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S Di Donato

Publications and source records attributed to S Di Donato.

At least 19 recordsLinked to original sources

The search for cerebral biomarkers of Huntington's disease: a review of genetic models of age at onset prediction.

The mutation causing Huntington's disease is an expanded CAG trinucleotide repeat number beyond 35 in the 5' translated region of the gene. The mutation penetrance varies widely and depends on the CAG expansion length, the low pathological triplet range (36-41) showing a very low penetrance, possibly associated with late ages at onset. No research has so far yielded biomarkers for accurately predicting either age at onset or disease progression in at risk individuals. Specific markers able to follow-up mutation carrier subjects from the pre-symptomatic stages of life are crucial for testing experimental neuroprotective preventive therapies. Nevertheless, the factor accounting for the largest percentage of age at onset variation is the expanded repeat number within the gene. Over the years, this factor has helped in setting up models for genetically predicting age at onset. Once available for practical application in clinics, such models allowed phenotype-genotype correlations that were hitherto inconceivable. In this review, we discuss how these genetic models have been applied in clinical practice and comment on their potential value in searching for cerebral biomarkers of disease onset and severity and in designing trials of therapeutic drugs.

Adult↗

Prevalence of inherited ataxias in the province of Padua, Italy.

Few population studies are available on epidemiological indexes of hereditary ataxias. An investigation on the prevalence rate of these movement disorders is in progress for the Veneto region, the main area of northeast Italy with a population of 4,490,586 inhabitants. The first results of this epidemiological survey concern the province of Padua, which numbers 845,203 residents (January 1, 2002). The prevalence rate of inherited ataxias has been estimated at 93.3 cases per million inhabitants. The most common types appeared to be the autosomal dominant forms, namely spinocerebellar ataxia type 1 and 2, with a prevalence of 24 per 1,000,000. In the same population, with a prevalence rate of 6 per 1,000,000, Friedreich's ataxia was defined as the prominent recessive autosomal form. There were very rare cases of ataxia telangiectasia, ataxia with vitamin E deficiency and cerebellar ataxia with congenital muscular dystrophy, a recently identified autosomal recessive disease.

Adult↗

Ataxia with isolated vitamin E deficiency: neurological phenotype, clinical follow-up and novel mutations in TTPA gene in Italian families.

Ataxia with vitamin E deficiency (AVED) is a rare autosomal recessive neurodegenerative disorder due to mutations in the alpha-tocopherol transfer protein (TTPA) gene on chromosome 8q13. AVED patients have progressive spinocerebellar symptoms and markedly reduced plasma levels of vitamin E. We studied neurological phenotype at diagnosis, and long-term effect of vitamin E supplementation in 16 patients from 12 Italian families. The most common mutations were the 744delA and 513insTT. Two novel TTPA mutations were identified: a severe truncating mutation (219insAT) in a homozygous patient, and a Gly246Arg missense mutation (G246R) in a compound heterozygous patient. The missense mutation was associated with a mild and slowly progressive form of the disease. Vitamin E supplementation therapy allowed a stabilization of the neurological conditions in most of the patients. However, development of spasticity and retinitis pigmentosa was noted in a few patients during therapy. Prompt genetic characterization of AVED patients may allow an effective early treatment and an adequate genetic counseling.

Adolescent↗

Idebenone treatment in Friedreich patients: one-year-long randomized placebo-controlled trial.

The authors carried out a 1-year, randomized, placebo-controlled trial of idebenone in 29 patients with Friedreich ataxia. They found significant reductions of interventricular septal thickness and left ventricular mass in the idebenone group vs the placebo group, with no improvement in other heart ultrasound measures or neurologic condition. The absolute cardiac changes were modest, but the findings suggest that larger trials should assess whether idebenone reduces ventricular hypertrophy in patients with Friedreich ataxia.

Adolescent↗

Pathogenic effect of an intermediate-size SCA-6 allele (CAG)(19) in a homozygous patient.

