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Biomedical subjects

Claudia F Lucchinetti

Publications and source records attributed to Claudia F Lucchinetti.

At least 19 recordsLinked to original sources

Ornithine transcarbamylase deficiency presenting as encephalopathy during adulthood following bariatric surgery.

BACKGROUND: Neurological complications following bariatric surgery are rare. Whereas nutritional deficiencies are the most common cause of neurological symptoms, the unmasking of previously subclinical metabolic disorders can also lead to significant morbidity. OBJECTIVE: To characterize the clinical presentation, serum biochemical fluctuations, and functional enzymatic analysis of a case of functional ornithine transcarbamylase deficiency unmasked by a dietary change following bariatric surgery. DESIGN: Case report. SETTING: Tertiary referral center, hospital (inpatient) setting. PATIENT: A 29-year-old woman who presented with intermittent encephalopathy associated with recurrent hyperammonemia. INTERVENTIONS: Clinical, biochemical, and mutational studies. RESULTS: The pattern of intermittent hyperammonemia and encephalopathy following oral and parenteral nutrition suggested a urea cycle abnormality. Functional enzymatic assay results showed markedly reduced ornithine transcarbamylase activity in the absence of known coding mutations. CONCLUSION: Previously asymptomatic ornithine transcarbamylase deficiency should be suspected in adult patients who develop recurrent hyperammonemia and encephalopathy following bariatric surgery.

Adult↗

Multiple sclerosis, brain radiotherapy, and risk of neurotoxicity: the Mayo Clinic experience.

PURPOSE: The aim of this study was a retrospective assessment of neurotoxicity in patients with multiple sclerosis (MS) receiving external beam radiotherapy (EBRT) to the brain. METHODS AND MATERIALS: We studied 15 consecutively treated patients with MS who received brain EBRT. Neurologic toxicity was assessed with the Common Toxicity Criteria v.3.0. RESULTS: Median follow-up for the 5 living patients was 6.0 years (range, 3.3-27.4 years). No exacerbation of MS occurred in any patient during EBRT. Five patients had Grade 4 neurologic toxicity and 1 had possible Grade 5 toxicity. Kaplan-Meier estimated risk of neurotoxicity greater than Grade 4 at 5 years was 57% (95% confidence interval, 27%-82%). Toxicity occurred at 37.5 to 54.0 Gy at a median of 1.0 year (range, 0.2-4.3 years) after EBRT. Univariate analysis showed an association between opposed-field irradiation of the temporal lobes, central white matter, and brainstem and increased risk of neurotoxicity (p < 0.04). Three of 6 cases of toxicity occurred in patients treated before 1986. CONCLUSIONS: External beam radiotherapy of the brain in patients with MS may be associated with an increased risk of neurotoxicity compared with patients without demyelinating illnesses. However, this risk is associated with treatment techniques that may not be comparable to modern, conformal radiotherapy.

Adolescent↗

Brain abnormalities in neuromyelitis optica.

BACKGROUND: Neuromyelitis optica (NMO) is a severe demyelinating disease defined principally by its tendency to selectively affect optic nerves and the spinal cord causing recurrent attacks of blindness and paralysis. Contemporary diagnostic criteria require absence of clinical disease outside the optic nerve or spinal cord. We have, however, frequently encountered patients with a well-established diagnosis of NMO in whom either asymptomatic or symptomatic brain lesions develop suggesting that the diagnostic criteria for NMO should be revised. OBJECTIVE: To describe the magnetic resonance image (MRI) brain findings in NMO. DESIGN: Observational, retrospective case series. Patients We ascertained patients through a clinical biospecimens database of individuals with definite or suspected NMO. We included patients who (1) satisfied the 1999 criteria of Wingerchuk et al for NMO except for the absolute criterion of lacking symptoms beyond the optic nerve and spinal cord and the supportive criterion of having a normal brain MRI at onset; (2) had MRI evidence of a spinal cord lesion extending 3 vertebral segments or more (the most specific nonserological feature to differentiate NMO from MS); and (3) were evaluated neurologically and by brain MRI at the Mayo Clinic. MAIN OUTCOME MEASURES: Magnetic resonance images were classified as normal or as abnormal with either nonspecific, multiple sclerosis-like or atypical abnormalities. We evaluated whether brain lesions were symptomatic and analyzed the neuropathologic features of a single brain biopsy specimen. RESULTS: Sixty patients (53 women [88%]) fulfilled these inclusion criteria. The mean +/- SD age at onset was 37.2 +/- 18.4 years and the mean +/- SD duration of follow-up was 6.0 +/- 5.6 years. Neuromyelitis optica-IgG was detected in 41 patients (68%). Brain MRI lesions were detected in 36 patients (60%). Most were nonspecific, but 6 patients (10%) had multiple sclerosis-like lesions, usually asymptomatic. Another 5 patients (8%), mostly children, had diencephalic, brainstem or cerebral lesions, atypical for multiple sclerosis. When present, symptoms of brain involvement were subtle, except in 1 patient who was comatose and had large cerebral lesions. CONCLUSIONS: Asymptomatic brain lesions are common in NMO, and symptomatic brain lesions do not exclude the diagnosis of NMO. These observations justify revision of diagnostic criteria for NMO to allow for brain involvement.

