cholangiocyte damage
cholangiocyte skade
cholangiocyte proliferation
cholangiocyte forøgelse
cholangiocyte apoptosis
cholangiocyte apoptose
cholangiocyte dysfunction
cholangiocyte dysfunktion
cholangiocyte injury
cholangiocyte skader
cholangiocyte activation
cholangiocyte aktivering
cholangiocyte secretion
cholangiocyte sekretion
cholangiocyte isolation
cholangiocyte isolering
cholangiocyte culture
cholangiocyte kultur
cholangiocyte phenotype
cholangiocyte fænotype
chronic cholangiocyte injury leads to progressive fibrosis in the bile ducts.
Kronisk skade på cholangiocyter fører til fremtidig fibrose i galdelederne.
cholangiocyte proliferation is a key feature of many cholestatic liver diseases.
Cholangiocyters forøgelse er en vigtig egenskab ved mange kolestatiske leverbesvær.
researchers are studying cholangiocyte apoptosis to understand the mechanisms of biliary atresia.
Forskerne undersøger cholangiocyters apoptose for at forstå mekanismerne bag galdeledsats.
bile acids can induce cholangiocyte senescence through oxidative stress pathways.
Galde syrer kan forårsage cholangiocyters senescens gennem oxidativt stress.
the integrity of cholangiocyte tight junctions is essential for bile formation.
Integriteten af cholangiocyters tætte forbindelser er afgørende for galde dannelse.
cholangiocyte-derived cytokines play a crucial role in hepatic inflammation.
Cytokiner fra cholangiocyter spiller en afgørende rolle i leverinflammation.
impaired cholangiocyte secretion contributes to the pathogenesis of cholestasis.
Forstyrret sekretion fra cholangiocyter bidrager til patogenesen af kolestase.
cholangiocyte metabolism of bile acids is altered in patients with primary sclerosing cholangitis.
Metaboliseringen af galde syrer af cholangiocyter ændres hos patienter med primær skleroserende cholangitis.
the study revealed that cholangiocyte signaling pathways are dysregulated during cholestasis.
Studiet viste, at cholangiocyters signaliseringsstier er dysregulerede under kolestase.
cholangiocyte regeneration capacity declines with age and in chronic liver disease.
Cholangiocyters regenerationskapacitet aftager med alderen og i kroniske leverbesvær.
targeting cholangiocyte activation may offer new therapeutic approaches for liver fibrosis.
At målrette cholangiocyters aktivering kan give nye terapeutiske tilgange til leverfibrose.
cholangiocyte death triggers an inflammatory response that promotes hepatic fibrosis.
Cholangiocyters død udløser en inflammatorisk reaktion, der fremmer leverfibrose.
genetic mutations affecting cholangiocyte function have been identified in several liver disorders.
Genetiske mutationer, der påvirker cholangiocyters funktion, er identificeret i flere leverbesvær.
cholangiocyte transdifferentiation is a critical process in the development of cholangiocarcinoma.
Transdifferentiering af cholangiocyter er en afgørende proces i udviklingen af cholangiocarcinom.
understanding cholangiocyte transport mechanisms is essential for developing new treatments.
Forståelsen af cholangiocyters transportmekanismer er afgørende for at udvikle nye behandlinger.
cholangiocyte damage
cholangiocyte skade
cholangiocyte proliferation
cholangiocyte forøgelse
cholangiocyte apoptosis
cholangiocyte apoptose
cholangiocyte dysfunction
cholangiocyte dysfunktion
cholangiocyte injury
cholangiocyte skader
cholangiocyte activation
cholangiocyte aktivering
cholangiocyte secretion
cholangiocyte sekretion
cholangiocyte isolation
cholangiocyte isolering
cholangiocyte culture
cholangiocyte kultur
cholangiocyte phenotype
cholangiocyte fænotype
chronic cholangiocyte injury leads to progressive fibrosis in the bile ducts.
Kronisk skade på cholangiocyter fører til fremtidig fibrose i galdelederne.
cholangiocyte proliferation is a key feature of many cholestatic liver diseases.
Cholangiocyters forøgelse er en vigtig egenskab ved mange kolestatiske leverbesvær.
researchers are studying cholangiocyte apoptosis to understand the mechanisms of biliary atresia.
Forskerne undersøger cholangiocyters apoptose for at forstå mekanismerne bag galdeledsats.
bile acids can induce cholangiocyte senescence through oxidative stress pathways.
Galde syrer kan forårsage cholangiocyters senescens gennem oxidativt stress.
the integrity of cholangiocyte tight junctions is essential for bile formation.
Integriteten af cholangiocyters tætte forbindelser er afgørende for galde dannelse.
cholangiocyte-derived cytokines play a crucial role in hepatic inflammation.
Cytokiner fra cholangiocyter spiller en afgørende rolle i leverinflammation.
impaired cholangiocyte secretion contributes to the pathogenesis of cholestasis.
Forstyrret sekretion fra cholangiocyter bidrager til patogenesen af kolestase.
cholangiocyte metabolism of bile acids is altered in patients with primary sclerosing cholangitis.
Metaboliseringen af galde syrer af cholangiocyter ændres hos patienter med primær skleroserende cholangitis.
the study revealed that cholangiocyte signaling pathways are dysregulated during cholestasis.
Studiet viste, at cholangiocyters signaliseringsstier er dysregulerede under kolestase.
cholangiocyte regeneration capacity declines with age and in chronic liver disease.
Cholangiocyters regenerationskapacitet aftager med alderen og i kroniske leverbesvær.
targeting cholangiocyte activation may offer new therapeutic approaches for liver fibrosis.
At målrette cholangiocyters aktivering kan give nye terapeutiske tilgange til leverfibrose.
cholangiocyte death triggers an inflammatory response that promotes hepatic fibrosis.
Cholangiocyters død udløser en inflammatorisk reaktion, der fremmer leverfibrose.
genetic mutations affecting cholangiocyte function have been identified in several liver disorders.
Genetiske mutationer, der påvirker cholangiocyters funktion, er identificeret i flere leverbesvær.
cholangiocyte transdifferentiation is a critical process in the development of cholangiocarcinoma.
Transdifferentiering af cholangiocyter er en afgørende proces i udviklingen af cholangiocarcinom.
understanding cholangiocyte transport mechanisms is essential for developing new treatments.
Forståelsen af cholangiocyters transportmekanismer er afgørende for at udvikle nye behandlinger.
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