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Biomedical subjects

C Côté

Publications and source records attributed to C Côté.

At least 19 recordsLinked to original sources

Distribution of SPARC during neovascularisation of degenerative aortic stenosis.

OBJECTIVE: To examine the hypothesis that degenerative aortic stenosis (AS) is associated with the development of blood vessels and the expression of the secreted protein, acidic and rich in cysteine/osteonectin (SPARC), a matricellular protein that is involved in ossification, the modulation of angiogenesis and the production of metalloproteinases. METHODS: 30 surgically excised AS valves and 20 normal aortic valves were studied. RESULTS: Blood vessels were detected in the aortic valves from patients with degenerative AS, whereas normal valves were avascular structures. Blood vessels in AS valves expressed endothelial nitric oxide synthase, CD34 and von Willebrand factor (vWF). Blood vessels were located in three distinct regions: near calcified nodules, under the leaflet border and in rich cellular areas forming cell islands. Blood vessels were predominantly present in early and intermediate grades of calcification. Cell islands were densely populated by CD45-positive cells where endothelial cells (CD34+, vWF+) forming cord-like structures were present. Immunoblotting detected SPARC only in AS valves and immunohistological analysis located SPARC in mature blood vessels. The proportion of blood vessels positive for SPARC was higher in valves with a lower grade of calcification. In cell islands, SPARC was distributed to mature blood vessels and to macrophages, where it co-located with matrix metalloproteinase-9, whereas no expression was detected in endothelial cells forming cord-like structures. CONCLUSION: The localisation of SPARC to mature blood vessels and its predominant expression in AS valves with a lower calcification grade suggest that the spatial and temporal distribution of this matricellular protein is tightly controlled to participate in the neovascularisation of AS valves.

Aged↗

Adaptation of the diaphragm and the vastus lateralis in mild-to-moderate COPD.

The chronology of diaphragm and vastus lateralis adaptation in chronic obstructive pulmonary disease (COPD) has not been studied. The hypothesis of this study was that muscle changes would occur earlier in the diaphragm than in the vastus lateralis in COPD, a finding that would suggest that local factors would be more important than systemic factors in determining the muscle phenotypic expression, at least in mild-to-moderate disease. The adaptation of the vastus lateralis and diaphragm muscles was evaluated in patients with mild-to-moderate COPD and in subjects with normal pulmonary function. In both groups, the oxidative potential and the number of lipofuscin inclusions were higher in the diaphragm than in the vastus lateralis. Compared to control, the diaphragm in COPD had a higher oxidative capacity and a higher proportion of type I fibres, with a reciprocal decrease in type IIA fibres, while there was no difference in diaphragmatic cross sectional areas, capillarisation and lipofuscin inclusions. No significant differences were found in the vastus lateralis from both groups. In conclusion, these data indicate that the diaphragm in controls and in chronic obstructive pulmonary disease has a higher oxidative potential than the vastus lateralis, and that muscle adaptation occurs earlier in the diaphragm than in the vastus lateralis in mild-to-moderate chronic obstructive pulmonary disease.

Adaptation, Physiological↗

Mathematics of quantitative kinetic PCR and the application of standard curves.

Fluorescent monitoring of DNA amplification is the basis of real-time PCR, from which target DNA concentration can be determined from the fractional cycle at which a threshold amount of amplicon DNA is produced. Absolute quantification can be achieved using a standard curve constructed by amplifying known amounts of target DNA. In this study, the mathematics of quantitative PCR are examined in detail, from which several fundamental aspects of the threshold method and the application of standard curves are illustrated. The construction of five replicate standard curves for two pairs of nested primers was used to examine the reproducibility and degree of quantitative variation using SYBER Green I fluorescence. Based upon this analysis the application of a single, well- constructed standard curve could provide an estimated precision of +/-6-21%, depending on the number of cycles required to reach threshold. A simplified method for absolute quantification is also proposed, in which quantitative scale is determined by DNA mass at threshold.

DNA↗

An improved MUG fluorescent assay for the determination of GUS activity within transgenic tissue of woody plants.

Despite the success of the MUG fluorometric assay for quantitative analysis of beta-glucuronidase (GUS) activity within a vast array of transgenic plant species and tissues, attempts to apply this protocol for analysis of woody plants has been found to be problematic, primarily due to the interfering effects of phenolics and other secondary metabolites. Our analysis of transgenic spruce needles and poplar leaves illustrates that low tissue mass to extract volume, along with the inclusion of polyvinylpolypyrolidone and either beta-mercaptoethanol or metabisulphite, are essential for producing reliable results. The primary action of these additives was found to involve increased GUS extractability and the preservation of GUS activity during extract manipulation, but they were not completely effective in eliminating GUS enzymatic inhibitors. Normalization of GUS activity upon DNA concentration was also found to be an effective alternative to protein concentration, providing the ability to make cross-species and inter-tissue comparisons of gusA transgene activity.

