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Biomedical subjects

R H Perry

Publications and source records attributed to R H Perry.

At least 19 recordsLinked to original sources

Beta-amyloidosis in normal aging and transmitter signaling in human temporal lobe.

Interactions between abnormal amyloid precursor protein metabolism and cholinergic dysfunction are increasingly apparent. Both of these major features of Alzheimer's disease occur in restricted loci in normal aging--a potential model for early Alzheimer type pathology. Entorhinal cortex is particularly vulnerable to beta-amyloidosis and compared with other cortical areas is remarkable for the relatively high density of nicotinic (3H-nicotine) but not other cholinergic or glutamate receptor binding. With increasing age, post-maturity, there is a persistent decline in nicotinic receptor binding in entorhinal cortex whereas muscarinic M1 and non-M1, glutamate NMDA and non-NMDA receptors are spared. Normal elderly individuals, distinguished by the absence of beta A4 immunoreactive plaques in this area, are differentiated from those with plaques by higher nicotine binding. Amongst individuals with an established history of smoking tobacco, nicotinic receptor binding and hippocampal choline acetyltransferase were elevated compared with non-smokers and preliminary evidence indicates a reduced density of cortical plaques. These findings are consistent with the hypothesis that down regulation of the nicotinic cholinergic receptor--a ligand gated calcium channel known to control the expression of neurotrophins--plays a role in the evolution of Alzheimer-type pathology.

Adolescent

Acetylcholine and hallucinations: disease-related compared to drug-induced alterations in human consciousness.

Newly proposed criteria for Lewy body dementia include alterations in consciousness. Lewy body dementia is also associated with a disturbance in cholinergic transmission; neocortical cholinergic deficits in this disorder are more extensive than in Alzheimer's disease and are correlated with symptoms commonly associated with delirium, such as visual hallucinations. The traditional view that derangements of the basal forebrain cholinergic system in Alzheimer's disease relate specifically to memory impairment is assessed in terms of a more general role for cortical acetylcholine in consciousness. This extends the concept that cortical acetylcholine enhances neuronal signal to noise ratio. It is suggested that muscarinic receptor activation in the cortex is involved in confining the contents of the discrete self-reported conscious "stream." In the absence of cortical acetylcholine, currently irrelevant intrinsic and sensory information, which is constantly processed in parallel at the subconscious level, enters conscious awareness. This is consistent with the ability of anti-muscarinic drugs administered medically, recreationally, or ritualistically to induce visual hallucinations and other perceptual disturbances. The hypothesis is explored through comparisons between muscarinic and nicotinic receptor psychopharmacology and between the pathology of the basal forebrain as opposed to pedunculopontine cholinergic systems in different diseases of the human brain affecting consciousness and cognition. The paradoxical effects of muscarinic receptor blockade to induce hallucinations and of REM sleep-associated cholinergic activation of the thalamus to induce dreaming may be related to the differential distribution and activity of muscarinic receptor subtypes or to the differing responses of intrinsic GABA neurons in cortex and thalamus.

Acetylcholine

Comparison of cathepsin protease activities in brain tissue from normal cases and cases with Alzheimer's disease, Lewy body dementia, Parkinson's disease and Huntington's disease.

