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F Martel

Publications and source records attributed to F Martel.

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Increased avidity of mutant IgM antibodies caused by the absence of COOH-terminal glycosylation of the mu H chain.

We have previously described the isolation of two hybridoma variants secreting higher avidity IgM (D5 and 7F5), starting from the E11 hybridoma cell line, which produces an antibody specific for the A Ag of the ABO blood group system. In order to explain at the molecular level this increased reactivity, cDNA encoding the H and L chains of the E11, D5, and 7F5 mAb were cloned and sequenced. Comparison of the nucleotide sequences showed a single point mutation in each of the two mAb produced by the hybridoma variants. The mutations were both located in the H chain C region and caused a Ser to Phe substitution at position 565 in the D5 mAb and a Asn to Tyr substitution at position 563 in the 7F5 mAb. Both substitutions modified the consensus glycosylation sequence (Asn-X-Ser/Thr) located in the tail piece of the secretory mu-chain. The absence of glycosylation at this site was confirmed by CNBr cleavage of the [14C]mannose-labeled mAb. The two single point mutations were solely responsible for the increased avidity of the antibodies, as confirmed by site-directed mutagenesis of the E11 mu-chain and serologic analysis of the mutated E11 antibodies. We conclude that the absence of glycosylation at Asn 563 is responsible for the increased avidity of the mutant, possibly by altering the quaternary structure of the IgM polymer. To our knowledge, this is the first report that point mutations in the H chain C region can influence the reactivity of IgM mAb.

Amino Acid Sequence↗

Predominance of oxidative deamination in the metabolism of exogenous noradrenaline by the normal and chemically denervated human uterine artery.

Longitudinal strips were prepared from human uterine arteries obtained at hysterectomy. The artery had a low content of noradrenaline and dopamine, contrasting with a high content of the deaminated catechols, dihydroxyphenylglycol (DOPEG) and dihydroxymandelic acid (DOMA), which together represented 98% of endogenous catechols. When incubated with 3H-noradrenaline (0.1 mumol/l), the uterine artery removed, accumulated and metabolized noradrenaline. Deaminated metabolites predominated, DOMA being the most abundant metabolite. Cocaine markedly reduced the accumulation of 3H-noradrenaline and abolished 3H-DOPEG formation, but did not change 3H-DOMA. Selective monoamine oxidase (MAO) inhibitors (clorgyline, selegiline and 2-amino ethyl carboxamide derivatives) caused a marked decrease in the amounts of 3H-DOPEG, 3H-DOMA and 3H-O-methylated and deaminated metabolites (OMDA) formed by the tissue and an increase in 3H-normetanephrine (NMN) formation. Inhibition of catechol-O-methyltransferase suppressed NMN formation and reduced that of OMDA; hydrocortisone slightly depressed the formation of DOMA and OMDA. Homogenates of the uterine artery deaminated 3H-5-HT, 14C-phenylethylamine and 3H-tyramine; inhibition curves of the deamination of 3H-tyramine by clorgyline and selegiline were compatible with the presence of both MOA A and MOA B. Exposure of the strips to 6-hydroxydopamine (1.5 mmol/l for 20 min; 3 exposure periods followed by washout periods of 15,15 and 30 min) resulted in complete and selective chemical denervation of the arterial tissue. This chemical denervation had effects which were similar to those of cocaine. The 2-amino ethyl carboxyamide derivatives markedly reduced the formation of deaminated metabolites by the denervated strips.(ABSTRACT TRUNCATED AT 250 WORDS)

Arteries↗

Effects of nebivolol stereoisomers on the action of adrenaline on blood pressure, heart rate and blood levels of noradrenaline and DOPEG.

1. Nebivolol (a new beta 1-adrenoceptor blocking drug) has particular effects on the cardiovascular system, i.e. it induces hypotension without affecting cardiac function or increasing peripheral vascular resistances. In this study, we aimed to evaluate the effects of nebivolol and its stereoisomers on the actions of adrenaline (AD) at the cardiovascular level as well as at the prejunctional level (as ascertained by modification of noradrenaline (NA) and dihydroxyphenylglycol (DOPEG) plasma levels in the anaesthetized dog. 2. AD infusion (0.1 micrograms kg-1 min-1) did not induce statistically significant changes in mean blood pressure and heart rate; it caused a pronounced and sustained rise of AD levels, no significant alterations in NA levels and a marked, progressive and sustained increase in DOPEG levels. 3. Mean blood pressure was not affected by any of the nebivolol isomers. d- and dl-nebivolol in the two doses used (0.3 and 0.03 mg kg-1 in 15 min) caused a significant and dose-dependent decrease in heart rate. Plasma levels of AD and NA were not changed by any of the nebivolol isomers tested. However, all of them significantly reduced the increase in plasma levels of DOPEG induced by adrenaline infusion. 4. We conclude (1) that AD infusion in the dog facilitates NA release and that DOPEG is a good index of this effect; and (2) nebivolol appears to act at the prejunctional level, reducing the increase in NA release induced by adrenaline, as shown by the effect on DOPEG plasma levels.