Fluorescence↗

A variable speed translating couch technique for total body irradiation.

We have developed a variable speed translating patient couch system for the delivery of total body irradiation (TBI). For a whole body Rando-type phantom, dose variation at mid-plane relative to the prescription point (navel) can be as high as 15% (neck or legs) with a constant velocity. By taking into account variations in body thickness, the intensity modulation radiation therapy, resulting from variable velocities, effectively delivers a uniform dose distribution at mid plane. The couch control user interface, technical aspects and dose planning optimization procedure for determining velocity distribution are described.

Biophysical Phenomena↗

Dysfunctional mechanical coupling of upper airway tissues in sleep apnea syndrome.

The mechanical effect of musculus uvulae (MU) contraction on in vitro uvular shortening and/or displacement was measured in 15 patients with a sleep apnea hypopnea syndrome (SAHS) and in 8 snorers. Using freshly resected uvular tissues, passive and active uvular tissue-specific elastance and shortening were determined during stimulation of MU. No difference was found in maximum tetanic tension measured on uvular tissue between the two groups (47.2 +/- 14.8 g in SAHS and 39.1 +/- 16.5 g in snorers). Passive uvular-specific elastance was significantly less in snorers (0.36 +/- 0.27 g/% Lo) compared with patients with SAHS (0.84 +/- 0.39 g/% Lo) (p = 0.006). There was a negative correlation between uvular shortening and passive uvular specific elastance (r = 0.69, p = 0. 05). Maximal tetanic tension developed by isolated MU was higher in SAHS than in snorers (45.8 +/- 23.1 and 30.0 +/- 8.3 g, respectively, p = 0.04). A strong positive relationship was found between the apnea index and specific uvular elastance (r = 0.55, p = 0.007). We conclude that there is a significant difference between the uvular tissue elastance of SAHS and snorers, and that this difference influences the mechanical efficiency of MU contraction.

Adult↗

Characterization of an AGAMOUS homologue from the conifer black spruce (Picea mariana) that produces floral homeotic conversions when expressed in Arabidopsis.

Advances in elucidating the molecular processes controlling flower initiation and development have provided unique opportunities to investigate the developmental genetics of non-flowering plants. In addition to providing insights into the evolutionary aspects of seed plants, identification of genes regulating reproductive organ development in gymnosperms could help determine the level of homology with current models of flower induction and floral organ identity. Based upon this, we have searched for putative developmental regulators in conifers with amino acid sequence homology to MADS-box genes. PCR cloning using degenerate primers targeted to the MADS-box domain revealed the presence of over 27 MADS-box genes within black spruce (Picea mariana), including several with extensive homology to either AP1 or AGAMOUS, both known to regulate flower development in Arabidopsis. This indicates that like angiosperms, conifers contain a large and diverse MADS-box gene family that probably includes regulators of reproductive organ development. Confirmation of this was provided by the characterization of an AGAMOUS-like cDNA clone called SAG1, whose conservation of intron position and tissue-specific expression within reproductive organs indicate that it is a homologue of AGAMOUS. Functional homology with AGAMOUS was demonstrated by the ability of SAG1 to produce homeotic conversions of sepals to carpels and petals to stamens when ectopically expressed in transgenic Arabidopsis. This suggests that some of the genetic pathways controlling flower and cone development are homologous, and antedate the 300-million-year-old divergence of angiosperms and gymnosperms.

AGAMOUS Protein, Arabidopsis↗

Regression of focal nodular hyperplasia of the liver after oral contraceptive discontinuation.

There is uncertainty regarding the role, if any, of oral contraceptive steroids in the development of focal nodular hyperplasia of the liver. A case of focal nodular hyperplasia of the liver diagnosed by scintigraphy in a 33-year-old woman is presented. The lesion regressed in a dramatic way after oral contraceptive discontinuation. This case report suggests that oral contraceptives may influence the natural history of focal nodular hyperplasia of the liver, and that a trophic effect on the liver lesion is quite possible.

Adult↗

Upper airway collapsibility, and contractile and metabolic characteristics of musculus uvulae.

