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B Clement

Publications and source records attributed to B Clement.

87 records · Page 5Linked to original sources

Long term production of acute-phase proteins by adult rat hepatocytes co-cultured with another liver cell type in serum-free medium.

Three acute-phase proteins, haptoglobin, alpha 2-macroglobulin and hemopexin, as well as albumin, have been measured daily in the hydrocortisone-supplemented serum-free medium of pure and mixed cultures of adult rat hepatocytes for 5 and 20 days respectively. Whereas plasma protein production rapidly declined in pure culture, it remained relatively stable when hepatocytes were co-cultured with rat liver epithelial cells. In the latter cultures, an early stimulation of albumin and alpha 2-macroglobulin secretion was observed. In addition, four other plasma proteins, fibrinogen, alpha 1-acute-phase protein, alpha 1-acid glycoprotein and alpha 1-antitrypsin were shown by immunodiffusion to still be produced by day 20 of co-culture. These results suggest that hepatocyte co-cultures represent a suitable model for studying the mechanism which controls synthesis of plasma proteins, including acute-phase proteins by liver cells.

Albumins↗

Modulation of human fetal hepatocyte survival and differentiation by interactions with a rat liver epithelial cell line.

Fetal human hepatocytes were isolated by collagenase digestion of liver fragments and cultured either alone or mixed with rat liver epithelial cells. Whereas they did not survive more than 2-3 weeks and showed rapid morphologic and functional alterations in conventional culture, fetal hepatocytes survived and retained or reverted to a globular morphology for several weeks and showed active albumin secretion for at least 13 days when cultured with rat liver cells. Increased levels of secreted albumin correlated with deposition of an insoluble extracellular material containing fibronectin and type III collagen located principally between the two cell types and around parenchymal cells. These observations show that fetal human hepatocytes are able to interact in vitro with another epithelial liver cell type obtained from a divergent species and that these cell-cell interactions influence both hepatocyte survival and expression of albumin.

Animals↗

The N-oxidation of benzamidines in vitro.

The enzymic N-oxidation of a series of N-unsubstituted basic benzamidines (I) to a new type of metabolite, the amidoximes (II), is reported. Rabbit liver homogenates (9000 g supernatant) were used as enzyme source, and metabolites were identified by t.l.c. and mass spectral analysis using synthetic reference compounds. The microsomal NADPH- and oxygen-dependent hydroxylation of benzamidines was not detected after incubation of benzamidine in the presence of SKF 525-A, a known inhibitor of cytochrome P-450. Neither benzamidine or p-methoxybenzamidine is a good substrate for purified microsomal FAD-containing mono-oxygenase.

Amidines↗

Metabolism of promethazine in vitro. Identificaton of N-oxidized products.

1. Incubation of promethazine (Ia) and desmethylpromethazine (Ib) with 9000g supernatant fractions of rabbit liver homogenate resulted in formation of N-dealkylated, N-oxygenated and ring-hydroxylated products. 2. The N-oxidation products identified by t.l.c. and mass spectra using synthetic reference products are promethazine-N-oxide (IX) and the nitrone (VIII), which is believed to be formed chemically and metabolically from the metabolite N-hydroxydesmethylpromethazine (VII).

Animals↗

[Human contact].

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Aged↗

Long-term co-cultures of adult human hepatocytes with rat liver epithelial cells: modulation of albumin secretion and accumulation of extracellular material.

High yields of viable human hepatocytes were obtained by enzymatic perfusion of the left hepatic lobe of kidney donors and cultured alone or with an epithelial cell line derived from rat liver. In conventional cultures, human hepatocytes did not survive more than 2 to 3 weeks and by Day 8 decreased their ability to secrete albumin. When co-cultured, they survived for more than 2 months and secreted high levels of albumin even in a serum-free medium. This long-term survival appeared to correlate with production of an extracellular material which is rich in Type III collagen. In vitro phenotypic alterations of parenchymal cells were reversed by addition of rat liver cells and were characterized by recovery of cuboidal morphology, increased albumin secretion and a shift from Type I to Type III collagen deposition. Rat liver epithelial cells could not be replaced by nonhepatic epithelial cells. These observations suggest that when adult human hepatocytes are maintained in a culture which closely resembles their in vivo environment, they are capable of continuing to actively express specific cell functions.

Adolescent↗

Cell types involved in collagen and fibronectin production in normal and fibrotic human liver.

Three collagen types (I, III and IV) and fibronectin were localized in normal and alcoholic human liver by light and electron microscopy using the indirect immunoperoxidase technique. In normal liver, most of the bundles of collagen fibers stained for type pro-III collagen while only a few reacted for type I. Basement membranes stained for type IV collagen which formed discontinuous discrete deposits in sinusoids. Only fibronectin appeared as an almost continuous layer in the space of Disse. At the intracellular level, hepatocytes were found to contain little type I collagen and large amounts of fibronectin. Fat-storing cells strongly stained for type IV collagen and expressed low amounts of types I and III collagen and fibronectin. Endothelial cells contained low amounts of all the components. Alcoholic livers were studied at three stages: steatosis, fibrosis and cirrhosis. Qualitative and quantitative differences were observed in extracellular and intracellular distributions of matrix proteins. Increased amounts of all components were usually found in fibrotic and cirrhotic livers compared to normal liver. In two fibrotic livers which contained numerous bundles of collagen in the sinusoids, fat-storing cells stained more intensely for type III collagen. In a cryptogenic fibrotic liver, abundant type IV collagen was observed in hepatocytes. These results suggest that hepatocytes, fat-storing cells and endothelial cells are engaged in production of extracellular matrix components in normal human liver. In fibrosis, hepatocytes which normally did not synthesize types III and IV collagen may produce these collagens.

