123 resultados para Cardiomyopathy, Hypertrophic


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Mendelian cardiomyopathies and arrhythmias are characterized by an important genetic heterogeneity, rendering Sanger sequencing very laborious and expensive. As a proof of concept, we explored multiplex targeted high-throughput sequencing (HTS) as a fast and cost-efficient diagnostic method for individuals suffering from Mendelian cardiac disorders. We designed a DNA capture assay including all exons from 130 genes involved in cardiovascular Mendelian disorders and analysed simultaneously four samples by multiplexing. Two patients had familial hypertrophic cardiomyopathy (HCM) and two patients suffered from long QT syndrome (LQTS). In patient 1 with HCM, we identified two known pathogenic missense variants in the two most frequently mutated sarcomeric genes MYH7 and MYBPC. In patient 2 with HCM, a known acceptor splice site variant in MYBPC3 was found. In patient 3 with LQTS, two missense variants in the genes SCN5A and KCNQ were identified. Finally, in patient 4 with LQTS a known missense variant was found in MYBPC3, which is usually mutated in patients with cardiomyopathy. Our results showed that multiplex targeted HTS works as an efficient and cost-effective tool for molecular diagnosis of heterogeneous disorders in clinical practice and offers new insights in the pathogenesis of these complex diseases.

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BACKGROUND: LEOPARD syndrome (LS) belongs to the family of neuro-cardio-facio-cutaneous syndromes, which include Neurofibromatosis-1 (NF1), Noonan syndrome, Costello Syndrome, cardio-facio-cutaneous syndrome, Noonan-like syndrome with loose anagen hair and Legius syndrome. These conditions are caused by mutations in genes encoding proteins involved in the RAS-MAPK cellular pathway. Clinical heterogeneity and phenotype overlaps across those different syndromes is already recognized. CASE PRESENTATION: We hereby report a heterozygous de novo mutation in the PTPN11 gene (c.1403C > T) manifesting with a clinical picture of LS during childhood, and later development of neuropathic pain with hypertrophic plexi, which are typically observed in NF1 but have not been reported in LS. CONCLUSION: LS caused by PTPN11 mutations may be associated with hypertrophic roots and plexi. Consequently, clinicians should be aware of the possible development of neuropathic pain and consider specific diagnostic work-up and management.

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Doxorubicin (DOX) is a widely used, potent chemotherapeutic agent; however, its clinical application is limited because of its dose-dependent cardiotoxicity. DOX's cardiotoxicity involves increased oxidative/nitrative stress, impaired mitochondrial function in cardiomyocytes/endothelial cells and cell death. Cannabidiol (CBD) is a nonpsychotropic constituent of marijuana, which is well tolerated in humans, with antioxidant, antiinflammatory and recently discovered antitumor properties. We aimed to explore the effects of CBD in a well-established mouse model of DOX-induced cardiomyopathy. DOX-induced cardiomyopathy was characterized by increased myocardial injury (elevated serum creatine kinase and lactate dehydrogenase levels), myocardial oxidative and nitrative stress (decreased total glutathione content and glutathione peroxidase 1 activity, increased lipid peroxidation, 3-nitrotyrosine formation and expression of inducible nitric oxide synthase mRNA), myocardial cell death (apoptotic and poly[ADP]-ribose polymerase 1 [PARP]-dependent) and cardiac dysfunction (decline in ejection fraction and left ventricular fractional shortening). DOX also impaired myocardial mitochondrial biogenesis (decreased mitochondrial copy number, mRNA expression of peroxisome proliferator-activated receptor γ coactivator 1-alpha, peroxisome proliferator-activated receptor alpha, estrogen-related receptor alpha), reduced mitochondrial function (attenuated complex I and II activities) and decreased myocardial expression of uncoupling protein 2 and 3 and medium-chain acyl-CoA dehydrogenase mRNA. Treatment with CBD markedly improved DOX-induced cardiac dysfunction, oxidative/nitrative stress and cell death. CBD also enhanced the DOX-induced impaired cardiac mitochondrial function and biogenesis. These data suggest that CBD may represent a novel cardioprotective strategy against DOX-induced cardiotoxicity, and the above-described effects on mitochondrial function and biogenesis may contribute to its beneficial properties described in numerous other models of tissue injury.

