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Biomedical subjects

C Antozzi

Publications and source records attributed to C Antozzi.

At least 19 recordsLinked to original sources

Antigen-specific modulation of experimental myasthenia gravis: nasal tolerization with recombinant fragments of the human acetylcholine receptor alpha-subunit.

Myasthenia gravis (MG) and experimental autoimmune myasthenia gravis (EAMG) are antibody-mediated autoimmune diseases in which the nicotinic acetylcholine receptor (AcChoR) is the major autoantigen. The immune response in these diseases is heterogeneous and is directed to a wide variety of T and B cell epitopes of AcChoR. Candidate molecules for specific immunotherapy of MG should, therefore, have a broad specificity. We used recombinant fragments of the human AcChoR, encompassing the extracellular domain of the alpha-subunit, or shorter fragments derived from it, in experiments to modulate EAMG. We have demonstrated that intranasal administration of these recombinant fragments, which represent a major portion of epitopes involved in MG, prevents the induction of EAMG in rats and immunosuppresses an ongoing disease, as assessed by clinical symptoms, weight loss, and muscle AcChoR content. These effects on EAMG were accompanied by a marked reduction in the proliferative T-cell response and IL-2 production in response to AcChoR, in reduced anti-self AcChoR antibody titers and in an isotype switch of AcChoR-specific antibodies, from IgG2 to IgG1. We conclude that nasal tolerance induced by appropriate recombinant fragments of human AcChoR is effective in suppressing EAMG and might possibly be considered as a therapeutic modality for MG.

Administration, Intranasal

Oral administration of an immunodominant T-cell epitope downregulates Th1/Th2 cytokines and prevents experimental myasthenia gravis.

The mucosal administration of the native antigen or peptide fragments corresponding to immunodominant regions is effective in preventing or treating several T cell-dependent models of autoimmune disease. No data are yet available on oral tolerance with immunodominant T-cell peptides in experimental autoimmune myasthenia gravis (EAMG), an animal model of B cell-dependent disease. We report that oral administration of the T-cell epitope alpha146-162 of the Torpedo californica acetylcholine receptor (TAChR) alpha-subunit suppressed T-cell responses to AChR and ameliorated the disease in C57Bl/6 (B6) mice. Protection from EAMG was associated with reduced serum Ab's to mouse AChR and reduced AChR loss in muscle. The effect of Talpha146-162 feeding was specific; treatment with a control peptide did not affect EAMG manifestations. The protective effect induced by peptide Talpha146-162 was mediated by reduced production of IFN-gamma, IL-2, and IL-10 by TAChR-reactive cells, suggesting T-cell anergy. TGF-beta-secreting Th3 cells did not seem to be involved in tolerance induction. We therefore demonstrate that feeding a single immunodominant epitope can prevent an Ab-mediated experimental model of autoimmune disease.

Administration, Oral

Long-term selective IgG immuno-adsorption improves Rasmussen's encephalitis.

We report that long-term selective immunoglobulin G immunoadsorption by protein A (PAI) improved seizure frequency and neuropsychological deficits in a 16-year-old patient with severe treatment-resistant Rasmussen's encephalitis (RE). Clinical improvement correlated with reduction of antiglutamate receptor 3 antibodies. The efficacy of PAI in our patient supports the autoimmune hypothesis of RE and suggests its application to avoid, or at least delay, functional hemispherectomy in selected cases.

Adolescent

Cardiomyopathies in disorders of oxidative metabolism.

Primary cardiomyopathy is an important cause of mortality in children and adults. Apart from inherited disorders of myocardial contractile and structural proteins, several defects of energy metabolism may cause cardiomyopathy. Most of the energy required for myocardial contraction is derived from aerobic metabolism. Faulty aerobic metabolism involving the heart may be due to defects of mitochondrial oxidative phosphorylation or to defects of fatty acid oxidation. Considerable advances have been made in the last 10 years in understanding the biochemical and molecular characteristics of mitochondrial disorders. Several point mutations or large-scale re-arrangements of mitochondrial DNA have been identified in patients with cardiomyopathy, either as part of complex multisystem syndromes or as the main clinical feature. Inborn errors of fatty acid oxidation are reported with increasing frequency as a cause of metabolic dysfunction, myopathy, cardiomyopathy, and sudden death in childhood. Advances in biochemical and molecular genetic techniques have considerably improved our understanding of the metabolic disorders causing cardiomyopathy, providing new tools for classification and diagnosis of candidate patients. The present review focuses on defects of mitochondrial oxidative metabolism associated with cardiomyopathy.

Cardiomyopathies

Mitochondrial disorders.

