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Biomedical subjects

A Rousseau

Publications and source records attributed to A Rousseau.

At least 19 recordsLinked to original sources

Multiple canalicular adenomas: a case report and review of the literature.

The canalicular adenoma is an uncommon, benign salivary gland tumor that most frequently occurs in the upper lip. Rarely, it manifests itself clinically and histologically as a multifocal lesion, a feature not generally seen with other intraoral salivary gland tumors. Here we report a case of canalicular adenoma that manifested itself with 13 clinically discrete tumor masses involving the upper lip and anterior buccal mucosa. In addition to the clinical nodules, there were microscopic foci of tumor cells in the adjacent normal-appearing salivary gland tissue surrounding the tumors. This article also reviews previously reported multifocal canalicular adenomas and discusses their features, emphasizing differences in the reported growth patterns of this unusual tumor.

Adenoma

Sympathetic innervation of the upper and lower regions of the uterus and cervix in the rat have different origins and routes.

The origins and routes of the postganglionic sympathetic nerve supply to the upper and lower uterus and to the cervix were investigated in the rat by using denervation procedures combined with immunohistochemistry and retrograde tracing. The sympathetic nerve fibers of the upper part of the uterus arise from the ovarian plexus nerve. They mainly originate (90%) from neurons of the suprarenal ganglia (SRG) and of the T10 to L3 ganglia of the paravertebral sympathetic chain. Fluoro-Gold injections into different regions of the upper uterus showed that the SRG neurons mainly provide innervation to the tubal extremity (52%) rather than to the uterine portion below this area (26%). Very few neurons of the celiac ganglion or the aorticorenal ganglia participated in this innervation. Most of the sympathetic innervation of the lower uterus and the cervix (90%) originates from neurons of the paravertebral ganglia T13 to S2, principally at the L2-L4 levels. By using immunocytochemistry, we show that very few tyrosine hydroxylase-positive neurons of the pelvic plexus project to these areas, where they represent only 3% of the sympathetic nerve supply. Again, very few neurons of the inferior mesenteric ganglion (IMG) supply the lower uterus and the cervix. The comparison between retrograde tracing experiments in intact animals and after the removal of the IMG shows that very few sympathetic postganglionic axons from the paravertebral chain pass through the IMG to reach the lower uterus and the cervix. In contrast, these axons mainly project to splanchnic nerves bypassing the IMG to connect with the hypogastric nerves. In addition, some axons supplying the lower uterus follow the superior vesical arteries and then reach the organ. Taken together, these results show that the upper region of the uterus receives a sympathetic innervation that is different in origin and route from that of the lower uterus and the cervix. Such a marked region-specific innervation suggests that nerve control of the myometrial activity may be functionally different between the oviduct and the cervical ends of the uterus.

Animals

Relationship between psychotropic drugs and thyroid function: a review.

Some widely used psychoactive drugs, such as tricyclic antidepressants and antipsychotic phenothiazines exhibit iatrogenic effects on the thyroid. These side effects may arise from interactions at different steps of thyroid hormone biosynthesis. These drugs can induce a change in iodine capture by thyroid cells or can complex iodine, making it unavailable for thyroid hormone synthesis and thus decreasing thyroid hormone blood levels; they can also inhibit thyroid peroxidase activity and thus T3 and T4 synthesis or enhance deiodination of T4 to T3 or to Rt3 by stimulation of deiodinase activity. Moreover, tricyclic antidepressants interfere with the hypothalamic-pituitary-thyroid axis via the noradrenergic or serotonergic systems and might therefore decrease T4 or T3 blood levels, respectively. Phenothiazines can induce autoimmune hypothyroidism, as shown by an increase in the expression of the major histocompatibility complex antigen and by a production of antithyroglobulin or antithyroperoxidase antibodies. However, all these mechanisms are only speculative in humans, as they have only been demonstrated in vitro or in animal experiments. Clinically, thyroid function and affective disorders are closely linked. On one hand, the therapeutic response to antidepressants could be influenced by the thyroid status; on the other hand, the larger the thyroxin decrease induced by antidepressants, the better the therapeutic effect might be. Moreover, cotreatment with thyroid hormones and antidepressant drugs could allow either a decrease in the rate of treatment failure or a faster recovery from depression. As antipsychotic or antidepressant treatments are administered over long periods in humans, their thyroid toxic effects must be taken seriously.

