Search results for " myopathy"

showing 10 items of 69 documents

Nemaline myopathy and heart failure: role of ivabradine; a case report

2015

Background Nemaline myopathy (NM) is a rare congenital myopathy characterized by muscle weakness, hypotonia and the presence in muscle fibers of inclusions known as nemaline bodies and a wide spectrum of clinical phenotypes, ranging from severe forms with neonatal onset to asymptomatic forms. The adult-onset form is heterogeneous in terms of clinical presentation and disease progression. Cardiac involvement occurs in the minority of cases and little is known about medical management in this subgroup of NM patients. We report a rare case of heart failure (HF) in a patient with adult-onset NM in whom ivabradine proved to be able to dramatically improve the clinical picture. Case presentation …

AdultMalemedicine.medical_specialtymedicine.medical_treatmentDilated cardiomyopathyCase ReportMyopathies NemalineElectrocardiographyNemaline myopathyInternal medicinemedicineHumansIvabradineCarvedilolNemaline myopathyHeart FailureEjection fractionbusiness.industryDilated cardiomyopathyCardiovascular AgentsBenzazepinesmedicine.diseaseImplantable cardioverter-defibrillatorCongenital myopathyTreatment OutcomeEchocardiographyHeart failureCardiologybusinessCardiology and Cardiovascular MedicineIvabradinemedicine.drugBMC Cardiovascular Disorders
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Desmin-related myopathies

1997

Desmin-related myopathies are marked by accumulation of desmin, which is often familial and associated with cardiomyopathy. When multifocal this excess is characterized by inclusions such as cytoplasmic or spheroid bodies, when disseminated the excess is called granulofilamentous material. Excess of desmin might represent an abnormal type of protein metabolism.

AdultPathologymedicine.medical_specialtyGranulofilamentous materialCardiomyopathyChromosome DisordersGenes Recessivemacromolecular substancesBiologyDesminMuscular DiseasesmedicineHumansChildMuscle SkeletalGenotype-Phenotype CorrelationsGenes DominantChromosome AberrationsInclusion BodiesDESMIN-RELATED MYOPATHYMyocardiumMolecular pathogenesismusculoskeletal systemmedicine.diseaseActin CytoskeletonNeurologyCytoplasmDesminNeurology (clinical)CardiomyopathiesCurrent Opinion in Neurology
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Myo-, neuro-, gastrointestinal encephalopathy (MNGIE syndrome) due to partial deficiency of cytochrome-c-oxidase

1987

A 42-year-old woman had a 10-year history of external ophthalmoplegia, malabsorption resulting in chronic malnutrition, muscle atrophy and polyneuropathy. Computer tomography revealed hypodensity of her cerebral white matter. A metabolic disturbance consisted of lactic acidosis after moderate glucose loads with increased excretion of hydroxybutyric and fumaric acids. Post-mortem studies revealed gastrointestinal scleroderma as the morphological manifestation of her malabsorption syndrome, ocular and skeletal myopathy with ragged red fibers, peripheral neuropathy, vascular abnormalities of meningeal and peripheral nerve vessels. Biochemical examination of the liver and muscle tissues reveale…

AdultPathologymedicine.medical_specialtyMalabsorptionGastrointestinal DiseasesEncephalopathyRespiratory chainCytochrome-c Oxidase DeficiencyEyePathology and Forensic Medicine03 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicineMuscular DiseasesMitochondrial myopathymedicineHumansMuscular dystrophy030304 developmental biology2. Zero hungerBrain Diseases0303 health sciencesbusiness.industryPeripheral Nervous System DiseasesSyndromemedicine.diseaseMitochondria MusclePeripheral neuropathyLactic acidosisFemaleNeurology (clinical)businessPolyneuropathy030217 neurology & neurosurgeryActa Neuropathologica
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Maternally inherited diabetes and deafness (MIDD): unusual occult exocrine pancreatic manifestation in an affected German family

2000

The mitochondrial (mt) 3243 DNA mutation is an underlying cause of maternally inherited diabetes and deafness (MIDD) syndrome and the syndrome of mitochondrial myopathy, encephalopathy, lactic acidosis and stroke-like episodes (MELAS). We report an affected German MIDD pedigree with maternal lineage over three generations. The index patient, her mother, her maternal aunt and her maternal grandmother all suffered from diabetes and premature hearing loss and were positive on testing for the mt 3243 DNA mutation. The 27-year-old index patient had a history of grand mal seizures. As sequela of abdominal ultrasound and confirmed by magnetic resonance cholangio-pancreaticography, she was diagnose…

