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Biomedical subjects

C Bohuon

Publications and source records attributed to C Bohuon.

At least 19 recordsLinked to original sources

The role of histidine 231 in thermolysin-like enzymes. A site-directed mutagenesis study.

In the zinc metallopeptidases produced by the genus Bacillus, an active site histidine has been proposed to either stabilize the transition state in catalysis by donating a hydrogen bond to the hydrated peptide (Matthews, B. W. (1988) Acc. Chem. Res. 21, 333-340) or to polarize a water molecule, which subsequently attacks the peptidyl bond (Mock, W. L., and Aksamawati, M. (1994) Biochem. J. 302, 57-68). Site-directed mutagenesis techniques have been used to change this residue in the zinc endopeptidase from Bacillus stearothermophillus to either phenylalanine or alanine. At pH 7.0, the kcat/Km values of the substrate leucine enkephalin for the phenylalanine and alanine mutants were reduced by factors of 430- and 500-fold, respectively, as compared with the wild-type enzyme, mostly due to changes in kcat. In addition, the enzymatic activities of the mutant enzymes showed little pH dependence in the alkaline range, unlike the wild-type enzyme. The mutations did not greatly alter the binding affinities of inhibitors containing sulfydryl groups to chelate the active site zinc, while those of inhibitors containing hydroxamate or carboxylate zinc-chelating groups were increased between 80- and 250-fold. The largest change in the binding affinity of an inhibitor (> 5 orders of magnitude) was found with the proposed transition state mimic, phosphoramidon. The results are generally in agreement with x-ray crystallography studies and favor the involvement of the active site histidine in transition state binding.

Amino Acid Sequence

Structure-activity relationships in glucocorticoid-induced apoptosis in T lymphocytes.

Glucocorticoid-induced apoptosis in the murine interleukin-2-dependent T-cell line CTLL-2 and in freshly isolated thymocytes was studied. It was demonstrated here that in CTLL-2 cells, dexamethasone (methyl in position 16 alpha) was more efficient in inducing apoptosis than betamethasone (methyl in position 16 beta) or triamcinolone (hydroxyl in position 16). In contrast, no such difference between these three molecules was found in murine thymocytes. In addition, we showed that glucocorticoid-induced apoptosis on the two models was mediated through interaction with the glucocorticoid receptor and did not occur in the presence of inhibitors of transcription, translation or an endonuclease-inhibitor. Furthermore, in CTLL-2 cells, apoptosis took place in the presence of EGTA whereas it was prevented in murine thymocytes, thus indicating that calcium plays a different role in these two models. Finally, higher concentrations of interleukin-2 were needed to protect CTLL-2 cells against dexamethasone-induced apoptosis than that induced by betamethasone or triamcinolone. Thus, structural differences at position 16 of the steroid nucleus correlate with a different apoptosis-inducing activity by glucocorticoids which, however, is only evidenced in the calcium-independent CTLL-2 model.

Animals

Immunotoxicological investigation using pharmaceutical drugs. In vitro evaluation of immune effects using rodent or human immune cells.

