Keywords: کبد انسانی; Chukanovite; Human liver; Steel corrosion; Gibbs free energy; Medical mineralogy;
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Keywords: کبد انسانی; Deformable image registration; Computer-aided interventions; Finite element method; Human liver;
Keywords: کبد انسانی; Human liver; PPARα; Target genes; Non-alcoholic fatty liver disease; Lipid metabolism;
Keywords: کبد انسانی; Human liver; Subcellular fractionation; Absolute quantitative proteomics; Total protein approach; Drug metabolism; Drug transport; MS; mass spectrometry; TPA; total protein approach; SDS; sodium dodecyl sulfate; MED-FASP; multiple enzymes for sample dig
Keywords: کبد انسانی; 4-HNE; 4-hydroxynonenal; BTB; blood-testis barrier; cDNA; complementary deoxyribonucleic acid; DNP; Dinitrophenyl; FBS; fetal bovine serum; GLUT1; glucose transporter 1; GLUT2; glucose transporter 2; GLUT3; glucose transporter 3; hL; human liver; hSC; h
Keywords: کبد انسانی; Human liver; Parenchyma; Failure; Tensile test; Material model; Cohesive zone Model; Finite element; Optimization;
Keywords: کبد انسانی; Human liver; Statistical shape model; Principal component analysis; Mean and boundary models
Keywords: کبد انسانی; Aging; Human liver; Standard proteasome; Immunoproteasome; PA28αβ regulator; Gender;
Keywords: کبد انسانی; Perfluoroalkyl and polyfluoroalkyl substances; Cancer; Human liver; Serum; Cirrhosis;
Integrative omics data analyses of repeated dose toxicity of valproic acid in vitro reveal new mechanisms of steatosis induction
Keywords: کبد انسانی; VPA; valproic acid; PHH; primary human hepatocytes; HDAC; histone deacetylase; AOP; adverse outcome pathway; MeDIP; Methylated DNA Immunoprecipitation; PSW-ANOVA; Probe Sliding Window-ANOVA; DMR; differential methylated regions; DMG; differentially methyl
Putting xanthine oxidoreductase and aldehyde oxidase on the NO metabolism map: Nitrite reduction by molybdoenzymes
Keywords: کبد انسانی; AO; aldehyde oxidase; AFR; activity-to-flavin ratio; Cb; cytoglobin; Cc; cytochrome c; CcO; cytochrome c oxidase; DAF-FM; 4-amino-5-methylamino-2â²,7â²-difluorofluorescein; DAF-FM DA; DAF-FM diacetate; DPI; diphenyleneiodonium chloride; EPR; electron pa
Human liver infiltrating γδ T cells are composed of clonally expanded circulating and tissue-resident populations
Keywords: کبد انسانی; Gamma delta T cells; T cell receptor; Liver immune surveillance; Liver-resident T cells; Human liver; Immunological memory;
Gut and liver T-cells of common clonal origin in primary sclerosing cholangitis-inflammatory bowel disease
Keywords: کبد انسانی; High-throughput sequencing; Human gut; Human liver; IBD; PSC; T cell receptor; Ulcerative colitis; Sclerosing cholangitis; Inflammatory bowel disease;
Visualization of hepatitis E virus RNA and proteins in the human liver
Keywords: کبد انسانی; Hepatitis E virus (HEV); Histopathology; Immunohistochemistry; In situ hybridization; Hepatitis; Human liver;
Research ArticleBiliary epithelium and liver B cells exposed to bacteria activate intrahepatic MAIT cells through MR1
Keywords: کبد انسانی; Human liver; Mucosal-associated invariant T cells; Biliary epithelium; E. coli; Immune response; Biliary firewall;
Distribution of the LDL receptor within clathrin-coated pits and caveolae in rat and human liver
Keywords: کبد انسانی; LDL; low density lipoprotein; VLDL; very low density lipoprotein; LDLRAP1; LDL receptor adaptor protein-1; CH; cholesterol; ZA; zaragozic acid A; HC; heavy chain; TS; Triton soluble; TI; Triton insoluble; LDL receptor; Clathrin; Caveolin-1; Rat liver; Hum
Integrated Analysis of Rifampicin-induced MicroRNA and Gene Expression Changes in Human Hepatocytes
Keywords: کبد انسانی; pregnane X receptor; induction; cytochrome P450; post-transcriptional regulation; human liver;
Examination of the carboxylesterase phenotype in human liver
Keywords: کبد انسانی; Carboxylesterases; Human liver; CES1; Activity-based probes; Interindividual variation; Pesticides;
ChREBP expression in the liver, adipose tissue and differentiated preadipocytes in human obesity
Keywords: کبد انسانی; ChREBP; Human liver; Subcutaneous adipose tissue; Omental; Preadipocyte;
