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Biomedical subjects

C Perret

Publications and source records attributed to C Perret.

At least 163 records · Page 9Linked to original sources

Transcriptional and post-transcriptional regulation of vitamin D-dependent calcium-binding protein gene expression in the rat duodenum by 1,25-dihydroxycholecalciferol.

Regulation of the expression of vitamin D-dependent calcium-binding protein (Mr 9000 CaBP) gene by 1,25-dihydroxycholecalciferol (1,25-(OH)2D3) was studied in the rat duodenum. In vivo stimulation of Mr 9000 CaBP synthesis was analyzed using a complementary DNA probe and by measuring the rate of Mr 9000 CaBP gene transcription in isolated nuclei (run-on assay). A single 1,25-(OH)2D3 injection (650 pmol/100 g of body weight) induced a 2-fold increase in Mr 9000 CaBP gene transcription within 15 min in the duodenum of vitamin D-deficient rats. RNA synthesis was maximal at 1 h, then decreased until 16 h of postinjection. There was an initial transient accumulation of Mr 9000 CaBP mRNA (from 7 to 15 min), which was followed by a second, significant increase, by 3 h which remained elevated until 16 h. The magnitude and time course of the Mr 9000 CaBP increase was similar to that of its mRNA as early as 1 h after 1,25-(OH)2D3 administration. Mr 9000 CaBP gene transcription was not significantly induced by 1,25-(OH)2D3 in vitamin D-replete rats and no transient accumulation of Mr 9000 CaBP mRNA was observed. Thus, 1,25-(OH)2D3 modulates Mr 9000 CaBP gene expression in at least two ways, a rapid transcriptional stimulation and a post-transcriptional effect preventing degradation of Mr 9000 CaBP transcripts and accounting for their accumulation several hours after the hormone treatment.

Animals↗

Analysis and in situ detection of cholecalcin messenger RNA (9000 Mr CaBP) in the uterus of the pregnant rat.

The molecular cloning of a cDNA fragment synthesised from rat duodenal mRNA coding for cholecalcin (calbindin), a 9000 Mr vitamin D-induced calcium-binding protein (CaBP), has been previously described. DNA/RNA hybridisation assays have been used to examine CaBP mRNA production in the uterine horns and duodena of pregnant (21 day) rats using the cloned CaBP cDNA. Northern hybridisation studies showed that the 32P cDNA sequence hybridised to a single 500-600 nucleotide species in both the uterus and the duodenum, thus demonstrating identical CaBP mRNA processing in both tissues. Dot blot hybridisation studies showed that the CaBP mRNA concentration was greatest in the duodenum while that of the uterine horns was about 10% of the duodenal level. The observed differences in CaBP mRNA levels correlate well with the in vivo CaBP concentrations. In situ hybridisation histochemistry using 3H cDNA revealed that CaBP mRNA visualised by silver grains was found in all the parts of the endometrium and the myometrium. However, CaBP mRNA was more concentrated in the outer and inner muscular fibres and in the luminal cells of the endometrium than in the stroma cells. These results demonstrate that the CaBP gene is expressed in specific cells of the rat uterus.

Animals↗

Fatal cardiac arrhythmias and shock following yew leaves ingestion.

A 40-year-old woman presented with vomiting and abdominal pain following voluntary ingestion of 150 yew leaves. She developed ventricular conduction defects and arrhythmias unresponsive to medical treatment after admission. She expired five hours after yew ingestion from irreversible cardiogenic shock. More attention should be given to this rare but severe intoxication for which no effective therapy is known.

Adult↗

Vitamin D-dependent calcium-binding proteins (CaBPs) in human fetuses: comparative distribution of 9K CaBP mRNA and 28K CaBP during development.

