Biliary Atresia: Clinical and Research Challenges for the Twenty‐First Century
Атрезия желчных путей: клинические и исследовательские проблемы XXI века
2018-03-31
SCID: 54.1/pv49ckdm
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biliary atresiabiliatresonecholangiocyte glycocalyxcytomegalovirushepatic portoenterostomy
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Abstract (AI)
Biliary atresia (BA) is a fibroinflammatory disease of the intrahepatic and extrahepatic biliary tree. Surgical hepatic portoenterostomy (HPE) may restore bile drainage, but progression of the intrahepatic disease results in complications of portal hypertension and advanced cirrhosis in most children. Recognizing that further progress in the field is unlikely without a better understanding of the underlying cause(s) and pathogenesis of the disease, the National Institutes of Diabetes and Digestive and Kidney Diseases (NIDDK) sponsored a research workshop focused on innovative and promising approaches and on identifying future areas of research. Investigators discussed recent advances using gestational ultrasound and results of newborn BA screening with serum direct (conjugated) bilirubin that support a prenatal onset of biliary injury. Experimental and human studies implicate the toxic properties of environmental toxins (e.g., biliatresone) and of viruses (e.g., cytomegalovirus) to the biliary system. Among host factors, sequence variants in genes related to biliary development and ciliopathies, a notable lack of a cholangiocyte glycocalyx and of submucosal collagen bundles in the neonatal extrahepatic bile ducts, and an innate proinflammatory bias of the neonatal immune system contribute to an increased susceptibility to damage and obstruction following epithelial injury. These advances form the foundation for a future research agenda focused on identifying the environmental and host factor(s) that cause BA, the potential use of population screening, studies of the mechanisms of prominent fibrosis in young infants, determinations of clinical surrogates of disease progression, and the design of clinical trials that target subgroups of patients with initial drainage following HPE. (Hepatology 2018; 00:000-000).
Key Findings
1
Environmental toxins such as biliatresone and viruses such as cytomegalovirus can damage the biliary system and may contribute to biliary atresia.
2
Future research priorities include identifying causal environmental and host factors, evaluating population screening, clarifying early fibrosis mechanisms, developing progression surrogates, and targeting clinical trials to post-portoenterostomy subgroups.
3
Gestational ultrasound findings and newborn screening with serum direct bilirubin support a prenatal onset of biliary injury in biliary atresia.
4
Hepatic portoenterostomy can restore bile drainage, but intrahepatic disease usually progresses to portal hypertension and advanced cirrhosis in most children.
5
Host susceptibility involves variants in biliary-development and ciliopathy genes, deficient neonatal bile-duct structural barriers, and an innate proinflammatory immune bias.
Research Object
Biliary atresia affecting the intrahepatic and extrahepatic biliary tree in infants and children
Research Subject
The causes, pathogenesis, susceptibility factors, fibrosis, progression, and clinical management of biliary atresia
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2018-03-31
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