Recent evidence, based upon immunocytochemical and histochemical analysis of brain cortical tissue from alzheimer's disease patients, has suggested that altered activity and/or distribution of the lysosomal proteases cathepsins B and D may be implicated in the abnormal protein processing pathway resulting in formation of the neurotoxic amyloid A4 peptide, characteristic of this neurodegenerative disorder. We have therefore compared, via biochemical assay techniques using conventional or specially synthesised (corresponding to protein cleavage points of relevant to A4 peptide formation) fluorogenic substrates, the levels of activity of the lysosomal proteases cathepsins B, D, H and L, and dipeptidyl aminopeptidases I and II in frontal cortex (grey/white matter) from control and Alzheimer's disease patients. For comparative purposes, activity levels of the above enzymes were also determined in frontal cortex tissue from cases with Lewy body dementia and Parkinson's disease, and in caudate tissue from control and Huntington's disease cases. There was no significant difference in activity for any protease types in tissue from control cases and cases with Alzheimer's disease, Lewy body dementia or Parkinson's disease, with the exception of reduced dipeptidyl aminopeptidase II activity in Lewy body dementia and Parkinson's cases. We have therefore been unable to confirm a potential role for lysosomal cathepsins in the characteristic neurodegeneration associated with Alzheimer's disease; however the finding of significant increases in activity of dipeptidyl aminopeptidase II, cathepsin H and cathepsin D specifically in cases with Huntington's disease is of particular note. We therefore suggest the potential role of the latter enzymes in the pathogenesis of Huntington's disease requires further investigation.

Aged

Alteration in nicotine binding sites in Parkinson's disease, Lewy body dementia and Alzheimer's disease: possible index of early neuropathology.

High-affinity nicotine binding, considered to primarily reflect the presence of CNS alpha 4 beta 2 nicotinic receptor subunits, was examined autoradiographically in brain regions most severely affected by Alzheimer and Parkinson types of pathology. In the midbrain, the high density of binding associated with the pars compacta of the substantia nigra was extensively reduced (65-75%, particularly in the lateral portion) in both Lewy body dementia and Parkinson's disease. Since loss of dopaminergic neurons in Lewy body dementia was only moderate (40%), loss or down-regulation of the nicotinic receptor may precede degeneration of dopaminergic neurons in this region. In the dorsolateral tegmentum, where diffuse cholinergic perikarya are located, nicotine binding was highly significantly decreased in both Lewy body dementia and Parkinson's disease with almost no overlap between the normal and disease groups, indicative of a major pathological involvement in or around the pedunculopontine cholinergic neurons. In the hippocampus, binding was decreased around the granular layer in Lewy body dementia and Alzheimer's disease, although unchanged in the stratum lacunosum moleculare, where binding was relatively higher. Dense bands of receptor binding in the presubiculum and parahippocampal gyrus--areas of highest binding in human cortex--were diminished in Alzheimer's disease but not Lewy body dementia. In temporal neocortex there were reductions in Alzheimer's disease throughout the cortical layers but in Lewy body dementia only in lower layers, in which Lewy bodies are concentrated. Abnormalities of the nicotinic receptor in the diseases examined appear to be closely associated with primary histopathological changes: dopaminergic cell loss in Parkinson's disease and Lewy body dementia, amyloid plaques and tangles in subicular and entorhinal areas in Alzheimer's disease. Loss or down-regulation of the receptor may precede neurodegeneration.

Acetylcholinesterase

Prognostic significance of the c-erbB-2 oncogene product in childhood medulloblastoma.

The expression and prognostic significance of the c-erbB-2 oncogene product was studied in 55 cases of childhood medulloblastoma. Forty-six of the 55 tumours (83.6%) expressed the c-erbB-2 product. The percentage of tumour cells expressing the c-erbB-2 product proved to be a significant indicator of patient outcome when analysed as both a categorical and a continuous variable. As a categorical variable, patients with more than 50% positive tumour cells had a significantly worse survival, with only 10% alive at 10 years vs 48% for those with less than 50% positive tumour cells (log rank P = 0.0049). To demonstrate that this observed prognostic significance was both independent and not a result of 'data-driven' categorisation, it was also entered into the Cox model as a continuous variable. Prognostic significance was retained in P = 0.038.

Adolescent

Experimental stroke and neuroprotection in the aging rat brain.