The vitamin D-dependent calcium-binding protein (CaBP) cholecalcin or calbindin, has been used as a molecular marker of 1,25-dihydroxyvitamin D3 action. Mammals possess two CaBPs: a 9,000 mol wt (9K CaBP) and a 28,000 mol wt (28K CaBP). The distinct localization of each protein in the rat has been previously described with the aid of specific radioimmunoassays developed for each CaBP. Antibodies raised against the rat 28K CaBP can be used to detect this protein in a number of mammalian species including humans. In contrast, antibodies against rat 9K CaBP do not cross react with human 9K CaBP, but human 9K CaBP mRNA can be analyzed using a cDNA probe for rat 9K CaBP mRNA. Such a cross-hybridization between the rat cDNA probe and human CaBP mRNA was demonstrated by Northern analysis. We have documented the distribution and evolution of 28K CaBP and 9K CaBP mRNA in human tissues during fetal development from 14 to 32 wk of gestation. 28K CaBP was only present in kidney and cerebellum, and not detectable in duodenum. There was a 2-fold increase of 28K CaBP in the cerebellum between 14 and 24 wk of gestation. The 9K CaBP mRNA was unevenly distributed in human fetal tissues. 9K CaBP mRNA was present in classical vitamin D target tissues such as duodenum and placenta; high levels of 9K CaBP mRNA also were found in thymus and lung.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Anisoylated plasminogen streptokinase activator complex versus streptokinase in acute myocardial infarction. Preliminary results of a randomised study.

25 patients with acute myocardial infarction pain lasting more than 20 minutes which was not relieved by nitrates, whose ECGs showed ST segment elevations of 1 mm or more in 2 or more ECG leads, and who presented less than 3 hours after onset of their symptoms were randomly assigned to one of 2 thrombolytic treatment groups: a single intravenous bolus of anisoylated plasminogen streptokinase activator complex (APSAC) 30U in 5 minutes or an intravenous infusion of streptokinase 1,500,000U over 60 minutes. 3 to 4 hours after the administration of the thrombolytic agent, all patients received intravenous heparin at full dosage for 24 hours. The patency of the infarct-related coronary vessels was assessed by angiography 1 to 4 hours after administration of the thrombolytic agent. Clinical signs, ECGs, pulse, blood pressure and temperature were monitored regularly for 24 hours after treatment or as clinically appropriate. APSAC seemed to be at least as effective as streptokinase in terms of patency of the infarct-related vessel (92% vs 63%, respectively). The adverse events were similar and none was life-threatening. APSAC and streptokinase caused similar falls in blood fibrinogen levels. APSAC, given as a bolus injection over 5 minutes, was easier to administer than streptokinase, which was given as an infusion during 60 minutes.

Adult↗

Effects of long-term treatment with D-penicillamine on antigen-induced arthritis in rabbits: studies on in vivo articular chondrocyte damage and in vitro collagen biosynthesis by cultured chondrocytes.

The effects of a long-term (120 days) treatment with D-penicillamine (DP) (50 mg/kg/day; i.v.) on antigen-induced arthritis were studied in rabbit. They were investigated by the terminal histological examination of the joints of different groups of rabbits (unimmunized treated or untreated, immunized treated or untreated) and the study of collagen and non-collagen protein biosynthesis by cultured chondrocytes obtained from articular cartilage of the same groups of animals. Treatment with D-penicillamine diminished the intensity of the erosions of cartilage and subchondral bone, the severity of the inflammatory synovitis, and the loss of chondrocyte clusters found in cartilage sections. In cultures of chondrocytes obtained from immunized treated rabbits, a partial or complete inhibition of the decreased biosynthesis of collagen and non-collagen proteins seen in culture of chondrocytes obtained from immunized untreated animals was observed. These results show that DP could be effective in preventing damage of chondrocytes and inhibition of collagen biosynthesis in them, phenomena important in cartilage destruction induced by a chronic immunological inflammation.

Animals↗

[Vasopressin in acute myocardial infarct: clinical implications].

