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Pannexin1: insight into inflammatory conditions and its potential involvement in multiple organ dysfunction syndrome
Xiangyu Chen1, Siyi Yuan1, Liangyu Mi1
1Department of Critical Care Medicine, State Key Laboratory of Complex Severe and Rare Diseases, Peking Union Medical College Hospital, Chinese Academy of Medical Sciences, Beijing, China.
Abstract:
Sepsis represents a global health concern, and patients with severe sepsis are at risk of experiencing MODS (multiple organ dysfunction syndrome), which is associated with elevated mortality rates and a poorer prognosis. The development of sepsis involves hyperactive inflammation, immune disorder, and disrupted microcirculation. It is crucial to identify targets within these processes to develop therapeutic interventions. One such potential target is Panx1 (pannexin-1), a widely expressed transmembrane protein that facilitates the passage of molecules smaller than 1 KDa, such as ATP. Accumulating evidence has implicated the involvement of Panx1 in sepsis-associated MODS. It attracts immune cells via the purinergic signaling pathway, mediates immune responses via the Panx1-IL-33 axis, promotes immune cell apoptosis, regulates blood flow by modulating VSMCs' and vascular endothelial cells' tension, and disrupts microcirculation by elevating endothelial permeability and promoting microthrombosis. At the level of organs, Panx1 contributes to inflammatory injury in multiple organs. Panx1 primarily exacerbates injury and hinders recovery, making it a potential target for sepsis-induced MODS. While no drugs have been developed explicitly against Panx1, some compounds that inhibit Panx1 hemichannels have been used extensively in experiments. However, given that Panx1's role may vary during different phases of sepsis, more investigations are required before interventions against Panx1 can be applied in clinical. Overall, Panx1 may be a promising target for sepsis-induced MODS. Nevertheless, further research is needed to understand its complex role in different stages of sepsis fully and to develop suitable pharmaceutical interventions for clinical use.
Insights
Pannexin-1 (Panx1) exacerbates sepsis-induced multiple organ dysfunction syndrome (MODS) by promoting inflammation and microcirculation issues. Further research is needed to explore Panx1 as a therapeutic target for sepsis.
Area of Science:
- Biomedical Science
- Molecular Biology
- Immunology
Background:
- Sepsis is a life-threatening condition causing organ dysfunction and high mortality.
- Hyperinflammation, immune dysregulation, and microcirculatory disturbances characterize sepsis development.
- Identifying novel therapeutic targets is critical for improving sepsis outcomes.
Purpose of the Study:
- To investigate the role of pannexin-1 (Panx1) in sepsis-induced multiple organ dysfunction syndrome (MODS).
- To explore Panx1 as a potential therapeutic target for mitigating sepsis-related organ injury.
Main Methods:
- Review of existing literature on Panx1's involvement in sepsis.
- Analysis of Panx1's mechanisms in inflammation, immune response, and microcirculation.
- Discussion of potential therapeutic strategies targeting Panx1.
Main Results:
- Panx1 contributes to sepsis-associated MODS through various pathways.
- Panx1 exacerbates immune cell recruitment, inflammatory responses (e.g., via Panx1-IL-33 axis), and apoptosis.
- Panx1 disrupts microcirculation by affecting vascular tone, endothelial permeability, and promoting thrombosis.
- Panx1 aggravates inflammatory organ injury and impairs recovery.
Conclusions:
- Panx1 plays a significant role in exacerbating sepsis-induced MODS.
- Panx1 presents a promising target for therapeutic interventions in sepsis.
- Further research is essential to understand Panx1's complex roles across sepsis stages and develop clinical applications.
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