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Dive into the research topics where Carla Battisti is active.

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Featured researches published by Carla Battisti.


American Journal of Human Genetics | 2012

Mutations in SLC30A10 cause parkinsonism and dystonia with hypermanganesemia, polycythemia, and chronic liver disease.

Marialuisa Quadri; Antonio Federico; Tianna Zhao; Guido J. Breedveld; Carla Battisti; Cathérine C.S. Delnooz; Lies-Anne Severijnen; Lara Di Toro Mammarella; Andrea Mignarri; L. Monti; Antioco Sanna; Peng Lu; Francesca Punzo; Giovanni Cossu; Rob Willemsen; Fabrizio Rasi; Ben A. Oostra; Bart P. van de Warrenburg; Vincenzo Bonifati

Manganese is essential for several metabolic pathways but becomes toxic in excessive amounts. Manganese levels in the body are therefore tightly regulated, but the responsible protein(s) remain incompletely known. We studied two consanguineous families with neurologic disorders including juvenile-onset dystonia, adult-onset parkinsonism, severe hypermanganesemia, polycythemia, and chronic hepatic disease, including steatosis and cirrhosis. We localized the genetic defect by homozygosity mapping and then identified two different homozygous frameshift SLC30A10 mutations, segregating with disease. SLC30A10 is highly expressed in the liver and brain, including in the basal ganglia. Its encoded protein belongs to a large family of membrane transporters, mediating the efflux of divalent cations from the cytosol. We show the localization of SLC30A10 in normal human liver and nervous system, and its depletion in liver from one affected individual. Our in silico analyses suggest that SLC30A10 possesses substrate specificity different from its closest (zinc-transporting) homologs. We also show that the expression of SLC30A10 and the levels of the encoded protein are markedly induced by manganese in vitro. The phenotype associated with SLC30A10 mutations is broad, including neurologic, hepatic, and hematologic disturbances. Intrafamilial phenotypic variability is also present. Chelation therapy can normalize the manganesemia, leading to marked clinical improvements. In conclusion, we show that SLC30A10 mutations cause a treatable recessive disease with pleomorphic phenotype, and provide compelling evidence that SLC30A10 plays a pivotal role in manganese transport. This work has broad implications for understanding of the manganese biology and pathophysiology in multiple human organs.


Journal of Alzheimer's Disease | 2014

Apoptosis and Oxidative Stress in Neurodegenerative Diseases

Elena Radi; Patrizia Formichi; Carla Battisti; Antonio Federico

Neurodegenerative disorders affect almost 30 million individuals leading to disability and death. These disorders are characterized by pathological changes in disease-specific areas of the brain and degeneration of distinct neuron subsets. Despite the differences in clinical manifestations and neuronal vulnerability, the pathological processes appear similar, suggesting common neurodegenerative pathways. Apoptosis seems to play a key role in the progression of several neurologic disorders like Alzheimers disease, Parkinsons disease, Huntingtons disease, and amyotrophic lateral sclerosis as demonstrated by studies on animal models and cell lines. On the other hand, research on human brains reported contradictory results. However, many dying neurons have been detected in brains of patients with neurodegenerative diseases, and these conditions are often associated with significant cell loss accompanied by typical morphological features of apoptosis such as chromatin condensation, DNA fragmentation, and activation of cysteine-proteases, caspases. Cell death and neurodegenerative conditions have been linked to oxidative stress and imbalance between generation of free radicals and antioxidant defenses. Multiple sclerosis, stroke, and neurodegenerative diseases have been associated with reactive oxygen species and nitric oxide. Here we present an overview of the involvement of neuronal apoptosis and oxidative stress in the most important neurodegenerative diseases, mainly focusing the attention on several genetic disorders, discussing the interaction between primary genetic abnormalities and the apoptotic pathways.