Animals

Thyroid accumulation and adverse effects of imipramine and desipramine in rats after long-term administration.

The respective adverse effects of imipramine and desipramine on serum thyroid hormone levels and their accumulation in thyroid were investigated in male Wistar rats. Two groups of 30 rats were gavaged for 4 weeks with 30 mg/kg/day imipramine hydrochloride (IMI) or desipramine hydrochloride (DESI), while the control group (12 rats) received the arabic gum vehicle only. In the IMI-treated group, the serum thyroxine (T4) level significantly decreased (by 13%) and IMI and its metabolite DESI were accumulated in the thyroid, as pointed out by mean thyroid-to-serum concentration ratios close to 12 and 8, respectively. In the DESI-treated group, the mean thyroid-to-serum concentration ratio of the drug was close to 14, and significant decreases in both serum T4 (-20%) and triiodothyronine serum levels (-14%) were found. The accumulation of antidepressant drugs in the thyroid was more pronounced and the thyroid serum levels were even lower after DESI administration than after IMI administration. These results are in favour of an antithyroid action of IMI and DESI due to the formation of a complex in the thyroid between molecular iodine and the drugs or metabolites.

Animals

Authoritarian and socially restrictive attitudes toward mental patients in mental health volunteers and nonvolunteers.

31 French-Canadian mental health volunteers and 43 nonvolunteers participated in a study of the relationship between Authoritarian and Socially Restrictive attitudes toward mental patients and the variables of volunteer status, age, sex, education, having a mentally ill family member, Locus of Control, Extraversion, Psychoticism, Neuroticism, and Social Desirability. Bivariate and partial (Social Desirability effects removed) correlations suggested that scores on Authoritarian and Socially Restrictive attitudes are higher among older, less educated, less extraverted men and women who are not volunteers. Although volunteers compared to nonvolunteers had lower scores on Authoritarian and Socially Restrictive attitudes, they did not differ in terms of age, having a mentally ill family member or scores on Locus of Control, Extraversion, Psychoticism, Neuroticism, and Social Desirability; however, volunteers were better educated.

Adolescent

Sensitive microanalysis of imipramine and desipramine in single rat thyroids by gas chromatography-mass spectrometry.

A new sensitive method for the quantitative determination of imipramine and desipramine in single rat thyroids using gas chromatography-mass spectrometry with selected ion monitoring, after enzymatic hydrolysis and liquid-liquid extraction has been developed. The technique was deemed suitable for microanalysis of single rat thyroids and for other solid tissues, using smaller sample sizes than usually required for traditional determination methods. The quantification was linear from 10 to 200 nmol/l (i.e., from 0.25 to 5 microg/g) for imipramine and from 100 nmol/l to 2000 nmol/l (i.e., from 2.4 to 47 microg/g) for desipramine, and the limits of detection (less than 25 ng/g tissue for both compounds) were better than those previously reported. Recoveries, repeatability and reproducibility of this technique were satisfactory. It has been successfully applied in a preliminary study of the concentration-time profiles of imipramine and desipramine in the thyroid of rats treated with either of these drugs.

Animals

Ultrastructural changes in the nerve fiber population of anastomosed vagal and spinal accessory nerves in the sheep.

BACKGROUND: The ultrastructure of the vagal and spinal accessory nerves was studied 1) in normal sheep and 2) in sheep in which an experimental crossed-nerve anastomosis had been made by sectioning the supranodose vagal and spinal accessory nerves, then suturing the distal end of the vagal nerve to the distal end of the spinal accessory nerve, and allowing time for regeneration to occur. This study was carried out in order to analyze the modifications liable to occur when this technique is used and to specify the origin and the nature of the fibers that colonize the spinal accessory nerve. METHODS: The study was performed in 4- to 5-month-old-sheep. After the surgical procedure, the animals were housed indoors during 1 year until their sacrifice by fixative perfusion. Then, nerve samples were dissected out, processed for electron microscopy, examined, and systematically photographed. After printing, the diameters of the nerve fibers were determined. RESULTS: In sheep, the ratios of nonmyelinated to myelinated fibers (NF/MF) in the infranodose and supranodose vagal nerve and accessory spinal nerve were 1.21, 1.67, and 3.21, respectively. In both parts of the vagal nerve, the myelinated fibers had a unimodal diameter distribution around a peak of 4 microns; whereas, in the spinal accessory nerve, they were distributed bimodally, and 53% had values of 15-18 microns. After making the above anastomosis, the centrifugal vagal fibers degenerated, and the NF/MF ratios increased in the centripetal infranodose vagal nerve, in the reinnervating supranodose vagal nerve, and in the reinnervated spinal accessory nerve (approximately 1.87, 1.72, and 6.04, respectively). In all of these nerves, the myelinated fibers had a unimodal distribution with a peak at 4 microns, as in the vagal nerve of normal sheep. CONCLUSIONS: These results reveal the large part taken by the nonmyelinated fibers in the nerve fiber population of the vagal nerve and support the vagal origin of the fibers reinnervating the spinal accessory nerve.