Physiologic, metabolic, and histochemical characteristics of one upper airway (UA) dilator muscle (musculus uvulae; MU) differ between sleep apnea hypopnea syndrome (SAHS) and nonapneic snorers. We hypothesized that these differences in MU characteristics could result from the cumulative effects of the diurnal and nocturnal intermittent contractions of UA muscles in order to compensate for a permanent increase in UA collapsibility. The aim of this study was to determine the influence of UA collapsibility on MU characteristics. Seventeen SAHS and three nonapneic snorers, who underwent an uvulo-palato-pharyngoplasty as a treatment for snoring or SAHS, participated in the study. Awake and sleeping UA critical pressure (Pcrit) was measured during continuous positive or negative airway pressure trials by analysis of the relationship between maximal inspiratory flow and the upstream pressure of flow-limited breathing cycles. Maximum isometric twitch (Pt) and tetanic tension (Po), fatigability measurements, activities of marker enzymes for anaerobic and aerobic-oxidative profile, and fiber type proportions and areas of MU were determined. There was a significant positive relationship between Pt, Po, and Pcrit measured during wakefulness and sleep. The fatigability index was negatively correlated with awake Pcrit values (r = -0.79). Activity level of the anaerobic enzymes as well as the percentage of surface occupied by type I and type IIA muscle fibers as correlated witb awake Pcrit. We conclude that the differences in awake UA collapsibility help to determine the contractile properties and metabolic and histochemical characteristics of MU.

Airway Obstruction↗

A miniaturized Ames mutagenicity assay employing bioluminescent strains of Salmonella typhimurium.

Increased awareness of the role of environmental factors in carcinogenesis has led to an emphasis on preventing or minimizing exposure to genotoxicants. This is presently promoting the development of simple, rapid, cost-effective mutagenicity screening assays. We have developed a test system based on the well-known Salmonella mutagenicity assay. The lux genes, which permit cells to emit light through bioluminescence, were introduced into Salmonella typhimurium strain TA98. These bacteria were exposed for 48 h to chemicals or complex mixtures in 48-well microplates containing an appropriate liquid medium. Cells were subsequently centrifuged and resuspended in buffer. The final postexposure revertant biomass was then estimated using a microluminometer. Replication trials confirmed methodological reproducibility. Clear dose-response relationships were obtained with the direct frameshift mutagens 4NQO and 2NF. Mutagenicity threshold effect concentrations found for these compounds were comparable to those reported in the literature. Industrial effluents and environmental extracts (effluents, suspended solids) were also tested and results compared well with those of the SOS Chromotest. While further validation of this new adaptation of the Ames test will be required, it appears at this time that it could be well suited for routine screening of xenobiotics and environmental samples.

4-Nitroquinoline-1-oxide↗

Physiologic, metabolic, and muscle fiber type characteristics of musculus uvulae in sleep apnea hypopnea syndrome and in snorers.

Upper airway dilator muscles play an important role in the pathophysiology of sleep apnea hypopnea syndrome (SAHS). The mechanical and structural characteristics of these muscles remain unknown. The aim of this study was to compare the physiologic, metabolic, and fiber type characteristics of one upper airway dilator muscle (musculus uvulae, MU) in 11 SAHS and in seven nonapneic snorers. The different analyses were done on MU obtained during uvulo-palato-pharyngoplasty. Snorers and SAHS differed only in their apnea + hypopnea indices (11.5 +/- 5.9 and 34.2 +/- 14.6/h, respectively, mean +/- SD). Absolute twitch and tetanic tension production of MU was significantly greater in SAHS than in snorers while the fatigability index was similar in the two groups. Protein content and anaerobic enzyme activities of MU were significantly greater in SAHS than in snorers; no difference was observed for aerobic enzyme activities. The total muscle fiber cross-sectional area of MU was significantly higher in SAHS (2.2 +/- 0.9 mm2) than in snorers (1.1 +/- 0.7 mm2). The surface occupied by type IIA muscle fibers of MU was larger in SAHS (2.00 +/- 0.96) than in snorers (0.84 +/- 0.63 mm2). We conclude that the capacity for tension production and the anaerobic metabolic activity of MU are greater in SAHS than in snorers.

Adult↗

Prognostic significance of cathepsin-D expression in node-positive breast carcinoma: an immunohistochemical study.

The prognostic significance of cathepsin-D expression was evaluated by immunohistochemistry in 638 node-positive breast carcinomas diagnosed between 1980 and 1986. A minimum of 2.5 years of follow-up was available for each patient (maximum: 9.5 years). Cathepsin-D expression was assessed separately both in cancer and in stromal cells using a commercially available polyclonal antibody. While cancer-cell immunostaining was not associated with prognosis, positive staining of stromal elements was related to shorter metastasis-free survival. The difference in distant metastasis-free survival between positive and negative expressors was greatest in the sub-group of patients submitted to adjuvant chemotherapy, with a hazard ratio for occurrence of distant metastasis of 1.76 by multivariate analysis, but was lowest for those receiving hormone therapy. Cathepsin-D expression by stromal cells was related to HER-2/neu oncoprotein expression, HSP-27 expression, poor nuclear grade, aneuploidy, and absence of estrogen and progesterone receptors. No association was found with the number of involved lymph nodes, tumor size, age, histologic grade, S-phase fraction, or vascular invasion. Our study suggests that cathepsin-D expression by stromal cells (and not by cancer cells) affects the prognosis of breast cancer, that stromal cells probably play a key role in local invasion and metastatic dissemination of the tumor, and that the prognostic significance of cathepsin-D expression may vary according to the type of adjuvant therapy.

Adult↗

Simultaneous visual discrimination learning in lurcher mutant mice.

Lurcher mutants were evaluated in the acquisition of a visual discrimination learning task with water escape as a reward. In comparison to normal mice, lurchers were impaired in discrimination learning in a manner not explainable by motor deficits. Although in initial trials the mutants had difficulty in finding the correct invisible platform, in agreement with previous findings of deficits in visuo-spatial organization, they eventually were able to find the quadrants where one of two platforms was situated but even so took longer to reach criterion in choosing the correct one. These results agree with the hypothesis that the cerebellum is involved in the acquisition of visual discrimination tasks in mice.

Animals↗

Fatigue and recovery of rat soleus muscle are influenced by inhibition of an intracellular carbonic anhydrase isoform.

Carbonic anhydrase III (CA III; EC 4.2.1.1) is the most abundant cytosolic enzyme in type I skeletal muscle fibers. Methazolamide, a specific CA inhibitor, was used to characterize the effects of inhibiting CA III on the resistance to fatigue and recovery of the rat soleus muscle using a 60-min fatigue protocol performed in vitro at 25 degrees C. Incubation with 10(-3) M methazolamide resulted in a smaller decrease in tension production during the fatigue protocol, thereby increasing the total tension-time integral for the fatigue test. However, the rate and extent of recovery after the test were lower in the experimental group compared with the control group. A similar effect was observed at physiological temperature (35 degrees C). The results indicate that inhibition of CA III significantly influences tension production as early as 30 s into the stimulation protocol. Inhibition of CA III only during the recovery period did not influence the recovery profile, thereby indicating that the impaired recovery was related to the presence of methazolamide during the stimulation period.

Acetazolamide↗

Role for the mitochondrial inner membrane in the maturation of the precursor to ornithine carbamyl transferase.

The precursor to ornithine carbamyl transferase (pOCT) is cleaved at two N-terminal sites when imported into intact mitochondria but only at the N-proximal site when incubated with a membrane-free mitochondrial lysate or matrix fraction. Disruption of the mitochondrial membrane system by sonication, freeze-thaw, or lysis with non-ionic detergents blocks the processing of pOCT to its mature form. Mitoplasts prepared from protease-inactivated, import-incompetent mitochondria recover full processing activity; disruption of the inner membrane impairs the maturation process i.e. causes the loss of the mitoplasts' ability to transform pOCT into OCT. The data reveal a dependency of a maturation event on a "specific" interaction between a precursor protein and the mitochondrial inner membrane probably to position and/or to expose the correct N-distal cleavage site of the presequence.

Animals↗

Expression of the mammalian mitochondrial genome. Role for membrane potential in the production of mature translation products.

Protein synthesis was investigated in isolated mitochondria under conditions which either inhibited electron transport or uncoupled oxidative phosphorylation. In a medium containing an exogenous source of ATP and oligomycin, an inhibitor of the ATP synthase complex, incorporation of [35S]methionine into proteins is stimulated in the presence of inhibitors of the electron transport chain; substituting uncouplers of oxidative phosphorylation for the latter leads, in contrast, to a decrease in the rate of incorporation of the labeled amino acid into mitochondrial translation products. Studies on the metabolic stability of mitochondrial translation products revealed that "mature" polypeptides made in isolated mitochondria are stable as indicated by the absence of degradation during a 50 min "chase" period. Under conditions which reduce or dissipate the membrane potential, 50-60% of the newly made polypeptides (pulse) are degraded within 50 min. The kinetics of the degradation process for individual mitochondrial gene products reveal that the largest proportion of polypeptides degraded to an acid-soluble form during the chase period are abnormal proteins, likely the result of premature chain termination. Emerging as a common denominator in these studies is a role for a transmembrane potential across the inner membrane in the production of mature "stable" mitochondrial gene products.

Animals↗

Expression of the mammalian mitochondrial genome. Stability of mitochondrial translation products as a function of membrane potential.

Polypeptide decay has been measured as a function of membrane potential. Mitochondrial translation products were pulse-labeled in vitro with [35S]methionine using isolated rat heart mitochondria in the presence of an energy-generating system. The relative rate of protein degradation was estimated from the specific activity (counts/min/mg of protein) of the labeled translation products following the addition of unlabeled methionine (chase). To modulate membrane potential, inhibitors of oxidative phosphorylation were used singly or in combination; their effect was monitored by following uptake of the nonmetabolizable lipophilic cation triphenylmethylphosphonium. When the potential was dissipated, the rate of polypeptide decay increased and vice versa. These results suggest that the stability of mitochondrial translation products is linked to a process(es) that is dependent upon delta psi; likely candidates include synthesis and/or assembly of mitochondrial gene products.

Animals↗