Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0026827 (hypotonia)
5,860 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

An unique myopathy described by Ullrich in 1930 was reported in a 4-year-old Japanese boy. Major clinical findings included proximal joint contracture, muscle hypotonia, prominent calcaneus, high-arched palate, and normal intelli gence. Muscle biopsy showed rather small muscle fivers with variations in size and proliferation of connective tissue. A review of 15 cases in the literature revealed this type of myopathy as a distinctive entity to be classified as a myopathic arthrogryposis multiplex congenita, rather than in the group of muscular dystrophies.
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PMID:A case of Ullrich's disease (Kongenitale, Atonisch-Sklerotische Muskeldystrophie). 55 39

Four cases of congenital, hypotonic-sclerotic muscular dystrophy are presented. The patients showed clinically prominent features described by Ullrich, i.e. congenital muscle weakness, hypotonia, and hyperextensibility of distal joints, contractures of proximal joints, high-arched palate, hyperhidrosis, posterior protrusion of calcaneus, and no progression. Muscle biopsies revealed dystrophic changes. Ullrich suggested that this condition was a new entity, but the disease has received little attention. In the present cases superior intelligence and tendency to recurrent upper respiratory tract infections were stressed as characteristics of this disorder. Insufficient cellular immunity was suspected and this may contribute to the recurrent upper respiratory tract infections and pneumonia often observed. This disease is considered a distinct entity of multisystemic involvement inherited as an autosomal recessive trait.
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PMID:Congenital, hypotonic-sclerotic muscular dystrophy. 60 94

Three cases, a female and two males, with the diagnosis of Ullrich syndrome are presented. Major clinical findings included congenital hypotonia, joint contractures, high-arched palate, prominent calcaneus, scoliosis, hyperhidrosis and normal intelligence. The course was not progressive or even underwent slow improvement. Our cases followed the autosomal recessive pattern of inheritance. Muscle enzymes were all within the normal ranges. EMG showed findings that were consistent with a chronic myogenic pattern. Muscle biopsy revealed variation in the size of muscle fiber diameters and large increase of the connective tissue without evidence of dystrophic changes. We consider Ullrich syndrome as a nonspecific muscle disturbance of unexplained nature, related, but not identical, to both congenital muscular dystrophy and myogenic type of arthrogryposis multiplex congenita.
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PMID:[Ullrich syndrome: a hypotonic disorder of early infancy, difficult to define as an entity]. 721 71

We report three patients with sporadic merosin-positive congenital muscular dystrophy (CMD) with torticollis and/or developmental dislocation of the hip in early childhood. Diagnosis of merosin-positive CMD was based on their clinical and dystrophic muscle biopsy findings. At the age 13 months, patient 1 was found to have developmental dislocation of both hips, which was surgically treated at 5 years. Patient 2 had severe torticollis and contracture of both hip joints which had been present since the neonatal period, and underwent repair of the torticollis at 2 years. Patient 3 was found to have developmental dislocation of the left hip at one month of age. Although she had generalized muscle hypotonia she learned to walk at 23 months. She had no facial muscle involvement nor contracture of joints, but had hyperlaxity of distal joints. Her muscle biopsy showed complete collagen VI deficiency immunohistochemically. In contrast to merosin-deficient CMD, merosin-positive CMD appears to be a group of heterogeneous diseases. Since collagen VI was reported to be defective in Ullrich's disease, patient 3 may be diagnosed as having Ullrich's disease but had no typical clinical characteristics of the disease. Further study is needed to identify the pathogenetic mechanism of congenital muscular dystrophy with early joint abnormalities to determine whether there is a primary abnormality of the connective tissue including collagen VI.
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PMID:[Merosin-positive congenital muscular dystrophy with early orthopaedic problems in relation to Ullrich's disease]. 1266 Nov 1

Congenital muscular dystrophy (CMD) composes a group of disorders characterized by hypotonia and muscular weakness noticed in the first year of life. The Ullrich's form is characterized by proximal joint contractures and distal hiperextensibility. About 40% of these patients present mutations in one of the genes that codify the sub-units of the collagen VI protein (COL6), producing total or partial deficiency of the protein expression. We analyzed, through immunohistochemistry, the expression of COL6 in muscle fragments of 50 patients with CMD; 20 of them presented merosin expression deficiency. We identified 4 cases with total COL6 deficiency (8% of the total), representing 13% of the cases with normal merosin expression. The histological findings of patients with deficiency of COL6 were indistinguishable from other forms of CMD, but milder than that abnormalities observed in merosin deficient patients. In three COL6 deficient patients were observed hypotonia and weakness in the neonatal period, delayed of motor milestones, muscular retractions of knees and elbows, distal joint hiperextensibility and congenital hip dislocation (two patients). One patient lost the ability to walk; and one died due to respiratory problems. The analysis of COL6 expression, as well as merosin expression, in the muscle tissue from CMD patients, can be important for identification and phenotypic characterization of different CMD subtypes.
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PMID:[Analysis of the expression of collagen VI in congenital muscular dystrophy]. 1605 8

The congenital muscular dystrophies (CMDs) are a group of genetically and clinically heterogeneous hereditary myopathies with preferentially autosomal recessive inheritance, that are characterized by congenital hypotonia, delayed motor development and early onset of progressive muscle weakness associated with dystrophic pattern on muscle biopsy. The clinical course is broadly variable and can comprise the involvement of the brain and eyes. From 1994, a great development in the knowledge of the molecular basis has occurred and the classification of CMDs has to be continuously up dated. We initially present the main clinical and diagnostic data concerning the CMDs related to changes in the complex dystrophin-associated glycoproteins-extracellular matrix: CMD with merosin deficiency (CMD1A), collagen VI related CMDs (Ullrich CMD and Bethlem myopathy), CMDs with abnormal glycosylation of alpha-dystroglycan (Fukuyama CMD, Muscle-eye-brain disease, Walker-Warburg syndrome, CMD1C, CMD1D), and the much rarer CMD with integrin deficiency. Finally, we present other forms of CMDs not related with the dystrophin/glycoproteins/extracellular matrix complex (rigid spine syndrome, CMD1B, CMD with lamin A/C deficiency), and some apparently specific clinical forms not yet associated with a known molecular mechanism. The second part of this review concerning the pathogenesis and therapeutic perspectives of the different subtypes of CMD will be described in a next number.
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PMID:Congenital muscular dystrophy. Part I: a review of phenotypical and diagnostic aspects. 1933 Feb 36

The congenital muscular dystrophies (CMDs) are a group of genetically and clinically heterogeneous hereditary myopathies with preferentially autosomal recessive inheritance, that are characterized by congenital hypotonia, delayed motor development and early onset of progressive muscle weakness associated with dystrophic pattern on muscle biopsy. The clinical course is broadly variable and can comprise the involvement of the brain and eyes. From 1994, a great development in the knowledge of the molecular basis has occurred and the classification of CMDs has to be continuously up dated. In the last number of this journal, we presented the main clinical and diagnostic data concerning the different subtypes of CMD. In this second part of the review, we analyse the main reports from the literature concerning the pathogenesis and the therapeutic perspectives of the most common subtypes of CMD: MDC1A with merosin deficiency, collagen VI related CMDs (Ullrich and Bethlem), CMDs with abnormal glycosylation of alpha-dystroglycan (Fukuyama CMD, Muscle-eye-brain disease, Walker Warburg syndrome, MDC1C, MDC1D), and rigid spine syndrome, another much rare subtype of CMDs not related with the dystrophin/glycoproteins/extracellular matrix complex.
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PMID:Congenital muscular dystrophy. Part II: a review of pathogenesis and therapeutic perspectives. 1954 38

Ullrich congential muscular dystrophy (UCMD) is a severe form of congenital muscular dystrophy manifesting axial muscle contractures and distal joint hyperlaxity. Severe hypotonia and associated respiratory failure may occur early in the disease process. Given the various associated orthopedic conditions, anesthetic management may be required during surgical interventions to correct skeletal deformities or these patients may present with surgical conditions unrelated to their primary illness. We present a 4-year-old with UCMD who required operative intervention for a ruptured appendix. Anesthetic care implications included the need for a rapid airway control to limit the risks of aspiration due to the intra-abdominal process, choice of neuromuscular blocking agent for rapid sequence intubation, associated airway issues related to micrognathia and limited mouth opening, and the potential for involvement of the cardiovascular and respiratory systems. The perioperative management of patients with UCMD is discussed including the use of propofol and remifentanil for rapid sequence intubation to avoid the need for neuromuscular blocking agents.
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PMID:Perioperative care of a child with Ullrich congenital muscular dystrophy. 1958 90

We report on an autosomal-recessive variant of Ehlers-Danlos syndrome (EDS) characterized by severe muscle hypotonia at birth, progressive scoliosis, joint hypermobility, hyperelastic skin, myopathy, sensorineural hearing impairment, and normal pyridinoline excretion in urine. Clinically, the disorder shares many features with the kyphoscoliotic type of EDS (EDS VIA) and Ullrich congenital muscular dystrophy. Linkage analysis in a large Tyrolean kindred identified a homozygous frameshift mutation in FKBP14 in two affected individuals. Based on the cardinal clinical characteristics of the disorder, four additional individuals originating from different European countries were identified who carried either homozygous or compound heterozygous mutations in FKBP14. FKBP14 belongs to the family of FK506-binding peptidyl-prolyl cis-trans isomerases (PPIases). ER-resident FKBPs have been suggested to act as folding catalysts by accelerating cis-trans isomerization of peptidyl-prolyl bonds and to act occasionally also as chaperones. We demonstrate that FKBP14 is localized in the endoplasmic reticulum (ER) and that deficiency of FKBP14 leads to enlarged ER cisterns in dermal fibroblasts in vivo. Furthermore, indirect immunofluorescence of FKBP14-deficient fibroblasts indicated an altered assembly of the extracellular matrix in vitro. These findings suggest that a disturbance of protein folding in the ER affecting one or more components of the extracellular matrix might cause the generalized connective tissue involvement in this disorder. FKBP14 mutation analysis should be considered in all individuals with apparent kyphoscoliotic type of EDS and normal urinary pyridinoline excretion, in particular in conjunction with sensorineural hearing impairment.
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PMID:Mutations in FKBP14 cause a variant of Ehlers-Danlos syndrome with progressive kyphoscoliosis, myopathy, and hearing loss. 2226 13

We report on a 5-year-old girl who presented with an association of symptoms reminiscent of an Ullrich-like congenital muscular dystrophy including congenital hypotonia, proximal joint contractures, hyperlaxity of distal joints, normal cognitive development, and kyphoscoliosis. There was an excess of neuromuscular spindles on the skeletal muscle biopsy. This very peculiar feature on muscle biopsy has been reported only in patients with mutations in the HRAS gene. Sequence analysis of the subject's HRAS gene from blood leukocytes and skeletal muscle revealed a previously described heterozygous missense mutation (c.187G>A, p. Glu63Lys). The present report thus extends the differential diagnosis of congenital muscular dystrophy with major "retractile" phenotypes and adds congenital muscular dystrophy to the clinical spectrum of HRAS-related disorders.
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PMID:Congenital muscular dystrophy phenotype with neuromuscular spindles excess in a 5-year-old girl caused by HRAS mutation. 2507 May 42


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