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代谢重编程及其在脓毒症介导的炎症中的调控机制
Authors Liu W , Liu T , Zheng Y , Xia Z
Received 6 January 2023
Accepted for publication 8 March 2023
Published 20 March 2023 Volume 2023:16 Pages 1195—1207
DOI https://doi.org/10.2147/JIR.S403778
Checked for plagiarism Yes
Review by Single anonymous peer review
Peer reviewer comments 3
Editor who approved publication: Professor Ning Quan
Abstract: Sepsis is a systemic inflammatory disease caused by an infection that can lead to multiple organ failure. Sepsis alters energy metabolism, leading to metabolic reprogramming of immune cells, which consequently disrupts innate and adaptive immune responses, triggering hyperinflammation and immunosuppression. This review summarizes metabolic reprogramming and its regulatory mechanism in sepsis-induced hyperinflammation and immunosuppression, highlights the significance and intricacies of immune cell metabolic reprogramming, and emphasizes the pivotal role of mitochondria in metabolic regulation and treatment of sepsis. This review provides an up-to-date overview of the relevant literature to inform future research directions in understanding the regulation of sepsis immunometabolism. Metabolic reprogramming has great promise as a new target for sepsis treatment in the future.
Keywords: immune cell, hyperinflammation, immunosuppression, immunometabolism, mitochondria