In order to evaluate the relevance of in vitro methods for immunotoxicity assessment, the effects of pharmaceutical drugs on lymphoproliferative and cytotoxic functions of mouse splenocytes and human peripheral blood mononuclear cells (hPBMC) were studied. A comparison of sensitivity of immune cells from different origins to an in vitro exposure to different xenobiotics was performed using non-immunosuppressive (cimetidine and furosemide) and immunosuppressive (azathioprine (AZA), cyclosporine A (CSA), and dexamethasone (DEX)) drugs. For CSA, sensitivity of both rat and mouse splenocytes following in vitro exposure was compared to the one of hPBMC. Immune function tests included lymphoproliferative response to mitogenic lectins (concanavalin A (Con A) and phytohemagglutinin (PHA-P)) or to allogeneic cells (mixed leukocyte response (MLR)) and cytotoxicity assays (cytotoxic-T lymphocyte (CTL) and natural killer (NK) cell-mediated cytolysis). Additionally, to evaluate how well in vitro assays represent the in vivo situation, a comparison of the effect of cyclosporine A on the same immune function tests following in vivo or in vitro exposure was performed. The data obtained show numerous similarities in the effects observed following in vitro exposure of rodent or human cells to the drugs and a very similar sensitivity of rat and mouse cells to CSA in vitro. Discrepancies between human and rodent cells such as lymphoproliferative response to PHA-P following exposure to DEX or sensitivity of CTL-mediated cytolysis to CSA do exist. In vitro assays were very representative of the in vivo situation, both in the rat and in the mouse, following CSA exposure, except for NK cell activity in the rat. These data show the usefulness of in vitro systems for immunotoxicity assessment. They allow direct comparison of rodent and human systems, and could be representative, for drugs altering specifically the immune system like CSA does, of the in vivo situation.

Animals

Elevated serum procalcitonin levels in patients with melioidosis.

The prognostic value of serum procalcitonin levels in 43 patients with acute melioidosis, an infection with a wide range of clinical manifestations, was assessed. In eight patients with mild localized infections, the median procalcitonin levels were 0.13 ng/mL (range, 0.02-0.46 ng/mL), which were similar to those in 19 healthy controls (median, 0.07 ng/mL; range, 0.03-0.15 ng/mL). In the patients with severe infections, the initial procalcitonin levels were significantly higher in the patients who died (median, 350 ng/mL; range, 63-3,538 ng/mL) than in the survivors (median, 19 ng/mL; range, 0.55-387 ng/mL) (P < .0001); 16 of 19 patients with procalcitonin levels of > 100 ng/mL died, compared with 2 of 16 patients with levels of < 100 ng/mL (relative risk, 6.7; 95% confidence interval, 1.8-25; P = .0001). In those patients who survived, the subsequent procalcitonin levels reflected closely the clinical course of their infection. The serum concentration of procalcitonin correlates well with the severity of Pseudomonas pseudomallei infection and is comparable with other acute-phase markers. However, this prognostic indicator and marker of continuing disease activity is not specific to melioidosis and could be applied to other severe infections.

Acute Disease

Distribution of VRA09, an ovarian tumor-associated antigen, distinguishing borderline serous tumors.

We recently reported the characterization of an antigen designated VRA09, identified by a monoclonal antibody and overexpressed on the surface of vincristine-resistant human ovarian carcinoma cells. In the present study, we analyze the distribution of this antigen in normal and tumor tissues. Its pattern of expression appears to differ from that described for other drug-resistance- and/or tumor-associated antigens. In normal tissues, the antigen has a restricted histological distribution and appears to be localized in mesoderm-derived tissues. In tumor tissues, VRA09 expression was mainly detected in serous ovarian tumors. Indeed, VRA09 is strongly expressed in papillary serous cystadenocarcinomas and their metastases, and more specifically in the basement membranes of serous tumors of borderline malignancy. In contrast, no immunostaining was observed in normal ovarian tissue or benign tumors. The detection of this antigen may help to identify serous ovarian tumors by distinguishing tumors of low malignancy from cystadenocarcinomas.

Antibodies, Monoclonal

Effects of a primary immune response to T-cell dependent antigen on serotonin metabolism in frontal cortex: in vivo microdialysis study in freely moving Fischer 344 rat.