Adult↗

Neuromyelitis optica brain lesions localized at sites of high aquaporin 4 expression.

BACKGROUND: Neuromyelitis optica (NMO)-IgG is a specific autoantibody marker for NMO. It binds selectively to aquaporin 4 (AQP4), which is highly concentrated in astrocytic foot processes at the blood-brain barrier and is not restricted to optic nerve and spinal cord. Although it is conventionally believed that the brain is spared, brain imaging abnormalities are not uncommon in patients with NMO. OBJECTIVE: To investigate the location of brain lesions that are distinctive for NMO with respect to the localization of AQP4 in mammalian brain. DESIGN: Observational, retrospective case series. SETTING: Clinical serologic cohort of patients tested for NMO-IgG for whom brain MRI images were available. PATIENTS: We identified 120 patients seropositive for NMO-IgG for whom brain magnetic resonance images were available. MAIN OUTCOME MEASURE: Magnetic resonance imaging abnormalities. RESULTS: In 8 patients we observed recurring and distinctive magnetic resonance imaging abnormalities in the hypothalamic and periventricular areas that corresponded to brain regions of high AQP4 expression. CONCLUSION: The distribution of NMO-characteristic brain lesions corresponds to sites of high AQP4 expression.

Adolescent↗

Neuromyelitis optica IgG predicts relapse after longitudinally extensive transverse myelitis.

OBJECTIVE: We investigated whether neuromyelitis optica (NMO) IgG seropositivity at the initial presentation of longitudinally extensive transverse myelitis (LETM) predicts relapse of myelitis or development of optic neuritis. METHODS: Prospective study of patients with initial LETM who were tested for the presence of NMO-IgG. RESULTS: Eleven of 29 patients (37.9%) were seropositive after a first attack of LETM spanning three or more vertebral segments on magnetic resonance imaging. Of 23 patients followed up for 1 year, none of 14 who were seronegative experienced a relapse or developed optic neuritis. Of 9 seropositive patients, 5 developed a second event: 4 of 9 (44%) developed recurrent transverse myelitis and 1 of 9 (11%) developed optic neuritis (p = 0.004). INTERPRETATION: LETM represents an inaugural or limited form of NMO in a high proportion of patients. The 40% of patients who are seropositive for NMO-IgG are at high risk for relapse.

Adult↗

Inflammatory transverse myelitis: evolving concepts.