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Hypertrophic osteoarthrpathy (HO) is a rare paraneoplasic syndrome associated with non-small cell lung cancer (NSCLC). The pathophysiology of HO is unknown but was recently related to enhanced levels of urine prostaglandin E2 (PGE2). Here, we report the case of a patient that presented HO in association with a resectable left upper lobe NSCLC. Following surgery and adjuvant chemotherapy, HO resolved and did not recur with development of a brain metastasis 1 year later. Interestingly, tumor cyclooxygenase-2, an enzyme responsible the synthesis of PGE2, was expressed in the primary tumor but not in the resected metastasis.

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La cardiomyopathie hypertrophique (CMH) est la maladie cardiaque monogénique la plus fréquente, touchant environ 1 individu sur 500 dans la population (1,2). L'étiologie est familiale dans la majorité des cas avec une transmission de type autosomal dominant à pénétrance variable. Deux gènes principaux sont à l'origine de la maladie chez 70% des patients avec un test génétique positif. Il s'agit des gènes qui codent pour la chaine lourde β de la myosine (MYH7) et la protéine C liant la myosine (MYBPC3) (1-3). La CMH est définie par la présence d'une hypertrophie myocardique « inadéquate » car se développant en l'absence d'une cause d'augmentation de la post-charge (HTA, sténose aortique, membrane sous-aortique), d'une pathologie infiltrative ou d'un entrainement physique (4,5). Le plus souvent asymétrique et affectant préférentiellement le septum, cette hypertrophie s'accompagne dans près de deux tiers des cas d'une obstruction dynamique sous-aortique de la chambre de chasse du ventricule gauche par la valve mitrale (systolic anterior motion ou SAM). Cette obstruction est à la fois la conséquence du rétrécissement de la chambre de chasse par l'hypertrophie septale mais également d'un malpositionnement de la valve mitrale (6-8). On parle alors de Cardiomyopathie Hypertrophique et Obstructive (CMHO). L'obstruction - présente au repos dans 50% des cas et uniquement après manoeuvres de provocation dans l'autre moitié des cas (manoeuvre de Valsalva, test de vasodilatation par nitrite d'amyle) est à l'origine d'un gradient de pression entre le ventricule gauche et l'aorte, et donc d'une surcharge de pression pour le ventricule gauche. Cette surcharge de pression est à l'origine des symptômes classiquement rencontrés soit dyspnée et angor d'effort, présyncope voire syncopes à l'effort. Un gradient sous-aortique de plus de 50 mmHg (mesuré au repos ou après provocation) est considéré comme un gradient à valeur pronostique (6-8) et justifiant un traitement si associé à des symptômes. Le traitement médical des formes obstructives repose sur l'administration de substances inotropes négatives et/ou susceptibles de favoriser la relaxation myocardique tels que les béta-bloqueurs, les antagonistes du calcium et le disopyramide - pris isolément ou en association. Pour les nombreux patients qui deviennent réfractaires ou intolérants à ces traitements, deux interventions peuvent leur être proposées pour lever l'obstruction : une myotomie-myectomie chirurgicale du septum (9,10) ou une alcoolisation du septum par voie percutanée (7,8). Les indications à ces interventions sont les suivantes (7,8,11) : 1. Symptômes (dyspnée de classe fonctionnelle NYHA III ou IV, angor de classe fonctionnelle CCS III ou IV, syncope, ou présyncope) réfractaires au traitement médical ou intolérance du patient au traitement. Une dyspnée de classe II est considérée suffisante dans le cas de jeunes patients. 2. Obstruction sous-aortique avec gradient supérieur ou égal à 50 mmHg, au repos ou après manoeuvre de provocation, associée à une hypertrophie septale et à un mouvement systolique antérieur de la valve mitrale (effet SAM) 3. Anatomiecardiaquefavorableàuntraitementinvasif(épaisseurduseptumde plus de 16 mm) Si la myectomie chirurgicale reste la méthode de référence (12-18), l'alcoolisation septale du myocarde par voie percutanée est devenue un des traitements de choix dans la thérapie de la Cardiomyopathie Hypertrophique Obstructive réfractaire. Elle consiste à repérer par coronarographie l'artère septale nourrissant le septum basal hypertrophié, puis à y introduire un petit ballon pour isoler ce territoire du reste du lit coronaire avant d'y injecter une dose d'alcool à 95% comprise entre 1 et 5 cc. On crée ainsi un infarctus chimique, technique qui fut dans le passé utilisée pour le traitement de certaines tumeurs. Les effets ne sont pas immédiats et nécessitent généralement 2-3 semaines avant de se manifester. On assiste alors à une diminution progressive de l'épaisseur du myocarde nécrosé (7), à la disparition progressive de l'obstruction et à l'amélioration / disparition des symptômes. La question de savoir qui de la chirurgie ou de l'alcoolisation est le plus efficace a été source de nombreux débats (7,11-13,18). Par rapport à la chirurgie, les avantages de la méthode percutanée sont les suivants (11,14,15,18,19) : - Efficacités hémodynamique et fonctionnelle jugées comparable à la chirurgie selon les études - Taux de morbidité et de mortalité très faible et non supérieure à la chirurgie - Absence de sternotomie - Diminution de la durée de l'hospitalisation et surtout de la période de convalescence, le patient pouvant reprendre une activité dès son retour à domicile Certains experts émettent néanmoins des doutes quant à l'innocuité à long terme de la méthode, les zones nécrotiques pouvant servir de terrain arythmogène. Pour ces raisons, la méthode n'est pas recommandée chez les patients de moins de 40 ans (6,8). Le risque majeur de l'alcoolisation du septum proximal réside dans l'induction d'un bloc atrio-ventriculaire complet chimique, le noeud atrio-ventriculaire étant justement situé dans cette région. Ce risque augmente avec la quantité d'alcool administrée et nécessite, si persistance après trois jours, l'implantation d'un pacemaker à demeure. Selon les centres, le taux d'implantation d'un stimulateur varie ainsi entre 7% et 20% (7,14,20). L'efficacité clinique et l'incidence des complications est donc en partie liée à la compétence technique et à l'expérience de l'opérateur (7,14), mais aussi aux choix des patients. Il peut donc varier grandement selon les centres médicaux. L'étude proposée vise à analyser les résultats de l'alcoolisation obtenus à Lausanne, jusqu'à présent pas encore été étudiés, et à les comparer à ceux de la littérature.

