1.Helicobacter pylori infection and neuropsychiatric disorders: a review of research progress
Xingxu YI ; Rong SONG ; Chuan LI ; Yanhong FANG ; Xin YU ; Zhiyuan TANG ; Hong SU
Acta Universitatis Medicinalis Anhui 2026;61(8):1492-1497
Helicobacter pylori (H. pylori) infection is not only associated with gastrointestinal diseases, but also potentially links with neuropsychiatric disorders revealed by recent studies. Through a systematic review of the existing literature, this review summarizes epidemiological evidence for the association between H. pylori infection and diseases such as Parkinson′s disease (PD), Alzheimer′s disease (AD), multiple sclerosis (MS), migraine, depression, and anxiety disorders, and further explores potential mechanisms by which it affects central nervous system function, including neural pathways mediated by the enteric nervous system and the vagus nerve, immune pathways mediated by inflammatory cytokines, and endocrine pathways mediated by gut microbial metabolites. Additionally, the current challenges facing H. pylori eradication therapy and the prospects for emerging adjuvant strategies such as probiotics and fecal microbiota transplantation are discussed. Finally, future research directions are outlined, emphasizing the need for prospective cohort studies based on standardized diagnostic methods and further investigation using animal models to elucidate the pathophysiological mechanisms, with the aim of providing new perspectives for the prevention, treatment, and early intervention of related neuropsychiatric disorders.
2.Angiotensin II type 1 receptor is required for the cardiac fibrosis triggered by mechanical stress independent of Ang II in mice
Yong YE ; Hui GONG ; Jian WU ; Zhiwen DING ; Yi SHEN ; Peipei YIN ; Xingxu WANG ; Jieyun YOU ; Shijun WANG ; Jie YUAN ; Guoliang JIANG ; Jiayuan HUANG ; Weijing ZHANG ; Junbo GE ; Yunzeng ZOU
Chinese Journal of Pathophysiology 2016;32(8):1500-1500
AIM:We investigated how AT 1-R stimulated by mechanical stresses induces cardiac fibrosis .METHODS:We produced in vivo cardiac pressure overload model in angiotensinogen knockout ( ATG-/-) mice and in vitro mechanically-stretched cell model in cultured neonatal cardiac cells of ATG-/-mice both lack the participation of Ang II .RESULTS: Pressure overload for 4 weeks in ATG-/-mice induced myocardial hypertrophy accompanied by the significant interstitial fibrosis , however , the TGF-β, a key regulatory factor of fibrosis, was not significantly increased in these ATG-/-mice.Meanwhile, the inhibitor for AT1-R significantly inhibited mechani-cal stress-induced cardiac fibrosis in these ATG-/-models whereas inhibition of TGF-βdid not.CONCLUSION:The results showed that mechanical stress-induced fibrotic responses through AT 1-R required the phosphorylation of Smad 2 but not the involvement of TGF-β.

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