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Current Management of Primary Sclerosing Cholangitis (PSC) ~A Proposal for Early-stage PSC~.

Primary sclerosing cholangitis (PSC) is a chronic, progressive cholangiopathy characterized by inflammation and fibrosis of intrahepatic and/or extrahepatic bile ducts. Its pathogenesis remains incompletely understood, and liver transplantation is currently the only curative treatment available. The diagnosis remains challenging, and no disease-specific biomarkers have been established. Recently, anti-integrin αvβ6 antibodies have emerged as promising serological biomarkers with high specificity for PSC. Advances in imaging modalities, including magnetic resonance cholangiopancreatography and peroral cholangioscopy, have improved diagnostic accuracy for PSC. Although various therapeutic approaches have been investigated, no treatment has been shown to improve the long-term outcomes. Microbiota-targeted therapies represent a promising emerging strategy. The clinical course of PSC, particularly in its early stages, is poorly defined. We propose a definition of early stage PSC consisting of two subtypes: small-duct PSC without liver fibrosis and large-duct PSC without cholestatic enzyme elevation or biliary strictures. Early intervention at this stage may improve the prognosis, thus highlighting the need for further validation.

Primary sclerosing cholangitis

Network proximity analysis as a theoretical model for identifying potential novel therapies in primary sclerosing cholangitis.

Primary Sclerosing Cholangitis (PSC) is a progressive cholestatic liver disease with no licensed therapies. Previous Genome Wide Association Studies (GWAS) have identified genes that correlate significantly with PSC, and these were identified by systematic review. Here we use novel Network Proximity Analysis (NPA) methods to identify already licensed candidate drugs that may have an effect on the genetically coded aspects of PSC pathophysiology.Over 2000 agents were identified as significantly linked to genes implicated in PSC by this method. The most significant results include previously researched agents such as metronidazole, as well as biological agents such as basiliximab, abatacept and belatacept. This in silico analysis could potentially serve as a basis for developing novel clinical trials in this rare disease.

Cholangitis, Sclerosing

Identifying a therapeutic window of opportunity for people living with primary sclerosing cholangitis: Embryology and the overlap of inflammatory bowel disease with immune-mediated liver injury.

Primary sclerosing cholangitis (PSC) is a variably progressive, fibrosis-causing autoimmune disorder of the intrahepatic and extrahepatic bile ducts of unclear etiology. PSC is commonly (in 60%-90% of cases) associated with an inflammatory bowel disease (IBD) like PSC-IBD and less commonly with an autoimmune hepatitis (AIH) like PSC-AIH or AIH-overlap disorder. Hepatologists and Gastroenterologists often consider these combined conditions as distinctly different from the classical forms in isolation. Here, we review recent epidemiologic observations and highlight that PSC-IBD and PSC-AIH overlap appear to represent aspects of a common PSC clinico-pathological pathway and manifest in an age-of-presentation-dependent manner. Particularly from the pediatric experience, we hypothesize that all cases of PSC likely originate from a complex "Early PSC"-"IBD"-"AIH" overlap in which PSC defines the uniquely and variably associated "AIH" and "IBD" components along an individualized lifetime continuum. We speculate that a distinctly unique, "diverticular autoimmunity" against the embryonic cecal- and hepatic diverticulum-derived tissues may be the origin of this combined syndrome, where "AIH" and "IBD" variably commence then variably fade while PSC progresses with age. Our hypothesis provides an explanation for the age-dependent variation in the presentation and progression of PSC. This is critical for the optimal targeting of studies into PSC etiopathogenesis and emphasizes the concept of a "developmental window of opportunity for therapeutic mitigation" in what is currently recognized as an irreversible disease process. The discovery of such a window would be critically important for the targeting of interventions, both the administration of current therapies and therapeutic trial planning.

Humans

Dysregulation of the serum and IgG N-glycome in decompensated cirrhosis and its association with Model for End-Stage Liver Disease-Sodium (MELD-Na).