Neurology | 2002

A Rett syndrome MECP2 mutation that causes mental retardation in men

M. T. Dotti; Alfredo Orrico; N. De Stefano; Carla Battisti; Francesco Sicurelli; S. Severi; C. W. Lam; L. Galli; V. Sorrentino; Arcamone Federico

Objective: To characterize the clinical features of a new type of X-linked mental retardation associated with MECP2 mutation in the index family. Background: MECP2 mutations, originally described in a high percentage of patients with classic Rett syndrome, were considered lethal in men. The authors recently described a novel A140V MECP2 missense mutation in an Italian family with X-linked semidominant mental retardation. Methods: The neurologic features of six symptomatic relatives (two women and four men) carrying the mutation were compiled. Laboratory investigations included EEG, EMG, conduction velocity (CV) of peripheral nerves, brain MRI, and 1H-MR spectroscopy. Results: Mental retardation and signs of neurologic impairment were present in all the affected members, but more pronounced in men. Neurologic features included slowly progressive spastic paraparesis/pyramidal signs (6/6), distal atrophy of the legs (6/6), ataxia (2/6), and postural tremor of the hands (3/6). Speech was preserved (6/6) but was dysarthric in the oldest brothers (2/6). Mild dysmorphic features were present in all cases. Conclusion: The neurologic disorder associated with A140V MECP2 mutation is not necessarily lethal in men, but they are more severely affected than women of the same family.


Journal of Cellular Physiology | 2006

Cerebrospinal fluid tau, Aß, and phosphorylated tau protein for the diagnosis of Alzheimer's disease

Patrizia Formichi; Carla Battisti; Elena Radi; Antonio Federico

The diagnosis of AD is still largely based on exclusion criteria of secondary causes and other forms of dementia with similar clinical pictures, than the diagnostic accuracy of AD is low. Improved methods of early diagnosis are needed, particularly because drugs treatment is more effective in the early stages of the disease. Recent research focused the attention to biochemical diagnostic markers (biomarkers) and according to the proposal of a consensus group on biomarkers, three candidate CSF markers reflecting the pathological AD processes, have recently been identified: total tau protein (t‐tau), amyloid ß(1–42) protein (Aß42), and tau protein phosphorylated at AD‐specific epitopes (p‐tau). Several articles report reduced CSF levels of Aß42 and increased CSF levels of t‐tau and p‐tau in AD; the sensitivity and specificity of these data are able for discrimination of AD patients from controls. However, the specificity for other dementias is low. According to the literature analysis reported in the present review, we can conclude that the combination of the CSF markers and their ratios may significantly increase the specificity and the accuracy of AD diagnosis.


Human Mutation | 2009

Screening of ARHSP-TCC patients expands the spectrum of SPG11 mutations and includes a large scale gene deletion.

Paola S. Denora; David Schlesinger; Carlo Casali; Fernando Kok; Alessandra Tessa; Amir Boukhris; Hamid Azzedine; Maria Teresa Dotti; Claudio Bruno; Jeremy Truchetto; Roberta Biancheri; Estelle Fedirko; Maja Di Rocco; Clarissa Bueno; Alessandro Malandrini; Roberta Battini; Elisabeth Sickl; Maria Fulvia de Leva; Odile Boespflug-Tanguy; Gabriella Silvestri; Alessandro Simonati; Edith Said; Andreas Ferbert; Chiara Criscuolo; Karl Heinimann; Anna Modoni; Peter Weber; Silvia Palmeri; Martina Plasilova; Flavia Pauri

Autosomal recessive spastic paraplegia with thinning of corpus callosum (ARHSP‐TCC) is a complex form of HSP initially described in Japan but subsequently reported to have a worldwide distribution with a particular high frequency in multiple families from the Mediterranean basin. We recently showed that ARHSP‐TCC is commonly associated with mutations in SPG11/KIAA1840 on chromosome 15q. We have now screened a collection of new patients mainly originating from Italy and Brazil, in order to further ascertain the spectrum of mutations in SPG11, enlarge the ethnic origin of SPG11 patients, determine the relative frequency at the level of single Countries (i.e., Italy), and establish whether there is one or more common mutation. In 25 index cases we identified 32 mutations; 22 are novel, including 9 nonsense, 3 small deletions, 4 insertions, 1 in/del, 1 small duplication, 1 missense, 2 splice‐site, and for the first time a large genomic rearrangement. This brings the total number of SPG11 mutated patients in the SPATAX collection to 111 cases in 44 families and in 17 isolated cases, from 16 Countries, all assessed using homogeneous clinical criteria. While expanding the spectrum of mutations in SPG11, this larger series also corroborated the notion that even within apparently homogeneous population a molecular diagnosis cannot be achieved without full gene sequencing.


