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Table representation of search results timeline featuring number of search results per year.

Year Number of Results
1960 1
1965 1
1966 2
1969 2
1970 3
1971 2
1972 2
1973 1
1974 3
1975 7
1976 12
1977 6
1978 6
1979 6
1980 5
1981 9
1982 4
1983 6
1984 7
1985 3
1986 8
1987 5
1988 5
1989 5
1990 4
1991 4
1992 5
1993 3
1994 2
1995 2
1996 3
1997 6
1998 3
1999 2
2000 1
2001 2
2002 2
2003 5
2004 6
2005 7
2006 5
2007 2
2008 4
2010 4
2011 2
2012 2
2013 1
2014 5
2015 3
2016 2
2017 4
2018 2
2019 1
2020 1
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196 results
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Page 1
Expanding etiology of progressive familial intrahepatic cholestasis.
Henkel SA, Squires JH, Ayers M, Ganoza A, Mckiernan P, Squires JE. Henkel SA, et al. World J Hepatol. 2019 May 27;11(5):450-463. doi: 10.4254/wjh.v11.i5.450. World J Hepatol. 2019. PMID: 31183005 Free PMC article.
A growing number of PFIC have been described based on an expanded understanding of biliary transport mechanism defects and the development of a common phenotype. CONCLUSION: We present a summary of current advances made in a number of areas relevant to both the clas …
A growing number of PFIC have been described based on an expanded understanding of biliary transport mechanism defects and the …
Alterations in Intestinal Microbiota Lead to Production of Interleukin 17 by Intrahepatic γδ T-Cell Receptor-Positive Cells and Pathogenesis of Cholestatic Liver Disease.
Tedesco D, Thapa M, Chin CY, Ge Y, Gong M, Li J, Gumber S, Speck P, Elrod EJ, Burd EM, Kitchens WH, Magliocca JF, Adams AB, Weiss DS, Mohamadzadeh M, Grakoui A. Tedesco D, et al. Gastroenterology. 2018 Jun;154(8):2178-2193. doi: 10.1053/j.gastro.2018.02.019. Epub 2018 Feb 15. Gastroenterology. 2018. PMID: 29454797 Free PMC article.
BACKGROUND & AIMS: Variants at the ABCB4 or MDR2 locus, which encodes a biliary transport protein, are associated with a spectrum of cholestatic liver diseases. ...
BACKGROUND & AIMS: Variants at the ABCB4 or MDR2 locus, which encodes a biliary transport protein, are associated with a s …
Genome-wide association study identifies loci influencing concentrations of liver enzymes in plasma.
Chambers JC, Zhang W, Sehmi J, Li X, Wass MN, Van der Harst P, Holm H, Sanna S, Kavousi M, Baumeister SE, Coin LJ, Deng G, Gieger C, Heard-Costa NL, Hottenga JJ, Kühnel B, Kumar V, Lagou V, Liang L, Luan J, Vidal PM, Mateo Leach I, O'Reilly PF, Peden JF, Rahmioglu N, Soininen P, Speliotes EK, Yuan X, Thorleifsson G, Alizadeh BZ, Atwood LD, Borecki IB, Brown MJ, Charoen P, Cucca F, Das D, de Geus EJ, Dixon AL, Döring A, Ehret G, Eyjolfsson GI, Farrall M, Forouhi NG, Friedrich N, Goessling W, Gudbjartsson DF, Harris TB, Hartikainen AL, Heath S, Hirschfield GM, Hofman A, Homuth G, Hyppönen E, Janssen HL, Johnson T, Kangas AJ, Kema IP, Kühn JP, Lai S, Lathrop M, Lerch MM, Li Y, Liang TJ, Lin JP, Loos RJ, Martin NG, Moffatt MF, Montgomery GW, Munroe PB, Musunuru K, Nakamura Y, O'Donnell CJ, Olafsson I, Penninx BW, Pouta A, Prins BP, Prokopenko I, Puls R, Ruokonen A, Savolainen MJ, Schlessinger D, Schouten JN, Seedorf U, Sen-Chowdhry S, Siminovitch KA, Smit JH, Spector TD, Tan W, Teslovich TM, Tukiainen T, Uitterlinden AG, Van der Klauw MM, Vasan RS, Wallace C, Wallaschofski H, Wichmann HE, Willemsen G, Würtz P, Xu C, Yerges-Armstrong LM; Alcohol Genome-wide Association (AlcGen) Consortium; Diabetes Genetics Replication and Meta-analyses (DIAGRAM+) Study; Genetic Investigation of Anthropometric Traits (GIANT) Consortium; Global Lipids Genetics Consortium; Genetics of Liver Disease (GOLD) Consortium; International Consortium for Blood Pressure (ICBP-GWAS); Meta-analyses of Glucose and Insulin-Related Traits Consortium (MAGIC), Abecasis GR, Ahmadi KR, Boomsma DI, Caulfield M, Cookson WO, van Duijn CM, Froguel P, Matsuda K, McCarthy MI, Meisinger C, Mooser V, Pietiläinen KH, Schumann G, Snieder H, Sternberg MJ, Stolk RP, Thomas HC, Thorsteinsdottir U, Uda M, Waeber G, Wareham NJ, Waterworth DM, Watkins H, Whitfield JB, Witteman JC, Wolffenbuttel BH, Fox CS, Ala-Korpela M, Stefansson K, Vollenweider P, Völzke H, Schadt EE, Scott J, Järvelin MR, Elliott P, Kooner JS. Chambers JC, et al. Nat Genet. 2011 Oct 16;43(11):1131-8. doi: 10.1038/ng.970. Nat Genet. 2011. PMID: 22001757 Free PMC article.