BACKGROUND AND AIMS: N-glycans modulate glycoprotein structure and function and are altered during chronic inflammation. We sought to define the extent of serum and IgG N-glycan disruption in patients with decompensated liver cirrhosis from alcohol-related liver disease (ALD), primary sclerosing cholangitis (PSC), and ALD-related hepatocellular carcinoma (HCC). Finally, we aimed to examine whether serum and IgG glycosylation is associated with changes in Model for End-stage Liver Disease-Sodium (MELD-Na) scores, a clinical marker used to prioritise liver transplantation. METHODS: Serum samples were obtained from patients with ALD (n = 17), PSC (n = 7), ALD-related HCC (n = 4), and healthy controls (n = 10). N-glycans were released, fluorescently labelled, and profiled by hydrophilic interaction ultra performance liquid chromatography (HILIC-UPLC). Chromatograms were integrated into 46 and 23 glycan peaks for serum and IgG respectively. These peaks and their associated glycosylation traits were statistically compared with healthy controls using age- and sex-adjusted linear regression models. RESULTS: In serum, decompensated cirrhosis shows statistically significant shifts toward less complex, agalactosylated and asialylated biantennary glycans, accompanied by significant losses of highly branched, galactosylated and sialylated structures. IgG mirrored this pattern, which is characteristic of a pro-inflammatory signature, with increased agalactosylation and bisected glycan levels, along with reduced levels of digalactosylated and sialylated species. N-glycan profiles showed significant associations with MELD-Na scores, indicating that inflammatory processes in decompensated liver cirrhosis continue to reshape serum glycoproteins. CONCLUSION: Decompensated liver cirrhosis shows profound remodelling of serum and IgG N-glycans. These data establish a reference framework for terminal glycomic disruption in liver disease and highlight the potential value of incorporating glycosylation analysis into broader assessments of liver disease progression.

Humans

[Transendoscopic retrograde cholangiography in the diagnosis of primary sclerosing cholangitis. Study of 6 cases].

Primary sclerosing cholangitis (PSC) is a rare disease of unknown etiology characterized by severe chronic inflammation, fibrosis and stenosis of variable length of the extra and/or intrahepatic biliary ducts in the absence of recent operative trauma, biliary stones, cancer or infection. Diagnosis has been made only at operation. The introduction of endoscopic retrograde cholangiography (ERC) offers the possibility of preoperative diagnosis. Six cases of PSC diagnosed by ERC are presented. Characteristic roentgenologic findings include strictures of variable length of extra and intrahepatic biliary ducts, beaded appearance and decreased arborization of intrahepatic biliary tree. The roentgenological anatomy of biliary tree at ERC influence the subsequent therapy, i.e. surgical therapy is indicated if a drainage can be performed above the site of the stenosis, while medical therapy (steroids and/or immunosuppressive drugs) is the choice when intrahepatic biliary tree is involved.

Adult

EGFR activation in cholangiocytes promotes extrahepatic bile duct regeneration after injury.

BACKGROUND: The EGF receptor family of 4 tyrosine kinases, EGFR and ERBB2-4, and their ligands regulate the development and homeostasis of digestive organs including the hepatobiliary system. It promotes intrahepatic cholangiocyte proliferation, bile duct development, and cholangiocarcinoma aggressiveness. The EGF signaling network's contribution to extrahepatic bile duct (EHBD), which is a distinct hepatobiliary entity, regeneration is poorly defined. This work aimed to determine the fundamental role of the EGF signaling network in the biliary proliferative response to EHBD obstruction. METHODS: We used mouse bile duct ligation to model obstructive EHBD injury, and human and mouse EHBD organoids for in vitro studies. We tested activating and inhibitory paradigms with recombinant EGF family ligands and receptor antagonists. Transcriptomic and immunohistochemistry analyses informed EGF signaling changes and cellular localization at homeostasis and after obstruction. RESULTS: At homeostasis, the EHBD expressed EGFR ligands Tgfa, Btc, Hbegf, and Nrg4 in cholangiocytes, and Egf and Nrg2 in stromal cells. Erbb2 and Erbb3 were predominant receptors expressed in cholangiocytes, and Egfr in stromal cells at baseline. Post-injury, biliary hyperproliferation was associated with increased abundance of Tgfa, Btc, Hbegf, and Areg ligands and Egfr receptor in cholangiocytes with resulting EGFR activation. EGFR ligands induced biliary organoid growth, and inhibition of EGFR, not ERBB2, dampened organoid proliferation. EGFR inhibition in mice led to a decrease in the biliary proliferative response after EHBD obstruction. CONCLUSIONS: The obstruction-induced biliary proliferation is EGFR-mediated, suggesting context-specific and receptor-specific EGF signaling network contribution to EHBD regeneration after injury.

Animals

The endoscopy corner. Primary sclerosing cholangitis.

Retrograde endoscopic cholangiography is an effective means of evaluating the biliary ductal system. It can provide a nonoperative modality for diagnosing PSC and for assessing the effects of therapeutic interventions on the diameter of the bile ducts.

Adult