Journal of Neurology, Neurosurgery, and Psychiatry | 2004

Cell response to oxidative stress induced apoptosis in patients with Leber’s hereditary optic neuropathy

Carla Battisti; Patrizia Formichi; Elena Cardaioli; Silvia Bianchi; Paola Mangiavacchi; Sergio Antonio Tripodi; Piero Tosi; Antonio Federico

Objectives: Leber’s hereditary optic neuropathy (LHON) is a maternally inherited disease in which acute or subacute bilateral visual loss occurs preferentially in young men. Over 95% of LHON cases are associated with one of three mitochondrial DNA (mtDNA) point mutations, but only 50% of men and 10% of women who harbour a pathogenetic mtDNA mutation develop optic neuropathy. This incomplete penetrance and preference for men suggests that additional genetic (nuclear or mitochondrial) and/or environmental factors must modulate phenotype expression in LHON. A role for reactive oxygen species (ROS) in mitochondrial diseases, secondary to mtDNA mutations, or as a result of the direct effect of ROS cytotoxicity, has been implicated in many mitochondrial disorders, including LHON. The purpose of this study was to investigate the role of oxidative stress induced apoptosis in LHON. Methods: The 2-deoxy-D-ribose induced apoptotic response of peripheral blood lymphocytes from six patients with LHON and six healthy subjects was investigated using light microscopy, flow cytometry, agarose gel electrophoresis, and the measurement of mitochondrial membrane potential. Results: Cells of patients with LHON had a higher rate of apoptosis than those of controls and there was evidence of mitochondrial involvement in the activation of the apoptotic cascade. Conclusions: These differences in oxidative stress induced apoptosis are in line with the hypothesis that redox homeostasis could play a role in the expression of genetic mutations in different individuals and could represent a potential target in the development of new therapeutic strategies.


Journal of Lipid Research | 2002

Niemann-Pick type C disease: mutations of NPC1 gene and evidence of abnormal expression of some mutant alleles in fibroblasts

Patrizia Tarugi; Giorgia Ballarini; Bruno Bembi; Carla Battisti; Silvia Palmeri; Francesca Panzani; Enza Di Leo; Cristina Martini; Antonio Federico; Sebastiano Calandra

We analyzed Niemann-Pick type C disease 1 (NPC1) gene in 12 patients with Niemann-Pick type C disease by sequencing both cDNA obtained from fibroblasts and genomic DNA. All the patients were compound heterozygotes. We found 15 mutations, eight of which previously unreported. The comparison of cDNA and genomic DNA revealed discrepancies in some subjects. In two unrelated patients carrying the same mutations (P474L and nt 2972del2) only one mutant allele (P474L), was expressed in fibroblasts. The mRNA corresponding to the other allele was not detected even in cells incubated with cycloheximide. The promoter variants (−1026T/G and −1186T/C or −238 C/G), found to be in linkage with 2972del2 allele do not explain the lack of expression of this allele, as they were also found in control subjects. In another patient, (N1156S/Q922X) the N1156S allele was expressed in fibroblasts while the expression of the other allele was hardly detectable. In a fourth patient cDNA analysis revealed a point mutation in exon 20 (P1007A) and a 56 nt deletion in exon 22 leading to a frameshift and a premature stop codon. The first mutation was confirmed in genomic DNA; the second turned out to be a T→G transversion in exon 22, predicted to cause a missense mutation (V1141G). In fact, this transversion generates a donor splice site in exon 22, which causes an abnormal pre-mRNA splicing leading to a partial deletion of this exon. In some NPC patients, therefore, the comparison between cDNA and genomic DNA may reveal an unexpected expression of some mutant alleles of NPC1 gene.


Nature Genetics | 2014

Mutations in ZBTB20 cause Primrose syndrome

Viviana Cordeddu; Bert Redeker; Emilia Stellacci; Aldo Jongejan; Alessandra Fragale; Ted E.J. Bradley; Massimiliano Anselmi; Andrea Ciolfi; Serena Cecchetti; Valentina Muto; Laura Bernardini; Meron Azage; Daniel R. Carvalho; Alberto J. Espay; Alison Male; Anna Maja Molin; Renata Posmyk; Carla Battisti; Alberto Casertano; Daniela Melis; Antoine H. C. van Kampen; Frank Baas; Marcel Mannens; Gianfranco Bocchinfuso; Lorenzo Stella; Marco Tartaglia; Raoul C. M. Hennekam

Primrose syndrome and 3q13.31 microdeletion syndrome are clinically related disorders characterized by tall stature, macrocephaly, intellectual disability, disturbed behavior and unusual facial features, with diabetes, deafness, progressive muscle wasting and ectopic calcifications specifically occurring in the former. We report that missense mutations in ZBTB20, residing within the 3q13.31 microdeletion syndrome critical region, underlie Primrose syndrome. This finding establishes a genetic link between these disorders and delineates the impact of ZBTB20 dysregulation on development, growth and metabolism.


Neurological Sciences | 2009

Two cases of hemichorea-hemiballism with nonketotic hyperglycemia: a new point of view

Carla Battisti; Francesca Forte; Elisa Rubenni; Maria Teresa Dotti; Anna Bartali; Paola Gennari; Antonio Federico; Alfonso Cerase

Hemichorea-hemiballism (HCHB) is an usually continuous, nonpatterned, involuntary movement disorder caused by basal ganglia dysfunction, commonly due to a vascular lesion, described in nonketotic hyperglycemic patients. Particular computed tomography and magnetic resonance imaging findings have been described. The pathogenic mechanism of chorea arising during hyperglycemia and the nature of neuroimaging findings are unclear. In this paper we describe two elderly women with onset of HCHB during a hyperglycemic episode. The symptoms persisted in one of them after recovery of normal glycemia. The pathophysiological mechanism of the disease is discussed in the light of clinical and neuroradiological follow-up.


Journal of Cellular Physiology | 2007

Psychosine-induced apoptosis and cytokine activation in immune peripheral cells of Krabbe patients†

Patrizia Formichi; Elena Radi; Carla Battisti; Anna Laura Pasqui; Gerarda Pompella; Pietro Enea Lazzerini; Franco Laghi-Pasini; Alessandra Leonini; Anna Di Stefano; Antonio Federico

Globoid cell leukodystrophy or Krabbe disease (KD), is a hereditary disorder caused by galactosylceramidase deficiency. Progressive accumulation of psychosine is considered to be the critical pathogenetic mechanism of cell death in the Krabbe brain. Psychosine mechanism of action has not been fully elucidated. It seems to induce apoptosis in oligodendrocytes through a mitochondrial pathway and to up‐regulate inflammatory cytokines production resulting in oligodendrocyte loss. Our aim was to evaluate the role of psychosine in apoptotic cell death and inflammatory response in a group of patients affected by KD using peripheral blood lymphocytes (PBLs) and peripheral blood mononuclear cells (PBMCs) as a cellular model. PBLs from KP and healthy controls were exposed to 20 µM psychosine and analysed by flow cytometry, agarose gel electrophoresis and fluorescence microscopy. Our results showed that psychosine induces apoptosis in PBLs through a mitochondrial pathway, but the apoptotic response was quite low especially KP. The role of psychosine in the up‐regulation of cytokines (TNFalpha, IL8 and MCP1) has been evaluated by ELISA in PBMCs from KP and controls after stimulation with LPS and phytohemagglutinin. Both in basal condition and after LPS stimulation, cells from KP showed a significant increase in TNF‐α production, reduced MCP1 levels and no modification in IL8. These results indicate that lymphomonocytes from KP had a basal proinflammatory pattern that was amplified by psychosine. In conclusion, the reduced apoptotic response and the atypical cytokine production observed in our experiments, suggest an involvement of inflammatory pattern in immune peripheral cells of KP. J. Cell. Physiol. 212:737–743, 2007.

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