BACKGROUND AND PURPOSE: Experimental stroke research has for the most part incorporated the use of young animals despite the importance of aging in cerebrovascular disease in humans. We hypothesized that age-related reductions in the density and function of cortical N-methyl-D-aspartate (NMDA) receptors might limit neuroprotective potential in the elderly. In this study, a model of occlusive stroke in the aging rat brain has been developed and used to establish the effects of age on cerebral infarction and to evaluate the scope for protecting the aging brain during ischemia. METHODS: Focal cerebral ischemia was produced by thermocoagulation of the left middle cerebral artery in adult (11 to 17 months) and aged (28 to 36 months) male Wistar rats. Infarcts were assessed histologically with volumetric analysis of infarct size, hemodynamically by serial cerebral blood flow measurement using the hydrogen clearance technique, and by analysis of specific gravity as an index of brain edema. Neuroprotective potential was assessed using the competitive NMDA receptor antagonist 3-(2-carboxy piperazin-4-yl)propyl-1-phosphonate (D-CPPene). RESULTS: Aging was associated with a significant increase in infarct size, with a mean infarct volume of 40.5 +/- 2.6% of the hemisphere volume in aged rats compared with 30.9 +/- 0.7% in adult rats (P < .01). D-CPPene reduced the mean infarct volume to 33 +/- 1.8% and 20.7 +/- 3.2% in aged and adult rats, respectively (P < .05). Cerebral blood flow fell markedly after infarction, but thereafter D-CPPene-pretreated rats maintained higher cerebral blood flow than untreated animals throughout the duration of the experiment (22.8 +/- 3.2 and 30.1 +/- 5.5 mL.100 g-1.min-1 in treated aged and adult rats, respectively, compared with 11.3 +/- 2.7 and 16.5 +/- 3.2 mL.100 g-1.min-1 in untreated aged and adult groups, 90 minutes after infarction [P < .05]). Pretreatment also reduced cortical edema; mean cortical specific gravity 4 hours after infarction was 1.0381 +/- 0.0013 in untreated aged rats and 1.0391 +/- 0.0014 in untreated adults compared with 1.0458 +/- 0.0031 in treated aged rats and 1.0442 +/- 0.0014 in treated adult rats (P < .05). CONCLUSIONS: Under similar experimental conditions, there was an age-related increase in cerebral infarct size. However, NMDA receptor antagonism was neuroprotective in the aging brain and resulted in a significant reduction in cerebral ischemic damage, less cortical edema, and preservation of cerebral blood flow.

Aging

Gender differences in the phenotypic expression of Alzheimer's disease in Down's syndrome (trisomy 21).

Twenty-eight individuals with typical Down's syndrome (DS) phenotype (17 males and 11 females; age range: 10-74 years) were investigated for gender differences in the phenotypic expression of Alzheimer-type pathology (ATP). Quantitative neuropathology was performed in the 4 neocortical lobes of the right hemisphere, by counting senile plaques (SP), and neurofibrillary tangles (NFT). ATP was present in 25 middle-aged (> 40 years) individuals (16 males and 9 females). Females had significantly higher (p = 0.03) mean neocortical NFT densities (36.6 per mm2; s.e.m. +/- 6.6) than males (17.9 per mm2; s.e.m. +/- 4.7). None of the females had NFT densities below 10 per mm2, compared with 6 males in whom NFT were either absent or seen in very low densities (< 4 per mm2). Assessment of SP densities in the same cortical regions showed non-significant differences in females (42.4 per mm2; s.e.m. +/- 5.1) compared with males (33.6 per mm2; s.e.m. +/- 2.1). There was clinical evidence of dementia in all the female (8/8) individuals who were prospectively assessed, compared with only 54% (7/13) of males. The male individuals without clinical dementia had absent or low neocortical NFT densities regardless of high SP densities. Female DS cases (mean age: 48.8 years; s.e.m. +/- 1.9) had an earlier onset of dementia than males (mean age: 53.6 years; s.e.m. +/- 1.3; p = 0.05). Female middle-aged DS individuals have an earlier onset, and a more severe form of AD which correlates with higher neocortical NFT rather than SP density.

Adenosine Triphosphate

A detailed anatomical analysis of neurotransmitter receptors in the putamen and caudate in Parkinson's disease and Alzheimer's disease.