PURPOSE OF REVIEW: Acute transverse myelitis is a pathogenetically heterogeneous inflammatory disorder of the spinal cord. Here we describe recent advances in inflammatory non-infectious transverse myelitis. Particular attention will be paid to the serum autoantibody marker NMO-IgG and its application to acute transverse myelitis. RECENT FINDINGS: The recent identification of neuromyelitis optica-IgG, a novel marker of neuromyelitis optica spectrum disorders (including longitudinally extensive transverse myelitis), contributes to an evolving understanding of acute transverse myelitis. Other serological markers, such as collapsin response-mediator protein-5 -IgG and amphiphysin-IgG, predict specific cancers in the setting of a paraneoplastic acute transverse myelitis. Furthermore, novel inflammatory markers such as interleukin-6 or other proteins in their signaling pathways may represent markers of disease severity and potential therapeutic targets. Additional cerebrospinal fluid biomarkers, such as protein 14-3-3 and neuron-specific enolase, may be useful prognostic indicators in transverse myelitis. Acute transverse myelitis in children, in contrast to adults, is more likely to be longitudinally extensive, and has a better prognosis and lower likelihood of recurrence. Prognostic factors in pediatric transverse myelitis are reviewed. SUMMARY: The recent identification of novel biomarkers associated with acute transverse myelitis has led to a better understanding of the spectrum of disorders associated with inflammatory transverse myelitis, as well as a greater appreciation of its diverse and complex pathogenetic basis.

Aquaporins↗

NMO-IgG: a specific biomarker for neuromyelitis optica.

Neuromyelitis optica (NMO) is an inflammatory demyelinating disease that principally targets the optic nerves and spinal cord and often leads to severe disability and occasionally life threatening respiratory failure. Although its clinical manifestations overlap with those of multiple sclerosis (MS), in established cases these two conditions can be distinguished on the basis of clinical, radiological, and routine spinal fluid studies. The diagnosis in early cases or limited forms of NMO is difficult. We recently discovered a unique IgG autoantibody (NMO-IgG) that is highly specific to patients with NMO and thus a valuable diagnostic aid. Its antigen, aquaporin-4 (AQP4), is the central nervous system's predominant water channel protein. This antibody has not yet been proven to be pathogenic, but several facts suggest that it might be, including the similarity of the immunohistochemical pattern of NMO-(AQP4) IgG binding to mouse CNS tissues to the pattern of immune complex deposition in autopsied patients' spinal cord tissue. The spectrum of diseases identified by NMO-IgG is broader than has previously been recognized clinically and includes incomplete forms of NMO, such as recurrent transverse myelitis without optic neuritis and recurrent optic neuritis without myelitis.

Autoantibodies↗

The pathology of multiple sclerosis: evidence for heterogeneity.

The idiopathic inflammatory demyelinating diseases (IIDDs) consist of a broad spectrum of disorders that vary in their clinical course, regional distribution, and pathology. Though pathology of these demyelinating disorders demonstrates extensive interindividual heterogeneity, there is notable homogeneity within individual patients. The relation between the diverse underlying pathology of IIDDs and the various clinical, paraclinical, and radiological findings is unclear. Finding less-invasive clinical or paraclinical surrogate markers, which accurately and reliably predict the underlying distinct pathologies within the family of IIDDs, can potentially guide future therapies that better target specific pathogenic mechanisms.

Central Nervous System↗

Cortical demyelination and diffuse white matter injury in multiple sclerosis.

Focal demyelinated plaques in white matter, which are the hallmark of multiple sclerosis pathology, only partially explain the patient's clinical deficits. We thus analysed global brain pathology in multiple sclerosis, focusing on the normal-appearing white matter (NAWM) and the cortex. Autopsy tissue from 52 multiple sclerosis patients (acute, relapsing-remitting, primary and secondary progressive multiple sclerosis) and from 30 controls was analysed using quantitative morphological techniques. New and active focal inflammatory demyelinating lesions in the white matter were mainly present in patients with acute and relapsing multiple sclerosis, while diffuse injury of the NAWM and cortical demyelination were characteristic hallmarks of primary and secondary progressive multiple sclerosis. Cortical demyelination and injury of the NAWM, reflected by diffuse axonal injury with profound microglia activation, occurred on the background of a global inflammatory response in the whole brain and meninges. There was only a marginal correlation between focal lesion load in the white matter and diffuse white matter injury, or cortical pathology, respectively. Our data suggest that multiple sclerosis starts as a focal inflammatory disease of the CNS, which gives rise to circumscribed demyelinated plaques in the white matter. With chronicity, diffuse inflammation accumulates throughout the whole brain, and is associated with slowly progressive axonal injury in the NAWM and cortical demyelination.

Acute Disease↗

CCR5Delta32 polymorphism effects on CCR5 expression, patterns of immunopathology and disease course in multiple sclerosis.