Accessory Nerve

Coexpression of neuropeptide Y and vasoactive intestinal polypeptide in pelvic plexus neurones innervating the uterus and cervix in the rat.

The present study investigates the distribution and coexpression of neuropeptide Y (NPY) and vasoactive intestinal peptide (VIP) in neurones of the accessory ganglion (AG), hypogastric plexus (HP) and paracervical ganglion (PCG), which compose the pelvic plexus in the female rat. Nerve cell bodies immunoreactive for NPY and VIP represent 84% and 46% of the neurone population in the PCG, respectively, while immunoreactivity for each peptide is observed in about 90% of the AG and HP neurones. Adjacent sections immunostained for NPY and VIP, as well as the use of immunocytochemistry combined with in situ hybridization show that 92% of the VIP-containing neurones in the pelvic plexus also contain NPY. In addition, a retrograde tracing study performed in combination with immunocytochemistry demonstrates that pelvic plexus neurones project preferentially to the lower part of the uterus and to the cervix, and that about 95% of these projecting neurones contain VIP. Taken together, our findings indicate that in the female rat, neurones of the pelvic plexus projecting to the lower genital tract mainly coexpress VIP and NPY, and supply nerve fibres to the vascular and nonvascular smooth muscle in the uterocervical region. Since NPY and VIP exert distinct effects according to the target tissue, our results suggest that neurones coexpressing these peptides play important roles in the local regulation of the vascular bed and motor activity of the lower genital tract.

Animals

Procaine-induced maturation of Xenopus oocytes is mediated by a transient activation of M-phase promoting factor.

We have recently shown that the incubation of Xenopus laevis oocytes in procaine-containing solutions induced germinal vesicle breakdown without white spot formation and, in some cases, with the appearance of spindle and chromosomes in the cytoplasm. The present study was performed to determine whether M-phase promoting factor was involved in this unusual maturation. Procaine failed to induce maturation in the presence of 6-dimethylamino purine or roscovitine, which are both known to inhibit p34cdc2 kinase. Histone H1 kinase activity was detected in procaine-treated oocytes but it was always lower than in progesterone-treated controls. A shift in p34cdc2 was observed in oocytes that had been exposed to procaine for 16 h, but it was not detected in those exposed for 24 h. Finally, cytoplasm transfer experiments demonstrated that the maturation promoting activity that occurred in oocytes incubated in procaine for 16 h could induce maturation of recipient stage VI oocytes. This transferable activity was weaker than that from progesterone-treated controls since only 30% of the recipients underwent germinal vesicle breakdown and only a few spindles were observed, which were not always correctly located. Taken together these results demonstrate that M-phase promoting factor is involved in the procaine maturing effect despite some differences compared with progesterone-treated oocytes which might explain the particular type of maturation induced by this substance. The discovery of the mechanisms by which procaine is able to activate M-phase promoting factor might now help in the understanding of some steps in progesterone-induced maturation that have still to be elucidated.

Adenine

Anti-inflammatory action of methimazole.

The anti-inflammatory activity of 1-methylimidazole-2-thiol (methimazole), the most widely used antithyroid drug, was investigated. Methimazole had a marked inhibitory action on prostaglandin H synthase (IC50 = 10 mumol/l), inhibiting the peroxidase (IC50 = 330 mumol/l), although the cyclo-oxygenase was slightly activated. Methimazole was less potent than indometacin (IC50 = 1.7 mumol/l) on prostaglandin H synthase, but was more potent than acetylsalicylic acid (IC50 = 160 mumol/l). Methimazole has been found to trap superoxide (O2.-) radicals and to decrease the level of blood prostaglandin E2.

