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Advanced Ultrasound in Diagnosis and Therapy ›› 2022, Vol. 6 ›› Issue (4): 147-152.doi: 10.37015/AUDT.2022.200034

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  • 收稿日期:2022-09-01 修回日期:2022-09-22 接受日期:2022-10-06 出版日期:2022-12-30 发布日期:2022-10-25

Research Progress in Ultrasonic Regulation of Cholinergic Anti-inflammatory Pathway

Wuqi Zhou, MDa,b,c,1, Yishu Song, MDa,b,c,1, Rui Wang, MDa,b,c, Qiaofeng Jin, MDa,b,c, Mingxing Xie, PhDa,b,c, Li Zhang, PhDa,b,c,*()   

  1. a Department of Ultrasound Medicine, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China
    b Clinical Research Center for Medical Imaging in Hubei Province, Wuhan, China
    c Hubei Province Key Laboratory of Molecular Imaging, Wuhan, China
  • Received:2022-09-01 Revised:2022-09-22 Accepted:2022-10-06 Online:2022-12-30 Published:2022-10-25
  • Contact: Li Zhang, PhD E-mail:zli429@hust.edu.cn
  • About author:First author contact:1 Wuqi Zhou and Yishu Song contributed equally to this study.

Abstract:

The cholinergic anti-inflammatory pathway is a neuro-immune regulatory pathway that mediates anti-inflammatory effects based on the vagus nerve, acetylcholine and α7 nicotinic acetylcholine receptors. In recent years, the effect of nerve stimulation by ultrasound has attracted much attention and has been widely studied. Ultrasound can stimulate the vagus nerve or spleen nerve and activate the cholinergic anti-inflammatory pathway, exerting anti-inflammatory and organ protection effects, which is expected to provide a new treatment for many inflammatory diseases. The purpose of this review is to introduce the composition, mechanisms and regulation methods of cholinergic anti-inflammatory pathway, and discuss its therapeutic implications.

Key words: Ultrasound, Vagus nerve, The cholinergic anti-inflammatory pathway, α7 nicotinic acetylcholine receptors

[1] Tracey KJ. The inflammatory refle. Nature 2002; 420:853-859.
doi: 10.1038/nature01321
[2] Borovikova LV, Ivanova S, Zhang M, Yang H, Botchkina GI, Watkins LR, et al. Vagus nerve stimulation attenuates the systemic inflammatory response to endotoxi. Nature 2000; 405:458-462.
doi: 10.1038/35013070
[3] Charles EJ, Tian YK, Zhang A, Wu D, Mehaffey JH, Gigliotti JC, et al. ulsed ultrasound attenuates the hyperglycemic exacerbation of myocardial ischemia-reperfusion injur.. Journal of Thoracic and Cardiovascular Surgery. 2021; 161:E297-E306.
[4] Nunes NS, Chandran P, Sundby M, Visioli F, da Costa Goncalves F, Burks SR, et al. Therapeutic ultrasound attenuates DSS-induced colitis through the cholinergic anti-inflammatory pathwa. EBioMedicine 2019; 45:495-510.
doi: 10.1016/j.ebiom.2019.06.033
[5] Zachs DP, Offutt SJ, Graham RS, Kim Y, Mueller J, Auger JL, et al. Noninvasive ultrasound stimulation of the spleen to treat inflammatory arthriti. Nature Communications 2019; 10:951.
doi: 10.1038/s41467-019-08721-0
[6] Huston JM, Ochani M, Rosas-Ballina M, Liao H, Ochani K, Pavlov VA, et al. Splenectomy inactivates the cholinergic antiinflammatory pathway during lethal endotoxemia and polymicrobial sepsi. J Exp Med 2006; 203:1623-1628.
doi: 10.1084/jem.20052362 pmid: 16785311
[7] Bernik TR, Friedman SG, Ochani M, DiRaimo R, Ulloa L, Yang H, et al. Pharmacological stimulation of the cholinergic antiinflammatory pathwa. J Exp Med 2002; 195:781-788.
doi: 10.1084/jem.20011714
[8] Wang H, Yu M, Ochani M, Amella CA, Tanovic M, Susarla S, et al. Nicotinic acetylcholine receptor alpha7 subunit is an essential regulator of inflammatio. Nature 2003; 421:384-388.
doi: 10.1038/nature01339
[9] Guarini S, Altavilla D, Cainazzo MM, Giuliani D, Bigiani A, Marini H, et al. Efferent vagal fibre stimulation blunts nuclear factor-kappaB activation and protects against hypovolemic hemorrhagic shoc. Circulation 2003; 107:1189-1194.
doi: 10.1161/01.CIR.0000050627.90734.ED
[10] Giebelen IA, van Westerloo DJ, LaRosa GJ, de Vos AF, van der Poll T, et al. Stimulation of alpha 7 cholinergic receptors inhibits lipopolysaccharide-induced neutrophil recruitment by a tumor necrosis factor alpha-independent mechanis. Shock 2007; 27:443-447.
pmid: 17414429
[11] Tracey KJ. Physiology and immunology of the cholinergic antiinflammatory pathwa. J Clin Invest 2007; 117:289-296.
doi: 10.1172/JCI30555 pmid: 17273548
[12] de Jonge WJ, van der Zanden EP, The FO, Bijlsma MF, van Westerloo DJ, Bennink RJ, et al. Stimulation of the vagus nerve attenuates macrophage activation by activating the Jak2-STAT3 signaling pathwa. Nat Immunol 2005; 6:844-851.
[13] Patel H, McIntire J, Ryan S, Dunah A, Loring R. Anti-inflammatory effects of astroglial alpha7 nicotinic acetylcholine receptors are mediated by inhibition of the NF-kappaB pathway and activation of the Nrf2 pathwa. J Neuroinflammation 2017; 14:192.
doi: 10.1186/s12974-017-0967-6
[14] Leib C, Goser S, Luthje D, Ottl R, Tretter T, Lasitschka F, et al. Role of the cholinergic antiinflammatory pathway in murine autoimmune myocarditi. Circ Res 2011; 109:130-140.
doi: 10.1161/CIRCRESAHA.111.245563
[15] Albuquerque EX, Pereira EF, Alkondon M, Rogers SW. Mammalian nicotinic acetylcholine receptors: from structure to functio. Physiol Rev 2009; 89:73-120.
doi: 10.1152/physrev.00015.2008 pmid: 19126755
[16] The FO, Boeckxstaens GE, Snoek SA, Cash JL, Bennink R, Larosa GJ, et al. Activation of the cholinergic anti-inflammatory pathway ameliorates postoperative ileus in mic. Gastroenterology 2007; 133:1219-1228.
doi: 10.1053/j.gastro.2007.07.022
[17] Munyaka P, Rabbi MF, Pavlov VA, Tracey KJ, Khafipour E, Ghia JE. Central muscarinic cholinergic activation alters interaction between splenic dendritic cell and CD4+CD25- T cells in experimental coliti. PLoS One 2014; 9:e109272.
[18] Cogan SF. Neural stimulation and recording electrode. Annu Rev Biomed Eng 2008; 10:275-309.
doi: 10.1146/annurev.bioeng.10.061807.160518
[19] Johnson MI, Walsh DM. Pain: continued uncertainty of TENS' effectiveness for pain relie. Nat Rev Rheumatol 2010; 6:314-316.
doi: 10.1038/nrrheum.2010.77 pmid: 20520646
[20] Zhang A, Charles EJ, Xing JY, Sawyer RG, Yang ZQ. Pulsed ultrasound of the spleen prolongs survival of rats with severe intra-abdominal sepsi. Journal of Surgical Research 2021; 259:97-105.
doi: 10.1016/j.jss.2020.11.005
[21] Gigliotti JC, Huang LP, Bajwa A, Ye H, Mace EH, Hossack JA, et al. Ultrasound modulates the splenic neuroimmune axis in attenuating AKI. Journal of the American Society of Nephrology 2015; 26:2470-2481.
doi: 10.1681/ASN.2014080769 pmid: 25644106
[22] Gigliotti JC, Huang L, Ye H, Bajwa A, Chattrabhuti K, Lee S, et al. Ultrasound prevents renal ischemia-reperfusion injury by stimulating the splenic cholinergic anti-inflammatory pathwa. J Am Soc Nephrol 2013; 24:1451-1460.
doi: 10.1681/ASN.2013010084 pmid: 23907510
[23] Qu L, Yan J, Jiang Z, Song Z, Luo F, Peng Q. Low-intensity pulsed ultrasound pretreatment inhibits HMGB1 expression and attenuates lung ischemia-reperfusion injury in rats via the cholinergic anti-inflammatory pathwa. Nan Fang Yi Ke Da Xue Xue Bao 2018; 38:1061-1065.
[24] Tyler WJ, Tufail Y, Finsterwald M, Tauchmann ML, Olson EJ, Majestic C. Remote excitation of neuronal circuits using low-intensity, low-frequency ultrasoun. PLoS One 2008; 3:e3511.
[25] Kubanek J, Shukla P, Das A, Baccus SA, Goodman MB. Ultrasound elicits behavioral responses through mechanical effects on neurons and ion channels in a simple nervous syste. J Neurosci 2018; 38:3081-3091.
doi: 10.1523/JNEUROSCI.1458-17.2018 pmid: 29463641
[26] Mihran RT, Barnes FS, Wachtel H. Temporally-specific modification of myelinated axon excitability in vitro following a single ultrasound puls. Ultrasound Med Biol 1990; 16:297-309.
pmid: 2363236
[27] Kubanek J, Shi J, Marsh J, Chen D, Deng C, Cui J. Ultrasound modulates ion channel current. Sci Rep 2016; 6:24170.
doi: 10.1038/srep24170 pmid: 27112990
[28] Prieto ML, Firouzi K, Khuri-Yakub BT, Maduke M. Activation of piezo1 but not nav1.2 channels by ultrasound at 43 MHz. Ultrasound Med Biol 2018; 44:1217-1232.
doi: 10.1016/j.ultrasmedbio.2017.12.020
[29] Menz MD, Ye P, Firouzi K, Nikoozadeh A, Pauly KB, Khuri-Yakub P, et al. Radiation force as a physical mechanism for ultrasonic neurostimulation of the ex vivo retin. J Neurosci 2019; 39:6251-6264.
doi: 10.1523/JNEUROSCI.2394-18.2019
[30] Krasovitski B, Frenkel V, Shoham S, Kimmel E. Intramembrane cavitation as a unifying mechanism for ultrasound-induced bioeffect. Proc Natl Acad Sci U S A 2011; 108:3258-3263.
doi: 10.1073/pnas.1015771108 pmid: 21300891
[31] Plaksin M, Shoham S, Kimmel E. Intramembrane cavitation as a predictive bio-piezoelectric mechanism for ultrasonic brain stimulatio. Journal of Molecular Neuroscience 2014; 53:S103.
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