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Biomedical subjects

L Pantoni

Publications and source records attributed to L Pantoni.

At least 37 records · Page 2Linked to original sources

A new rating scale for age-related white matter changes applicable to MRI and CT.

BACKGROUND AND PURPOSE: MRI is more sensitive than CT for detection of age-related white matter changes (ARWMC). Most rating scales estimate the degree and distribution of ARWMC either on CT or on MRI, and they differ in many aspects. This makes it difficult to compare CT and MRI studies. To be able to study the evolution and possible effect of drug treatment on ARWMC in large patient samples, it is necessary to have a rating scale constructed for both MRI and CT. We have developed and evaluated a new scale and studied ARWMC in a large number of patients examined with both MRI and CT. METHODS: Seventy-seven patients with ARWMC on either CT or MRI were recruited and a complementary examination (MRI or CT) performed. The patients came from 4 centers in Europe, and the scans were rated by 4 raters on 1 occasion with the new ARWMC rating scale. The interrater reliability was evaluated by using kappa statistics. The degree and distribution of ARWMC in CT and MRI scans were compared in different brain areas. RESULTS: Interrater reliability was good for MRI (kappa=0.67) and moderate for CT (kappa=0.48). MRI was superior in detection of small ARWMC, whereas larger lesions were detected equally well with both CT and MRI. In the parieto-occipital and infratentorial areas, MRI detected significantly more ARWMC than did CT. In the frontal area and basal ganglia, no differences between modalities were found. When a fluid-attenuated inversion recovery sequence was used, MRI detected significantly more lesions than CT in frontal and parieto-occipital areas. No differences were found in basal ganglia and infratentorial areas. CONCLUSIONS: We present a new ARWMC scale applicable to both CT and MRI that has almost equal sensitivity, except for certain regions. The interrater reliability was slightly better for MRI, as was the detectability of small lesions.

Aging↗

Lipoprotein(a) and cognitive performances in an elderly white population: Cross-sectional and follow-up data.

BACKGROUND AND PURPOSE: Elevated lipoprotein(a) [Lp(a)] serum levels have been associated with an increased risk of vascular diseases, and preliminary observations suggest that they are a risk factor for vascular dementia. The relationship between Lp(a) levels and cognitive performances in the general population has never been investigated. Our aim was to evaluate the effect of elevated Lp(a) levels on cognitive functions in the elderly. METHODS: Cognitive performances were assessed by means of the Mini-Mental State Examination (MMSE), the Babcock Short Story, and the Matrix Test in a population sample of 435 white subjects aged 65 to 84 years who were evaluated at baseline and after 3 years. Lp(a) levels were determined by ELISA. RESULTS: No statistically significant difference was found in neuropsychological test scores between subjects with and without elevated Lp(a) levels, although subjects with elevated Lp(a) levels had slightly better cognitive performances. This difference reached a statistical significance level only in a subscore of the Matrix Test (number of correct responses) when adjusted for age, sex, education, smoking, and history of stroke. At follow-up, no statistically significant difference was found in cognitive performances between subjects with and without elevated Lp(a) serum levels in either univariate or multivariate analyses. Subjects with and without elevated Lp(a) showed a similar decline rate during follow-up. CONCLUSIONS: In this sample of elderly white subjects, elevated Lp(a) levels were not associated with poorer cognitive performances or with an increased rate of cognitive decline. Elevated Lp(a) levels do not appear to be a major determinant of cognitive impairment in the elderly.

Aged↗

Efficacy and safety of nimodipine in subcortical vascular dementia: a subgroup analysis of the Scandinavian Multi-Infarct Dementia Trial.

In Western countries, vascular dementia (VaD) is the most common form of cognitive deterioration after Alzheimer's disease. Therapeutic trials in VaD have so far failed to yield satisfactory results. One explanation of this failure may be the etiological and clinical heterogeneity of the included patients. Patients with subcortical VaD, defined on a clinical and radiological basis, may constitute a more homogeneous group. Thus, we conducted a post-hoc subgroup analysis of the Scandinavian Multi-Infarct Dementia Trial that evaluated the efficacy and safety of oral nimodipine administered for 6 months in 259 patients. The original patients sample was divided on the basis of head CT in those with subcortical VaD (n=92, 45 nimodipine, 47 placebo) and those with multi-infarct dementia (n=167, 83 nimodipine, 84 placebo). While in the total trial population a treatment effect could not be proved, in this subgroup analysis, the subcortical VaD patients treated with nimodipine performed better on the majority of neuropsychological tests and functional scales in comparison with patients on placebo. No trend could be evidenced in the multi-infarct dementia patients. Treatment efficacy was in particular suggested for the Zahlen-Verbindungs-Test, Fuld-Object-Memory Evaluation, Word Fluency, and for the Instrumental Activities of Daily Living scale. The results did not reach statistical significance in this small sample. Our study preliminarily indicates that nimodipine could be effective in patients with small vessel subcortical VaD and supports the rationale for a further controlled and adequately powered trial to test nimodipine in patients with subcortical VaD.