We identified 69 candidate genes, including genes involved in biliary transport (ATP8B1 and ABCB11), glucose, carbohydrate and lipid metabolism (FADS1, FADS2, GCKR, JMJD1C, HNF1A, MLXIPL, PNPLA3, PPP1R3B, SLC2A2 and TRIB1), glycoprotein biosynthesis and cell surface …
We identified 69 candidate genes, including genes involved in biliary transport (ATP8B1 and ABCB11), glucose, carbohydrate and …
Biliary transport of irinotecan and metabolites in normal and P-glycoprotein-deficient mice.
Iyer L, Ramírez J, Shepard DR, Bingham CM, Hossfeld DK, Ratain MJ, Mayer U. Iyer L, et al. Cancer Chemother Pharmacol. 2002 Apr;49(4):336-41. doi: 10.1007/s00280-001-0420-4. Epub 2002 Feb 1. Cancer Chemother Pharmacol. 2002. PMID: 11914914
SN-38 and SN-38G biliary transport was unchanged in mice lacking P-gp after vehicle treatment, indicating a lack of P-gp mediation in their transport. PSC833 significantly reduced (56-89%) SN-38 and SN-38G biliary transport in Wt and mdr1a/1b(-/ …
SN-38 and SN-38G biliary transport was unchanged in mice lacking P-gp after vehicle treatment, indicating a lack of P-gp media …
[Biliary transport disorders in the adult].
Ziol M. Ziol M. Ann Pathol. 2008 Nov;28 Spec No 1(1):S49-50. doi: 10.1016/j.annpat.2008.09.012. Epub 2008 Oct 15. Ann Pathol. 2008. PMID: 18984298 French. No abstract available.
A Predictive 3D Multi-Scale Model of Biliary Fluid Dynamics in the Liver Lobule.
Meyer K, Ostrenko O, Bourantas G, Morales-Navarrete H, Porat-Shliom N, Segovia-Miranda F, Nonaka H, Ghaemi A, Verbavatz JM, Brusch L, Sbalzarini I, Kalaidzidis Y, Weigert R, Zerial M. Meyer K, et al. Cell Syst. 2017 Mar 22;4(3):277-290.e9. doi: 10.1016/j.cels.2017.02.008. Epub 2017 Mar 18. Cell Syst. 2017. PMID: 28330614 Free article.
The combined experiment-theory approach revealed spatial heterogeneities of biliary geometry and hepatocyte transport activity. ...Our model can be applied to functionally characterize liver diseases and quantitatively estimate biliary transport upon d …
The combined experiment-theory approach revealed spatial heterogeneities of biliary geometry and hepatocyte transport activity …
Biliary transport of IgA: role of secretory component.
Fisher MM, Nagy B, Bazin H, Underdown BJ. Fisher MM, et al. Proc Natl Acad Sci U S A. 1979 Apr;76(4):2008-12. doi: 10.1073/pnas.76.4.2008. Proc Natl Acad Sci U S A. 1979. PMID: 287039 Free PMC article.
Biliary transport of rat immunoglobulin was studied by perfusion of isolated rat liver with blood containing radiolabeled immunoglobulin. ...It was concluded that biliary transport of polymeric IgA requires combination of it with secretory component in
Biliary transport of rat immunoglobulin was studied by perfusion of isolated rat liver with blood containing radiolabeled immu
Biliary transport of glutathione and methylmercury.
Ballatori N, Clarkson TW. Ballatori N, et al. Am J Physiol. 1983 Apr;244(4):G435-41. doi: 10.1152/ajpgi.1983.244.4.G435. Am J Physiol. 1983. PMID: 6837749
The hepatobiliary transport of glutathione (GSH) and methylmercury (MM) was investigated in male and female rats anesthetized with pentobarbital sodium. ...The results suggest the presence of a biliary transport system for GSH that determines the biliary
The hepatobiliary transport of glutathione (GSH) and methylmercury (MM) was investigated in male and female rats anesthetized with pe …
Metformin and AMP Kinase Activation Increase Expression of the Sterol Transporters ABCG5/8 (ATP-Binding Cassette Transporter G5/G8) With Potential Antiatherogenic Consequences.
Molusky MM, Hsieh J, Lee SX, Ramakrishnan R, Tascau L, Haeusler RA, Accili D, Tall AR. Molusky MM, et al. Arterioscler Thromb Vasc Biol. 2018 Jul;38(7):1493-1503. doi: 10.1161/ATVBAHA.118.311212. Epub 2018 May 31. Arterioscler Thromb Vasc Biol. 2018. PMID: 29853564 Free PMC article.
Recent studies have suggested metformin may upregulate macrophage reverse cholesterol transport. The final steps of reverse cholesterol transport are mediated by the sterol transporters, ABCG5 (ATP-binding cassette transporter G5) and ABCG8 (ATP-binding cassette tra …
Recent studies have suggested metformin may upregulate macrophage reverse cholesterol transport. The final steps of reverse cholester …
Biliary transport systems: short-term regulation.
Kubitz R, Helmer A, Häussinger D. Kubitz R, et al. Methods Enzymol. 2005;400:542-57. doi: 10.1016/S0076-6879(05)00030-3. Methods Enzymol. 2005. PMID: 16399369
Short-term regulation of transcellular transport has to guarantee intra- and extracellular molecular homeostasis and has to meet the actual cellular metabolic needs. As transport activity depends not only on transporter expression, measurements of mRNA or protein le …
Short-term regulation of transcellular transport has to guarantee intra- and extracellular molecular homeostasis and has to meet the …
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