Liver Lymphatic Dysfunction as a Driver of Fibrosis and Cirrhosis Progression
Jeong, J.; Hsu, S.-J.; Horikami, D.; Utsumi, T.; Yang, Y.; Arefyev, N.; Zhang, X.; Cai, S.-Y.; Boyer, J.; Garcia-Milian, R.; Tanaka, M.; McConnell, M. J.; Huang, H.-C.; Iwakiri, Y.
Show abstract
The liver lymphatic system plays a critical role in maintaining interstitial fluid balance and immune regulation. Efficient lymphatic drainage is essential for liver homeostasis, but its role in liver disease progression remains poorly understood. In cirrhosis, lymphangiogenesis initially compensates for increased lymph production, but impaired lymphatic drainage in advanced stages may lead to complications such as ascites and portal hypertension. This study aimed to evaluate how liver lymphatic dysfunction affects disease progression and to assess therapeutic strategies. Using a surgical model to block liver lymphatic outflow, we found that impaired drainage accelerates liver injury, fibrosis, and immune cell infiltration, even in healthy livers. Mechanistically, enhanced TGF-{beta} signaling in liver lymphatic endothelial cells (LyECs) contributed to reduced lymphatic vessel (LV) density and function in late-stage decompensated cirrhosis. This dysfunction was linked to the progression from compensated to decompensated cirrhosis, particularly in patients with primary sclerosing cholangitis (PSC). Conversely, liver-specific overexpression of VEGF-C via AAV8 improved lymphatic drainage, restored LV density, reduced fibrosis, mitigated liver injury, and alleviated portal hypertension in cirrhotic rats. These findings establish impaired liver lymphatic function as a pivotal driver of cirrhosis progression and identify VEGF-C as a promising therapeutic target to prevent decompensation.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Circadian Clock Core Component Bmal1 Dictates Cell Cycle Rhythm of Proliferating Hepatocytes during Liver Regeneration 95%
- Elongation of Very Long Chain Fatty Acids Like- 3 (Elovl3) is activated by ZHX2 and is a regulator of cell cycle progression 95%
- Lipid droplets disrupt mechanosensing in human hepatocytes 94%
Similar papers in this journal
Similar papers in this journal
- The Essential Role of O-GlcNAcylation in Hepatic Differentiation 97%
- Circulating cell-free messenger RNA secretome characterization of primary sclerosing cholangitis 95%
- Hepatic MCPIP1 protein levels are reduced in NAFLD patients and are predominantly expressed in cholangiocytes and liver endothelium 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.