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Biomedical subjects

B Ryniewicz

Publications and source records attributed to B Ryniewicz.

At least 19 recordsLinked to original sources

How accurate is spirometry at predicting restrictive pulmonary impairment in children with myasthenia gravis.

Myasthenia gravis (MG) is an autoimmune disorder of the neuromuscular junction. Clinical symptoms are caused by weakness and increased fatigability of various muscle groups. Myasthenia may lead to significant respiratory dysfunction. The aim of our study was to estimate lung function in children with MG. We tested 23 non-smoking patients (18 girls and 5 boys) aged 7-18 years. Whole-body plethysmography and spirometry were performed in all patients. In 33% of the patients a decrease in VC <80% of predicted value was observed (VC = 89 +/-19%), but the analysis of TLC revealed restrictive pattern only in one patient (TLC = 102 +/-17%). In more than 75% of the children the value of RV above 120% of predicted value was found (RV = 146 +/-54%). Spirometric obstructive pattern measured by FEV1%VC <70% was not observed, although in 56% of the patients airway resistance was increased (Raw = 132 +/-44%). In 45% of the patients a decrease of PEF (76 +/-14%) was observed. In MG children true restrictive pulmonary impairment is rarely observed and a decrease in VC in these patents seems to result mainly from functional restriction provoked by an increase in RV. Spirometry is not an optimum method to assess functional changes in MG patients. The assessment of additional measures such as TLC, RV, and Raw is desirable.

Adolescent↗

IBM-type inclusions in a patient with slow-channel syndrome caused by a mutation in the AChR epsilon subunit.

We report a patient with a slow-channel congenital myasthenic syndrome who carries a novel slow-channel mutation in the epsilon subunit of the acetylcholine receptor and has tubulofilamentous inclusion bodies, in skeletal muscle of the type observed in hereditary and sporadic inclusion body myositis. Ultrastructural analysis of a muscle specimen obtained at the age of 9 years showed an endplate myopathy typical of the slow-channel syndrome. Twenty years later, a second muscle specimen again showed the endplate myopathy as well numerous nuclear and cytoplasmic tubulofilamentous inclusion bodies. Molecular genetic studies revealed a novel valine to phenylalanine mutation (epsilonV259F) in the M2 domain of the acetylcholine receptor. Coexistence of the slow-channel syndrome with a feature of IBM has not been observed before.

Acetylcholine↗

Mild early onset axonal Charcot-Marie-Tooth disease not linked to other axonal Charcot-Marie-Tooth loci.

Autosomal dominant axonal Charcot-Marie-Tooth disease type 2 (CMT2) is a heterogeneous group of disorders with seven chromosomal loci mapped in the uncomplicated forms of CMT2. The authors report clinical, electrophysiologic, and genetic analysis of a Polish CMT2 family. Nine known CMT2 gene loci and one MPZ gene locus have been excluded. The authors' findings suggest that this family represents a novel form of CMT2 disease.

Action Potentials↗

Congenital myopathy with tubular aggregates and tubulofilamentous IBM-type inclusions.

We report on a 16-year-old girl with a unique neuromuscular disorder characterised by progressive proximal muscle weakness and numerous tubular aggregates, intracytoplasmic, as well as intranuclear inclusions of the IBM type in her muscle biopsy. The clinical features of the presented case, as manifested by the early childhood onset of the disease, proximal weakness, lumbar hyperlordosis, and bilateral Achilles tendon contractures, were suggestive of congenital myopathy. To the best of our knowledge, the coexistence of tubular aggregates and tubulofilamentous inclusions of the IBM type in a child has never been described.

Adolescent↗

Autosomal recessive axonal form of Charcot-Marie-Tooth Disease caused by compound heterozygous 3'-splice site and Ser130Cys mutation in the GDAP1 gene.

A recessive demyelinating subtype of Charcot-Marie-Tooth disease called CMT4 is a heterogeneous group of disorders. A relatively frequent form of recessive CMT (CMT4 A) has been mapped to the chromosome 8 q21 and shown to be caused by mutations in the ganglioside-induced differentiation protein 1 (GDAP1) gene. Twenty mutations in the GDAP1 gene have been reported in patients suffering from the axonal and demyelinating forms of CMT disease. In this study we report two novel mutations in the GDAP1 gene in a patient suffering from CMT2 disease and whose parents were asymptomatic carriers of a Ser130Cys and 3'-splice site (311-1G > A) mutation, respectively.

Charcot-Marie-Tooth Disease↗

A novel MPZ gene mutation in congenital neuropathy with hypomyelination.

Congenital hypomyelinating neuropathy (CHN; MIM# 605253) is a severe neuropathy with early infancy onset inherited as an autosomal dominant or recessive trait. Sural nerve biopsy shows a characteristic picture of nonmyelinated and poorly myelinated axons with basal lamina onion bulbs and lack of myelin breakdown products. Several mutations in the MTMR2, PMP22, EGR2, and MPZ genes have been found in patients with CHN. The authors describe the clinical and morphologic features of a patient with CHN and the identification of a novel Thr124Lys mutation in the MPZ gene.

Abnormalities, Multiple↗

A new familial congenital myopathy in children with desmin and dystrophin reacting plaques.

In 5 children with a progressive congenital myopathy representing 3 different families, unusual histological, immunohistochemical and ultrastructural changes in skeletal muscle have been found. Histologically, this myopathy was characterized by the presence of fine hyaline plaques devoid of oxidative as well as ATPase enzyme activities. At the ultrastructural level plaques were composed of helical filaments and amorphous dense material. Helical filament storage corresponded to strong desmin as well as ubiquitin immunoreactivity. In addition they were also dystrophin positive. The exclusive appearance of desmin, ubiquitin and dystrophin positive plaques in muscle specimens from 5 children emphasize the uniqueness of these plaques as well as this special form of a congenital myopathy.

