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Biomedical subjects

P Merlet

Publications and source records attributed to P Merlet.

At least 37 records · Page 2Linked to original sources

Impaired cerebral glucose metabolism in myotonic dystrophy: a triplet-size dependent phenomenon.

Myotonic dystrophy (DM) is caused by an expansion of a CTG triplet repeat sequence in the 3'-noncoding region of a protein kinase gene, yet the mechanism by which the triplet repeat expansion causes disease remains unknown. Impaired glucose penetration into brain tissues has been described in DM patients and is a phenomenon that remains unexplained. The present study shows that altered brain glucose metabolism is triplet repeat dependent. We studied brain glucose metabolism (CMRGlu, mumol/100 g/min) by the use of positron emission tomography and 18F-fluoro-2-deoxy-D-glucose in 11 ambulatory non-obese DM patients and in 11 age and sex matched healthy subjects. All subjects underwent a glucose tolerance test with plasma insulin determinations. The expansion of CTG triplet repeats was analyzed in patients with the probe cDNA25 after EcoRI digestion. As compared to controls, in DM patients, the CMRGlu was significantly decreased (26.26 +/- 5.05 vs. 33.43 +/- 2.18, mumol/100 g/min, P = 0.004), and after oral glucose loading, plasma insulin levels were significantly higher and plasma glucose levels remained unchanged (respectively, F = 11.21, P = 0.004 and F = 0.20, P = 0.66). Subsequently, the glucose/insulin ratio was significantly lower in DM patients (F = 6.25, P = 0.02). The length of the expansion of the CTG repeats correlated negatively with the CMRGlu (r2 = 0.63, P = 0.003) and positively with the area under the curve for insulin changes over time after oral glucose (r2 = 0.49, P = 0.016). We conclude that, in DM patients, the brain metabolism of glucose is impaired in a repeat dependent manner.

Activities of Daily Living↗

Effects of 5-day hypoxia on cardiac adrenergic neurotransmission in rats.

Chronic hypoxia induces an overall sympathetic hyperactivation associated with a myocardial beta-receptor desensitization. The mechanisms involved in this desensitization were evaluated in 32 male Wistar rats kept in a hypobaric pressure chamber (PO2 = 40 Torr, atmospheric pressure = 450 Torr) for 5 days. In hypoxic compared with normoxic conditions, plasma norepinephrine (NE) levels were higher (2.1 +/- 0.7 vs. 0.6 +/- 0.2 ng/ml) with no difference in the plasma epinephrine levels (2.2 +/- 0.7 vs. 1.8 +/- 0.3 ng/ml). In hypoxia neuronal NE uptake measured by [3H]NE was decreased by 32% in the right ventricle (RV) and by 35% in the left ventricle (LV), and [3H]mazindol in vitro binding showed a decrease in uptake-1 carrier protein density by 38% in the RV and by 41% in the LV. In vitro binding assays with [3H]CGP-12177 indicate beta-adrenoceptor density reduced by 40% in the RV and by 32% in the LV, and this was due to reduced beta1-subtype fraction (competition binding experiments with practolol). Hypoxia reduced the production of cAMP induced by isoproterenol (36% decrease in the RV and 41% decrease in the LV), 5'-guanylylimododiphosphate (40% decrease in the RV and 42% decrease in the LV), and forskolin (39% decrease in the RV and 41% decrease in the LV) but did not alter the effect of MnCl2 and NaF. Quantitation of inhibitory G-protein alpha-subunit by immunochemical analysis showed a 46% increase in the cardiac-specific isoform Gialpha2 in hypoxic hearts. The present data demonstrate that in rats 5-day hypoxia leads to changes in pre- and postsynaptic myocardial adrenergic function. The myocardial desensitization associated with both a reduction in externalized beta1-adrenoceptor and an increase in inhibitory G-protein subunit may be caused by increased synaptic NE levels due to impaired uptake-1 system.

Adenylyl Cyclases↗

[Fluorodeoxyglucose and bronchopulmonary cancer. Initial French results with positron emission tomography].

