Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0239946 (liver fibrosis)
8,268 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Cholangiography is often crucial for establishing the definitive cause of neonatal jaundice. We present our protocol for using laparoscopy-assisted cholangiography in infants with prolonged jaundice and discuss its benefits. Firstly, a 5 mm supra-umbilical trocar is introduced to create a port for a 0 degrees laparoscope. A 5 mm trocar is then inserted through a right subcostal incision to allow the liver and gallbladder to be visualized. If the gallbladder is of good size, the fundus is exteriorized through the right subcostal trocar site and a catheter is inserted into the gallbladder for cholangiography. If the gallbladder is atretic, the fundus is not exteriorized and a laparotomy is performed for open intraoperative cholangiography because the lumen of an atretic gallbladder is usually not fully patent and cholangiography through its exteriorized fundus often fails. We reviewed 18 jaundiced infants thought to have biliary atresia (BA) who had laparoscopy-assisted cholangiography. At laparoscopy, four patients had good sized gallbladders and minimal to mild liver fibrosis. They underwent cholangiography via the exteriorized fundus, and BA in two cases and biliary hypoplasia in two cases were identified. The remaining 14 had atretic gallbladders and varying degrees of liver fibrosis. Cholangiography via the exteriorized fundus was performed in one patient, but failed and converted to open cholangiography. Open intraoperative cholangiography identified BA in all 14 cases. All BA cases progressed to Kasai portoenterostomy directly after diagnosis. Laparoscopy is used to determine the type of cholangiography to be performed based on the appearance of the gallbladder and this simple, accurate, and safe protocol allows the anatomical structure of the biliary tree to be obtained accurately with minimal surgical intervention.
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PMID:Diagnostic laparoscopy-assisted cholangiography in infants with prolonged jaundice. 1634 35

Cholestasis results in the intrahepatic retention of cytotoxic bile acid and it can thus lead to liver injury and/or liver fibrosis. Cholestatic liver damage is counteracted by a variety of intrinsic hepatoprotective mechanisms including a complex network of drug metabolizing enzymes and transporters. During the last decade, much progress has been made in dissecting the mechanisms which regulate the hepatic xeno- and endobiotic metabolism by nuclear receptors. The xenobiotic receptors CAR and PXR are two important members of the NR1I nuclear receptor family. They function as sensors of toxic byproducts derived from the endogenous metabolism and of exogenous chemicals, in order to enhance their elimination. Ligands for both receptors, including phenobarbital, have already been used to treat cholestatic liver diseases before the mechanisms of these receptors were revealed. Furthermore, Yin Zhi Huang, a traditional Chinese herbal medicine, which has been used to prevent and treat neonatal jaundice, was identified to be a CAR ligand which also accelerates bilirubin clearance. Therefore, CAR and PXR have a protective effect on cholestasis by activating both detoxification enzymes and transporters. As a result, novel compounds targeting CAR and PXR with specific effects and fewer side effects will therefore be useful for the treatment of cholestatic liver diseases. This article will review the current knowledge on xenobiotic-sensing nuclear receptors CAR and PXR, while also discussing their potential role in the treatment of cholestatic liver diseases.
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PMID:Xenobiotic-sensing nuclear receptors CAR and PXR as drug targets in cholestatic liver disease. 1992 51