SCA6 is caused by CAG expansion in the alpha 1A voltage-dependent calcium channel subunit gene. The authors studied an Italian family in which one patient carried a fully expanded SCA6 allele with 26-CAG repeats, whereas the other affected family member was homozygous for an intermediate-size allele of 19-CAG repeats. Three family members, heterozygous for the intermediate allele, were clinically unaffected. The findings demonstrate a dose-dependent pathogenic effect of an intermediate CAG expansion in the SCA6 gene.

Adult↗

The complex clinical and genetic classification of inherited ataxias. II. Autosomal recessive ataxias.

Autosomal recessive ataxias are a heterogeneous group of rare neurodegenerative diseases characterized by early onset cerebellar ataxia associated with various neurologic, ophthalmologic and systemic signs. In comparison with autosomal dominant ataxias, the group of recessive ataxias is less extensively characterized. In fact, only a few conditions have been genetically characterized. The pathogenesis of these forms is associated with a "loss of function" of specific cellular proteins involved in metabolic homeostasis, cell cycle, and DNA repair/protection processing. The two most common autosomal recessive ataxias, in European countries, are Friedreich's ataxia and ataxia telangiectasia. Other forms are much less frequent, and include ataxia with vitamin E deficiency, abetalipoproteinemia. Refsum's disease, spastic ataxia, infantile onset spinocerebellar ataxia, and ataxia with oculomotor apraxia. These pathological conditions, although extremely rare, have nevertheless to be carefully considered in differential diagnosis, not only for correct nosographical classification, but particularly, for specific prognostic and therapeutic implications. Some of these diseases exhibit a peculiar regional distribution. An updated review of the clinical, genetic, and pathogenic aspects of recessive ataxias is presented. Specific management problems with respect to diagnosis and genetic counseling are discussed.

Ataxia Telangiectasia↗

Cerebellar/spinocerebellar syndromes.

Spinocerebellar syndromes are a heterogeneous group of neurological disorders clinically characterized by dysequilibrium, progressive incoordination of gait and limbs, and speech and eye movement disturbances. Clinical classification and differential diagnosis are intricate due to the great variability of the phenotypic, pathogenic, neuropathological and genetic aspects of these diseases. Spinocerebellar syndromes may present as sporadic, nongenetic, disorders or as familial forms. Clinical and genetic classifications of autosomal dominant and recessive spinocerebellar ataxias are briefly reviewed. Distinguishing clinical features, diagnostic procedures, and frequency of specific genotypes in Italian patients are presented.

Cerebellar Ataxia↗

Superoxide dismutase gene mutations in Italian patients with familial and sporadic amyotrophic lateral sclerosis: identification of three novel missense mutations.

Amyotrophic lateral sclerosis (ALS) is a progressive neurodegenerative disorder affecting motor neurons. The majority of the patients are sporadic cases (SALS), while 5-10% of the patients have a family history of ALS (familial ALS or FALS). Mutations in the gene coding for cytoplasmic Cu/Zn superoxide dismutase (SOD1) have been identified in about 20% of FALS cases. We found SOD1-gene mutations in five of 34 unrelated FALS, and in two of 44 SALS patients. Three FALS patients carried the previously described A4V (two cases) and L84F mutations (one case), while two FALS patients carried new missense mutations: a G12R substitution in exon 1, and a F45C substitution in exon 2, respectively. The newly identified mutations were both associated with a slowly progressive disease course. Two SALS patients carried the homozygous D90A and the heterozygous I113T mutation, respectively. In addition, in one SALS patient we identified an A95T amino acid substitution, that is apparently a non-pathogenic SOD1 variant. Our study increases the number of ALS-associated SOD1 gene mutations.

Adult↗

Disorders related to mitochondrial membranes: pathology of the respiratory chain and neurodegeneration.