Adolescent↗

An X:autosome translocation stabilizes truncated dystrophin: implications for lack of truncated dystrophins in Duchenne muscular dystrophy.

We report a 5-year-old girl with clinical symptoms of typical Duchenne muscular dystrophy in males. The girl showed dramatic elevations of serum creatine kinase, and muscle biopsy histopathology consistent with a severe dystrophic myopathy. Cytogenetic analysis revealed an X:22 translocation (46,X,t [X;22] [p21.2;11.2]). Dystrophin immunofluoresence studies showed strong membrane immunostaining of dystrophin with antibodies directed against the amino terminus of the protein, but vastly reduced immunostaining with carboxyl-terminal antibodies. Immunoblot studies showed a major immunoreactive protein of approximately 350 kDa at approximately 20% levels. Nested RT-PCR analysis of the dystrophin mRNA in the patient's muscle showed the RNA to be positive for primers covering the first 85% of the dystrophin coding sequence, and negative for the carboxyl-terminal 15%. Taken together, our data suggests that the translocation breakpoint occurs towards the 3' end of the gene. The translocated dystrophin gene is still expressed into a truncated dystrophin protein associated with the plasma membrane. Our results are consistent with the translocation resulting in a more stable abnormal dystrophin mRNA.

Antibodies, Monoclonal↗

Immunosuppressive treatment for juvenile myasthenia gravis.

The result of immunosuppressive treatment in 20 cases of generalized myasthenia gravis with onset before age 16 were analysed. The patients age at the beginning of immunosuppressive treatment ranged from 10 to 22 years. Thirteen patients suffered from a severe form of myasthenia gravis with respiratory attacks, the remaining 7 demonstrated a moderately severe form with bulbar symptoms dominating the clinical picture. Indication for immunosuppressive treatment was lack of or only slight improvement after thymectomy. Prednisone was used in 17 cases, high dosage of methylprednisolone in 8 (in one case twice), azathioprine in 11 and cyclophosphamide in 10. Best results were obtained with cyclophosphamide since significant improvement was recorded in 14/20 of patients. Corticosteroids, i.e. prednisone and high-dose methylprednisolone proved to be of limited value.

Adolescent↗

Treatment of myotonia with antiarrhythmic drugs.

The effects of disopyramide, phenytoin, mexiletine, and tocainide were compared in 30 patients with myotonic disorders. The severity of myotonia was assessed by clinical and electromyographic criteria at the end of each treatment phase lasting four weeks. Mexiletine (MXT) and tocainide (TCD) were found to be the most potent antimyotonic agents. The antimyotonic efficacy of MXT and TCD is explained by their fast-blocking effect on voltage-dependent sodium channels in the muscle membrane. The benefits of myotonia control with pharmacological agents must be weight against the risk of therapy in the individual patient. Because of the risks of hematologic problems, TCD is not recommended by us for the treatment of myotonia.

Adolescent↗

Disintegration of the motor unit in post-polio syndrome. Part I. Electrophysiological findings in patients after poliomyelitis.

CN EMG and SF EMG were performed in 12 patients many years after acute poliomyelitis, without symptoms of post-polio syndrome. In 19 muscles with clinical symptoms and in 11 clinically normal muscles chronic neurogenic changes of a similar degree were observed. Fibre density was increased in both groups of muscles. In muscles with clinical symptoms complexes of single fibres with increased jitter and blocking were more frequent than in muscles without clinical manifestations. It seems that the reinnervation after acute polio is a continuing process and thus complete stabilization and integration of the motor unit cannot be achieved.

Action Potentials↗

Disintegration of the motor unit in post-polio syndrome. Part II. Electrophysiological findings in patients with post-polio syndrome.

The aim of the study is to investigate the motor unit abnormalities in late postpolio muscular atrophy (PPMA) as compared to those found in patients who had polio 20-30 years prior to examination without any new clinical signs. The quantitative concentric needle EMG and a single fiber EMG techniques were employed. Spontaneous activity, the parameters of individual motor units potentials (MUP), number of complex potentials and their stability, jitter and blocking as well as fiber density (FD) have been evaluated. In PPMA patients (5 subjects) we found in newly weakened muscles: spontaneous activity, high percentage of complex potentials, increased jitter, increased FD. The EMG findings in muscles previously affected but without any signs of progression have been similar. In the patients with stable nonprogressing postpolio muscle atrophy (12) all MUP-s parameters indicated changes similar to PPMA but less marked in initially affected muscle with complete or incomplete recovery as well as sometimes in initially clinically unaffected muscles. These findings suggest that the signs of ongoing reinnervation processes persist many years after polio and that PPMA occurring later in life represents disintegration of the previously reinnervated motor units. It is still unclear whether this disintegration depends on decompensation by different factors of fully reinnervated motor units or whether most of the motor units after polio never regained a stable reinnervation.

Adult↗

Lipid storage myopathy in Kearns-Sayre syndrome.

A 7-year-old girl had external ophthalmoplegia, limb weakness, short stature, hearing loss, pigmentary degeneration of the retina, and increased CSF protein content. Muscle biopsy revealed vacuolar myopathy with accumulation of lipids. Electronmicroscopy showed abnormalities of shape, size, and internal structure of muscle mitochondria. Muscle activity of palmitoyl-CoA synthetase was decreased, and the content of lipids was increased. Serum and muscle carnitine levels were normal, as were muscle carnitine palmitoyltransferase and carnitine acetyltransferase.

Child↗