Despite recent advances, the contribution of medical imaging techniques is limited, particularly in terms of tissue characterization, in the diagnosis of pulmonary nodules and search for extension of bronchogenic cancer. The metabolic properties of the glucose analog deoxyglucose labeled with 18F1 would allow metabolic imaging. Positron emission tomography (PET) provides clinicians with quality images with an interesting sensitivity. We report the results of a feasibility study conducted in our first 17 patients. We observed 14 true positives, 1 true negative and 1 false positive and 1 false negative in patients with a malignant primary lesion. We analyzed the causes of error. Ten disseminated localizations were identified. Possible developments in terms of therapeutic strategy are discussed. The agreement between our findings and data reported in the literature prompted us to develop a study protocol using 18-fluorodeoxyglucose PET in patients with bronchogenic cancer.

Adult↗

Increased myocardial muscarinic receptor density in idiopathic dilated cardiomyopathy: an in vivo PET study.

BACKGROUND: Congestive heart failure is associated with decreased stimulated myocardial adenylate cyclase activity, increased Gi-binding protein, attenuated parasympathetic tone, and increased modulation of beta-adrenergic inotropic left ventricular stimulation by parasympathetic agonists. Despite these abnormalities, changes in the density or affinity of ventricular muscarinic receptors have not been demonstrated in patients. METHODS AND RESULTS: The density and affinity constants of myocardial muscarinic receptors were evaluated noninvasively by means of positron emission tomography with 11C-MQNB (methylquinuclidinyl benzilate), a specific hydrophilic antagonist, in 20 patients with congestive heart failure due to idiopathic dilated cardiomyopathy (mean left ventricular ejection fraction, 22+/-9%) and compared with values in 12 normal subjects. The mean receptor concentration was significantly higher in patients than in control subjects (B'max, 34.5+/-8.9 versus 25+/-7.7 pmol/mL, P<.005), with no changes in affinity constants. The change in heart rate after injection of 0.6 mg of cold MQNB was lower in patients than in control subjects (34+/-20% versus 55+/-36%, P<.05), and receptor density correlated negatively with maximal heart rate in the patients (r=.45, P<.05). CONCLUSIONS: Congestive heart failure is associated with an upregulation of myocardial muscarinic receptors. This may be an adaptive mechanism to beta-agonist stimulation and should increase the number of potential targets for pharmacological intervention.

Adult↗

Alterations of myocardial sympathetic innervation in response to hypoxia.

UNLABELLED: The effects of altitude hypoxia on myocardial sympathetic nerve function were assessed in rats using metaiodobenzylguanidine (MIBG). METHODS: To estimate the change in uptake-1 function induced by hypoxia, three sets of rats were submitted to 5-, 7- and 21-day hypoxia (hypobaric chamber at 410 Torr) and one set of control rats was injected with 25 muCi of 123I-MIBG. Four hours later, the rats were killed and 123I activity was counted in both ventricles. The proportion of MIBG fixed in the myocardium through the norepinephrine (NE) transporter (uptake-1) was evaluated indirectly in 5-day hypoxic and controls rats by the injection of desipramine before 123I-MIBG administration. Myocardial perfusion was evaluated in 5-day hypoxic rats and controls by 201Tl injection. RESULTS: Myocardial 123I-MIBG activity was 0.253% +/- 0.036% kg dose/g-1 in controls and was decreased (0.188% +/- 0.029% kg dose/g-1, p = 0.001) in 5-day hypoxic rats. This decrease was not related to a change in cardiac perfusion. The decrease in MIBG uptake existed before the appearance of cardiac hypertrophy. Desipramine decreased MIBG uptake by 48% in controls and 17% in hypoxic rats, suggesting that the decrease predominantly affected MIBG uptake by the NE transporter. CONCLUSION: Chronic hypoxia leads to a decrease in myocardial NE-uptake-1 function. This finding suggests that altered tissue oxygen supply could play a role in the decreased cardiac MIBG uptake reported in human cardiomyopathies.

3-Iodobenzylguanidine↗

Blunted coronary reserve in myotonic dystrophy. An early and gene-related phenomenon.