Adolescent↗

Inhibition of purified and membrane-bound flavin-containing monooxygenase 1 by (N,N-dimethylamino)stilbene carboxylates.

(E)-[2-(4-(Dimethylamino)phenyl)vinyl]benzenes bearing a nitrile or carboxyl group in the 2', 3', or 4' position were synthesized and tested for substrate activity with purified pig liver flavin-containing monooxygenase (FMO1). Although the nitrile derivatives were too insoluble to saturate the catalytic site at pH 7.4, they appeared to be substrates with K(m)'s somewhat above their maximum solubility (approximately equal to 0.1 mM) in the assay medium. Of the three carboxylic acid analogs, (E)-4-[2-(4(dimethylamino)phenyl)vinyl]benzoic acid had no detectable water solubility at pH 7.4, and measurements were restricted to (E)-3-[2-(4-(dimethylamino)phenyl)vinyl]benzoic acid (DS3CO) and (E)-2-[2-(4-(dimethylamino)phenyl)vinyl]benzoic acid (DS2CO). While DS3CO and DS2CO were substrates, they also inhibited FMO1 turnover. DS3CO was the more effective inhibitor, and at 2 mM it inhibited FMO1 and microsomal-catalyzed oxidation of methimazole (N-methyl-2-mercaptoimidazole) by 80-90%. Kinetic studies indicated that the aminostilbene carboxylates were noncompetitive with both the xenobiotic substrate, methimazole, and NADPH. However, inhibition constants calculated from double reciprocal plots of velocity vs NADPH were K(i)(comp) 130 and 150 microM for DS3CO and DS2CO, respectively, whereas the uncompetitive Ki's were 10-15 times higher, which suggests that inhibition of NADPH binding may be primarily responsible for inhibition of FMO1 by the aminostilbene carboxylates. This model is also consistent with inhibition of cyclohexanone monooxygenase, a bacterial analog of FMO. DS3CO and DS2CO were again noncompetitive with methimazole but primarily competitive with NADPH. The aminostilbene carboxylates had no detectable effects on activity of pig or rat liver NADPH-cytochrome P450 reductase, which suggests that they are not nonspecific flavoprotein antagonists.

Animals↗

N-hydroxylation of the antiprotozoal drug pentamidine catalyzed by rabbit liver cytochrome P-450 2C3 or human liver microsomes, microsomal retroreduction, and further oxidative transformation of the formed amidoximes. Possible relationship to the biological oxidation of arginine to NG-hydroxyarginine, citrulline, and nitric oxide.

Previous investigations have shown that the antiprotozoal drug pentamidine is N-hydroxylated by rabbit and rat liver microsomal fractions. Indirect evidence for the participation of the cytochrome P-450 enzyme system was obtained. In this study, rabbit liver cytochrome P-450 2C3 is shown by reconstitution experiments with highly purified variants of P-450 2C3 isolated from rabbit liver and purified variants of P-450 2C3 expressed by recombinant Escherichia coli to be a microsomal pentamidine N-hydroxylase. The two variants, P-450 2C3 (6 beta H) and P-450 2C3 (6 beta L), are equally efficient for the formation of the monoamidoxime derivative of pentamidine. N-hydroxypentamidine is further oxidized to the respective amide by reconstituted rabbit liver P-450 enzyme systems involving the oxidase and peroxidase activities of this enzyme. Formation of nitric oxide [(NO); endothelium-derived relaxing factor] during this oxidation is shown by the detection of the cytochrome P-420-Fe(II)-NO complex by visible difference spectroscopy. The possibility for the N-hydroxylation of pentamidine to the corresponding amidoximes and subsequent oxidative conversion to the respective amide derivatives is comparable with the physiological transformation of arginine to citrulline via N-hydroxyarginine with liberation of NO (endothelium-derived relaxing factor). The N-hydroxylated derivatives of pentamidine are easily retroreduced by microsomal fractions from rabbit liver. NADH is preferred to NADPH as cofactor for this reduction, and the reaction is strongly suppressed by the addition of N-methylylhydroxylamine. The N-hydroxylation of pentamidine and the retroreduction are also catalyzed by human liver microsomes.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Oxidation of desmethylpromethazine catalyzed by pig liver flavin-containing monooxygenase. Number and nature of metabolites.

Homogenous preparations of pig liver flavin-containing monooxygenase catalyze the oxidation of desmethylpromethazine to six distinct metabolites. The products, identified with the aid of chemically synthesized reference compounds, arise by N-oxygenation of the side-chain nitrogen and by S-oxygenation of the phenothiazine ring sulfur. Although kinetic constants (KM) differ somewhat for the R and S isomers, both are initially oxidized to either the desmethylpromethazine sulfoxide or a secondary hydroxylamine. All other metabolites detected are formed by further oxidation of the latter product. Reaction rates determined with intermediates indicate that the secondary hydroxylamine is oxidized to an oxime sulfoxide via the following intermediates: nitrone-->N-hydroxydidesmethylpromethazine-->oxime-->oxime sulfoxide. All of the steps, except for the hydrolysis of the nitrone, are enzymic, and the data presented demonstrate unambiguously for the first time that the oxidative steps in the metabolism of a secondary amine to the oxime are enzymic. In addition, sulfoxidation of desmethylpromethazine is the first demonstration that flavin-containing monooxygenase can catalyze sulfoxidation of a phenothiazine drug bearing a basic side-chain nitrogen.

Amines↗