Antigenic challenge is known to influence brain catecholamine turnover, e.g. hypothalamic norepinephrine activity, but little is known about effects on the activity of serotoninergic neurons, i.e. the release of the neurotransmitter at nerve terminals. In the present study, we first investigated the changes of central serotonin (5-HT) metabolism in Fischer 344 male rats at 2, 3, 4 and 5 days following i.v. immunization with sheep red blood cell (SRBC). Major decreases in 5-HT levels were evident in the hypothalamus (Hy) and cortex (Cx) at a time which corresponded to the late phase of the production of specific antibodies to SRBC measured with a plaque-forming cell assay (PFC). A pretreatment with an immunosuppressive drug, cyclosporin A (CsA; 12.5 mg/kg by gavage for 7 days) prevented the decreases in cortical 5-HT levels. Concomitantly, a 2-fold increase in the basal 5-HT release at frontocortical nerve terminals was observed by using in vivo microdialysis in awake rats on Day 3 following SRBC inoculation. This effect was totally suppressed by CsA. Our data suggest that the decrease in brain 5-HT levels that occurs after antigen administration may reflect a specific short-lasting CsA-dependent-release of 5-HT at frontocortical nerve terminals at a time (Day 3 or 4) when the splenic immune response is maximal.

Animals

Immunotoxicological investigation using pharmaceutical drugs: in vivo evaluation of immune effects.

Traditional methods for toxicological assessment have indicated that the immune system is a frequent target of toxic insult following subchronic or chronic exposure to xenobiotics. However, most of the xenobiotics evaluated in standardized protocols were environmental chemicals and correlation with available clinical data was not possible. The purpose of this work was to evaluate the potential immunosuppressive effects of pharmaceutical drugs using a standardized protocol developed for immunotoxicological assessment. Two groups of pharmaceutical drugs were utilized: (a) drugs without known immunosuppressive effect linked to their utilization in human therapy (cimetidine, furosemide, indomethacin, amoxicillin, and procainamide) and (b) immunosuppressive drugs (azathioprine, cyclosporine A, and dexamethasone). Ex vivo tests using B6C3F1 mice were performed after a 28-day repeat dose regimen and assessed: (a) immunopathology, (b) cell-mediated immunity, (c) humoral immunity, and (d) nonspecific immunity. Host resistance to Listeria monocytogenes was also assessed following exposure to immunosuppressive drugs. The results showed that (a) immunopathology and immune function assays were necessary to detect all immunotoxicants and (b) the effects observed with nonimmunotoxic drugs were sometimes statistically significant but the biological significance of these effects is unlikely.

Animals

Detection of a 45-kilodalton antigen overexpressed in a cisplatin-resistant human ovarian carcinoma cell line.

To characterize the membrane changes associated with cisplatin resistance, we raised monoclonal antibodies (MAbs) against a cisplatin-resistant subline (OV1/DDP) derived from a human ovarian carcinoma cell line (OV1/p). An MAb, designated OCP02, was selected for its particularly high affinity for the resistant cell line. It bound 3.1-fold higher to OV1/DDP cells than to OV1/p cells and recognized an M(r) 45K antigen. This antigen appeared to be present in several normal and tumorous tissues. Its distribution in normal tissues was mainly detected in tissues involved in secretory processes, suggesting that this antigen could be related to a transport mechanism in normal cells as well as in drug-resistant cells.

Animals

Procalcitonin increase after endotoxin injection in normal subjects.

As procalcitonin concentrations have been shown to be elevated in patients with septicemia and gram-negative infections in particular, we proceeded to investigate the effect of endotoxin, a product of gram-negative bacteria, on procalcitonin concentrations in normal human volunteers. Endotoxin from Escherichia coli 0113:H10:k, was injected i.v. at a dose of 4 mg/kg BW into these healthy volunteers. Blood samples were obtained before and 1, 2, 4, 6, 8, and 24 h after injection of the endotoxin. Each patient's cardiovascular and overall clinical status was monitored over this period. The patients developed chills and rigors, myalgia, and fever between 1-3 h. Tumor necrosis factor-alpha levels increased sharply at 1 h and peaked at 90 min, reaching the baseline concentration thereafter by 6 h. Interleukin-6 levels increased more gradually, peaking at 3 h and reaching the baseline concentration at 8 h. The procalcitonin concentration, which was undetectable (< 10 pg/mL) at 0, 1, and 2 h, was detectable at 4 h and peaked at 6 h, maintaining a plateau through 8 and 24 h (4 ng/mL). There was no elevation of calcitonin concentrations, which remained below 10 pg/mL, the lowest sensitivity of the assay. Procalcitonin was measured by a two-antibody immunoradiometric assay specific for this peptide, with no cross-reactivity with calcitonin, katacalcin, or calcitonin gene-related peptide. We conclude that endotoxin induces the release of procalcitonin systemically, that this increase is not associated with an increase in calcitonin, and that the increase in procalcitonin associated with septicemia in patients may be mediated through the effect of endotoxin described here. Whether procalcitonin participates in the mechanisms underlying inflammation remains to be investigated.

