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Biomedical subjects

W A Van Gool

Publications and source records attributed to W A Van Gool.

10 recordsLinked to original sources

Neuroinflammation in Alzheimer's disease and prion disease.

Alzheimer's disease (AD) and prion disease are characterized neuropathologically by extracellular deposits of Abeta and PrP amyloid fibrils, respectively. In both disorders, these cerebral amyloid deposits are co-localized with a broad variety of inflammation-related proteins (complement factors, acute-phase protein, pro-inflammatory cytokines) and clusters of activated microglia. The present data suggest that the cerebral Abeta and PrP deposits are closely associated with a locally induced, non-immune-mediated chronic inflammatory response. Epidemiological studies indicate that polymorphisms of certain cytokines and acute-phase proteins, which are associated with Abeta plaques, are genetic risk factors for AD. Transgenic mice studies have established the role of amyloid associated acute-phase proteins in Alzheimer amyloid formation. In contrast to AD, there is a lack of evidence that cytokines and acute-phase proteins can influence disease progression in prion disease. Clinicopathological and neuroradiological studies have shown that activation of microglia is a relatively early pathogenetic event that precedes the process of neuropil destruction in AD patients. It has also been found that the onset of microglial activation coincided in mouse models of prion disease with the earliest changes in neuronal morphology, many weeks before neuronal loss and subsequent clinical signs of disease. In the present work, we review the similarities and differences between the involvement of inflammatory mechanisms in AD and prion disease. We also discuss the concept that the demonstration of a chronic inflammatory-like process relatively early in the pathological cascade of both diseases suggests potential therapeutic strategies to prevent or to retard these chronic neurodegenerative disorders.

Acute-Phase Proteins↗

Effect of hydroxychloroquine on progression of dementia in early Alzheimer's disease: an 18-month randomised, double-blind, placebo-controlled study.

BACKGROUND: Results of epidemiological studies, neuropathological observations, and in-vitro experiments all suggest that inflammatory mechanisms contribute to the destructive lesions in Alzheimer's disease. We aimed to establish the effect of the anti-inflammatory drug hydroxychloroquine on the progression of dementia. METHODS: We did a double-blind, parallel-group, multicentre trial in which we randomly assigned 168 patients with early Alzheimer's disease to hydroxychloroquine (200 or 400 mg dependent on bodyweight), or placebo for 18 months. Outcome measures were related to activities of daily living, cognitive function, and behavioural abnormalities. Analysis was by intention to treat. RESULTS: At 18 months, mean scores for the interview for deterioration in daily life in dementia in patients on hydroxychloroquine (22.6 [SD 11.4]) did not differ from those for patients on placebo (21.3 [10.5]). Also, mean scores on the cognitive subscale of the Alzheimer's disease assessment scale were closely similar in hydroxychloroquine (26.4 [14.9]) and placebo (25.7 [14.3]) treated patients, as were behavioural changes, measured by the revised memory and behavioural problems checklist (36.3 [12.0] and 34.2 [12.4], respectively). Explorative analyses did not suggest any specific subgroup that benefited from hydroxychloroquine. The frequency and nature of serious adverse events and side-effects were much the same in both groups. 155 (92%) patients completed all assessments over the entire study. INTERPRETATION: Anti-inflammatory treatment with hydroxychloroquine for 18 months does not slow the rate of decline in minimal or mild Alzheimer's disease.

Activities of Daily Living↗

A simple test of copying ability and sex define survival in patients with early Alzheimer's disease.

BACKGROUND: We studied whether heterogeneous profiles of cognitive function are relevant to survival in patients with early Alzheimer's disease. METHODS: CAMCOG subscales of cognitive function were used as predictors of survival, together with gender in 157 consecutively referred patients with early Alzheimer's disease. Statistical analysis was performed with Cox proportional hazards analysis and Kaplan-Meier survival curves. Survival rates were compared with those in the general population. RESULTS: Eighty patients (51%) died during the follow-up that extended to 5.7 years, with a median survival of 4.4 years after entry. Only the praxis subscore was statistically significant related to survival (P < 0.0001). Its predictive power was based on only two items, including copying ability for a spiral and a three-dimensional house, independent of age, sex, education, overall CAMCOG score, dementia severity and symptom duration. Kaplan-Meier curves for the combined score of these items (0, 1, or 2) showed three groups with significantly different survival rates for both men and women. Comparison of gender specific survival rates with data from the general population showed that excess mortality was statistically significant (P < 0.01) higher in men (51%) than in women (21%) after follow-up extending to 5 years. CONCLUSIONS: A simple test of copying ability defines subgroups of AD patients with large differences in survival rates. This suggests that parietal lobe impairment is an important predictor of mortality in AD. Also, the course of AD may be more benign in women than in men.