AdultPathologymedicine.medical_specialtyPancreatic diseaseEndocrinology Diabetes and MetabolismEncephalopathyDeafnessMELAS syndromeDNA MitochondrialDiabetes ComplicationsEndocrinologyMitochondrial myopathyGermanyDiabetes MellitusInternal MedicineHumansMedicinePancreatic ductCommon bile ductbusiness.industryPancreatic DuctsCalcinosisPancreatic DiseasesSyndromeGeneral MedicineMiddle Agedmedicine.diseasePedigreemedicine.anatomical_structurePancreatitisLactic acidosisMutationPancreatitisFemalebusinessDilatation PathologicExperimental and Clinical Endocrinology & Diabetes
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Fetal akinesia caused by a novel actin filament aggregate myopathy skeletal muscle actin gene (ACTA1) mutation.

2010

We report a female newborn, diagnosed with fetal akinesia in utero, who died one hour after birth. Post-mortem muscle biopsy demonstrated actin-filament myopathy based on immunolabelling for sarcomeric actin, and large areas of filaments, without rod formation, ultrastructurally. Analysis of DNA extracted from the muscle disclosed a novel de novo heterozygous c.44G>A, GGC>GAC, 'p.Gly15Asp' mutation in the ACTA1 gene. Analysis of the location of the mutated amino-acid in the actin molecule suggests the mutation most likely causes abnormal nucleotide binding, and consequent pathological actin polymerization. This case emphasizes the association of fetal akinesia with actin-filament myopathy.

AdultSarcomeresmacromolecular substancesBiologymedicine.disease_causeSarcomereNemaline myopathyPregnancymedicineHumansMyopathyMuscle SkeletalGenetics (clinical)ActinMutationMuscle biopsymedicine.diagnostic_testMicrofilament ProteinsInfant NewbornSkeletal muscleDNANeuromuscular DiseasesActin cytoskeletonmedicine.diseaseMolecular biologyActin CytoskeletonFetal Diseasesmedicine.anatomical_structureNeurologyBiochemistryPediatrics Perinatology and Child HealthMutationFemaleNeurology (clinical)medicine.symptomNeuromuscular disorders : NMD
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Anti-vimentin staining in muscle pathology

1993

The intermediate filaments of immature muscle fibres contain desmin and vimentin; vimentin is lacking in mature fibres. Regenerating fibres react with anti-vimentin antibodies and more intensely for desmin than mature fibres. The aim of the present study was to evaluate anti-vimentin staining for muscle pathology. Anti-vimentin-reactive fibres were found in 40 of 89 biopsies assessed. Fifteen patients with progressive destructive myopathy, infantile spinal muscular atrophy, clinically suspected Leigh's disease or unclassifiable congenital myopathy had between 1% and 95% vimentin-positive fibres. Less than 1% positive fibres were found in 25 patients with neuropathy with secondary myopathy o…

Adultmedicine.medical_specialtyPathologyHistologyAdolescentBiopsyIntermediate FilamentsMuscle ProteinsVimentinmacromolecular substancesPathology and Forensic MedicineImmunoenzyme TechniquesPhysiology (medical)BiopsyHumansVimentinMedicineChildMyopathyIntermediate filamentAgedStaining and Labelingbiologymedicine.diagnostic_testbusiness.industryMusclesInfant NewbornInfantNeuromuscular DiseasesMiddle Agedmedicine.diseaseCongenital myopathyNeurologyChild Preschoolbiology.proteinImmunohistochemistryHistopathologyDesminNeurology (clinical)medicine.symptombusinessNeuropathology and Applied Neurobiology
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Infantile intranuclear rod myopathy.

1997

This report concerns three unrelated floppy infants, two girls and one boy, each biopsied at the age of 1 month. They were hypotonic since birth and required artificial ventilation. The two girls died at the ages of 4 and 3½ months, respectively, the boy is still alive at the age of 2 years, but requires assisted ventilation. Each of the three infants showed, by muscle biopsy, abundant intranuclear rods, the boy and one girl also had sarcoplasmic rods, which were not present in the other girl's muscle. Absence of sarcoplasmic rods, but the presence of intranuclear rods could also be documented in her autopsied muscle. Using an antibody against α-actinin, immunoelectron microscopy showed re…

Artificial ventilationMalePediatricsmedicine.medical_specialtygenetic structuresmedicine.medical_treatmentBiopsyMyosinsMyopathies Nemaline03 medical and health sciences0302 clinical medicineFatal Outcome030225 pediatricsmedicineHumansEndotheliumFloppy InfantMicroscopy ImmunoelectronMuscle SkeletalCell Nucleusbusiness.industryInfant NewbornPediatrics Perinatology and Child HealthFemalesense organsNeurology (clinical)Intranuclear Rod Myopathybusiness030217 neurology & neurosurgeryJournal of child neurology
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Congenital myopathies - a comprehensive update of recent advancements

