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Published on: June 15, 2019
Park 7: A Novel Therapeutic Target for Macrophages in Sepsis-Induced Immunosuppression
Yanwei Cheng1,2, Tony N Marion3,4, Xue Cao2,3
1West China Hospital Emergency Department, State Key Laboratory of Biotherapy, West China Hospital, Sichuan University, and Collaborative Innovation Center of Biotherapy, Chengdu, China.
Abstract:
Sepsis remains a serious and life-threatening condition with high morbidity and mortality due to uncontrolled inflammation together with immunosuppression with few therapeutic options. Macrophages are recognized to play essential roles throughout all phases of sepsis and affect both immune homeostasis and inflammatory processes, and macrophage dysfunction is considered to be one of the major causes for sepsis-induced immunosuppression. Currently, Parkinson disease protein 7 (Park 7) is known to play an important role in regulating the production of reactive oxygen species (ROS) through interaction with p47phox, a subunit of NADPH oxidase. ROS are key mediators in initiating toll-like receptor (TLR) signaling pathways to activate macrophages. Emerging evidence has strongly implicated Park 7 as an antagonist for sepsis-induced immunosuppression, which suggests that Park 7 may be a novel therapeutic target for reversing immunosuppression compromised by sepsis. Here, we review the main characteristics of sepsis-induced immunosuppression caused by macrophages and provide a detailed mechanism for how Park 7 antagonizes sepsis-induced immunosuppression initiated by the macrophage inflammatory response. Finally, we further discuss the most promising approach to develop innovative drugs that target Park 7 in patients whose initial presentation is at the late stage of sepsis.
Insights
Parkinson disease protein 7 (Park 7) may reverse sepsis-induced immunosuppression by modulating macrophage inflammatory responses. Targeting Park 7 offers a promising therapeutic strategy for late-stage sepsis patients.
Area of Science:
- Immunology
- Cellular Biology
- Pharmacology
Background:
- Sepsis causes uncontrolled inflammation and immunosuppression, leading to high mortality.
- Macrophage dysfunction is a key factor in sepsis-induced immunosuppression.
- Parkinson disease protein 7 (Park 7) regulates reactive oxygen species (ROS) production, influencing macrophage activation via toll-like receptor (TLR) signaling.
Purpose of the Study:
- To review sepsis-induced immunosuppression mediated by macrophages.
- To elucidate the mechanism of Park 7 antagonism against sepsis-induced immunosuppression.
- To discuss therapeutic strategies targeting Park 7 for late-stage sepsis.
Main Methods:
- Literature review on sepsis pathophysiology and macrophage roles.
- Analysis of Park 7's interaction with ROS and TLR signaling pathways.
- Discussion of potential drug development targeting Park 7.
Main Results:
- Park 7 acts as an antagonist to sepsis-induced immunosuppression.
- Park 7 modulates macrophage inflammatory responses crucial in sepsis.
- Emerging evidence supports Park 7's therapeutic potential in sepsis.
Conclusions:
- Park 7 is a significant factor in mitigating sepsis-induced immunosuppression.
- Targeting Park 7 presents a novel therapeutic avenue for sepsis.
- Developing Park 7-targeting drugs could benefit patients with late-stage sepsis.
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