Four distinct patterns of tissue injury have been described in multiple sclerosis (MS) lesions. Infiltrating monocytes in lesions of all patterns co-express CCR1 and CCR5. However, in pattern II lesions, the number of CCR1 cells is decreased, while the number of CCR5 expressing cells is increased in late active versus early active regions. In contrast, CCR1 and CCR5 cells were equal in all regions of pattern III lesions. These suggest distinct inflammatory microenvironments in pattern II and III lesions and support MS pathological heterogeneity. A deletion in CCR5 (CCR5*Delta32), which encodes a truncated, non-functional protein, has been associated with late onset of MS and a favorable prognosis. We studied the association of CCR5*Delta32 with the course and severity of MS in 221 patients from a population-based cohort in Olmsted County, MN, and with patterns of immunopathology in 94 patients with biopsy-derived, pathologically confirmed demyelinating disease participating in the MS Lesion Project. The frequency of the genotypes in 221 patients from Olmsted County, MN, was 167 (75.6%) wild type, 52 (23.5%) heterozygotes, and 2 (0.9%) homozygotes. There was no association of carrier status for the CCR5*Delta32 mutation with disease severity as analyzed using the disease severity score (ranking of EDSS/duration stratified by duration), age of onset, gender or disease course (bout onset versus primary progressive). Due to low frequency of homozygotes no conclusion can be made regarding their relation to heterozygosity or wild-type status. The frequency of genotypes in the 94 biopsies was 77 (81.9%) wild type, 15 (16.0%) heterozygotes and 2 (2.1%) homozygotes. Carrier status for the CCR5*Delta32 mutation was not associated with patterns of immunopathology in MS. Despite similar numbers of T-lymphocytes, there were no CCR5+ T-cells nor was CCR5 expressed in the CNS of a homozygous CCR5*Delta32 MS patient, and heterozygous patients had reduced CCR5 expression compared to wild type patients. CCR5*Delta32 has a dose effect on CCR5 expression in the CNS, but is neither necessary for development of MS, nor CD3+ T cell recruitment into the CNS. Furthermore it does not segregate with patterns of immunopathology in MS. We did not find an association between CCR5*Delta32 mutation and disease severity and age of onset in MS.

Adult↗

Tissue preconditioning may explain concentric lesions in Baló's type of multiple sclerosis.

Lesions of Baló's concentric sclerosis are characterized by alternating layers of myelinated and demyelinated tissue. The reason for concentric demyelination in this variant of multiple sclerosis is unclear. In the present study we investigated the immunopathology in autopsy tissue of 14 patients with acute multiple sclerosis or fulminant exacerbations of chronic multiple sclerosis with Baló-type lesions in the CNS, focusing on the patterns of tissue injury in actively demyelinating lesions. We found that all active concentric lesions followed a pattern of demyelination that bears resemblances to hypoxia-like tissue injury. This was associated with high expression of inducible nitric oxide synthase in macrophages and microglia. At the edge of active lesions and, less consistently, in the outermost layer of preserved myelin, proteins involved in tissue preconditioning, such as hypoxia-inducible factor 1alpha and heat-shock protein 70, were expressed mainly in oligodendrocytes and to a lesser degree also in astrocytes and macrophages. Due to their neuroprotective effects, the rim of periplaque tissue, where these proteins are expressed, may be resistant to further damage in an expanding lesion and may therefore remain as a layer of preserved myelinated tissue.

Adolescent↗

Amphiphysin autoimmunity: paraneoplastic accompaniments.