Adult

Effect of ketanserin on monoamines and neuropeptide Y in brain and peripheral tissues of normotensive (WKY) and spontaneously hypertensive (SHR) rats.

The effect of one intraperitoneal (i.p.) injection of ketanserin (K) (20mg/kg) on the levels of monoamines and neuropeptide Y (NPY) in some central and peripheral tissues was examined in normotensive (WKY) and spontaneously hypertensive (SHR) rats. In WKY rats, K induced a depletion of norepinephrine (NE) in the hypothalamus, the medulla, the atria and the caudal artery together with a decrease in dopamine level (DA) in the hypothalamus and in serotonin level (5-hydroxytryptamine, 5-HT) in the medulla. The reduction reached 25% to 35%. In SHR, NE and DA levels in the hypothalamus, and NPY levels in the caudal artery were lower than in WKY, while NE was higher in the adrenals. After treatment with K, NE, 5-HT, 5-HIAA (5-hydroxyindoleacetic acid) and NPY in the medulla were increased by about 30% to 50% while NE in the caudal artery was reduced by about the same value as in WKY. These results indicate that K-induced release of monoamines is not linked to NPY release. Moreover, monoamine and NPY sensitivity to K differ in SHR and WKY rats.

Animals

High serum procalcitonin concentrations in patients with sepsis and infection.

High concentrations of calcitonin-like immunoreactivity have been found in the blood of patients with various extrathyroid diseases. By means of a monoclonal immunoradiometric assay for calcitonin precursors, we have measured serum concentrations of procalcitonin in patients with various bacterial and viral infections. 79 children (newborn to age 12 years) in hospital with suspected infections were investigated prospectively. 19 patients with severe bacterial infections had very high serum concentrations of procalcitonin at diagnosis (range 6-53 ng/mL) in comparison with 21 children found to have no signs of infection (baseline concentrations < 0.1 ng/mL). Serum procalcitonin values decreased rapidly during antibiotic therapy. 11 patients with peripheral bacterial colonisation or local infections without invasive sepsis and 18 (86%) of 21 patients with viral infections had concentrations within or slightly above the normal range (0.1-1.5 ng/mL). Among 9 severely burned patients studied in an intensive care unit, the post-traumatic course of procalcitonin concentrations (range 0.1-120 ng/mL) was closely related to infectious complications and acute septic episodes. Concentrations of mature calcitonin were normal in all subjects, whatever procalcitonin concentrations were found. Concentrations of a substance immunologically identical to procalcitonin are raised during septic conditions. Serum concentrations seem to be correlated with the severity of microbial invasion.

Bacterial Infections

Fasting affects more markedly neuropeptide Y than monoamines in the rat brain.

Monoamine turnover and neuropeptide Y (NPY) levels were evaluated in the CNS of 48- and 72-h-fasting adult, male rats in four brain areas: the hypothalamus, cortex, hippocampus, and striatum. In 48-h-fasted rats, NPY levels increased in the cortex and decreased in the striatum. The dopaminergic turnover increased in the hippocampus. The serotonergic turnover decreased in the hippocampus, striatum, and cortex and was still decreased after 72 h of fasting. In 72-h-fasted rats, an overall significant increase of NPY levels was observed except in the striatum, where it decreased significantly. No relationship appeared between NPY and monoamine levels, suggesting that NPY can act independently in feeding behavior and play, in different brain areas, an important role in its regulation.