Since current data on vasopressin (AVP) secretion during the early phase of myocardial infarction is not extensive, plasma AVP was measured in 26 patients with acute myocardial infarction. Twelve had an increased AVP concentration (23.2 +/- 7.0 pg/ml; mean +/- SEM) whereas 14 had an AVP level less than 3 pg/ml (1.96 +/- 0.14 pg/ml). The patients with AVP greater than 3 pg/ml had higher heart rate and plasma osmolality than those with AVP less than 3 pg/ml. Blood pressure values were the same in both groups of patients. There was no difference in peak CPK and iso CPK activities between the two groups. Seven patients with AVP greater than 3 pg/ml died within the next few days, while only 1 patient with AVP less than pg/ml died. It thus appears that increased AVP concentration during acute myocardial infarction is associated with a poor prognosis. Whether it is a cause or a consequence of an unfavourable course of myocardial infarction remains to be determined.

Adult↗

Molecular cloning of the avian beta-nerve growth factor gene: transcription in brain.

A chicken gene cross-hybridizing with a murine beta-nerve growth factor (beta NGF) cDNA probe was identified by Southern blot analysis and isolated from a genomic DNA library. The DNA sequence coding for the putative mature beta NGF protein was determined, providing direct evidence for the existence in birds of a neurotrophic factor sharing a high degree of sequence homology with mammalian beta NGF. In addition this gene is shown to be transcriptionally active in adult avian brain as demonstrated by Northern blot analysis.

Animals↗

[Prevention of acute renal insufficiency due to nontraumatic rhabdomyolysis].

Nine patients with nontraumatic rhabdomyolysis underwent preventive treatment for acute renal failure (ARF) (vascular filling, furosemide, dopamine, Na bicarbonate, allopurinol). Four patients developed functional azotemia and 4 others ARF with conserved diuresis and normalization of renal function without substitutive treatment. Only one patient remained oligoanuric and needed hemodialysis for 3 weeks. Comparing these 3 groups it appears that the severity of the renal impairment is due on one hand to the extent of the muscular lysis and on the other to early commencement of preventive treatment.

Acute Kidney Injury↗

[Fulminant gram-negative (CDC-dysgonic-fermenter 2) septicemia in a splenectomized patient].

In a 43-year-old woman admitted because of fever and high cardiac output shock, disseminated intravascular coagulation with purpura was present. The peripheral blood smear revealed the presence of intraleukocytic elongated bacilli, but growth of bacteria (further identified as DF2) in the blood cultures was detected only two weeks after admission. Despite intensive therapy with hemodynamic and respiratory support, associated with broad spectrum antibiotherapy, the patient died on the third day of hospitalisation. The past medical history of the patient revealed splenectomy for Hodgkin's disease 4 years previously, but no recent dog bite.

Adult↗

Evidence of rhythmic inhibitory synaptic influences in hindlimb motoneurons during fictive locomotion in the thalamic cat.

Intracellular recordings of various motoneurons of proximal hindlimb muscles were performed on thalamic paralyzed cats, during fictive locomotion that was either spontaneous or evoked by stimulation of the subthalamic region. In motoneurons innervating sartorius (medialis and lateralis), vasti (intermedius, medialis and lateralis) and anterior biceps-semimembranous, one depolarization occurred in each locomotor cycle, alternating with a phase of repolarization that was synchronous with the activation of the antagonistic muscle nerve. This latter phase could be decreased or reversed by intracellular injection of chloride ions or current, revealing the presence of inhibitory inputs onto motoneurons. The pattern of membrane potential variations was more complex in motoneurons of rectus femoris and posterior biceps-semitendinosus muscles, but phases of chloride dependent inhibition were nevertheless identified, mainly during the sartorius nerve activation in the case of rectus femoris, and during the vasti and anterior biceps-semimembranosus nerve activations in the case of posterior biceps-semitendinosus. These inhibitory influences were shown to be controlled by the level of activity in exteroceptive afferents. The characteristics of the excitatory and inhibitory inputs to the hindlimb motoneurons identified here are discussed in relation with the organization of the central pattern generator for locomotion.

Animals↗

In situ detection of vitamin D-induced calcium-binding protein (9-kDa CaBP) messenger RNA in rat duodenum.