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AIMS: Experimental autoimmune myocarditis (EAM) model mirrors important mechanisms of inflammatory dilated cardiomyopathy (iDCM). In EAM, inflammatory CD133(+) progenitors are a major cellular source of cardiac myofibroblasts in the post-inflammatory myocardium. We hypothesized that exogenous delivery of macrophage-colony-stimulating factor (M-CSF) can stimulate macrophage lineage differentiation of inflammatory progenitors and, therefore, prevent their naturally occurring myofibroblast fate in EAM. METHODS AND RESULTS: EAM was induced in wild-type (BALB/c) and nitric oxide synthase 2-deficient (Nos2(-/-)) mice and CD133(+) progenitors were isolated from inflamed hearts. In vitro, M-CSF converted inflammatory CD133(+) progenitors into nitric oxide-producing F4/80(+) macrophages and prevented transforming growth factor-β-mediated myofibroblast differentiation. Importantly, only a subset of heart-infiltrating CD133(+) progenitors expresses macrophage-specific antigen F4/80 in EAM. These CD133(+)/F4/80(hi) cells show impaired myofibrogenic potential compared with CD133(+)/F4/80(-) cells. M-CSF treatment of wild-type mice with EAM at the peak of disease markedly increased CD133(+)/F4/80(hi) cells in the myocardium, and CD133(+) progenitors isolated from M-CSF-treated mice failed to differentiate into myofibroblasts. In contrast, M-CSF was not effective in converting CD133(+) progenitors from inflamed hearts of Nos2(-/-) mice into macrophages, and M-CSF treatment did not result in increased CD133(+)/F4/80(hi) cell population in hearts of Nos2(-/-) mice. Accordingly, M-CSF prevented post-inflammatory fibrosis and left ventricular dysfunction in wild-type but not in Nos2(-/-) mice. CONCLUSION: Active and NOS2-dependent induction of macrophage lineage differentiation abrogates the myofibrogenic potential of heart-infiltrating CD133(+) progenitors. Modulating the in vivo differentiation fate of specific progenitors might become a novel approach for the treatment of inflammatory heart diseases.

