Search results for "Muscular dystrophy"

showing 10 items of 103 documents

Homozygous mutations incaveolin-3cause a severe form of rippling muscle disease

2003

Heterozygous missense mutations in the caveolin-3 gene (CAV3) cause different muscle disorders. Most patients with CAV3 alterations present with rippling muscle disease (RMD) characterized by signs of increased muscle irritability without muscle weakness. In some patients, CAV3 mutations underlie the progressive limb-girdle muscular dystrophy type 1C (LGMD1C). Here, we report two unrelated patients with novel homozygous mutations (L86P and A92T) in CAV3. Both presented with a more severe clinical phenotype than usually seen in RMD. Immunohistochemical and immunoblot analyses of muscle biopsies showed a strong reduction of caveolin-3 in both homozygous RMD patients similar to the findings in…

MutationPathologymedicine.medical_specialtySarcolemmabiologyMuscle weaknessMuscle disordermedicine.disease_causemedicine.diseaseDysferlinCaveolin 3Neurologymedicinebiology.proteinMissense mutationNeurology (clinical)Muscular dystrophymedicine.symptomAnnals of Neurology
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DNA-fragmentation and expression of apoptosis-related proteins in muscular dystrophies

1997

Although numerous sarcolemmal protein defects in muscular dystrophies have been identified, the mechanisms linking these defects and muscle fibre degeneration are not fully characterized. As there is evidence that apoptosis is part of muscle fibre loss in dystrophin-deficient mdx-mice, apoptotic muscle fibre death may also play a role in humans with muscular dystrophies. We investigated in-situ DNA-fragmentation by the TUNEL-method and expression of apoptosis-related proteins immunohistochemically in 14 children suffering from deficiencies of dystrophin, adhalin, and merosin, and found TUNEL-positive chromatin-cleavage of muscle fibre nuclei in about 10% of non-necrotic muscle fibres. DNA-f…

MyofilamentPathologymedicine.medical_specialtyHistologySarcolemmabiologyMyogenesismedicine.diseasePathology and Forensic MedicineCell biologyNeurologyApoptosisPhysiology (medical)Gene expressionmedicinebiology.proteinNeurology (clinical)Muscular dystrophyITGA7DystrophinNeuropathology and Applied Neurobiology
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G.P.1.07 Hauptmann–Tannhauser muscular dystrophy-what is it?

2008

Neurologybusiness.industryPediatrics Perinatology and Child HealthMedicineNeurology (clinical)AnatomyMuscular dystrophybusinessmedicine.diseaseGenetics (clinical)Muscle contractureNeuromuscular Disorders
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Pain Phenotypes in Rare Musculoskeletal and Neuromuscular Diseases

2020

For patients diagnosed with a rare musculoskeletal or neuromuscular disease, pain may transition from acute to chronic; the latter yielding additional challenges for both patients and care providers. We assessed the present understanding of pain across a set of ten rare, noninfectious, noncancerous disorders; Osteogenesis Imperfecta, Ehlers-Danlos Syndrome, Achondroplasia, Fibrodysplasia Ossificans Progressiva, Fibrous Dysplasia/McCune-Albright Syndrome, Complex Regional Pain Syndrome, Duchenne Muscular Dystrophy, Infantile- and Late-Onset Pompe disease, Charcot-Marie-Tooth Disease, and Amyotrophic Lateral Sclerosis. Through the integration of natural history, cross-sectional, retrospective…

Neuromuscular diseaseCognitive NeuroscienceDuchenne muscular dystrophyPainDiseaseBioinformaticsArticle03 medical and health sciencesBehavioral Neuroscience0302 clinical medicinemedicineHumans0501 psychology and cognitive sciences050102 behavioral science & comparative psychologyAmyotrophic lateral sclerosisRetrospective Studiesbusiness.industryFibrous dysplasia05 social sciencesNeuromuscular Diseasesmedicine.diseaseCross-Sectional StudiesPhenotypeNeuropsychology and Physiological PsychologyComplex regional pain syndromeOsteogenesis imperfectaFibrodysplasia ossificans progressivabusiness030217 neurology & neurosurgeryNeuroscience & Biobehavioral Reviews
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Value of insoluble PABPN1 accumulation in the diagnosis of oculopharyngeal muscular dystrophy.