BACKGROUND: In myotonic dystrophy (DM), striated muscle is involved in relation to the size of the DNA mutation. Smooth muscle may be similarly impaired at the level of the urinary and digestive apparatus and possibly at the level of small vessels, since microangiopathy has been described in the iris and digital capillaries. Our purpose was to study the function of the myocardial microvasculature in relation to the size of the mutation in DM patients without clinical cardiac involvement and with normal left ventricular dimensions and function and normal large coronary arteries. METHODS AND RESULTS: In 6 control subjects and 10 DM patients, we investigated the coronary blood flow reserve using positron emission tomography with 15O-labeled water. Global and regional flow reserves were obtained from myocardial regions of interest manually drawn on a static FDG image encompassing, respectively, the whole left ventricle and the anterior, septal, and lateral walls. The DNA mutation size was determined on circulating lymphocytes in each DM patient. Compared with control subjects, DM patients had decreased global (2.39 +/- 0.39 versus 4.00 +/- 0.67, P = .00003) and regional (anterior, 2.39 +/- 0.64 versus 3.87 +/- 0.92, P = .002; septal, 2.60 +/- 0.48 versus 4.00 +/- 0.70, P = .0003; lateral, 2.26 +/- 0.58 versus 4.16 +/- 1.11, P = .0005) coronary reserves. In DM patients, the coronary reserve correlated strongly and inversely with the DNA mutation size (r = -.77, P = .009). CONCLUSIONS: The study demonstrated that global and regional coronary reserves are impaired, in relation to the DNA mutation size, in symptom-free DM patients with normal ventricular dimensions and function and normal large coronary vessels. We suggest that a gene-related blunted coronary reserve resulting from an impairment of vascular smooth muscle is an early component of DM cardiomyopathy.

Adult↗

In vivo assessment of neurotransmitter system in cardiovascular diseases. Clinical issues.

Cardiac neurotransmitter systems, especially the adrenergic receptor pathway, are impaired in heart diseases. In patients with heart failure, these abnormalities contribute to arrhythmogenesis and to progression of cardiac dysfunction. The use of MIBG with single photon imaging has provided useful information on the mechanisms of ventricular arrhythmias, and on the causes of death in patients with heart failure or hypertrophic cardiomyopathy. It has been suggested as a prognostic indicator in patients with heart failure. Positron Emission Tomography (PET) now allows us to obtain noninvasively the quantitative determination of regional receptor density and affinity in humans as well as innervation integrity and functioning. These measurements are based upon the synthesis of a radioligand, usually either a selective receptor antagonist or a false neurotransmitter labeled with a positron-emitting radioisotope. Mathematical compartmental models are fitted to activity-versus-time curves obtained during saturation or displacement experiments in order to calculate the rate constants and the receptor density in the myocardium. PET has only recently begun to be applied to the study of cardiac physiology and disease. PET and SPECT cardiac neuroimaging techniques are able to demonstrate the physiological regulation of receptors, and to provide the possibility of studying regional abnormalities of cardiac neurotransmission, especially in arrhythmogenic cardiomyopathy. Furthermore these non invasive techniques could be useful in exploring the alteration of neurotransmission in the early stage of heart disease and could allow repeated scintigraphic examinations in order to evaluate the effects of cardiac medications.

Animals↗

[Cardiac MIBG imaging: a new marker for myocardial function in children?].

MIBG cardiac imaging is a non-invasive procedure of studying neuronal recapture of noradrenaline. In adult cardiomyopathy, abnormal results are observed earlier than the increase in circulating catecholamines and constitute a reliable prognostic indicator of the disease. The authors assessed this technique in children with severe cardiac dysfunction in whom the evaluation of ventricular pump function was of primordial importance for the therapeutic decision. Twenty-eight patients aged 3 months to 20 years (average 6.4 +/- 5.8 years) were included in the study. Twenty had hypokinetic dilated cardiomyopathies: with respect to the normal values in adults MIGBG uptake was reduced in all cases. This alteration was correlated with the severity of myocardial dysfunction assessed by echocardiography but is was without doubt the expression of another type of physiopathological process. No relationship was observed with the aetiology of the cardiomyopathy. Eight children had a single ventricle treated by cavopulmonary bypass in 7 cases and by pulmonary artery banding in the other case: MIBG imaging did not allow assessment of myocardial function in these patients probably because the cavopulmonary bypass denervated the heart and thereby changed MIBG uptake independently of the cardiac function. These preliminary results are encouraging and should lead to the adoption of MIBG imaging as one of the key investigations in the functional evaluation of childhood cardiomyopathy and perhaps as an important parameter in the decision of transplantation in this indication.