Animals

Refeeding after 72 hour fasting alters neuropeptide Y and monoamines in various cerebral areas in the rat.

1. Monoamine turnover and neuropeptide Y (NPY) levels were evaluated in the CNS of adult male rats either after fasting (72 hr) or refeeding. 2. In the fasted group, an overall increase in NPY levels was observed except in the striatum where it was decreased. The serotoninergic turnover was decreased in the hippocampus, striatum and cortex. 3. After refeeding, NPY decreased in the hypothalamus and cortex but was further increased in the hippocampus and decreased in the striatum. The serotoninergic turnover was still decreased in the hippocampus and cortex. The norepinephrine levels and the dopaminergic turnover increased in the hippocampus and cortex. 4. No relationship appeared between NPY and monoamine changes suggesting that NPY can act independently in feeding behavior, and play, in different brain areas, an important role in its regulation.

Animals

A role for neuropeptide-Y, dynorphin, and noradrenaline in the central control of food intake after food deprivation.

A marked increase in food intake is observed in the rat after central injection of neuropeptide-Y (NPY), dynorphin, or noradrenaline (NA). Levels of both NPY and dynorphin are increased in the hypothalamus of food-deprived rats. The aim of this study was to explore the role of NPY, dynorphin, and NA in the central control of feeding after a period of food deprivation. We have investigated the effect of intracerebroventricular injection of a monoclonal antibody to NPY (NPYAb), a potent and selective kappa-opioid receptor antagonist norbinaltorphimine (norBNI), and the alpha-adrenergic antagonist phentolamine on fast-induced food intake. In animals provided with food after a 24-h fast, NPYAb given 10 min before presentation of food reduced food intake by 30% (P < 0.01) compared to that of animals pretreated with an antibody to chloroquine. A similar (34%; P < 0.05) reduction in fast-induced feeding occurred after pretreatment with norBNI. If norBNI was given together with NPYAb, then a reduction of 51% (P < 0.05) was observed. Pretreatment with phentolamine reduced fast-induced food intake by 39% (P < 0.05), with no evidence of an additive effect when phentolamine was given together with NPYAb. These data would support a role for endogenous NPY, dynorphin, and NA in the mediation of fast-induced feeding. NPY would seem to act independently of dynorphin, but through the same mechanism as NA.

Animals

Immune modification due to chemical interference with transmembrane signalling: application to polycyclic aromatic hydrocarbons.

Triggering of the T-cell antigen receptor complex and some other surface molecules is coupled to the phosphodiesterase (phospholipase C)-mediated hydrolysis of membrane phosphoinositides, in particular, phosphatidylinositol-4,5-biphosphate (PiP2). PiP2 hydrolysis generates two products, inositol 1,4,5-triphosphate and diacylglycerol, which act in concert as second messengers to increase the free intracellular calcium concentration and activate protein kinase C, respectively, thereby stimulating subsequent events leading to cellular activation and proliferation. Transmembrane signalling in T-lymphocytes represents a potential target for designated drugs as well as immunotoxicants. Immunotoxic effects of polycyclic aromatic hydrocarbons are discussed in the view of interaction with transmembrane signalling in the T-lymphocyte.

9,10-Dimethyl-1,2-benzanthracene

Brain and adrenal monoamines and neuropeptide Y in codeine tolerant rats.

1. Monoamine turnover and neuropeptide Y (NPY) levels were investigated in the central and peripheral nervous systems in adult male rats chronically treated with codeine. 2. An increase in the dopaminergic turnover was observed in the striatum and cortex. The norepinephrine levels and the serotoninergic turnover were unchanged in all the brain areas. 3. Epinephrine levels were decreased in the adrenal glands. 4. In addition, we observed a significant decrease of NPY levels in the hypothalamus, the striatum and the adrenal glands. These observed changes were not found when assessing NPY level in plasma fluid. 5. The implication of these modifications in the induction of codeine dependence are discussed in view of previous results obtained with morphine.

