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Brain control of humoral immune responses amenable to behavioural modulation 期刊论文
NATURE, 2020, 581 (7807)
作者:  Yang, C. H.;  Leon, R. C. C.;  Hwang, J. C. C.;  Saraiva, A.;  Tanttu, T.;  Huang, W.;  Lemyre, J. Camirand;  Chan, K. W.;  Tan, K. Y.;  Hudson, F. E.;  Itoh, K. M.;  Morello, A.;  Pioro-Ladriere, M.;  Laucht, A.;  Dzurak, A. S.
收藏  |  浏览/下载:12/0  |  提交时间:2020/07/03

It has been speculated that brain activities might directly control adaptive immune responses in lymphoid organs, although there is little evidence for this. Here we show that splenic denervation in mice specifically compromises the formation of plasma cells during a T cell-dependent but not T cell-independent immune response. Splenic nerve activity enhances plasma cell production in a manner that requires B-cell responsiveness to acetylcholine mediated by the alpha 9 nicotinic receptor, and T cells that express choline acetyl transferase(1,2) probably act as a relay between the noradrenergic nerve and acetylcholine-responding B cells. We show that neurons in the central nucleus of the amygdala (CeA) and the paraventricular nucleus (PVN) that express corticotropin-releasing hormone (CRH) are connected to the splenic nerve  ablation or pharmacogenetic inhibition of these neurons reduces plasma cell formation, whereas pharmacogenetic activation of these neurons increases plasma cell abundance after immunization. In a newly developed behaviour regimen, mice are made to stand on an elevated platform, leading to activation of CeA and PVN CRH neurons and increased plasma cell formation. In immunized mice, the elevated platform regimen induces an increase in antigen-specific IgG antibodies in a manner that depends on CRH neurons in the CeA and PVN, an intact splenic nerve, and B cell expression of the alpha 9 acetylcholine receptor. By identifying a specific brain-spleen neural connection that autonomically enhances humoral responses and demonstrating immune stimulation by a bodily behaviour, our study reveals brain control of adaptive immunity and suggests the possibility to enhance immunocompetency by behavioural intervention.


Neuronal activities in the central amygdala and paraventricular nucleus are transmitted via the splenic nerve to increase plasma cell formation after immunization, and this process can be behaviourally enhanced in mice.


  
Disentangling the impact of nutrient load and climate changes on Baltic Sea hypoxia and eutrophication since 1850 期刊论文
CLIMATE DYNAMICS, 2019, 53: 1145-1166
作者:  Meier, H. E. M.;  Eilola, K.;  Almroth-Rosell, E.;  Schimanke, S.;  Kniebusch, M.;  Hoglund, A.;  Pemberton, P.;  Liu, Y.;  Vali, G.;  Saraiva, S.
收藏  |  浏览/下载:5/0  |  提交时间:2019/11/26
Coastal seas  Numerical modeling  Reconstruction  Eutrophication  Climate change  Hypoxia  Cyanobacteria  
Disentangling the impact of nutrient load and climate changes on Baltic Sea hypoxia and eutrophication since 1850 (vol 53, pg 1145, 2019) 期刊论文
CLIMATE DYNAMICS, 2019, 53: 1167-1169
作者:  Meier, H. E. M.;  Eilola, K.;  Almroth-Rosell, E.;  Schimanke, S.;  Kniebusch, M.;  Hoglund, A.;  Pemberton, P.;  Liu, Y.;  Vali, G.;  Saraiva, S.
收藏  |  浏览/下载:6/0  |  提交时间:2019/11/26
Overview: Precipitation characteristics and sensitivities to environmental conditions during GoAmazon2014/5 and ACRIDICON-CHUVA 期刊论文
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2018, 18 (9) : 6461-6482
作者:  Machado, Luiz A. T.;  Calheiros, Alan J. P.;  Biscaro, Thiago;  Giangrande, Scott;  Silva Dias, Maria A. F.;  Cecchini, Micael A.;  Albrecht, Rachel;  Andreae, Meinrat O.;  Araujo, Wagner F.;  Artaxo, Paulo;  Borrmann, Stephan;  Braga, Ramon;  Burleyson, Casey;  Eichholz, Cristiano W.;  Fan, Jiwen;  Feng, Zhe;  Fisch, Gilberto F.;  Jensen, Michael P.;  Martin, Scot T.;  Poeschl, Ulrich;  Poehlker, Christopher;  Poehlker, Mira L.;  Ribaud, Jean-Francois;  Rosenfeld, Daniel;  Saraiva, Jaci M. B.;  Schumacher, Courtney;  Thalman, Ryan;  Walter, David;  Wendisch, Manfred
收藏  |  浏览/下载:8/0  |  提交时间:2019/04/09