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Ms1/STARS is a novel muscle-specific actin-binding protein that specifically modulates the myocardin-related transcription factor (MRTF)-serum response factor (SRF) regulatory axis within striated muscle. This ms1/STARS-dependent regulatory axis is of central importance within the cardiac gene regulatory network and has been implicated in cardiac development and postnatal cardiac function/homeostasis. The dysregulation of ms1/STARS is associated with and causative of pathological cardiac phenotypes, including cardiac hypertrophy and cardiomyopathy. In order to gain an understanding of the mechanisms governing ms1/STARS expression in the heart, we have coupled a comparative genomic in silico analysis with reporter, gain-of-function, and loss-of-function approaches. Through this integrated analysis, we have identified three evolutionarily conserved regions (ECRs), α, SINA, and DINA, that act as cis-regulatory modules and confer differential cardiac cell-specific activity. Two of these ECRs, α and DINA, displayed distinct regulatory sensitivity to the core cardiac transcription factor GATA4. Overall, our results demonstrate that within embryonic, neonatal, and adult hearts, GATA4 represses ms1/STARS expression with the pathologically associated depletion of GATA4 (type 1/type 2 diabetic models), resulting in ms1/STARS upregulation. This GATA4-dependent repression of ms1/STARS expression has major implications for MRTF-SRF signaling in the context of cardiac development and disease.

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In the damaged heart, cardiac adaptation relies primarily on cardiomyocyte hypertrophy. The recent discovery of cardiac stem cells in the postnatal heart, however, suggests that these cells could participate in the response to stress via their capacity to regenerate cardiac tissues. Using models of cardiac hypertrophy and failure, we demonstrate that components of the Notch pathway are up-regulated in the hypertrophic heart. The Notch pathway is an evolutionarily conserved cell-to-cell communication system, which is crucial in many developmental processes. Notch also plays key roles in the regenerative capacity of self-renewing organs. In the heart, Notch1 signaling takes place in cardiomyocytes and in mesenchymal cardiac precursors and is activated secondary to stimulated Jagged1 expression on the surface of cardiomyocytes. Using mice lacking Notch1 expression specifically in the heart, we show that the Notch1 pathway controls pathophysiological cardiac remodeling. In the absence of Notch1, cardiac hypertrophy is exacerbated, fibrosis develops, function is altered, and the mortality rate increases. Therefore, in cardiomyocytes, Notch controls maturation, limits the extent of the hypertrophic response, and may thereby contribute to cell survival. In cardiac precursors, Notch prevents cardiogenic differentiation, favors proliferation, and may facilitate the expansion of a transient amplifying cell compartment.