Adrenal Glands

Production and characterization of four anti-neuropeptide Y monoclonal antibodies.

Human neuropeptide Y (hNPY) is a potent vasoconstrictor peptide of 36 aminoacid residues. We isolated hybridomas secreting four monoclonal antibodies directed against various epitopes of neuropeptide Y and studied their cross-reactivity with peptide YY (PYY) and the pancreatic polypeptide (PP), two peptides sharing sequence homologies with hNPY (respectively 70% and 50%). The antibody NPY02 is an IgG1 with a Ka of 5.5 x 10(10) liters/mol. It binds to the 11-24 region of NPY (IC50 = 2 x 10(-7)M), does not recognize PP but cross-reacts weakly with PYY. Antibodies NPY03 and NPY05 are IgG2 with respective Ka's of 6.7 x 10(9) and 2.5 x 10(10) liters/mol. They interact with a C-terminal epitope on NPY (NPY 27-34, IC50 = 2 x 10(-9) M for NPY03 and NPY 32-36, IC50 = 1 x 10(-9) M for NPY05). These two antibodies cross-react with PYY whereas only NPY05 binds PP. NPY05 is unable to bind the free acid form of neuropeptide Y. The 32-36 COOH free subpeptide is recognized 50,000 less efficiently by NPY05 than its amidated form. Antibody NPY04 is an IgG3 with a Ka of 3.8 x 10(8) liters/mol. It recognizes a N-terminal epitope between aminoacids 1 and 12 (IC50 = 2.5 x 10(-6) M). NPY04 interacts weakly with PYY but not detectably with PP. These results obtained with 4 different monoclonal antibodies demonstrate the presence of at least four epitopes on hNPY, two of them being continuous. These antibodies will be used to study the interaction of NPY with its receptor and to develop sensitive and specific assays for determination of NPY concentrations in biological fluids.

Amino Acid Sequence

Relationship among neuropeptide Y, catecholamines and haemodynamics in congestive heart failure.

The relationship among neuropeptide Y (NPY), catecholamines and haemodynamics was assessed both at baseline and during inotropic intervention in patients with congestive heart failure. Eighteen patients with idiopathic dilated cardiomyopathy (left ventricular ejection fraction (LVEF) = 26 +/- 10%) underwent both right and left catheterization. Haemodynamic parameters were recorded at baseline and during dobutamine infusion. To measure norepinephrine (NE), epinephrine (E) (nmol.l-1: radioenzymatic assay) and NPY (pmol.l-1: immunoradiometric assay) plasma concentrations, blood samples were drawn from the femoral artery and from the coronary sinus, both at baseline and during dobutamine infusion. At baseline, NPY concentration were 2.15 +/- 0.97 pmol.l-1 in the femoral artery and 1.97 +/- 0.63 pmol.l-1 in the coronary sinus. Peripheral concentrations of NPY were, however, no different from those of patients without congestive heart failure: 2.4 +/- 2.7 pmol.l-1. Peripheral NE concentration was correlated to haemodynamic parameters: LVEF (r = -0.65; P less than 0.01), cardiac index (r = -0.54; P less than 0.05), LV end-diastolic pressure (r = +0.59; P less than 0.05), while peripheral NPY and E concentrations were not. Dobutamine improved haemodynamics, since cardiac index increased by 30% and LV end-diastolic pressure decreased by 40% (P less than 0.01). Peripheral NE concentration decreased from 6.48 +/- 4.5 to 4.82 +/- 2.69 nmol.l-1 (P less than 0.05) but there was no change in E (0.99 +/- 0.61 vs 1.04 +/- 0.74 nmol.l-1) or NPY concentrations (2.41 +/- 0.99 pmol.l-1). In the coronary sinus, neither NE nor NPY concentrations changed during dobutamine infusion.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult