| Literature DB >> 33972441 |
Matteo Donegà1, Cathrine T Fjordbakk2, Joseph Kirk2, David M Sokal3, Isha Gupta3, Gerald E Hunsberger3, Abbe Crawford2, Simon Cook2, Jaime Viscasillas2, Thaleia-Rengina Stathopoulou2, Jason A Miranda3, Wesley J Dopson3, David Goodwin2, Alison Rowles4, Paul McGill5, Alex McSloy2, Dirk Werling6, Jason Witherington3, Daniel J Chew3, Justin D Perkins7.
Abstract
Neuromodulation of immune function by stimulating the autonomic connections to the spleen has been demonstrated in rodent models. Consequently, neuroimmune modulation has been proposed as a new therapeutic strategy for the treatment of inflammatory conditions. However, demonstration of the translation of these immunomodulatory mechanisms in anatomically and physiologically relevant models is still lacking. Additionally, translational models are required to identify stimulation parameters that can be transferred to clinical applications of bioelectronic medicines. Here, we performed neuroanatomical and functional comparison of the mouse, rat, pig, and human splenic nerve using in vivo and ex vivo preparations. The pig was identified as a more suitable model of the human splenic innervation. Using functional electrophysiology, we developed a clinically relevant marker of splenic nerve engagement through stimulation-dependent reversible reduction in local blood flow. Translation of immunomodulatory mechanisms were then assessed using pig splenocytes and two models of acute inflammation in anesthetized pigs. The pig splenic nerve was shown to locally release noradrenaline upon stimulation, which was able to modulate cytokine production by pig splenocytes. Splenic nerve stimulation was found to promote cardiovascular protection as well as cytokine modulation in a high- and a low-dose lipopolysaccharide model, respectively. Importantly, splenic nerve-induced cytokine modulation was reproduced by stimulating the efferent trunk of the cervical vagus nerve. This work demonstrates that immune responses can be modulated by stimulation of spleen-targeted autonomic nerves in translational species and identifies splenic nerve stimulation parameters and biomarkers that are directly applicable to humans due to anatomical and electrophysiological similarities.Entities:
Keywords: immunomodulation; neuromodulation; splenic nerve; vagus nerve
Year: 2021 PMID: 33972441 DOI: 10.1073/pnas.2025428118
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205