3-Iodobenzylguanidine↗

Impairment of the exercise-induced increase in muscle perfusion in McArdle's disease.

In McArdle's disease (myophosphorylase deficiency) exercise intolerance is generally attributed to a lack of glycogenolysis, which decreases energy production during exercise. Magnetic resonance imaging data have recently suggested an impairment of the increase in muscle perfusion during exercise in these patients. We have tested this hypothesis by direct measurement of local muscle perfusion increase. Increase in muscle perfusion was assessed by positron emission tomography with oxygen-15 labelled water in five patients with McArdle's disease and five age- and sex-matched healthy volunteers. Radioactivity was measured in both forearms before and after exercise of the right forearm. The exercise intensity was biochemically assessed by in vivo phosphorus-31 magnetic resonance spectroscopy. The estimated increase in muscle perfusion with exercise was 5.7+/-5.5-fold in the patients (range 1.5-12.8) and 22.3+/-12.0-fold in the healthy subjects (range 10.1-37) (P=0.022). The results show a significant impairment of increase in muscle perfusion with exercise in McArdle's disease. Thus patients may suffer not only from a direct lack of glycogenolysis but also from indirectly impaired vasodilation.

Adult↗

[What are the criteria of priority for the patient to be accepted on the waiting list for cardiac transplantation?].

The limited resources (in grafts, human and financial resources) incited the authors to carry out a prospective assessment of the value of assessing adrenergic function (scintigraphy with meta- iodo- benzyl guanidine, MIBG) for the procedure of inscription on the waiting list of patients with cardiac failure awaiting cardiac transplantation. The study was undertaken from October 1988 to October 1992. Seventy-eight candidates for transplantation were included in the study. Forty-six patients with a MIBG cardiothoracic ratio less than 120% were placed on the waiting list. In July 1993, 35 had undergone transplantation after a 5 months delay. Four patients are still awaiting transplantation and 7 died whilst on the waiting list. Thirty two with a MIBG cardiothoracic ratio greater than 120% were treated medically: in 14 cases (43%) this decision was reviewed after 17 +/- 12 months. The clinical course was stable in the other 18 patients with a follow-up of 46 +/- 18 months (range: 12-72 months). In all, the results of this study show that a procedure of selection for inscription on the waiting list of patients with cardiac failure judged to be good candidates for transplantation based on the value of the MIBG cardiothoracic ratio allows deferrement of inscription of patients at least risk without changing the chances of survival in the whole population group within a 2 year period.

3-Iodobenzylguanidine↗

Assessing intratumor distribution and uptake with MBBG versus MIBG imaging and targeting xenografted PC12-pheochromocytoma cell line.

UNLABELLED: The heterogeneity of tumor uptake is likely to substantially limit the effectiveness of metaiodobenzylguanidine (MIBG) therapy. This study was done to establish whether metabromobenzylguanidine (MBBG) can target neuroendocrine tumors and to provide intratumor biodistribution and uptake information in comparison to MIBG. METHODS: MBBG and MIBG tumor uptake and kinetic studies were performed in experimental PC-12 pheochromocytoma grown in nude mice. Intratumor distribution studies were performed using autoradiography and secondary ion mass spectrometry (SIMS) microscopy, because the latter technique can detect and potentially quantify both drugs concomitantly within the same tumor specimen. RESULTS: MBBG uptake in PC12 tumors was early (2 hr) and intense (80% ID/g). Retention values were similar for both drugs 24 hr postinjection. At the cellular level, MBBG mostly accumulated in the cytosol. At the multicellular level, cells exhibited staining, but in many areas, SIMS images of both drugs were not spatially correlated. CONCLUSION: MBBG targeted experimental pheochromocytoma efficiently with high early uptake values. Bromine-76-MBBG is a promising means of imaging and quantifying tumor uptake with PET. Both drugs were localized in the cytosol, but the correlation between the two distributions, as assessed by the values of the standardized local concentrations, was weak although significant multicellularly.

