 26 studies did not confirm these findings. Although most cytokines were numerically reduced, the reduction did not reach statistical significance after VNS: not in the between-group comparisons (short-term: TNF-alpha: g = -0.21, p = 0.359; IL-6: g = -0.94, p = 0.112; long-term: TNF-alpha: g = -0.13, p = 0.196; IL-6: g = -0.67, p = 0.306); nor in the within-study designs (short-term: TNF-alpha: g = -0.45, p = 0.630; IL-6: g = 0.28, p = 0.840; TNF-alpha: g = -0.53, p = 0.297; IL-6:g = -0.02, p = 0.954). Only the subgroup analysis of 4 long-term studies with acute inflammation was significant: VNS decreased CRP significantly more than sham stimulation. Additional subgroup analyses including stimulation duration, stimulation method (invasive/non-invasive), immune stimulation, and study quality did not alter results. However, heterogeneity was high, and most studies had poor to fair quality. Given the low number of studies for each disease, a disease-specific analysis was not possible. In conclusion, while numeric effects were reported in individual studies, the current evidence does not substantiate the claim that VNS impacts inflammatory cytokines in humans. However, it may be beneficial during acute inflammatory events. To assess its full potential, high-quality studies and technological advances are required.
引用
收藏
页码:237 / 258
页数:22
相关论文
共 75 条
  • [51] Acetylcholine-Synthesizing T Cells Relay Neural Signals in a Vagus Nerve Circuit
    Rosas-Ballina, Mauricio
    Olofsson, Peder S.
    Ochani, Mahendar
    Valdes-Ferrer, Sergio I.
    Levine, Yaakov A.
    Reardon, Colin
    Tusche, Michael W.
    Pavlov, Valentin A.
    Andersson, Ulf
    Chavan, Sangeeta
    Mak, Tak W.
    Tracey, Kevin J.
    [J]. SCIENCE, 2011, 334 (6052) : 98 - 101
  • [52] Transcutaneous Stimulation of Auricular Branch of the Vagus Nerve Attenuates the Acute Inflammatory Response After Lung Lobectomy
    Salama, Mohamed
    Akan, Ahmet
    Mueller, Michael Rolf
    [J]. WORLD JOURNAL OF SURGERY, 2020, 44 (09) : 3167 - 3174
  • [53] Percutaneous Auricular Vagus Nerve Stimulation Reduces Inflammation in Critical Covid-19 Patients
    Seitz, Tamara
    Szeles, Jozsef Constantin
    Kitzberger, Reinhard
    Holbik, Johannes
    Grieb, Alexander
    Wolf, Hermann
    Akyaman, Huseyin
    Lucny, Felix
    Tychera, Alexander
    Neuhold, Stephanie
    Zoufaly, Alexander
    Wenisch, Christoph
    Kaniusas, Eugenijus
    [J]. FRONTIERS IN PHYSIOLOGY, 2022, 13
  • [54] A 12-month pilot study outcomes of vagus nerve stimulation in Crohn's disease
    Sinniger, Valerie
    Pellissier, Sonia
    Fauvelle, Florence
    Trocm, Candice
    Hoffmann, Dominique
    Vercueil, Laurent
    Cracowski, Jean-Luc
    David, Olivier
    Bonaz, Bruno
    [J]. NEUROGASTROENTEROLOGY AND MOTILITY, 2020, 32 (10)
  • [55] Abdominal vagus nerve stimulation as a new therapeutic approach to prevent postoperative ileus
    Stakenborg, N.
    Wolthuis, A. M.
    Gomez-Pinilla, P. J.
    Farro, G.
    Di Giovangiulio, M.
    Bosmans, G.
    Labeeuw, E.
    Verhaegen, M.
    Depoortere, I.
    D'Hoore, A.
    Matteoli, G.
    Boeckxstaens, G. E.
    [J]. NEUROGASTROENTEROLOGY AND MOTILITY, 2017, 29 (09)
  • [56] Stavrakis S., 2017, Focus on neuromodulation of cardiac arrhytmias Low-Level Vagus Nerve Stimulation Suppresses Post-Operative Atrial Fibrillation and Inflammation A Randomized Study
  • [57] TREAT AF (Transcutaneous Electrical Vagus Nerve Stimulation to Suppress Atrial Fibrillation) A Randomized Clinical Trial
    Stavrakis, Stavros
    Stoner, Julie A.
    Humphrey, Mary Beth
    Morris, Lynsie
    Filiberti, Adrian
    Reynolds, Justin C.
    Elkholey, Khaled
    Javed, Isma
    Twidale, Nicholas
    Riha, Pavel
    Varahan, Subha
    Scherlag, Benjamin J.
    Jackman, Warren M.
    Dasari, Tarun W.
    Po, Sunny S.
    [J]. JACC-CLINICAL ELECTROPHYSIOLOGY, 2020, 6 (03) : 282 - 291
  • [58] Low-Level Transcutaneous Electrical Vagus Nerve Stimulation Suppresses Atrial Fibrillation
    Stavrakis, Stavros
    Humphrey, Mary Beth
    Scherlag, Benjamin J.
    Hu, Yanqing
    Jackman, Warren M.
    Nakagawa, Hiroshi
    Lockwood, Deborah
    Lazzara, Ralph
    Po, Sunny S.
    [J]. JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 2015, 65 (09) : 867 - 875
  • [59] Treatment of chronic migraine with transcutaneous stimulation of the auricular branch of the vagal nerve (auricular t-VNS): a randomized, monocentric clinical trial
    Straube, Andreas
    Ellrich, J.
    Eren, O.
    Blum, B.
    Ruscheweyh, R.
    [J]. JOURNAL OF HEADACHE AND PAIN, 2015, 16
  • [60] Vagus nerve stimulation activates two distinct neuroimmune circuits converging in the spleen to protect mice from kidney injury
    Tanaka, Shinji
    Abe, Chikara
    Abbott, Stephen B. G.
    Zheng, Shuqiu
    Yamaoka, Yusuke
    Lipsey, Jonathan E.
    Skrypnyk, Nataliya, I
    Yao, Junlan
    Inoue, Tsuyoshi
    Nash, William T.
    Stornetta, Daniel S.
    Rosin, Diane L.
    Stornetta, Ruth L.
    Guyenet, Patrice G.
    Okusa, Mark D.
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2021, 118 (12)