Animals

Lumps of the tongue.

Lesions of the tongue are often encountered in the process of a dental examination. These can include alterations of the tongue surface texture or colour, ulcers or exophytic lesions (lumps). The latter can represent variations of normal, benign or malignant pathological processes. This article will not provide a detailed list of all possible exophytic tongue lesions but will present a few of the more common conditions to be considered when such lesions are encountered.

Diagnosis, Differential

Acute angiotensin-converting enzyme inhibition increases the plasma level of the natural stem cell regulator N-acetyl-seryl-aspartyl-lysyl-proline.

Angiotensin I-converting enzyme (ACE) has two homologous active NH2- and COOH-terminal domains and displays activity toward a broad range of substrates. The tetrapeptide N-acetyl-seryl-aspartyl-lysyl-proline (Ac-SDKP) has been shown to be hydrolyzed in vitro by ACE and to be a preferential substrate for its NH2-terminal active site. This peptide is a regulatory factor of hematopoiesis which reversibly stem cells and normal early progenitors into S-phase. We found that a single oral dose of 50 mg of the ACE inhibitor, captopril, when administered to eight healthy subjects in a double-blind, crossover, placebo-controlled study, massively increased the plasma level of Ac-SDKP. ACE inhibition by captopril induced a 90-99% inhibition of in vitro [3H]Ac-SDKP hydrolysis and a long-lasting 5.5-fold (range: 4-8.5-fold) increase in the plasma levels of Ac-SDKP. These results demonstrate that Ac-SDKP is the first natural peptide hydrolyzed by the NH2-terminal domain of ACE not only in vitro but also in vivo, confirming that both catalytic sites of ACE are physiologically active. Our data suggest that ACE may also be implicated in the process of hematopoietic stem cell regulation, by permanently degrading this natural circulating inhibitor of cell entry into S-phase.

Administration, Oral

Spectroscopic analysis of charge transfer complex formation and peroxidase inhibition with tricyclic antidepressant drugs: potential anti-thyroid action.

Inspection of the chemical structures of tricyclic antidepressant drugs indicates that they might interfere with the synthesis of thyroid hormones. This iatrogenic potential was demonstrated in vitro by the spectrophotometric detection in both the visible and UV regions of the formation of a complex between antidepressants and iodine. The values of Kc, the formation constant of the drug-iodine complex, were calculated. The concentration of antidepressant which led to a 50% inhibition (IC50) of horseradish peroxidase was also determined. The anti-thyroid activity of drugs can be evaluated from these two parameters, Kc and IC50. The results were compared to those obtained with methimazole, a reference anti-thyroid agent. Antidepressants derived from imipramine appeared to have anti-thyroid activity. This result is now awaiting confirmation in animal experiments.

Antidepressive Agents, Tricyclic

Distribution of noradrenergic neurons in the female rat pelvic plexus and involvement in the genital tract innervation.

The involvement of the pelvic plexus noradrenergic neurons in the innervation of the genital tract was studied in the female rat. Several small ganglia were observed in addition to the paracervical ganglion and immunocytochemistry for tyrosine hydroxylase was performed to examine the distribution and number of the noradrenergic neurons. 5069 +/- 1525 nerve cell bodies were counted in the paracervical ganglion and 9.0 +/- 0.8% of them were noradrenergic, displaying a clear somatotopic distribution in the ventro-medial part of the ganglion. Some accessory ganglia were located ventral to the main paracervical ganglion. 414 +/- 149 nerve cell bodies were found in the accessory ganglia, of which 20.4 +/- 3.1% were noradrenergic. Ganglia along the vesical branch of the hypogastric nerve, referred to as an hypogastric plexus, contained 233 +/- 83 neurons among which 12.7 +/- 7.2% were noradrenergic. Bilateral removal of the pelvic plexus produced degeneration of all the tyrosine hydroxylase-immunoreactive nerve fibres in the lower part of the uterus and in the cervix. In contrast, excision of the paracervical ganglia and the accessory ganglia caused no significant change in this innervation pattern. Combined retrograde tracing study and immunocytochemistry for tyrosine hydroxylase revealed a very small number of noradrenergic neurons also labelled with fluoro-Gold. Both findings suggest a limited involvement of the pelvic plexus noradrenergic neurons in the innervation of the lower genital tract.