3-Iodobenzylguanidine↗

[Isotope methods of determination of myocardial viability].

The decision to perform myocardial revascularization in patients with chronic ischaemic heart disease or following infarction, is based on many criteria such as coronary anatomy, left ventricular function, the clinical context and the patient's physiological age. It is also essential to confirm the presence of ischaemic but viable myocardium in the territory concerned by the revascularization. Functional imaging techniques allow the demonstration of this hibernating myocardium: thallium 201 myocardial tomoscintigraphy provides the clinician with a reliable answer in the great majority of cases. A number of examination protocols have been developed in order to make this investigation more efficient: late films, reinjection, etc. New tracers of viability are also currently under evaluation. Positron emission tomography (PET) is currently considered to be the reference technique for the detection of viable myocardium. Numerous tracers are used and this technique allows parallel evaluation of cellular metabolism and myocardial perfusion. Unfortunately, this type of investigation is expensive and not widely available. The use of positron emitter isotopes with conventional cameras appears to give encouraging results. Finally, among the other functional imaging devices, stress ultrasonography gives good results in the detection of hibernating myocardium. Contrast ultrasonography and magnetic resonance imaging are currently under development.

Echocardiography↗

Clinical use of metaiodobenzylguanidine imaging in cardiology.

Cardiac function is predominantly regulated by autonomic innervation. Many heart diseases involve alterations of cardiac adrenergic neurotransmission. In patients with cardiomyopathies, numerous therapeutic agents act directly or indirectly on cardiac adrenergic disorders. Metaiodobenzylguanidine (MIBG) imaging can provide in vivo information on one of the main components of adrenergic nerve function, i.e. the norepinephrine reuptake and storage system. Diminished MIBG uptake has been reported in patients with congestive heart failure, indicating an impaired norepinephrine reuptake and storage system. In patients with dilated cardiomyopathy (either idiopathic or ischemic), this alteration has been linked to the severity of the disease, evaluated on the basis of clinical or hemodynamic parameters. Moreover, MIBG imaging has been reported in such patients to be a potent prognostic marker in comparison with other recognized indices. After myocardial infarction, the decrease in MIBG uptake was transient in some patients and was suggested to be a viability indicator. Diminished MIBG uptake in ischemic patients was linked to the occurrence of ventricular arrhythmias. In patients with primary hypertrophic cardiomyopathy, decreased cardiac MIBG uptake has also been related to the clinical indices of severity. In patients suffering from various arrhythmias such as idiopathic ventricular arrhythmias, arrhythmogenic right ventricular cardiomyopathy or a long-QT syndrome, MIBG imaging has evidenced regional abnormalities of adrenergic nerve function and has provided new insights into the pathophysiological mechanisms of such disorders. Finally, MIBG scintigraphy may permit the evaluation of anthracyclin cardiotoxicity. Thus, MIBG imaging appears to be a promising tool for the cardiologist.

3-Iodobenzylguanidine↗

Preparation and pharmacological characterization of [76Br]-meta-bromobenzylguanidine ([76Br]MBBG).

[76Br]-meta-Bromobenzylguanidine ([76Br]MBBG) was prepared from the iodinated analog (MIBG) and [76Br]NH4 using a Cu(+)-assisted halogen exchange reaction. [76Br]MBBG was produced in a 60-65% radiochemical yield with a specific activity of 20 MBq/nmol. In rats, biodistribution kinetic studies showed a high uptake of [76Br]MBBG in heart tissues with its maximum of 5% ID/S at 2 h p.i.; whereas 4 h p.i., the maximum of the heart-to-lung concentration ratio of 8 was observed. Metabolic studies in rats indicated that [76Br]MBBG was rapidly metabolized in plasma. However in heart tissue, 25 h p.i., 85% of the radioactivity still represented unchanged radiotracer. Pharmacological studies in rats showed that the myocardial uptake of [76Br]MBBG was similar to that of norepinephrine. After pretreatment of the rats, the uptake of [76Br]MBBG was reduced 4 h p.i. to the following values: after desipramine (DMI) to 37%, after dexamethasone (DXM) to 88% and after 6-hydroxydopamine (6-OHDA) to 16%. These preliminary results suggest that [76Br]MBBG can be useful for the assessment of heart catecholamine reuptake disorders with PET.