Mitochondria, the organelles devoted to energy production, have unique genetic features. They possess their own genome encoding several subunits of the respiratory chain, the majority of which are encoded by nuclear DNA, as well as factors involved in replication, transcription and translation of mitochondrial DNA. In the past few years, molecular lesions of mitochondrial DNA have been reported with increasing frequency as a source of human disorders. Several mutations of mitochondrial DNA, either as sporadic large scale rearrangements (deletions, duplications) or maternally-inherited point mutations, have been associated with well defined clinical syndromes. Furthermore, because of the nuclear DNA contribution to the synthesis of respiratory chain enzymes, phenotypes transmitted as Mendelian traits have also been identified and associated with qualitative (multiple deletions) and quantitative (depletion) lesions of the mitochondrial genome. The clinical manifestations of mitochondrial DNA mutations are extremely heterogeneous, ranging from myopathies, encephalomyopathies, cardiopathies, to complex multisystem syndromes. Clinical, morphological, biochemical and molecular genetic data are necessary for diagnosis. The recent advances in genetic studies provide both diagnostic tools and new pathogenetic insights into this rapidly expanding area of human pathology.

Aging

Emerging treatments in myopathies.

Outstanding improvement has been made in the molecular understanding of several muscle diseases with the application of molecular biological techniques to the investigation of human disorders. The identification of genetic mutations has improved considerably the diagnostic approach to muscular dystrophies, mitochondrial myopathies and ion channel disorders. Important results have been achieved in the field of inflammatory myopathies. With a few exceptions, therapies available are nonspecific and rarely represent a cure for the disease. Molecular medicine offers an opportunity to design new therapeutic strategies based on the pathogenic mechanisms underlying each disease.

Animals

Acetylcholine receptor alpha-subunit isoforms are differentially expressed in thymuses from myasthenic patients.

A central role of the thymus in autosensitization to the acetylcholine receptor has been proposed to explain the immunopathogenetic processes in myasthenia gravis (MG). Two isoforms of the alpha-subunit of the acetylcholine receptor are known; they differ by a 25-amino-acid insertion coded by the P3A exon. We investigated the expression of the P3A exon by RNA polymerase chain reaction in fetal and adult human myoblasts and TE671 cells; both isoforms were expressed. Muscle biopsies from patients with MG, Duchenne muscular dystrophy, and polymyositis were also studied and it was again found that both isoforms were expressed, indicating that the P3A exon is not associated with autoimmune, degenerative, and inflammatory muscle diseases. When P3A expression was studied in thymus samples from normal subjects and from thymectomized MG patients, the P3A+ subunit was absent in 75% of patients with involuted thymus and in all patients with thymomas but was present in normal thymuses and in patients with hyperplasia. Differential expression of the alpha-subunit isoforms of the acetylcholine receptor within the thymus may play a role in the immune pathogenesis of MG.

Acetylcholine

Clinical heterogeneity of adhalin deficiency.

We report adhalin deficiency in 8 patients with clinically diagnosed muscular dystrophy, dystrophic histopathological features, high plasma creatine kinase levels, normal expression of dystrophin, and marked variability of symptoms. Although the distribution of hyposthenia was similar in all 8 patients and predominantly involved muscles in the pelvic girdle, age at onset and rate of disease progression were highly variable: In 2 patients onset, at ages 24 and 25, was later than has been previously observed. We found no apparent relation between disease severity and the quantity of adhalin expressed. Two kinds of myopathy with adhalin deficiency have been reported: one caused by a mutation in the adhalin gene on chromosome 17 (primary adhalinopathy) and the other linked to chromosome 13. The product of the gene on chromosome 13 is probably associated with adhalin and its deficiency results in secondary adhalinopathy. The severity of clinical phenotypes in these adhalinopathies seems to relate more to the kind and site of the mutations than to the residual amount of the protein. We also detected a variable reduction in the laminin beta 1 subunit by immunohistochemistry in most patients, confirming that this is commonly associated with adhalin deficiency.

Adolescent

OXPHOS defects and mitochondrial DNA mutations in cardiomyopathy.

Defects of the mitochondrial respiratory chain in cardiac muscle are an important, yet still overlooked cause of heart failure. In 16 of 32 endocardial biopsies from infants affected by "idiopathic" hypertrophic cardiomyopathy we demonstrated a remarkable decrease of activity of either complex I, or complex IV, or both, relative to complex II + III activity which was taken as an index of mitochondrial proliferation. At the molecular level, several mtDNA mutations have been associated with cardiomyopathy. For instance, MIMyCa is a maternally inherited syndrome presenting with a variable combination of skeletal and heart muscle failure associated with a heteroplasmic A3260G transition in the tRNALeu(UUR) gene. To study the effects of the mutation in a controlled system, we prepared clones of transmitochondrial cybrids by fusing mutant cytoplasts with mtDNA-less tumor cells. Two groups of clones were identified: nearly 100% mutant (M group) and nearly 100% wild-type (WT group). The means of complex I and IV in the M group were 63% and 67% relative to the WT group. The O2 consumption in the M group was 36%, and the lactate production was 218% of that in the WT group. MtDNA-specific translation was defective in M clones. The study of transmitochondrial cybrids is an important clue to test the pathogenicity of mtDNA mutations.