Activities of Daily Living↗

The Scandinavian Multi-Infarct Dementia Trial: a double-blind, placebo-controlled trial on nimodipine in multi-infarct dementia.

Vascular dementia is a major cause of mental and physical disability in Western countries. Treatment of vascular dementia is currently based on the recognition and control of vascular risk factors, while specific drugs have not been approved yet. The aim of the present multinational, double-blind, placebo-controlled study was to evaluate the safety and efficacy of nimodipine administered for as long as 26 weeks in improving cognition or slowing cognitive deterioration in patients defined as having multi-infarct dementia (DSM-III-R criteria). Two hundred and fifty-nine patients were included (128 nimodipine, 131 placebo), and 251 were available for the intention-to-treat analysis. No significant difference between drug-treated and placebo patients was noted on the Gottfries-Brâne-Steen scale score (primary efficacy criterion), the remaining neuropsychological tests (Zahlen-Verbindungs-Test, Fuld-Object-Memory Evaluation, Word Fluency Test, Digit Span, Mini-Mental State Examination), and the functional scales (index of Activity of Daily Living, Instrumental Activity of Daily Living, Rapid Disability Scale, Clinical Dementia Rating), although the majority of changes were in favor of the active drug group. A lower incidence of cerebrovascular and cardiac events was observed in the nimodipine-treated patients in comparison with the placebo group. This study failed to show a significant effect of nimodipine on cognitive, social or global assessments in patients defined as affected by multi-infarct dementia according to the DSM-III-R criteria. A post-hoc analysis (presented in an accompanying paper) suggests that nimodipine may have a favorable effect in the subgroup of patients defined as affected by subcortical (small vessel) vascular dementia.

Aged↗

White matter changes: the clinical consequences in the aging population.

Neuroimaging changes in the cerebral subcortical white matter (WMC) are recognized with the highest frequency in elderly subjects, particularly in those with vascular risk factors. WMC have been consistently reported to be associated with global or selective cognitive deficits, depression, motor and gait impairment. All these deficits are main contributors to disability in the elderly. Moreover, subjects with WMC have an increased risk of cardiovascular events and death from vascular causes. Functional status in subjects with WMC is variable, from normal to severely (physically or cognitively) disable. The association of WMC with age and with some of the clinical manifestations of aging suggests that WMC could be one of the age-related processes involved in the transition to disability in the elderly. Large cohorts of patients with WMC of different severity and detailed follow-up observation may help elucidating this issue. If WMC are shown to have an impact on disability in the aged population, efforts could be made to prevent WMC and WMC-related motor and cognitive deficits, and to identify measures aimed to halt or slow their progression.

Aged↗

Research criteria for subcortical vascular dementia in clinical trials.

Vascular dementia (VaD) incorporate different vascular mechanisms and changes in the brain, and have different causes and clinical manifestations. Variation in defining the cognitive syndrome, in vascular etiologies, and allowable brain changes in current clinical definitions of VaD have resulted in variable estimates of prevalence, of groups of subjects, and of the types and distribution of putative causal brain lesions. Thus current criteria for VaD select an etiologically and clinically heterogeneous group. This definitional heterogeneity may have been a factor in "negative" clinical trials. An alternative for clinical drug trials is to focus on a more homogeneous group, such as those with subcortical (ischemic) VaD. This designation incorporates two small vessel clinical entities "Binswanger's disease" and "the lacunar state". It comprises small vessel disease as the primary vascular etiology, lacunar infarct(s) and ischaemic white matter lesions as the primary type of brain lesions, and subcortical location as the primary location of lesions. The subcortical clinical syndrome is the primary clinical manifestation, a definition which still requires additional empirical data. We expect that subcortical VaD show a more predictable clinical picture, natural history, outcome, and treatment responses. We propose a modification of the NINDS-AIREN criteria as a new research criteria for subcortical VaD.

Clinical Trials as Topic↗

Transient global amnesia: a review emphasizing pathogenic aspects.

The transitory memory disturbance known as transient global amnesia (TGA) remains an enigma from a pathogenic point of view. In spite of its typical benign prognosis, TGA is a frightening experience for patients and their relatives. Moreover, a TGA episode usually leads to extensive investigation of patients in search of organic alterations that might be responsible for the event. Finally, TGA generates queries about therapeutic choices. In this review, we critically re-evaluate the evidence in support of and against the three main pathogenic hypotheses (i.e. ischemia, seizure discharge, and migraine), and we conclude that none of these appears completely convincing. Given the good prognosis and the lack of association with organic and instrumental abnormalities, we advance the hypothesis that TGA may be related to psychological disturbances causing transient alteration in brain metabolism and, consequently, amnesia. Our conclusion has relevant consequences in the evaluation of patients with TGA.