Amphiphysin-IgG was identified in 71 patients among 120,000 evaluated serologically for paraneoplastic autoantibodies. Clinical information was available for 63 patients. Cancer was detected in 50 (mostly limited), proven histologically in 46, and was imaged intrathoracically in 4 patients (lung, small-cell [27] and non-small cell [1]), breast [16] and melanoma [2]). Neurological accompaniments included (decreasing frequency): neuropathy, encephalopathy, myelopathy, stiff-man phenomena, and cerebellar syndrome. In a case examined neuropathologically, parenchymal T-lymphocyte infiltration (predominantly CD8(+)) was prominent in lower brainstem, spinal cord, and dorsal root ganglion. Coexisting paraneoplastic autoantibodies, identified in 74% of patients, predicted a common neoplasm and indicated other neuronal autoantigen targets that plausibly explained several neurological manifestations; for example, P/Q-type Ca(2+)-channel antibody with Lambert-Eaton syndrome (n = 5), anti-neuronal nuclear antibody type 1 with sensory neuronopathy (n = 7), K(+)-channel antibody with limbic encephalitis (n = 1) or neuromyotonia (n = 1), and collapsin response-mediator protein-5-IgG with optic neuritis (n = 3). Patients with isolated amphiphysin-IgG (n = 19) were more likely to be women (with breast cancer, p < 0.05) and to have myelopathy or stiff-man phenomena (p < 0.01). Overall, a minority of women (39%) and men (12%) had stiff-man phenomena. Only 10% of women (some with lung carcinoma) and 4% of men fulfilled diagnostic criteria for stiff-man syndrome.

Aged↗

Expression of chemokine receptors CCR1 and CCR5 reflects differential activation of mononuclear phagocytes in pattern II and pattern III multiple sclerosis lesions.

Multiple sclerosis (MS) is an inflammatory demyelinating disorder of the CNS. A recent study identified 4 patterns of demyelination in active MS lesions. The characteristics of pattern II lesions suggested a primary inflammatory mechanism of myelin injury, while pattern III lesions showed features consistent with dying-back oligodendrogliopathy. The recruitment, differentiation, and activation of mononuclear phagocytes are dependent on the expression of chemokine receptors. Using immunohistochemistry we quantified cellular expression of CCR1 and CCR5 in pattern II (n = 21) and pattern III (n = 17) lesion areas of differing demyelinating activity. Infiltrating monocytes in both lesion patterns co-expressed CCR1 and CCR5, suggesting conserved mechanisms of monocyte recruitment into the CNS. In pattern II lesions, the number of cells expressing CCR1 significantly decreased while CCR5 increased in late active compared with early active demyelinating regions. In striking contrast, numbers of cells expressing CCR1 and CCR5 were equal in all regions of pattern III lesions. As hypoxia-like mechanisms may play a role in pattern III lesions, we extended these studies to white matter infarcts (n = 7) in which the expression of CCR1 better resembled pattern III than pattern II lesions. As judged by mononuclear phagocyte chemokine receptor expression, there appear to be distinct tissue environments in pattern II and III MS lesions.

Adult↗

Anti-neuronal nuclear autoantibody type 2: paraneoplastic accompaniments.

We identified the IgG autoantibody ANNA-2 ("anti-Ri") in 34 patients in a 12-year period by immunofluorescence screening of sera from approximately 75000 patients with subacute neurological disorders that were suspected to be paraneoplastic. Detailed clinical information was available for 28 patients (10 men, 18 women). Cancer was diagnosed in 24 patients (86%); 21 had histologically proven carcinoma (10 lung, 9 breast, 1 cervical, 1 bladder), and 3 had an intrathoracic imaging abnormality. Cancer anteceded neurological symptoms in 4 of 28 patients. Cancer detection frequency increased with continued surveillance. Neurological disorders, in decreasing frequency, were brainstem syndrome (including opsoclonus, myoclonus, or both), cerebellar syndrome, myelopathy, peripheral neuropathy, cranial neuropathy, movement disorder, encephalopathy, Lambert-Eaton syndrome, and seizures. Four patients had laryngospasm and four had jaw opening dystonia (two with neck dystonia). Nine (32%) were wheelchair-bound 1 month after neurological symptom onset. Most improved neurologically after immunomodulatory or tumor-directed therapy. Accompanying autoantibodies, found in 73% of sera, included ANNA-1, ANNA-3, CRMP-5-IgG, P/Q-type and N-type Ca(2+) channel antibodies, and muscle-type acetylcholine receptor antibody. Some neurological accompaniments of ANNA-2 may reflect potentially pathogenic humoral or cell-mediated responses to coimmunogenic tumor antigens, for example, Lambert-Eaton syndrome (P/Q-type Ca(2+) channel antibody) and peripheral neuropathy (ANNA-1 effector T cells).

Adult↗