Age Distribution↗

Diagnosing Alzheimer's disease in elderly, mildly demented patients: the impact of routine single photon emission computed tomography.

Based on the observation of bilateral temporoparietal hypoperfusion in Alzheimer's disease (AD), single photon emission computed tomography (SPECT) is advocated by some as a powerful diagnostic tool in the evaluation of demented patients. We studied whether routine brain SPECT in elderly, mildly demented outpatients increases the a priori diagnostic sensitivity and specificity of a careful clinical examination. 99mTc-HMPAO SPECT imaging was performed in 110 patients for a first evaluation for dementia. A semiquantitative measure of temporoparietal (TP) perfusion was calculated as the ratio of the activity in the temporoparietal cortex to activity in the cerebellum. A diagnosis of probable AD according to the McKhann criteria was made in 68 patients (mean age of 79.3 years) based on the results of a clinical examination, ancillary investigations and a 6-month follow-up. TP perfusion was significantly lower in AD patients than in 18 age-matched, non-demented controls. However, at a specificity of 89%, sensitivity was only 43% for detecting probable AD. The clinicians judged that SPECT had contributed to the final diagnosis in only 8% of the demented patients investigated. Routine brain SPECT in elderly, mildly demented outpatients does not contribute substantially to diagnostic accuracy after a careful clinical examination using current diagnostic criteria. Clinical guidelines have to be developed for the use of SPECT in patients with (suspected) dementia.

Aged↗

Circadian rhythms and the suprachiasmatic nucleus in perinatal development, aging and Alzheimer's disease.

Circadian rhythms are already present in the fetus. At a certain stage of pre-natal hypothalamic development (around 30 weeks of gestation) the fetus becomes responsive to maternal circadian signals. Moreover, recent studies showed that the fetal biological clock is able to generate circadian rhythms, as exemplified by the rhythms of body temperature and heart rate of pre-term babies in the absence of maternal or environmental entrainment factors. Pre-term babies that are deprived of maternal entrainment and kept under constant environmental conditions (e.g., continuous light) in the neonatal intensive care unit run the risk of developing a biological clock dysfunctioning. However, the fact should be acknowledged that at least in mice the development of the circadian pacemaker (i.e., SCN) does not depend on environmental influences (Davis and Menaker, 1981), although other data suggest that severe disruption of the maternal circadian rhythm indeed abolishes the circadian rhythm of the fetal SCN (Shibata and Moore, 1988). During aging and in particular in AD circadian rhythms are disturbed. These disturbances include phase advance and reduced period and amplitude, as well as an increased intradaily variability and a decreased interdaily stability of the rhythm. Among the factors underlying these changes the loss of SCN neurons seems to play a central role. Other contributory factors may be reduced amount of light, degenerative changes in the visual system and the level of activity and decreased melatonin.

Aging↗

Effect of housing in an enriched environment on the size of the cerebral cortex in young and old rats.

To assess whether or not environmental changes may continue to affect measures relating to cortical size, the size of the cerebral cortex of young adult (7 to 8 months) and old (32 to 33 months) "standard" and "enriched" rats were compared. Enriched rats were housed in large cages during 10 weeks and had access to many different objects; age-matched controls remained in standard laboratory cages. Effects on the cerebral cortex were small; a significant increase in cortical thickness at one, albeit different, site in both age groups was observed. Significant correlations were not present between environmentally induced changes in sleep parameters (recorded in the same rats prior to the present experiment) and the small change in cortical size. The results do, however, support the hypothesis that a certain amount of plasticity of the cerebral cortex is preserved in old age.

Age Factors↗

Age-related changes in the sleep pattern of male adult rats.

In order to study whether or not the age-related changes in the sleep pattern observed in humans also occur in rats, young adult (4 months) and old (22 months) male Wistar rats were implanted with EEG and EMG electrodes for 24 h on-line registration by means of an automatic sleep-classifier. During the 12 h light period, the old rats as compared to the young adult ones showed a significant increase of the time spent awake and a decrease of active sleep time. Furthermore, the light-dark ratio was decreased in the old rats for wakefulness and active sleep. Off-line analysis of the EEG during quiet sleep and active sleep revealed no differences between the two age groups. These results suggest the existence of a number of considerable age-related changes in the sleep pattern of adult rats, which are comparable to those observed in humans.

Aging↗