Animals↗

In vivo quantification of myocardial muscarinic receptors in heart transplant patients.

BACKGROUND: Decreased myocardial adenylate cyclase activity in response to guanine nucleotide stimulation has been recently demonstrated in denervated myocardium of transplant patients, suggesting that changes in left ventricular muscarinic receptors may occur. METHODS AND RESULTS: The concentration and affinity constants of myocardial muscarinic receptors were determined by positron emission tomography with 11C-labeled methylquinuclidinyl benzilate (MQNB), a specific hydrophilic antagonist, in six transplant patients 4.7 +/- 2.3 months after surgery and in six normal subjects. Patients had no sign of cardiac rejection at endomyocardial biopsy. After intravenous injections of MQNB, time-activity curves were obtained over different regions of interest and were fitted to a nonlinear mathematical model. No difference in the concentration of muscarinic receptors was found in transplant patients compared with control subjects: 24 +/- 4 versus 26 +/- 7 pmol/mL tissue, respectively (P = NS). The association rate constant k+1, the dissociation rate constant k-1, and thus the equilibrium-dissociation constant Kd were the same in transplant patients compared with control subjects. CONCLUSIONS: Despite known decreased GTP-stimulated adenylate cyclase activity in transplant patients, the density and affinity constants of myocardial muscarinic receptors are not altered. This suggests abnormalities of the signal-transduction function, such as a change in the guanine nucleotide binding proteins.

Adult↗

Correlation between decreased myocardial glucose phosphorylation and the DNA mutation size in myotonic dystrophy.

BACKGROUND: Myotonic dystrophy, the most common form of adult dystrophy, has been shown to be caused by amplification of CTG triplet repeat in the 3' untranslated region of a protein kinase gene located on chromosome 19. Impaired glucose metabolism has been suggested as a possible explanation of brain and skeletal muscle involvement in this multisystem disease. We investigated whether myocardial glucose metabolism is impaired in myotonic dystrophy and whether this impairment is related to the size of the mutation. METHODS AND RESULTS: The myocardial metabolic rate for glucose (MMRGlu, mumol.min-1.g-1), K1 (blood-to-tissue transfer constant), k2 (tissue-to-blood transfer constant), and k3 (phosphorylation rate constant) were determined in 7 control subjects and 12 patients with myotonic dystrophy by using parametric images generated from dynamic cardiac positron emission tomography (PET) and 18F-fluoro-2-deoxy-glucose studies. The expansion of the CTG triplet repeats was analyzed in patients with the probe cDNA25 after EcoRI digestion. Nonparametric tests were used to compare quantitative variables between control subjects and patients. The correlations between the size of the mutation and PET parameters were studied by linear regression. MMRGlu and k3 were significantly decreased in patients compared with control subjects (0.39 +/- 0.20 versus 0.64 +/- 0.25, P = .03, and 0.09 +/- 0.07 versus 0.24 +/- 0.21, P = .03, respectively), whereas K1 and k2 were not statistically different between control subjects and patients. MMRGlu and k3 correlate inversely with the length of the CTG triplet repeat (r = -.65 and P = .03 for MMRGlu, and r = -.85 and P = .001 for k3, respectively). CONCLUSIONS: In myotonic dystrophy, the observed reductions in MMRGlu and phosphorylation are inversely linked to the length of the mutation. This observation suggests that impaired modulation of a protein kinase involved in myocardial hexokinase activation may give a pathophysiological schema to relate the molecular defect and the abnormal myocardial metabolism in myotonic dystrophy.

Adult↗