Adrenergic beta-Antagonists↗

Superoxide dismutase partially prevents sympathetic denervation by 6-hydroxydopamine.

The effects of superoxide dismutase (S.O.D.) in two models of chemical denervation induced by 6-hydroxydopamine (6-OHDA) were studied. To evaluate the effects of S.O.D. on in vitro 6-OHDA-induced denervation, fragments of the lateral saphenous veins of mongrel dogs were pre-incubated in oxygenated Krebs-Henseleit solution with or without S.O.D. and then incubated under control conditions, with 6-OHDA or with 6-OHDA + S.O.D. Following the incubation period the fragments were repeatedly washed with Krebs solution and then used for determination of noradrenaline and for morphological study. 6-OHDA produced a profound depletion of noradrenaline. This depletion was significantly reduced although not prevented by S.O.D. The protective effect of S.O.D. was concentration-dependent. The ultrastructural study confirmed the 6-OHDA-induced sympathetic nerve degeneration as well as the protective effect afforded by S.O.D. In order to evaluate the effects of S.O.D. on in vivo 6-OHDA-induced denervation, male Wistar rats were anaesthetized and the tail vein cannulated. Saline or S.O.D. were intravenously delivered. 6-OHDA was injected five minutes after the beginning of infusions. Fragments of the left ventricle and vasa deferentia were used for determination of noradrenaline and for morphological study. 6-OHDA produced a significant depletion of noradrenaline in the left ventricle and vas deferens (to 8% and 18% of control values respectively). This depletion was reduced, though not prevented by S.O.D. Morphological data confirmed the neurotoxic effect of 6-OHDA and a protective role for S.O.D.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Characterization of higher avidity monoclonal antibodies produced by murine B-cell hybridoma variants selected for increased antigen binding of membrane Ig.

Somatic mutation in the Ig genes plays a major role in the increase of antibody affinity observed in secondary immunologic responses. It has been shown that the mechanism responsible for the high rate of somatic mutation in the Ig genes was active not only in normal B lymphocytes but also in B-cell hybridomas secreting mAb. Also, it has been reported that B-cell hybridomas were positive for membrane Ig of the same specificity as the secreted mAb. The presence of membrane Ig suggested that somatic variants secreting mAb of higher affinity could be selected by the increased capacity of these hybridoma cells to bind immobilized Ag. This hypothesis was tested with hybridoma cells secreting an IgM mAb reacting with the A Ag of the ABO blood group system. In two selection experiments, we have isolated several variant cell lines secreting mAb of increased avidity for the A Ag under similar IgM concentrations. Biochemical characterization of one of the variant mAb indicated that the mutation responsible for the increased avidity has occurred in the heavy chain gene. The method developed may have profound implications for the diagnostic and therapeutic use of mAb and will permit the study, in an in vitro system, of the role of somatic mutations in antibody diversity.

Animals↗

Group 3-anti Rh.

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Antibody Specificity↗

Establishment of human cell lines producing anti-D monoclonal antibodies: identification of Rhesus D antigen.

Two cell lines producing monoclonal antibodies have been established from peripheral blood of a negative Rhesus blood donor which has been immunized with positive Rhesus red blood cells. Two monoclonal antibodies Co II 8.8 and Co II 7.12 have been selected. Both are IgG1 antibodies, but recognize different epitopes on the Rhesus D antigen, apparently associated with different subunits of the D antigen. Thus the Co II 8.8, like the positive serum, immunoprecipitates an antigen of a relative molecular weight of 33 kDa, while the Co II 7.12 recognizes an antigen of Mr 42 kDa.

Antibodies, Monoclonal↗

[Limulus test using a chromogenic method: application to the control of pyrogens in blood derivatives].