Cardiomyopathies

Genotype to phenotype correlations in mitochondrial encephalomyopathies associated with the A3243G mutation of mitochondrial DNA.

We studied 22 subjects carrying the A3243G point mutation of human mitochondrial DNA (mtDNA). In 14 cases the clinical phenotype was characterized by mitochondrial encephalomyopathy, lactic acidosis and stroke-like episodes (MELAS), while 8 patients had chronic progressive external ophthalmoplegia (CPEO). The proportion of A3243G heteroplasmy in muscle was determined by two methods; densitometry on a diagnostic restriction-fragment length polymorphism and solid-phase mini-sequencing. We found a highly significant inverse correlation between the percentage of A3243G mutation and the specific activity of complex I, the respiratory complex with the highest number of mtDNA-encoded subunits, suggesting a direct effect of the mutation on mtDNA translation. No correlation was observed between the percentage of mutated mtDNA and the presence or absence of specific clinical features, such as stroke, ophthalmoplegia and diabetes mellitus. However, in the MELAS group the percentage of mutated mtDNA molecules was strongly correlated with the age of onset, while no such correlation was found in the CPEO group, suggesting a different time-dependent evolution of the mutation in the two groups. Finally, in contrast with other mtDNA mutations associated with ragged-red fibres (RRF), in both MELAS3243 and CPEO3243 we observed a high proportion of RRF that were positive to the histochemical reaction to cytochrome c oxidase, a morphological feature that seems to be specific for the neuromuscular phenotypes associated with mutations affecting the tRNA(Leu(UUR)) gene.

Adolescent

Epilepsia partialis continua associated with NADH-coenzyme Q reductase deficiency.

We report the clinical, neuroradiological and biochemical features of a patient with epilepsia partialis continua (EPC). MRI studies disclosed multiple cortico-subcortical areas of abnormal signal intensity. The activity of complex I of the mitochondrial respiratory chain was markedly reduced in skeletal muscle. The biochemical defect was reflected in vivo by a failure of brain and skeletal muscle bioenergetics, as shown by exercise and phosphorus magnetic resonance spectroscopy (31P-MRS) studies. Muscle morphology was repeatedly normal, and molecular genetic analysis of mitochondrial DNA was not informative. On the basis of in vivo and in vitro findings, the observed defect of the mitochondrial respiratory chain was considered the underlying biochemical pathogenesis of the disease. The observation of an oxidative defect in the brain and skeletal muscle of a patient with EPC emphasizes the importance of studying mitochondrial energy metabolism in patients with EPC not associated with primary CNS lesions when clinical and morphological findings suggesting a mitochondrial disorder are lacking. 31P-MRS can be a useful method to uncover deficits of CNS mitochondrial function and provide the indication for further biochemical studies.

Adult

Dystrophin characterization in BMD patients: correlation of abnormal protein with clinical phenotype.

We have investigated protein expression and genotype in 59 Becker muscular dystrophy (BMD) patients. The aim was to identify possible causes of the marked variability in phenotype in patients with similar deletions/mutations. The patients were examined neurologically and functionally and underwent Manual Muscle Testing. Dystrophin expression was analysed by immunohistochemistry and western blot using antibodies against six different segments of the protein. DNA mutations were investigated by PCR amplification of 30 exons. Based on dystrophin expression at the sarcolemma, two groups of patients were identified: group A (29 patients) with the classic patchy distribution of dystrophin and group B (30 patients) with absence or reduction of one or more dystrophin portions and variable, although mostly normal, expression of the other portions of the protein. Dystrophin molecular weight was normal or slightly reduced in group A and was variably reduced, generally conspicuously so, in group B. The quantity of dystrophin expressed varied markedly in both groups. The pattern of immunohistochemical staining in group B patients correlated with milder clinical phenotype, suggesting that small dystrophin molecules lacking a portion in the N-terminus or in the rod domain, are more functional than proteins with normal or slightly reduced molecular weight that display the BMD-typical patchy distribution at the sarcolemma.

Activities of Daily Living

Upper motor neuron dysfunction reduces the EMG evidence of myasthenia gravis.

Hyposensitivity to the action of nondepolarizing muscle relaxants has been frequently observed in patients with upper motor neuron dysfunction and in patients treated with antiepileptic drugs. To ascertain whether the same conditions are also characterized by a reduced sensitivity to the effects of anti-acetylcholine-receptor antibodies occurring in myasthenia gravis, bilateral investigations of neuromuscular transmission were conducted on proximal and distal muscles of a myasthenic patients with a long history of hemiparesis and epilepsy. It was observed that electromyographic evidence of myasthenia gravis was absent in distal muscles (and low in proximal ones of the paretic side. Even though the influence of antiepileptic treatment could not be assessed with certainty in this patient, indirect evidence suggests that hyposensitivity to anti-acetylcholine-receptor antibodies is an unlikely consequence of neuromuscular changes induced by anticonvulsants.

Adult