Functions and transcriptional regulation of adult human hepatic UDP-glucuronosyl-transferases (UGTs): Mechanisms responsible for interindividual variation of UGT levels
Keywords: کبد انسانی; AhR, Ah receptor; CAR, constitutive androstane receptor; PPAR, peroxisome proliferator-activated receptor; PXR, pregnane X receptor; UGT, UDP-glucuronosyltransferaseHepatic UGTs; Human liver; Interindividual variation; Transcription factors; Xenosensors
Cytochrome 3A and 2E1 in human liver tissue: Individual variations among normal Japanese subjects
Keywords: کبد انسانی; Human liver; Drug metabolism; Cytochrome P450; Cirrhosis; Steatosis; Hepatocellular carcinoma
A comparative analysis of liver transcriptome suggests divergent liver function among human, mouse and rat
Keywords: کبد انسانی; Transcriptome; Human liver; MPSS; Microarray; SAGE; EST
Identification of the major human hepatic and placental enzymes responsible for the biotransformation of glyburide
Keywords: کبد انسانی; M, metabolite; IS, internal standard; CYP, cytochrome P450; HPLC, high performance liquid chromatography; MS, mass spectrometryGlyburide; Human placenta; Human liver; Enzymes; Glyburide metabolism
Dexamethasone controls aryl hydrocarbon receptor (AhR)-mediated CYP1A1 and CYP1A2 expression and activity in primary cultures of human hepatocytes
Keywords: کبد انسانی; Drug metabolism; Cytochrome P450; Glucocorticoids; Dioxin receptor; Human liver;
In vivo protein delivery to human liver-derived cells using hepatitis B virus envelope pre-S region
Keywords: کبد انسانی; hepatitis B virus; pre-S region; human liver; in vivo targeting; drug delivery system
Polybrominated diphenyl ethers (PBDEs) and polychlorinated biphenyls (PCBs) in human liver and adipose tissue samples from Belgium
Keywords: کبد انسانی; Polybrominated diphenyl ethers; Polychlorinated biphenyls; Human liver; Human adipose tissue; Age and gender dependency; Belgium
In vitro characterisation of human renal and hepatic frusemide glucuronidation and identification of the UDP-glucuronosyltransferase enzymes involved in this pathway
Keywords: کبد انسانی; Frusemide; Glucuronidation; UDP-glucuronosyltransferase; Human kidney; Human liver
Metabolism of 17α-hydroxyprogesterone caproate by hepatic and placental microsomes of human and baboons
Keywords: کبد انسانی; Preterm delivery; 17α-Hydroxyprogesterone caproate; Metabolism; Microsomes; Human placenta; Baboon placenta; Human liver; Baboon liver
Comparison of 2-aminophenol and 4-nitrophenol as in vitro probe substrates for the major human hepatic sulfotransferase, SULT1A1, demonstrates improved selectivity with 2-aminophenol
Keywords: کبد انسانی; SULT, sulfotransferase; PAPS, 3′-phosphoadenosine 5′-phosphosulfateSulfotransferase; Sulfation; Drug metabolism; Detoxification; Human liver; Enzyme kinetics
A multiple reaction monitoring method for absolute quantification of the human liver alcohol dehydrogenase ADH1C1 isoenzyme
Keywords: کبد انسانی; Absolute quantification; LC–MS/MS; Multiple reaction monitoring; Human liver; Alcohol dehydrogenase
Characterization of human liver cytochromes P450 by combining the biochemical and proteomic approaches
Keywords: کبد انسانی; Microsomes; Human liver; Cytochromes P450; Microsomal oxidation; 1D-electrophoresis; Mass spectrometry; Quantitation;
Secretin receptors in the human liver: Expression in biliary tract and cholangiocarcinoma, but not in hepatocytes or hepatocellular carcinoma
Keywords: کبد انسانی; Secretin receptor; Human liver; Cholangiocellular carcinoma; Hepatocellular carcinoma; Receptor autoradiography
Structural characterization of human liver heparan sulfate
Keywords: کبد انسانی; Heparan sulfate; Human liver; Structure; Glycosaminoglycan; Proteoglycan;
Organophosphorothionate pesticides inhibit the bioactivation of imipramine by human hepatic cytochrome P450s
Keywords: کبد انسانی; Organophosphorothionate pesticides; Imipramine; Cytochrome P450; Metabolism; Inhibition; Human liver;
Renal and hepatic accumulation of cadmium and lead in the expression of CYP4F2 and CYP2E1
Keywords: کبد انسانی; Metal toxins; Cadmium; Lead; Zinc; Copper; Environmental exposure; CYP2E1; CYP4F2; Human liver; Human kidney;