1.Impact of microbiota-gut-brain axis on neuroinflammation after post-cardiac arrest brain injury
Haojun ZHANG ; Mei JING ; Yufeng ZHU ; Tianpeng XU ; Xi CHEN ; Rongyi SHI ; Yi SHAN
The Journal of Practical Medicine 2025;41(6):911-915
Cardiac arrest is a major health event that poses a major threat to human life and health.Post-cardiac arrest brain injury is the main adverse prognostic factor and cause of death in patients who experience cardiac arrest.Currently,the therapeutic methods and effects are limited.In recent years,with the in-depth research on microbiota-gut-brain communication,it has been found that intestinal microbiota and their metabolites may play a role in the regulation of neuroinflammation in post-cardiac arrest brain injury.Short-chain fatty acids are the key substances in microbiota-gut-brain communication,and the mechanism involves immune,endocrine and neuroregulatory pathways.Supplementation of short-chain fatty acid-producing bacteria or short-chain fatty acids can improve intestinal flora disorder and reduce neuroinflammation after cardiopulmonary resuscitation.As a key mediator in microbial-gut-brain communication,short-chain fatty acids have great potential for the treatment of brain injury after cardiac arrest.This review explores the role and regulatory mechanism of microbiota-gut-brain communication in the neuroinflammation of brain injury after cardiopulmonary resuscitation through immune,endocrine and neuro-regulatory pathways,providing a new idea for the treatment of post-cardiac arrest brain injury.
2.Impact of microbiota-gut-brain axis on neuroinflammation after post-cardiac arrest brain injury
Haojun ZHANG ; Mei JING ; Yufeng ZHU ; Tianpeng XU ; Xi CHEN ; Rongyi SHI ; Yi SHAN
The Journal of Practical Medicine 2025;41(6):911-915
Cardiac arrest is a major health event that poses a major threat to human life and health.Post-cardiac arrest brain injury is the main adverse prognostic factor and cause of death in patients who experience cardiac arrest.Currently,the therapeutic methods and effects are limited.In recent years,with the in-depth research on microbiota-gut-brain communication,it has been found that intestinal microbiota and their metabolites may play a role in the regulation of neuroinflammation in post-cardiac arrest brain injury.Short-chain fatty acids are the key substances in microbiota-gut-brain communication,and the mechanism involves immune,endocrine and neuroregulatory pathways.Supplementation of short-chain fatty acid-producing bacteria or short-chain fatty acids can improve intestinal flora disorder and reduce neuroinflammation after cardiopulmonary resuscitation.As a key mediator in microbial-gut-brain communication,short-chain fatty acids have great potential for the treatment of brain injury after cardiac arrest.This review explores the role and regulatory mechanism of microbiota-gut-brain communication in the neuroinflammation of brain injury after cardiopulmonary resuscitation through immune,endocrine and neuro-regulatory pathways,providing a new idea for the treatment of post-cardiac arrest brain injury.
3.Cell Apoptosis and mRNA Expression of c-fos and BNIPl in Cutaneous Squamous and Basal Cell Carcinomas
Jianqiang SHI ; Rongyi CHEN ; Yiming FAN ; Zhihua WU
Chinese Journal of Dermatology 2003;0(10):-
Objective To study the relationship between cell apoptosis and mRNA expression of c-fos and BNIPl in cutaneous squamous cell carcinoma (SCC) and basal cell carcinoma (BCC). Methods Cell apoptosis and mRNA expression of c-fos and BNIP1 in 48 SCCs and 41 BCCs were determined by TUNEL and in situ hybridization, respectively. Results Apoptosis index (AI) and c-fos mRNA expression in SCCs were higher than those in BCCs (P 0.05). AI was significantly higher in well-differentiated SCCs than in poorly differentiated SCCs (P

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