Age Factors↗

Limitations of clinical criteria for the diagnosis of vascular dementia in clinical trials. Is a focus on subcortical vascular dementia a solution?

Vascular dementia (VaD) includes several different vascular mechanisms and changes in the brain, and has different causes and clinical manifestations. Critical to its conceptualization and diagnosis are definitions of the cognitive syndrome, vascular etiologies, and changes in the brain. Variation in these has resulted in different definitions of VaD, estimates of prevalence, and types and distribution of brain lesions. This definitional heterogeneity may have been a factor for negative results in prior clinical trials on VaD. We propose that the division of VaD into subtypes can identify a more homogeneous group of patients for drug trials. A so-called "subcortical" VaD could incorporate two old clinical entities "Binswanger's disease" and "the lacunar state." Small vessel disease is the primary vascular etiology, lacunar infarcts and ischemic white matter lesions are the primary type of brain lesions, the subcortical areas and frontal connections are the primary location of lesions, and a subcortical syndrome as the primary clinical manifestation. The clinical syndromes are likely more variable, and urgently need to be categorized. Selection of these patients for clinical trials could mainly be based on brain imaging features, where the essential changes and the main aspects of the lesions include extensive ischemic white matter lesions and lacunar infarcts in the deep gray and white matter structures. Subcortical VaD is expected to show a more predictable clinical picture, natural history, outcomes, and treatment responses.

Brain↗

Subcortical vascular dementia as a specific target for clinical trials.

Vascular cognitive impairment is considered the second most common form of mental deterioration in the elderly after degenerative dementias. Therapeutic approaches to vascular dementia mainly rely on the identification and treatment of risk factors. A number of drugs have also been tested with the aim of improving or slowing cognitive decline in patients affected by various forms of cerebrovascular disease. Most of these trials have yielded unsatisfactory results. We hypothesize that some of these failures depend on the inclusion of patients with pathophysiologically heterogeneous types of vascular cognitive decline. In this paper, we review some of the most important trials that tested drugs with a preventive or therapeutic aim in vascular dementia patients. Preliminary results suggest that some beneficial effects can be detected only when the trial population is homogeneous on a clinical and pathogenic basis. In particular, subcortical vascular dementia, a form with a rather univocal clinical, radiological, and pathological picture, seems a particularly apt choice as a target for future clinical studies. At present, only one therapeutic trial is being conducted in patients affected by this specific form of vascular dementia.

Aged↗

White matter changes in stroke patients. Relationship with stroke subtype and outcome.

White matter changes (WMC), detected by imaging techniques, are frequent in stroke patients. The aim of the study was to determine how WMC relate to stroke subtypes and to stroke outcome. We made a systematic Medline search for articles appearing with two of the following key words: either 'WMC or white matter lesions or leukoencephalopathy or leukoaraiosis' and 'stroke or cerebral infarct or cerebral hemorrhage or cerebrovascular disease or transient ischemic attack (TIA)'. WMC, as defined radiologically, are present in up to 44% of patients with stroke or TIA and in 50% of patients with vascular dementia. WMC are more frequent in patients with lacunar infarcts, deep intracerebral hemorrhages, cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy and cerebral amyloid angiopathy. After an acute ischemic stroke, WMC are associated with a higher risk of death or dependency, recurrent stroke of any type, cerebral bleeding under anticoagulation, myocardial infarction, and poststroke dementia. WMC in stroke patients are often associated with small-vessel disease and lead to a higher risk of death, and poor cardiac and neurological outcome. However, several questions remain open and need further investigations.

Age Factors↗

Striatal outflow of adenosine, excitatory amino acids, gamma-aminobutyric acid, and taurine in awake freely moving rats after middle cerebral artery occlusion: correlations with neurological deficit and histopathological damage.