2009

The congenital myopathies are relatively newly discovered compared with other categories of muscle diseases. Current research continues to clarify and classify the congenital myopathies. These pose a diagnostic problem and cannot be diagnosed by routine hematoxylin and eosin stain. A lot of special techniques are required to diagnose them correctly and it's various subtypes. The disease specific structural changes seen in the muscle are detected by enzyme histochemistry, immunohistochemistry and electron microscopy. Through this review we provide an up-to-date analysis of congenital myopathies including clinical and pathologic aspects.

Cardiomyopathy DilatedDisease specificPathologymedicine.medical_specialtyH&E stainMuscular DiseasesmedicineHumansGenetic Predisposition to DiseaseMyopathyPathology ClinicalMuscle biopsymedicine.diagnostic_testHistocytochemistrybusiness.industryEnzyme histochemistryGeneral Medicinemedicine.diseaseImmunohistochemistryCongenital myopathyMuscle StriatedClinical methodEnzymesMicroscopy ElectronNeurologyNeurology (clinical)medicine.symptombusinessActa Neurologica Scandinavica
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An overview of statin-induced myopathy and perspectives for the future

2020

Introduction: Statins remain the most commonly prescribed lipid-lowering drug class for the treatment of atherosclerotic cardiovascular disease. Their well-recognized side effects are known as statin-associated muscle symptom (SAMS). Some advances in this field have been made in recent years, but the understanding of the mechanisms has lagged. Investigating the specific role of the anti-HMGCR autoantibody, pharmacokinetic genetic variants, characterization of the known phenotypes of statin toxicity, in relation to clinical markers of disease, is of high importance. Areas covered: We summarized currently available findings (on PubMed) related to SAMS and discussed the therapeutic approaches,…

DrugStatinUbiquinonemedicine.drug_classmedia_common.quotation_subjectHyperlipidemiasDiseasetherapeutic approaches030204 cardiovascular system & hematologyBioinformaticsPharmacogenomic Variants03 medical and health sciences0302 clinical medicineMuscular DiseasesRisk FactorsmedicineAnimalsHumansDrug InteractionsPharmacology (medical)Adverse effectHypolipidemic Agentsmedia_commondrug interactionbusiness.industryGeneral MedicineAtherosclerosisStatin induced myopathystatin-induced myopathyunderlying mechanismDrug classrisk factor030220 oncology & carcinogenesisCoenzyme Q10Hydroxymethylglutaryl-CoA Reductase Inhibitorsmyositis autoantibodieRisk assessmentbusinessstatin-associated muscle symptom
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Mutations in the β-tropomyosin (TPM2) gene – a rare cause of nemaline myopathy

2002

Nemaline myopathy is a clinically and genetically heterogeneous muscle disorder. In the nebulin gene we have detected a number of autosomal recessive mutations. Both autosomal dominant and recessive mutations have been detected in the genes for alpha -actin and alpha -tropomyosin 3. A recessive mutation causing nemaline myopathy among the Old Order Amish has recently been identified in the gene for slow skeletal muscle troponin T. As linkage studies had shown that at least one further gene exists for nemaline myopathy, we investigated another tropomyosin gene expressed in skeletal muscle, the beta -tropomyosin 2 gene. Screening 66 unrelated patients, using single strand conformation polymor…

Genetic MarkersMaleGenetic LinkageProtein ConformationBiopsyMolecular Sequence DataMutation MissenseTropomyosinmacromolecular substancesMuscle disorderMyopathies NemalineTPM203 medical and health sciencesNebulin0302 clinical medicineNemaline myopathymedicineAnimalsHumansAmino Acid SequenceMuscle SkeletalNemaline bodiesPolymorphism Single-Stranded ConformationalGenetics (clinical)DNA Primers030304 developmental biologyGenetics0303 health sciencesSequence Homology Amino AcidbiologyReverse Transcriptase Polymerase Chain Reactionmusculoskeletal systemmedicine.diseaseMolecular biologyTropomyosinCongenital myopathyPedigree3. Good healthHaplotypesNeurologyMutationPediatrics Perinatology and Child Healthbiology.proteinFemaleNeurology (clinical)Sequence Alignment030217 neurology & neurosurgeryCentral core diseaseNeuromuscular Disorders
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