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The hepatic microvascular responses to sepsis
1Department of Medicine IV, University of Heidelberg, Germany.
Abstract:
The liver is believed to play a major role in the initiation of multiorgan failure, the most lethal complication in the clinical course of sepsis. Microbes and their virulence factors enter the hepatic circulation where they first activate sinusoidal endothelial cells and Kupffer cells to produce proinflammatory mediators, including TNF-alpha, IL-1, IL-6, reactive oxygen metabolites, and eicosanoids. These mediators cause not only microbial killing, but also structural and functional liver damage concerning mainly the parenchymal cells. Leukocytes are targeted to the liver sinusoids by chemoattractants and, like platelets, tether to the sinusoidal endothelial cells, which are in a procoagulant state of inflammatory activation. Clogging of the sinusoids by these cells leads to a decrease of blood flow through the sinusoids, which is further aggravated by endothelin-1 effectuating the constriction of hepatic stellate cells in the sinusoids. In contrast, both nitric oxide (NO) and carbon monoxide (CO) act as antagonists of endothelin-1 by mediating relaxation of sinusoidal vessels. By maintaining an adequate sinusoidal perfusion, both NO and CO are hepatoprotective during the early, hyperdynamic phase of sepsis characterized by an increased cardiac output and moderate peripheral vasodilation. However, during the late, hypodynamic phase of sepsis, massive overproduction of NO by the inducible NO synthase leads to circulatory collapse, which inevitably includes breakdown of the liver circulation.
Insights
The liver is central to sepsis-induced organ failure. While nitric oxide (NO) and carbon monoxide (CO) protect the liver early in sepsis, excessive NO later causes circulatory collapse and liver damage.
Area of Science:
- Hepatology
- Sepsis Pathophysiology
- Immunology
Background:
- Sepsis frequently leads to multiorgan failure, with the liver playing a critical role in its initiation.
- Hepatic circulation is compromised by microbial factors activating immune cells, causing inflammation and liver damage.
Purpose of the Study:
- To elucidate the role of the liver in sepsis-induced multiorgan failure.
- To investigate the mechanisms of liver injury and potential protective factors during sepsis.
Main Methods:
- Analysis of inflammatory mediator production by liver sinusoidal endothelial cells and Kupffer cells.
- Evaluation of leukocyte and platelet interactions within liver sinusoids.
- Assessment of endothelin-1, nitric oxide (NO), and carbon monoxide (CO) effects on sinusoidal perfusion.
Main Results:
- Proinflammatory mediators released in the liver cause structural and functional damage to hepatocytes.
- Leukocyte and platelet adhesion to activated sinusoidal endothelial cells obstructs blood flow.
- NO and CO are hepatoprotective by relaxing sinusoidal vessels during early sepsis, but excessive NO in late sepsis induces circulatory collapse.
Conclusions:
- The liver's response to sepsis involves complex inflammatory and circulatory changes.
- While NO and CO offer early protection, their dysregulation contributes to severe liver injury and circulatory failure in advanced sepsis.