BACKGROUND AND PURPOSE: While a number of studies have investigated transmitter outflow in anesthetized animals after middle cerebral artery occlusion (MCAO) performed by craniectomy, studies have never been performed after MCAO induced by intraluminal filament. In addition, it has been reported that after MCAO, infarct volume correlates with functional outcome and with transmitter outflow, although there are no studies that demonstrate a direct correlation between transmitter outflow and functional outcome. The purpose of the present study was to assess excitatory amino acids, gamma-aminobutyric acid, taurine, and adenosine outflow in awake rats after intraluminal MCAO and to determine whether, in the same animal, outflow was correlated with neurological outcome and histological damage. METHODS: Vertical microdialysis probes were placed in the striatum of male Wistar rats. After 24 hours, permanent MCAO was induced by the intraluminal suture technique. The transmitter concentrations in the dialysate were determined by high-performance liquid chromatography. Twenty-four hours after MCAO, neurological deficit and histological outcome were evaluated. RESULTS: All transmitters significantly increased after MCAO. Twenty-four hours after MCAO, the rats showed a severe sensorimotor deficit and massive ischemic damage in the striatum and in the cortex (9+/-2% and 25+/-6% of hemispheric volume, respectively). Significant correlations were found between the efflux of all transmitters, neurological score, and striatal infarct volume. CONCLUSIONS: In this study, for the first time, amino acid and adenosine extracellular concentrations during MCAO by the intraluminal suture technique were determined in awake and freely moving rats, and a significant correlation was found between transmitter outflow and neurological deficit. The evaluation of neurological deficit, histological damage, and transmitter outflow in the same animal may represent a useful approach for studying neuroprotective properties of new drugs/agents against focal ischemia.

Adenosine↗

White matter changes on CT and MRI: an overview of visual rating scales. European Task Force on Age-Related White Matter Changes.

Since the recognition of white matter changes on CT (leukoaraiosis), rating scales for the location and severity of white matter changes have been developed, mainly for research purposes, to investigate factors such as the relation with cognition, risk factors, and pathology. The main purpose of rating scales is to provide scores that can be used in statistical analyses. The development of the NINDS-AIREN criteria for vascular dementia have introduced a new application for these rating scales in investigating and delineating the amount of white matter changes on CT/MRI sufficient to fulfill the criteria. Furthermore, in Alzheimer's disease, recognition of white matter changes may serve to delineate homogeneous groups and help to identify patients with different symptomatology. We reviewed the existing rating scales for CT and MRI and judged their properties and reliability. The ideal rating scale does not yet exist, but different rating scales may serve different purposes, for which some recommendations are made.

Brain Ischemia↗

Experimental approaches to white matter disease.

The study of the cerebral white matter (WM) in experimental models of hypoxia and ischemia has been for a long time neglected, the interest of investigators being focused on the response of the neuronal population. The increasing frequency with which modern neuroimaging techniques disclose alterations of the WM of possibly vascular origin has called some attention to other components of the cerebral parenchyma, namely oligodendrocytes and myelinated axons. The studies here reviewed show that it is possible to investigate the WM alterations in appropriate models of cerebral ischemia. In rodents, chronic ischemia produces extracellular fluid accumulation in the WM, moderate loss of oligodendroglial cells and reactive astrogliosis, all of which contribute to the rarefied appearance under the light microscope. These changes are similar to those found in many patients with leukoencephalopathy of possibly vascular origin. The results of experiments using a rat model of focal brain ischemia show that oligodendrocytes and myelinated fibers are extremely sensitive to ischemic insults with alterations of the subcortical WM detected at a very early time. Opportune modifications of these animal models may represent a valuable source of information on the pathogenesis and pathophysiology of human vascular disease of the WM.

Animals↗

Cytokines and cell adhesion molecules in cerebral ischemia: experimental bases and therapeutic perspectives.

The possibility of reopening an occluded cerebral artery by means of thrombolysis has renewed interest in a number of the several mechanisms that are active during acute cerebral ischemia. Over recent years, it has become apparent that leukocytes play a central role not only during the healing stage of brain infarction but also during the early phases of cerebral ischemia, when it is postulated that these cells produce harmful effects, particularly in the presence of reperfusion. This review is based on the critical analysis of more than 150 publications dealing with the role of leukocytes and some inflammatory mediators (cytokines, chemokines, and adhesion molecules) in cerebral ischemia. Animal studies indicate that leukocyte involvement is promoted by a variety of inflammatory molecules produced immediately after the onset of cerebral ischemia. Considerable experimental evidence suggests that these mediators play a key role in the progression from ischemia to irreversible injury (ie, cellular death and necrosis). However, the precise role of each molecule alone remains to be further elucidated as well as in relation to the complex network existing among different mediators. Progress in our understanding of the inflammatory mechanisms operating in cerebral ischemia has enabled the testing of new compounds with promising results in animals; in contrast, one recent controlled trial of an anti-leukocyte molecule in acute stroke patients showed negative results. This discrepancy may derive in part from our incomplete understanding of the complexity of the inflammatory mechanisms involved in cerebral ischemia. Our analysis suggests that until sufficient knowledge of the underlying disease mechanisms is acquired, more care should be taken when testing new and potentially efficacious drugs in stroke patients.

Animals↗