We report here the application of the LAL Test to a chromogenic substrate to detect endotoxins in Human Blood Products. In order to reduce the cost, we used a microplate procedure with the Multiskan Reader. Quantitative results in the range of 0,01 to 0,1 ng/ml allowed for a good correlation with the Rabbit Pyrogen test. For 20% albumins and 4% albumins, the mean endotoxins levels of non pyrogenic lots were 0,38 +/- 0,18 and 0,09 +/- 0,03 ng/ml. All the lots which passed the Rabbit Pyrogen test had endotoxins levels lower than 1 ng/ml and 0,2 ng/ml, respectively. We can use this test for other plasma derivatives; Gammaglobulines and PPSB are easily tested. Dried Concentrated Antihemophilic Factor and Dried plasma contain citrate which inhibits the reaction. Dilution and Addition of Calcium Chloride overcome this inhibition. For dried plasma, we should destroy plasma inhibitors by heating at 75 degrees C. This sensitive and reproductible in vitro assay improves the control of pyrogenecity in Human Blood Products.

Blood Transfusion↗

Inward transport of 3H-MPP+ in freshly isolated rat hepatocytes: evidence for interaction with catecholamines.

1-Methyl-4-phenylpyridinium (MPP+), the neurotoxic metabolite of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP), is efficiently taken up and accumulated by rat hepatocytes. However, the nature of the mechanism(s) involved in the hepatic uptake of MPP+ remains partially unknown. The aim of the present study was to further characterize the hepatic uptake of 3H-MPP+, namely by investigating the interactions of catecholamines (which are also efficiently taken up by rat hepatocytes) with MPP+ transport. The accumulation of 3H-MPP+ in isolated rat hepatocytes occurred through saturable and non-saturable mechanisms. The kinetics of the saturable component of 3H-MPP+ uptake was as follows: Vmax = 181.3 +/- 11.1 pmol mg protein-1 min-1 and Km = 47.1 microM (27.9, 66.3) (n = 5). The diffusion constant (in ml mg protein-1 min-1) for the non-saturable uptake of 3H-MPP+ was 0.00068 (0.00052, 0.00083) (n = 5). From the analysis of the time course of 3H-MPP+ accumulation at a substrate concentration of 100 nM 3H-MPP+, it was found that the rate constant of inward transport of 3H-MPP+ into hepatocytes (k(in)) was 15.7 +/- 3.8 microliters mg protein-1 min-1, the rate constant of outward transport of 3H-MPP+ from hepatocytes (kout) was 0.077 +/- 0.023 min-1 and the equilibrium accumulation (Amax) of 3H-MPP+ was 20.2 +/- 2.0 pmol mg protein-1 (n = 36). Decynium22 (1,1'-diethyl-2,2'-cyanide; 1 microM) significantly reduced kin to 6.1 +/- 1.8 microliters mg protein-1 min-1 (P < 0.05) and the equilibrium accumulation (Amax) of 3H-MPP+ to 9.6 +/- 1.3 pmol mg protein-1 (P < 0.005) (n = 36). 3H-MPP+ accumulation (in cells incubated with 200 nM 3H-MPP+) was sensitive to (-)-adrenaline, (-)-isoprenaline, (-)-dopamine, (+/-)-adrenaline and (-)-noradrenaline. The most potent catecholamine in inhibiting 3H-MPP+ uptake was (-)-adrenaline, with an IC50 of 99 (22, 449) microM (n = 6). (-)-Adrenaline competitively inhibited 3H-MPP+ uptake, as it significantly increased the Km value of 3H-MPP+ uptake (to 125.4 microM (63.6; 187.1); P < 0.02; n = 3) but did not change the Vmax value. The cyanine-derivatives decynium22 and cyanine863 (1-ethyl-2-([1,4-dimethyl-2-phenyl-6-pyrimidinylidene] methyl)quinolinium), which inhibit uptake2 as well as the apical type of the renal transporter for organic cations, potently inhibited 3H-MPP+ uptake with IC50's of 1.4 (0.4-5.3) (n = 6) and 6.5 (2.6-16) (n = 4) microM, respectively. Under conditions of monoamine oxidase (MAO) and catechol-O-methyl transferase (COMT) inhibition (with either pargyline (500 microM) + Ro01-2812 (3,5-dinitropyrocatechol; 2 microM) or pargyline (500 microM) + U-0521 (3,4-dihidroxy-2-methyl-propiophenone; 12 microM)), (-)-adrenaline (up to 1 mM) had no inhibitory effect on the uptake of 3H-MPP+. Moreover, the uptake of 3H-MPP+ in the presence of pargyline + Ro 01-2812 was significantly lower (66.9 +/- 30.4%; P < 0.05; n = 4) than in the absence of these compounds. Therefore, the effect of these MAO and COMT inhibitors on 3H-MPP+ uptake was examined. Interestingly enough, pargyline, Ro 01-2812 and U-0521 were found to inhibit the uptake of 3H-MPP+ (in cells incubated with 200 nM 3H-MPP+): 500 microM pargyline, 2 microM Ro 01-2812 and 100 microM U-0521 decreased the accumulation of 3H-MPP+ to 38.1 +/- 6.8 (n = 5), 60.5 +/- 10.1 (n = 7) and 71.3 +/- 14.5 (n = 7) % of control, respectively. It is concluded that 3H-MPP+ is efficiently taken up by rat hepatocytes by a carrier-mediated mechanism sensitive to catecholamines, decynium22 and cyanane863, and to the enzyme inhibitors pargyline, Ro 01-2812 and U-0521.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine↗