2019

Background and purpose The aim was to assess the value of insoluble PABPN1 muscle fibre nuclei accumulation in the diagnosis of atypical cases of oculopharyngeal muscular dystrophy (OPMD). Methods Muscle biopsies from a selected cohort of 423 adult patients from several Italian neuromuscular centres were analysed by immunofluorescence: 30 muscle biopsies of genetically proven OPMD, 30 biopsies from patients not affected by neuromuscular disorders, 220 from genetically undiagnosed patients presenting ptosis or swallowing disturbances, progressive lower proximal weakness and/or isolated rimmed vacuoles at muscle biopsy and 143 muscle biopsies of patients affected by other neuromuscular diseas…

Pathologymedicine.medical_specialtyFluorescent Antibody TechniquePoly(A)-Binding Protein IOculopharyngeal muscular dystrophy03 medical and health sciences0302 clinical medicinePtosisMuscular Dystrophy OculopharyngealPABPN1 accumulations; PABPN1 immunofluorescence; oculopharyngeal musclular dystrophy; rimmed vacuoles; tubulofilamentous intranuclear inclusionsmedicineHumans030212 general & internal medicineMuscle fibreMuscle SkeletalCell NucleusMuscle biopsymedicine.diagnostic_testbusiness.industryExternal ophthalmoplegiaRimmed vacuolesmedicine.diseaseNeurologyCohortNeurology (clinical)Inclusion body myositismedicine.symptombusiness030217 neurology & neurosurgeryEuropean journal of neurologyReferences
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Cap disease uncapped

2007

With the advent of enzyme histochemistry and electron microscopy, the new nosographic group of congenital myopathies hailed as ‘‘new myopathies’’ [1] was established, largely based on morphological features in biopsied muscle specimens although clinically early (congenital) onset and mild progression were also attributed to these childhood myopathies. When molecular investigations of patients with hereditary neuromuscular diseases began, earlier classifications based on clinical, morphological, and metabolic criteria started to quake, most conspicuously observed in the group of limb girdle muscular dystrophy or limb girdle muscular syndrome, which now comprise seven autosomal dominant (LGMD…

Pathologymedicine.medical_specialtyGenetic mosaicbusiness.industryCap DiseaseLimb girdleDiseasemedicine.diseaseCongenital myopathyTPM2NeurologyPediatrics Perinatology and Child HealthmedicineNeurology (clinical)businessGenetics (clinical)Central core diseaseLimb-girdle muscular dystrophyNeuromuscular Disorders
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Muscle degeneration in neuramindase 1 deficient mice results from infiltration of the muscle fibers by expanded connective tissue

2010

AbstractNeuraminidase 1 (NEU1) regulates the catabolism of sialoglycoconjugates in lysosomes. Congenital NEU1 deficiency in children is the basis of sialidosis, a severe neurosomatic disorder in which patients experience a broad spectrum of clinical manifestations varying in the age of onset and severity. Osteoskeletal deformities and muscle hypotonia have been described in patients with sialidosis. Here we present the first comprehensive analysis of the skeletal muscle pathology associated with loss of Neu1 function in mice. In this animal model, skeletal muscles showed an expansion of the epimysial and perimysial spaces, associated with proliferation of fibroblast-like cells and abnormal …

Pathologymedicine.medical_specialtyMuscle HypotoniaMuscle Fibers SkeletalNeuraminidaseConnective tissueApoptosisNEU1BiologyArticleMiceNecrosisNEU1SarcolemmaCell MovementSettore BIO/10 - BiochimicamedicineAnimalsSialidosisMuscular dystrophyMyopathyMolecular BiologySialidosiMetalloproteinaseCell ProliferationMice KnockoutMuscle biopsySialidosisECMmedicine.diagnostic_testSkeletal muscleFibroblastsMuscular Dystrophy Animalmedicine.diseaseLysosomeExtracellular MatrixMuscular Atrophymedicine.anatomical_structureConnective TissueImmunologyMolecular MedicineMuscle biopsymedicine.symptom
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Surplus protein myopathies.