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AIMS: Patients with well-tolerated sustained monomorphic ventricular tachycardia (SMVT) and left ventricular ejection fraction (LVEF) over 30% may benefit from a primary strategy of VT ablation without immediate need for a 'back-up' implantable cardioverter-defibrillator (ICD). METHODS AND RESULTS: One hundred and sixty-six patients with structural heart disease (SHD), LVEF over 30%, and well-tolerated SMVT (no syncope) underwent primary radiofrequency ablation without ICD implantation at eight European centres. There were 139 men (84%) with mean age 62 ± 15 years and mean LVEF of 50 ± 10%. Fifty-five percent had ischaemic heart disease, 19% non-ischaemic cardiomyopathy, and 12% arrhythmogenic right ventricular cardiomyopathy. Three hundred seventy-eight similar patients were implanted with an ICD during the same period and serve as a control group. All-cause mortality was 12% (20 patients) over a mean follow-up of 32 ± 27 months. Eight patients (40%) died from non-cardiovascular causes, 8 (40%) died from non-arrhythmic cardiovascular causes, and 4 (20%) died suddenly (SD) (2.4% of the population). All-cause mortality in the control group was 12%. Twenty-seven patients (16%) had a non-fatal recurrence at a median time of 5 months, while 20 patients (12%) required an ICD, of whom 4 died (20%). CONCLUSION: Patients with well-tolerated SMVT, SHD, and LVEF > 30% undergoing primary VT ablation without a back-up ICD had a very low rate of arrhythmic death and recurrences were generally non-fatal. These data would support a randomized clinical trial comparing this approach with others incorporating implantation of an ICD as a primary strategy.

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Atrial natriuretic peptides (ANP) exert vasodilating and natriuretic actions. The present study was undertaken to test the effect of low dose infusions of synthetic ANP on hemodynamic and humoral variables of patients with severe heart failure. Eight patients, aged 26 to 71 years, with severe congestive heart failure due to ischemic heart disease or idiopathic dilated cardiomyopathy were included in the study. Synthetic human (3-28) ANP was infused at doses ranging from 0.5 to 2 micrograms/min for up to 3 h. Pulmonary capillary wedge pressure fell from 24 +/- 1 to 16 +/- 2 mm Hg (mean +/- SEM) (p less than 0.01) and cardiac index tended to rise from 2 +/- 0.2 to 2.3 +/- 0.2 L/min/m2 (NS), while blood pressure and heart rate did not change. One patient experienced a marked drop in pulmonary capillary wedge and arterial blood pressure that necessitated the administration of saline. ANP infusion did not alter plasma renin activity or plasma aldosterone, norepinephrine, or vasopressin levels. It decreased plasma epinephrine levels from 0.472 +/- 0.077 to 0.267 +/- 0.024 nmol/L (p less than 0.05). Plasma ANP levels were markedly elevated in all patients before initiating the infusion. They had no predictive value for the hemodynamic response to exogenous ANP. No correlation was observed between the hemodynamic effects of ANP and those induced by the subsequently administered converting enzyme inhibitor captopril, which seemed to improve cardiac function more consistently.(ABSTRACT TRUNCATED AT 250 WORDS)

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Methylmalonic and propionic acidemia (MMA/PA) are inborn errors of metabolism characterized by accumulation of propionic acid and/or methylmalonic acid due to deficiency of methylmalonyl-CoA mutase (MUT) or propionyl-CoA carboxylase (PCC). MMA has an estimated incidence of ~ 1: 50,000 and PA of ~ 1:100'000 -150,000. Patients present either shortly after birth with acute deterioration, metabolic acidosis and hyperammonemia or later at any age with a more heterogeneous clinical picture, leading to early death or to severe neurological handicap in many survivors. Mental outcome tends to be worse in PA and late complications include chronic kidney disease almost exclusively in MMA and cardiomyopathy mainly in PA. Except for vitamin B12 responsive forms of MMA the outcome remains poor despite the existence of apparently effective therapy with a low protein diet and carnitine. This may be related to under recognition and delayed diagnosis due to nonspecific clinical presentation and insufficient awareness of health care professionals because of disease rarity.