Faulty oxidative phosphorylation (OXPHOS) is observed in a number of mitochondrial disorders, and may be associated with single or multiple defects of the five complexes of the respiratory chain. From the genetic standpoint, the respiratory chain is unique as it is formed by means of the complementation of two separate genetic systems: the nuclear genome and the mitochondrial genome. The nuclear genome encodes most of the protein subunits of the respiratory complexes and most of the mtDNA replication and expression systems, whereas the mitochondrial genome encodes only 13 OXPHOS subunits and some RNA components of the mitochondrial translation apparatus. Accordingly, mitochondrial disorders due to defects in oxidative phosphorylation include both Mendelian-inherited and cytoplasmic-inherited diseases. Although our knowledge of these diseases has grown at an impressive rate in the past few years, it is worth noting that, as a result of complementation in the respiratory chain of nuclear-encoded and mitochondrially-encoded polypeptides, it is often difficult to establish a precise relationship between genomic mutations and biochemical phenotypes, or to distinguish pathogenic mutations from polymorphic variants in gene sequences. This review deals with human diseases due to mutations of the structural components of the respiratory chain, particularly focusing on the recently identified disorders caused either by mutations in nuclear genes encoding subunits of the subcomplexes or by mutations in nuclear genes affecting the functional efficiency, homeostasis, and assembly of respiratory chain subcomplexes. To better focus on OXPHOS genotype-phenotype correlations, mutations of the mtDNA-encoded structural genes are also discussed.

ATPases Associated with Diverse Cellular Activitie↗

Relative frequencies of CAG expansions in spinocerebellar ataxia and dentatorubropallidoluysian atrophy in 116 Italian families.

Two hundred and forty-eight patients from 116 Italian families with dominant ataxia were studied for CAG expansion within SCA1, 2, 3, 6, 7 (spinocerebellar ataxia) and DRPLA (dentatorubropallidoluysian atrophy) genes. Fifty-six percent of the families originated from Southern, 19% from Central and 25% from Northern Italy. SCA2 was the commonest mutation, accounting for 47% of the families, followed by SCA1 (24%), SCA6 (2%), SCA7 (2%) and DRPLA (1%). No SCA3 family was found. Twenty-four percent of the families carried a still unidentified mutation. When occurrence of mutations was evaluated according to the geographic origin, SCA1 was the commonest in Northern (72%), whereas SCA2 was prevalent (63%) in Southern Italy. The number of CAG repeats in SCA1 normal alleles was higher in Northern than in Central-Southern Italy.

Alleles↗

Clinical and molecular studies of 73 Italian families with autosomal dominant cerebellar ataxia type I: SCA1 and SCA2 are the most common genotypes.

We clinically and genetically evaluated 73 Italian families with autosomal dominant cerebellar ataxia (ADCA) type I. Spinocerebellar ataxia (SCA) type 1 was the most common genotype (SCA1), accounting for 41% of cases (30 families), SCA2 was slightly less frequent (29%, 21 families), and the remaining families were negative for the SCA1, SCA2, and SCA3 mutations. Among the positively genotyped families, SCA1 was found most frequently in families from northern Italy (50%), while SCA2 was the most common mutation in families from the southern part of the country (56%). Slow saccades and decreased deep tendon reflexes were observed significantly more frequently in SCA2 patients, while increased deep tendon reflexes and nystagmus were more common in SCA1. In SCA1 and SCA2 families there was a significant inverse correlation between expansion size and age at onset. Analysis of triplet repeat numbers in parent-offspring pairs showed greater meiotic instability, which was associated with an earlier onset of the disease in SCA2 families than in SCA1 families.

Adult↗

Retroviral-mediated transfer of the galactocerebrosidase gene in neural progenitor cells.

Globoid cell leukodystrophy (GCL or Krabbe disease) is a recessive disease caused by mutations of the lysosomal enzyme galactocerebrosidase (GALC) and twitcher is the murine model of GCL. We have prepared retroviral packaging cell lines to transduce the GALC gene. Retroviral transduction restored GALC activity in GCL fibroblasts and increased such activity to very high levels in immortalized neural progenitor cells (ST14A cells). GALC activity was also normalized in twitcher fibroblasts co-cultured with ST14A cells over-expressing GALC, demonstrating that this enzyme is secreted and can be imported efficiently by GALC-deficient cells. These results give the necessary background to evaluate the therapeutic effect in twitcher of brain grafting of neural progenitor cells engineered to release high levels of GALC.

3T3 Cells↗

The complex clinical and genetic classification of inherited ataxias. I. Dominant ataxias.