2001

Abstract Certain muscular dystrophies are marked by absence or reduction of mutant proteins, foremost dystrophinopathies and sarcoglycanopathies. Conversely, other sporadic and familial neuromuscular conditions are marked by a surplus of proteins present in a granular or filamentous form, such as desmin-related myopathies, actinopathy and, perhaps, hyaline body myopathy. This emerging group of congenital myopathies is clinically, immunohistochemically, and genetically diverse. Clinically, early- and late-onset diseases with variable courses are described. Immunohistochemically, mutant gene-related and other proteins have been identified by immunohistochemistry. Mutations in the desmin and α…

Pathologymedicine.medical_specialtyMuscle Proteinsmacromolecular substancesMuscular DystrophiesNebulinNemaline myopathymedicineHumansMuscular dystrophyMyopathyNemaline bodiesMuscle SkeletalGenetics (clinical)ActinInclusion Bodiesbiologymedicine.diseaseMolecular biologyNeurologyPediatrics Perinatology and Child Healthbiology.proteinDesminNeurology (clinical)medicine.symptomSarcoglycanopathiesNeuromuscular disorders : NMD
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Ultrastructural changes in the interstitial cells of Cajal and gastric dysrhythmias in mice lacking full-length dystrophin (mdxmice)

2003

At least two populations of c-kit positive interstitial cells of Cajal (ICC) lie in the gastric wall, one located at the myenteric plexus level has a pace-making function and the other located intramuscularly is intermediary in the neurotransmission and regenerates the slow waves. Both of these ICC sub-types express full-length dystrophin. Mdx mice, an animal model lacking in full-length dystrophin and used to study Duchenne muscular dystrophy (DMD), show gastric dismotilities. The aim of the present study was to verify in mdx mice whether: (i) gastric ICC undergo morphological changes, through immunohistochemical and ultrastructural analyses; and (ii) there are alterations in the electrica…

Pathologymedicine.medical_specialtyPhysiologyDuchenne muscular dystrophyEndoplasmic reticulumClinical BiochemistryCoated vesicleCell BiologyAnatomyBiologymedicine.diseaseInterstitial cell of Cajalsymbols.namesakeCaveolaemedicinesymbolsbiology.proteinImmunohistochemistryDystrophinMyenteric plexusJournal of Cellular Physiology
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121st ENMC International Workshop on Desmin and Protein Aggregate Myopathies. 7–9 November 2003, Naarden, The Netherlands

2004

The 121st European Neuromuscular Centre (ENMC)sponsored International Workshop on ‘DESMIN and Protein Aggregate Myopathies’, attended by 16 active participants from France, Germany, Poland, Spain, Sweden, the United Kingdom and the USA, was actually the fourth one in a row addressing the pathology of the muscle fibre intermediate filament desmin, its associated and similar diseases, all four [1–3] organized by Michel Fardeau and Hans H. Goebel. In his introduction, the chairman, Hans H. Goebel (Mainz), recorded the evolution of ‘Protein Aggregate Myopathies (PAM)’ which are marked by the accumulation of diverse proteins within muscle fibres as a morphologic hallmark in separate myopathies w…

Pathologymedicine.medical_specialtyProtein aggregationBiologymedicine.diseaseNemaline myopathyNeurologyPediatrics Perinatology and Child HealthmedicineCongenital muscular dystrophyMyotilinDesminNeurology (clinical)Muscle fibremedicine.symptomMyopathyIntermediate filamentGenetics (clinical)Neuromuscular Disorders
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