Autoradiography allows precise anatomical matching as well as quantification of receptor density and is an ideal procedure to investigate neurotransmitter receptor distribution. Post mortem tissue from the caudate and putamen was investigated in cases of Parkinson's disease, Alzheimer's disease and age matched controls. Autoradiography was used to determine benzodiazepine, muscarinic cholinergic, D1 and D2 dopamine receptor density in these regions. This work shows that within the control group there is significantly higher benzodiazepine receptor density in the medial portion of the caudate and putamen when compared to lateral region. In the caudate nucleus there is a 15% (not significant) decrease of these receptors from rostral to caudal, no such decrease was present in the putamen. Muscarinic and both D1 and D2 dopamine receptors were evenly distributed in the control cases. Significant abnormalities in Parkinson's disease included loss of benzodiazepine receptors in the mid and caudal portions of the putamen and a decrease in muscarinic receptor density in the rostral putamen in Parkinson's disease.

Alzheimer Disease

The effect of age on cerebral oedema, cerebral infarction and neuroprotective potential in experimental occlusive stroke.

A model of occlusive stroke in the aging brain has been developed and used to evaluate the effects of age upon cerebral infarction, cerebral oedema and neuroprotective potential. Focal ischaemia following left middle cerebral artery occlusion has been compared in aged (30 month) and adult (< 17 month) rats, with histological assessment of infarct volume and analysis of specific gravity as an index of cerebral oedema. Aging was associated with a significant increase in cerebral infarct size. The mean infarct volume in aged rats was 40.5% +/- 2.6% of the hemisphere volume, compared to 30.9% +/- 0.7% in adults (p < 0.01). Pre-treatment with the competitive N-Methyl-D-Aspartate (NMDA) receptor antagonist 3-(2-Carboxy Piperazin-4-yl)Propyl-l-Phosphonate (D-CPP-ene) reduced infarct volumes in both age groups to 33.0% +/- 1.8% and 20.7% +/- 3.2% in aged and adult animals, respectively (p < 0.05). There was significantly less oedema of the cerebral cortex in D-CPP-ene pre-treated rats; mean cortical specific gravity 4 hours post-infarction was 1.0381 +/- 0.0013 in untreated aged rats and 1.0391 +/- 0.0014 in untreated adults, compared to 1.0458 +/- 0.0031 in treated aged rats and 1.0442 +/- 0.0014 in treated adults (p < 0.05). At 24 hours post-infarction, D-CPP-ene pre-treated aged rats had a mean cortical specific gravity of 1.0403 +/- 0.0006 compared to 1.0361 +/- 0.0014 in untreated aged animals (p < 0.05). This study has demonstrated an age-related increase in cerebral infarct size, but has shown that the aging brain is amenable to neuroprotection by NMDA receptor antagonism.

Age Factors

The clinical diagnosis and misdiagnosis of senile dementia of Lewy body type (SDLT).

BACKGROUND: Current clinical classifications do not contain specific diagnostic categories for patients with senile dementia of the Lewy body type (SDLT), recently proposed as the second commonest neuropathological cause of dementia in the elderly. This study determines how existing clinical diagnosis systems label SDLT patients and suggests how such patients may be identified. METHOD: A range of clinical diagnostic criteria for dementia were applied to case notes of autopsy-confirmed SDLT (n = 20), dementia of Alzheimer type (DAT; n = 21) and multi-infarct dementia (MID; n = 9) patients who had received psychogeriatric assessment. The predictive validity of each set of clinical criteria was calculated against the external criterion of neuropathological diagnosis. RESULTS: Many SDLT patients erroneously met criteria for MID (35% with Hachinski scores > or = 7) or for DAT (15% by NINCDS 'probable AD', 35% by DSM-III-R DAT and 50% by NINCDS 'possible AD'). Up to 85% of SDLT cases could be correctly identified using recently published specific criteria. CONCLUSIONS: SDLT usually has a discernible clinical syndrome and existing clinical classifications may need revision to diagnose correctly such patients.

