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The Role of Cannabinoids in the Setting of Cirrhosis
Pratima Dibba1, Andrew A Li2, George Cholankeril3
1Division of Gastroenterology, Women and Infants Hospital/Warren Alpert School of Medicine, Brown University, Providence, RI 02905, USA. pratima_dibba@brown.edu.
Insights
The endocannabinoid system, including cannabinoid receptors 1 and 2, offers potential therapeutic strategies for cirrhosis. Targeting these pathways may combat liver fibrosis and improve patient outcomes.
Area of Science:
- Hepatology
- Pharmacology
- Endocrinology
Background:
- Cirrhosis significantly impacts global health, with limited treatment options for advanced stages.
- The endocannabinoid system (ECS) plays a crucial role in liver disease, particularly in cirrhosis.
- Existing treatments focus on managing complications of decompensated cirrhosis, while antifibrotic therapies are under investigation.
Purpose of the Study:
- To explore the therapeutic potential of the endocannabinoid system in managing cirrhosis.
- To investigate the roles of cannabinoid receptors 1 (CB1) and 2 (CB2) and their ligands in liver fibrosis and related complications.
- To evaluate the effects of modulating the ECS on hepatic fibrogenesis, vascular dysfunction, and hepatic encephalopathy.
Main Methods:
- Review of existing literature on the endocannabinoid system's components and their functions in liver disease models.
- Analysis of studies investigating the impact of CB1 and CB2 receptor activation/antagonism on liver fibrosis, steatosis, and inflammation.
- Examination of the effects of endocannabinoids (AEA, 2-AG) and exocannabinoids (THC) on hepatic stellate cells and disease progression.
Main Results:
- CB1 activation promotes fibrogenesis, while CB2 activation is protective against fibrosis.
- CB1 antagonism improves hepatic fibrosis, steatosis, and portal pressure, potentially preventing ascites.
- Modulation of CB1 and CB2 receptors, along with specific endocannabinoids and exocannabinoids, demonstrates antifibrotic and hepatoprotective effects in preclinical models.
Conclusions:
- The endocannabinoid system presents promising therapeutic targets for cirrhosis.
- Targeting CB1 and CB2 receptors offers potential for antifibrotic and hepatoprotective strategies.
- Further research into ECS modulation could lead to novel treatments for cirrhosis and its complications.
Abstract:
Although the mortality rates of cirrhosis are underestimated, its socioeconomic burden has demonstrated a significant global impact. Cirrhosis is defined by the disruption of normal liver architecture after years of chronic insult by different etiologies. Treatment modalities are recommended primarily in decompensated cirrhosis and specifically tailored to the different manifestations of hepatic decompensation. Antifibrogenic therapies are within an active area of investigation. The endocannabinoid system has been shown to play a role in liver disease, and cirrhosis specifically, with intriguing possible therapeutic benefits. The endocannabinoid system comprises cannabinoid receptors 1 (CB1) and cannabinoid receptor 2 (CB2) and their ligands, endocannabinoids and exocannabinoids. CB1 activation enhances fibrogenesis, whereas CB2 activation counteracts progression to fibrosis. Conversely, deletion of CB1 is associated with an improvement of hepatic fibrosis and steatosis, and deletion of CB2 results in increased collagen deposition, steatosis, and enhanced inflammation. CB1 antagonism has also demonstrated vascular effects in patients with cirrhosis, causing an increase in arterial pressure and vascular resistance as well as a decrease in mesenteric blood flow and portal pressure, thereby preventing ascites. In mice with hepatic encephalopathy, CB1 blockade and activation of CB2 demonstrated improved neurologic score and cognitive function. Endocannabinoids, themselves also have mechanistic roles in cirrhosis. Arachidonoyl ethanolamide (AEA) exhibits antifibrogenic properties by inhibition of HSC proliferation and induction of necrotic death. AEA induces mesenteric vasodilation and hypotension via CB1 induction. 2-arachidonoyl glycerol (2-AG) is a fibrogenic mediator independent of CB receptors, but in higher doses induces apoptosis of HSCs, which may actually show antifibrotic properties. 2-AG has also demonstrated growth-inhibitory and cytotoxic effects. The exocannabinoid, THC, suppresses proliferation of hepatic myofibroblasts and stellate cells and induces apoptosis, which may reveal antifibrotic and hepatoprotective mechanisms. Thus, several components of the endocannabinoid system have therapeutic potential in cirrhosis.
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