We have previously described the molecular cloning of a cDNA fragment synthesized from rat duodenal mRNA coding for a 9000-dalton vitamin D-induced calcium-binding protein (9-kDa CaBP) (3). We now report the use of this cloned cDNA to study the cytological distribution of 9-kDa CaBP mRNA in rat duodenum by in situ hybridization. Tissue sections, fixed in ethanol:acetic acid, were hybridized to the 3H-cDNA probe and processed for autoradiography. The specificity of the CaBP mRNA-DNA hybrid formation was checked using 3H-labeled plasmid pBR322 DNA as a control probe. 9k-Da CaBP mRNA, visualized by silver grains, was found only in the absorptive epithelial cells, and the concentration was greater in the cells at the villous tips than in those of the crypts. The 9k-Da CaBP mRNA was observed mainly in the cytoplasm of the columnar cells and less frequently in the nucleus. Labeling was not seen in the brush border and goblet cells. The submucosa, with Brunner's glands and muscularis, also showed no specific 9-kDa CaBP mRNA concentration. This demonstration of 9-kDa CaBP gene activity in the columnar cells of the rat duodenum illustrates the usefulness of in situ hybridization for characterization of specific cells involved in the expression of 1,25(OH)2 D3 activity.

Animals↗

Distribution of vitamin D-dependent calcium-binding protein messenger ribonucleic acid in rat placenta and duodenum.

The vitamin D-dependent calcium-binding protein (CaBP), cholecalcin or calbindin, is one of the best documented molecular expressions of 1,25-dihydroxyvitamin D, the hormonal metabolite of vitamin D. In this report, DNA/RNA hybridization assays have been used to examine cholecalcin (CaBP) mRNA production in the placenta and duodenum of 21-day pregnant rats. A cloned CaBP cDNA which codes for the rat intestinal 9000 mol wt cholecalcin (9KCaBP) was radiolabeled and used in hybridization assays to explore 1) the size and relative quantities of CaBP mRNA extractable from placenta and duodenum by molecular hybridization, and 2) the localization and quantification, by in situ hybridization histochemistry, of CaBP mRNA in specific cells in rat placenta and duodenum. Northern hybridization studies show that the [32P]cDNA sequence hybridizes to a single 500- to 600-nucleotide species in the placenta as in the duodenum and, therefore, demonstrate identical 9KCaBP mRNA processing in both tissues. Dot blot hybridization studies show that the concentration of 9KCaBP mRNA was greatest in the duodenum, while that of the inner (fetal) placenta was about 50% the duodenal level. Considerably less CaBP mRNA was found in the outer (maternal) placenta. The observed differences in 9KCaBP mRNA levels correlate well with the in vivo variations in 9KCaBP concentrations. In situ hybridization histochemistry using [3H]cDNA reveals that 9KCaBP mRNA visualized by silver grains was concentrated in the inner placenta over the cytoplasm of syncytial cells in the trophoblastic epithelium of the labyrinth and much less frequently in the cells of the outer placenta. In the duodenum, 9KCaBP mRNA was found only in the absorptive epithelial cells from the crypt region to the upper part of the villi. The silver grains were distributed throughout the cytoplasm of the columnar cells; they were densest in the perinuclear region and rarest in the nuclear region. The concentration was greater in the cells at the villous tips than in those of the crypts. This difference in 9KCaBP mRNA levels correlates well with the distribution of the protein itself along the villi. CaBP mRNA quantities detected by hybridization histochemistry showed greater labeling in the syncytial cells of the trophoblastic epithelium of the labyrinth than in the absorptive epithelial cells of the upper part of the villi (200% less), indicating accumulation of CaBP mRNA at a greater rate in the trophoblastic epithelium than in the absorptive epithelial cells. These results indicate that in the rat, 9KCaBP is synthesized in both the absorptive cells of the duodenum and the cells of the trophoblastic epithelium of the placenta.

Animals↗