Gut-first Parkinson's disease is encoded by gut dysbiome

被引:18
作者
Munoz-Pinto, Mario F. [1 ,2 ,8 ]
Candeias, Emanuel [1 ,2 ]
Melo-Marques, Ines [1 ,2 ,3 ]
Esteves, A. Raquel [1 ,2 ]
Maranha, Ana [1 ,2 ]
Magalhaes, Joao D. [1 ,2 ,3 ]
Carneiro, Diogo Reis [1 ,4 ,5 ]
Sant'Anna, Mariana [6 ]
Pereira-Santos, A. Raquel [1 ,2 ,3 ]
Abreu, Antonio E. [1 ,2 ]
Nunes-Costa, Daniela [1 ,2 ]
Alarico, Susana [1 ,2 ]
Tiago, Igor [7 ]
Morgadinho, Ana [4 ]
Lemos, Joao [4 ,5 ]
Figueiredo, Pedro N. [5 ,6 ]
Januario, Cristina [4 ,5 ]
Empadinhas, Nuno [1 ,2 ]
Cardoso, Sandra Morais [1 ,2 ,5 ]
机构
[1] Univ Coimbra, Ctr Neurosci & Cell Biol, Coimbra, Portugal
[2] Univ Coimbra, Ctr Innovat Biomed & Biotechnol, Coimbra, Portugal
[3] Univ Coimbra, Inst Interdisciplinary Res, PhD Programme Expt Biol & Biomed PDBEB, Coimbra, Portugal
[4] CHUC Ctr Hosp & Univ Coimbra, Dept Neurol, Coimbra, Portugal
[5] Univ Coimbra, Fac Med, Coimbra, Portugal
[6] CHUC Ctr Hosp & Univ Coimbra, Dept Gastroenter, Coimbra, Portugal
[7] Univ Coimbra, Ctr Funct Ecol, Coimbra, Portugal
[8] Univ Seville, Fac Pharm, Dept Biochem & Mol Biol, Seville, Spain
关键词
Parkinson's disease; Gut microbiome; Dysbiosis; Dysbiome; Innate immunity; Gut-brain axis; Inflammation; Mitochondria; Dopaminergic; Dorsal motor nucleus of the vagus; Substantia nigra; BLOOD-BRAIN-BARRIER; ALPHA-SYNUCLEIN; TH17; CELLS; PERMEABILITY; INFLAMMATION; MODEL; INVOLVEMENT; HYPOTHESIS; BREAKDOWN; MUCOSA;
D O I
10.1186/s13024-024-00766-0
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
BackgroundIn Parkinson's patients, intestinal dysbiosis can occur years before clinical diagnosis, implicating the gut and its microbiota in the disease. Recent evidence suggests the gut microbiota may trigger body-first Parkinson Disease (PD), yet the underlying mechanisms remain unclear. This study aims to elucidate how a dysbiotic microbiome through intestinal immune alterations triggers PD-related neurodegeneration.MethodsTo determine the impact of gut dysbiosis on the development and progression of PD pathology, wild-type male C57BL/6 mice were transplanted with fecal material from PD patients and age-matched healthy donors to challenge the gut-immune-brain axis.ResultsThis study demonstrates that patient-derived intestinal microbiota caused midbrain tyrosine hydroxylase positive (TH +) cell loss and motor dysfunction. Ileum-associated microbiota remodeling correlates with a decrease in Th17 homeostatic cells. This event led to an increase in gut inflammation and intestinal barrier disruption. In this regard, we found a decrease in CD4 + cells and an increase in pro-inflammatory cytokines in the blood of PD transplanted mice that could contribute to an increase in the permeabilization of the blood-brain-barrier, observed by an increase in mesencephalic Ig-G-positive microvascular leaks and by an increase of mesencephalic IL-17 levels, compatible with systemic inflammation. Furthermore, alpha-synuclein aggregates can spread caudo-rostrally, causing fragmentation of neuronal mitochondria. This mitochondrial damage subsequently activates innate immune responses in neurons and triggers microglial activation.ConclusionsWe propose that the dysbiotic gut microbiome (dysbiome) in PD can disrupt a healthy microbiome and Th17 homeostatic immunity in the ileum mucosa, leading to a cascade effect that propagates to the brain, ultimately contributing to PD pathophysiology. Our landmark study has successfully identified new peripheral biomarkers that could be used to develop highly effective strategies to prevent the progression of PD into the brain.
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页数:28
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