Animals

The hemoregulatory peptide N-acetyl-Ser-Asp-Lys-Pro is a natural and specific substrate of the N-terminal active site of human angiotensin-converting enzyme.

Angiotensin I-converting enzyme (ACE) is a zinc-dipeptidyl carboxypeptidase, which contains two similar domains, each possessing a functional active site. Respective involvement of each active site in the degradation of the circulating peptide N-acetyl-seryl-aspartyl-lysyl-proline (AcSDKP), a negative regulator of hematopoietic stem cell proliferation, was studied by using wild-type recombinant ACE and two full-length mutants containing a single functional site. Both the N- and C-active sites of ACE exhibit dipeptidyl activity toward AcSDKP, with Km values of 31 and 39 microM, respectively. However, the N-active site hydrolyzes the peptide 50 times faster compared with the C-active site, with kcat/Km values of 0.5 and 0.01 microM-1.s-1, respectively. The predominant role of the N-active site in AcSDKP hydrolysis was confirmed by the inhibition of hydrolysis using a monoclonal antibody specifically directed against the N-active site. The N-domain specificity for AcSDKP will aid the identification of specific inhibitors for this domain. This is the first report of a highly specific substrate for the N-active site of ACE, with kinetic constants in the range of physiological substrates, suggesting that ACE might be involved via its N-terminal active site in the in vivo regulation of the local concentration of this hemoregulatory peptide.

Amino Acid Sequence

The radiosensitivity of uveal melanoma cells and the cell survival curve.

BACKGROUND: No study of the radiosensitivity of uveal melanoma cells and their survival curve has been published. The purpose of this study was to investigate the sensitivity to different single radiation doses of SP6.5, a human uveal melanoma cell line. METHODS: Cells were irradiated with cobalt-60 at doses from 0 to 1200 cGy. Radiosensitivity was measured by three methods: soft-agar bilayer assay, tritiated thymidine incorporation, and bromodeoxyuridine (BrdU) incorporation. RESULTS: The soft-agar bilayer assay, by assessing the colony-forming units, showed that the D1 value was 470 cGy, the Dq value was 400 cGy, and the n value exceeded 10, thus indicating a broad, shoulder and relative radioresistance. The doubling time as estimated by [3H]thymidine incorporation was unaffected at doses below 600 cGy, another indication of radioresistance. BrdU incorporation revealed no significant increase between 0 and 1000 cGy, indicating that the cell cycle was not interrupted. CONCLUSION: Cell survival, doubling time, and cell phases are parameters of growth kinetics, and the results suggest that SP6.5 is radioresistant and virtually unaffected by single radiation doses lower than 600 cGy. Our data parallel published data for cutaneous melanomas.

Aged

Potential strategies for circumventing myeloperoxidase-catalyzed degradation of vinca alkaloids.

Myeloperoxidase (MPO) has recently been shown in an in vitro, cell-free system to catalyze the peroxidative degradation of vincristine (VCR). Oxidation of VCR involves a ring fission between positions 20' and 21', and is thought to be facilitated by the presence of an hydroxyl (-OH) group at position 20'. We report here two different approaches, both with potential clinical application, to decrease MPO-catalyzed vinca degradation. Firstly, we tested the hypothesis that -OH substitution at position 20' increases vinca susceptibility to peroxidation by comparing the relative extent of degradation of vinorelbine (Navelbine or NVB), which lacks a 20' hydroxyl substitution, with that of VCR. As anticipated, NVB was significantly less susceptible to MPO-catalyzed peroxidation than was VCR (p < 0.01). Secondly, we screened an array of compounds that are in current clinical use for their ability to inhibit MPO. Acetaminophen, N-acetylcysteine, propylthiouracil, D-penicillamine, mefenamic acid, dapsone, and methimazole all inhibited MPO at clinically achievable concentrations. Insofar as increased MPO activity has been observed in patients with acute myeloid leukemia, these findings suggest potential strategies for improving the activity of vinca alkaloids in this disease.

Antineoplastic Agents