Aged

An evaluation of the predictive validity and inter-rater reliability of clinical diagnostic criteria for senile dementia of Lewy body type.

Several recent autopsy studies suggest that senile dementia of Lewy body type (SDLT) may be the second most common neuropathologic cause of dementia in the elderly, accounting for 7 to 30% of all cases. Operational criteria for the antemortem clinical diagnosis of SDLT have already been proposed by our group. The performance of these is now examined by randomizing the case notes from a new series of SDLT, Alzheimer, and multi-infarct dementia patients for psychiatric assessment by four raters of varying clinical experience and blind to pathologic diagnosis. Using the SDLT criteria, the two most experienced raters agreed in 94% of cases (kappa = 0.87), with the least experienced rater agreeing in 78% (kappa = 0.50). Diagnostic specificity for SDLT was uniformly high (90.0 to 97.0%), with a mean sensitivity of detection of 74%, and was greater by the experienced (90.0%) than the least experienced (55%) clinician. The antemortem identification of SDLT patients can therefore be achieved with a high degree of diagnostic specificity using such operationalized criteria, although there remains a minority of patients who present with either "typical" Alzheimer-type symptoms or with paranoid or delusional symptoms in the absence of substantial cognitive impairment. Sensitivity to neuroleptics may be a useful diagnostic pointer in these patients.

Aged

Influence of apolipoprotein E genotype on senile dementia of the Alzheimer and Lewy body types. Significance for etiological theories of Alzheimer's disease.

Alzheimer's disease (AD) is associated with an increased frequency of the apolipoprotein E type epsilon 4 allele. To address both the disease and the allele specificity of this association, we have examined the apolipoprotein E allele distribution in 255 elderly persons including those with autopsy-confirmed AD, senile dementia of the Lewy body type (SDLT), vascular dementia, Parkinson's disease (PD) or Huntington's disease and in nondemented controls either with or without coronary complications. The epsilon 4 allele frequency was increased in SDLT (0.365) and AD (0.328) as compared with controls (0.147), PD (0.098), or Huntington's chorea (0.171). Coronary disease and vascular dementia were associated with marginally higher epsilon 4 allele frequencies than in controls. In PD, amyloid beta-protein accumulated to a greater extent in those cases possessing an epsilon 4 allele than in those without. Those PD cases with dementia were not distinguished from either controls or PD cases without dementia, whether tested biochemically or by apolipoprotein E genotype. It is the comparison of the results in AD and SDLT that yielded the most significant findings. There was a 1.8-fold excess of amyloid beta-protein in AD as compared with controls, and the levels in SDLT were intermediate between those in AD and controls. In contrast, AD was discriminated from both controls and SDLT by the substantial accumulation of paired helical filament tau and phosphorylated tau (both increased more than 20-fold as compared with controls). SDLT was nevertheless characterized by an increased epsilon 4 allele frequency in the absence of significant tau pathology (at least 10-fold less than that in AD). These findings indicate that tau processing is more specifically associated with AD than is amyloid beta-protein accumulation and that presence of the epsilon 4 allele is not an etiological factor that accounts for tau pathology.

Aged

Transmitters in the developing and senescent human brain.

During development and throughout adult life, modeling of CNS structure and function occurs as a result of experience. Transmitters play a central role in this mechanism both directly and indirectly (through control of neurotrophin expression) by governing synapse formation, elimination or consolidation. Cholinergic and excitatory amino acid transmitter system activities have been examined in postmortem human brain obtained from normal individuals varying from the prenatal period to old age. Whereas glutamate NMDA receptor binding (measured using MK801) was not substantially altered across the postnatal period, dramatic and differing patterns of choline acetyltransferase (ChAT) activity were evident. Thus, in the cerebellum, ChAT activity was 10-fold higher in fetal compared to adult individuals whereas in the hippocampus there was little or no activity in the fetus and activity rose postnatally to reach a maximum in middle age and then declined to half that level by the tenth decade. Acetylcholinesterase (AChE) histochemical reactivity paralleled the developmental pattern for ChAT in the hippocampus and adjacent cortex with respect to fiber reactivity. These findings indicate that cholinergic synaptic plasticity may be restricted to the prenatal period in cerebellum but occur in both the postnatal period and throughout adult life in the hippocampus and cortex, a concept consistent with the temporal and regional expression of cholinoneurotrophins (NGF and related peptides). Vulnerability of the hippocampus and cortex to age-related pathology such as beta-amyloidosis and neuritic plaque formation may relate to the extended period of cholinergic synaptic sculpting in these areas.