The clinical classification of autosomal dominant cerebellar ataxias (ADCAs) is intricate due to the variable and unpredictable association of signs and symptoms of central nervous system (CNS) and peripheral nervous system (PNS) deterioration during the life of a patient. However, for many purposes, particularly patient management, clinical systematics is the most useful method for labelling patients; in some instances there is no basis for any more fundamental classification of phenotypes. On the other hand, recent molecular-genetic approaches to dominant ataxias have had a profound impact in nosology, diagnostic procedures and the management of patients, since they are based on the fact that all mendelian neurological diseases can be precisely classified according to the locus involved as well as the particular mutant allele at that locus. Therefore, a clinical and genetic classification of dominant ataxias is herewith proposed as the best nosographical choice. Clinical, neuropathological, genetic, and pathogenetic aspects of ADCAs are reviewed and discussed to help the clinical neurologist guide diagnostic procedures and manage ataxic patients.

Cerebellar Ataxia↗

Ataxia with isolated vitamin E deficiency: heterogeneity of mutations and phenotypic variability in a large number of families.

Ataxia with vitamin E deficiency (AVED), or familial isolated vitamin E deficiency, is a rare autosomal recessive neurodegenerative disease characterized clinically by symptoms with often striking resemblance to those of Friedreich ataxia. We recently have demonstrated that AVED is caused by mutations in the gene for alpha-tocopherol transfer protein (alpha-TTP). We now have identified a total of 13 mutations in 27 families. Four mutations were found in >=2 independent families: 744delA, which is the major mutation in North Africa, and 513insTT, 486delT, and R134X, in families of European origin. Compilation of the clinical records of 43 patients with documented mutation in the alpha-TTP gene revealed differences from Friedreich ataxia: cardiomyopathy was found in only 19% of cases, whereas head titubation was found in 28% of cases and dystonia in an additional 13%. This study represents the largest group of patients and mutations reported for this often misdiagnosed disease and points to the need for an early differential diagnosis with Friedreich ataxia, in order to initiate therapeutic and prophylactic vitamin E supplementation before irreversible damage develops.

Adolescent↗

Phenotypic variability in Friedreich ataxia: role of the associated GAA triplet repeat expansion.

We studied genotype-phenotype correlations in a group of 100 patients with typical Friedreich ataxia (FRDA), and in three groups of patients with atypical clinical presentations, including 44 Acadian FRDA, 8 late-onset FRDA (LOFA), and 6 FRDA with retained reflexes (FARR). All patients, except 3 with typical FRDA, carried two copies of the FRDA-associated GAA triplet repeat expansion. Overall, the phenotypic spectrum of FRDA appeared to be wider than defined by the currently used diagnostic criteria. Our study indicated the existence of several sources of variability in FRDA. Patients with larger GAA expansions tended to have earlier onset and were more likely to show additional manifestations of the disease. Mitotic instability of the expanded GAA repeats may partially account for the limited degree of correlation between expansion sizes as determined in lymphocytes and clinical parameters. Some clinical variants associated with specific FRDA haplotypes, such as Acadian FRDA and FARR, turned out to be unrelated to expansion sizes. No polymorphism in the frataxin coding sequence could be associated with these clinical variants.

Adolescent↗

Gene transfer of suicide genes for the treatment of malignant gliomas: efficacy, limitations, and perspectives for a combined immunotherapy.

The potential of gene therapy strategies for malignant gliomas that are based on retroviral-mediated transfer of a "suicide gene" such as Herpes Simplex Virus-thymidine kinase HSV-tk and subsequent treatment by a prodrug (ganciclovir, for example), has been emphasized by the promising results obtained by several groups. However, further experimental data as well as preliminary clinical results indicate that the low efficiency of retroviral-mediated gene transfer in vivo as well as difficulties for the diffusion of the prodrug inside the tumour mass can limit the efficacy of this form of gene therapy. To achieve a more effective limitation of tumour growth other approaches may be combined with the "suicide gene" strategy and the enhancement of the immunological response to the tumour by cytokine gene transfer is prominent among these approaches. The authors' experiments in nude mice confirm the antineoplastic role of IL-4 and encourage testing the effects of the simultaneous transfer of IL-4 and HSV-tk genes in immunocompetent animals.

Animals↗

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↗