Transport of small organic cations in the rat liver. The role of the organic cation transporter OCT1.

The kidneys and the liver are the principal organs for the inactivation of circulating organic cations. Recently, an organic cation transporter (OCT1) has been cloned from rat kidney. In order to answer the question whether OCT1 is involved also in hepatic uptake of organic cations, the pharmacological characteristics of organic cation transport in hepatocytes were compared to the characteristics of transiently expressed OCT1. Primary cultures of rat hepatocytes avidly accumulated the small organic cation 3H-1-methyl-4-phenylpyridinium (3H-MPP+). At equilibrium, the hepatocytes accumulated 3H-MPP+ 56-fold. Initial rates of specific 3H-MPP+ transport in hepatocytes were saturable. The half-saturating concentration was 13 mumol/l. 3H-MPP+ transport was sensitive to quinine (Ki = 0.79 mumol/l) and cyanine863 (Ki = 0.097 mumol/l). Quinine and cyanine863 are known inhibitors of type I hepatic transport of cationic drugs and of renal excretion of organic cations, respectively. To compare the functional characteristics of 3H-MPP+ transport in hepatocytes with those of OCT1, OCT1 has been heterologously expressed and characterized in a mammalian cell line (293 cells). Initial rates of 3H-MPP+ transport were saturable, the Km being 13 mumol/l. The rank order of inhibitory potencies of various inhibitors was almost identical in hepatocytes and 293 cells transiently transfected with OCT1. There was a positive correlation between the Ki's for the inhibition of 3H-MPP+ transport in isolated hepatocytes and transfected 293 cells (r = 0.85; P < 0.01; n = 8). The results indicate that OCT1 is functionally expressed not only in the kidney but also in hepatocytes where it is responsible for the transport of small organic cations which, in the past, have been classified as type I substrates.

Animals↗

Comparison of the effect of cyclic AMP on the content and release of dopamine and 1-methyl-4-phenylpyridinium (Mpp+) in PC12 cells.

1 The aim of this work was to investigate the effect of acute and chronic exposure of rat pheochromocytoma (PC12) cells to elevated cAMP, using forskolin, dibutyryl-cAMP (db-cAMP) or isobutylmethylxanthine (IBMX), on endogenous dopamine content and release and on [3H]-1-methyl-4-phenylpyridinium ([3H]-MPP+) uptake and release, under basal conditions and under KCl-stimulation. 2 Cultured PC12 cells synthetized and accumulated large amounts of dopamine, but not noradrenaline or adrenaline. The release of dopamine by the cells was markedly increased in response to 50 mM KCl. 3 Acute and chronic treatment of the cells with forskolin (30 microM), but not IBMX (100 microM), slightly increased the spontaneous release of dopamine and significantly decreased the release induced by 50 mM KCl. 4 Chronic treatment of the cells with forskolin (30 microM), but not IBMX (100 microM), markedly decreased the cellular content of dopamine. 5 Cultured PC12 cells removed and accumulated [3H]-MPP+, which, similarly to dopamine, was released by KCl. 6 Acute treatment of the cells with forskolin (30 microM) or db-cAMP (2.5 mM), but not IBMX (100 microM), slightly increased the spontaneous release, but did not affect KCl-induced release of [3H]-MPP+. On the other hand, chronic treatment of the cells with forskolin produced, on [3H]-MPP+, similar effects to those obtained for dopamine. 7 Acute and chronic treatment of the cells with reserpine (50 nM) produced similar results to those obtained with forskolin on either dopamine or [3H]-MPP+ handling. 8 In conclusion, cAMP, similarly to reserpine, increases the spontaneous release and decreases the KCl-induced release of [3H]-MPP+ and dopamine. This suggests that cAMP impairs the vesicular monoamine transporter.

1-Methyl-3-isobutylxanthine↗