Adult

Regional patterns of cholinergic and glutamate activity in the developing and aging human brain.

The levels of choline acetyltransferase (ChAT) and the binding activity of N-methyl-D-aspartate (NMDA) and non-NMDA receptors have been measured in the hippocampus, entorhinal cortex, frontal cortex and cerebellum, in a series of human brains from 24 weeks gestation to 100 years. The patterns of ChAT and glutamate receptor activity during aging and development were strikingly different in the different brain areas. In the hippocampus and associated cortex, ChAT activity did not reach a peak until middle age, when it almost immediately started to decline by 50-60% to the 10th decade, whereas in the frontal cortex ChAT peaked transiently in the infant and then stayed constant during aging. In the cerebellum ChAT activity was very high in the foetus and fell in the neonate to maintain a constant level more in line with the concentrations found in the other brain areas through the rest of life. The high levels of ChAT in the foetal cerebellum were not associated with high acetylcholinesterase (AChE) content, which tended to increase during development, and was present initially in Purkinje cells (foetus and neonate) and the molecular layer in the adult. In the hippocampus and entorhinal cortex, autoradiographic [3H]MK-801 binding was relatively constant throughout life, however, [3H]CNQX binding rose from the perinatal period up to a peak in the 1st or 2nd decade and then tended to fall with age. In the cerebellum, autoradiographic binding of both ligands rose from the foetal period to reach a plateau by the age of 10 years and there was no apparent further change during aging. These data on cholinergic and glutamatergic phenotypic changes during development and senescence reflect marked variations in regional plasticity and aging within and between the two transmitter systems and are likely to contribute to our understanding of their role in the different brain areas investigated.

6-Cyano-7-nitroquinoxaline-2,3-dione

Autoradiographic comparison of the distribution of [3H]MK801 and [3H]CNQX in the human cerebellum during development and aging.

The autoradiographic distribution of N-methyl-D-aspartate (NMDA) and D,L-a-amino-3-hydroxyl-5-methyl-4-isoxazoleproprionic acid/quisqualate (AMPA/QUIS) receptors was determined in cerebellum obtained at autopsy from 37 human individuals, aged from 24 weeks gestation to 95 years. [3H]MK801 was used to label the NMDA receptor and [3H]CNQX to label the AMPA/QUIS receptor. AMPA/QUIS receptors were concentrated in the cerebellar molecular layer, and NMDA receptors in the granular layer. Significant (3- to 4-fold) increases in binding were seen for both ligands from the fetal to neonatal periods in the molecular layer (CNQX) and in both molecular and granular layers (MK801). MK801 binding in the molecular layer continued to increase with age up to the tenth decade and together with binding in the granular layer, increased 2-fold between 10-40 years. The Purkinje cell layer was negative for MK801 binding until the 6-7th decade when it became positive. [3H]CNQX binding in the molecular layer increased significantly with age between the fetal period and the tenth decade, whereas in the granular layer binding increased from neonate to 40 years, but then decreased significantly from 60 years to the tenth decade. Lamination of the molecular and granular layers was absent during the fetal period and appeared with both ligands during the neonatal period. These marked differences in age-related expression of ligand binding sites in the granular layer during development and aging are of potential significance in relation both to selective vulnerability to ischemia, and synaptic plasticity and remodelling related to neuronal loss in senescence.

6-Cyano-7-nitroquinoxaline-2,3-dione