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Biomedical subjects

N L Foster

Publications and source records attributed to N L Foster.

At least 19 recordsLinked to original sources

Novel insertional presenilin 1 mutation causing Alzheimer disease with spastic paraparesis.

A four-generation pedigree exhibiting early-onset autosomal dominant Alzheimer disease (AD) with spastic paraplegia, dystonia, and dysarthria due to a novel 6-nucleotide insertional mutation in exon 3 of the presenilin 1 gene (PS1) is described. Serial examinations, PET scans, and autopsy revealed that the mutation in this highly conserved portion of PS1 causes an aggressive dementia that maintains the usual regional hierarchy of disease pathology while extending abnormalities into more widespread brain areas than typically seen in AD.

Adult↗

Spontaneous intracranial hypotension causing reversible frontotemporal dementia.

Spontaneous intracranial hypotension (SIH) causes postural headache and neurologic symptoms owing to traction and brain compression. A 66-year-old man with chronic headache and progressive personality and behavioral changes typical of frontotemporal dementia was examined. He had MRI findings of SIH with low CSF pressure. His headache, dementia, and imaging abnormalities abated after treatment with prednisone. SIH can cause reversible frontotemporal dementia, and should be considered when dementia and behavioral changes are accompanied by headache.

Aged↗

Assessment of muscarinic receptor concentrations in aging and Alzheimer disease with [11C]NMPB and PET.

Cerebral cholinergic deficits have been described in Alzheimer disease (AD) and as a result of normal aging. At the present time, there are very limited options for the quantification of cholinergic receptors with in vivo imaging techniques such as PET. In the present study, we examined the feasibility of utilizing [11C]N-methyl-4-piperidyl benzilate (NMPB), a nonselective muscarinic receptor ligand, in the study of aging and neurodegenerative processes associated with cholinergic dysfunction. Based on prior data describing the accuracy of various kinetic methods, we examined the concentration of muscarinic receptors with [11C]NMPB and PET using two- and three-compartment kinetic models. Eighteen healthy subjects and six patients diagnosed with probable AD were studied. Pixel-by-pixel two-compartment model fits showed acceptable precision in the study of normal aging, with comparable results to those obtained with a more complex and less precise three-compartment model. Normal aging was associated with a reduction in muscarinic receptor binding in neocortical regions and thalamus. In AD patients, the three-compartment model appeared capable of dissociating changes in tracer transport from changes in receptor binding, but suffered from statistical uncertainty, requiring normalization to a reference region, and therefore limiting its potential use in the study of neurodegenerative processes. After normalization, no regional changes in muscarinic receptor concentrations were observed in AD.

Adult↗

Mild cognitive impairments predict dementia in nondemented elderly patients with memory loss.

BACKGROUND: Some elderly individuals exhibit significant memory deficits but do not have dementia because their general intellect is preserved and they have no impairments in everyday activities. These symptoms are often a precursor to Alzheimer disease (AD), but sometimes dementia does not occur, even after many years of observation. There is currently no reliable way to distinguish between these 2 possible outcomes in an individual patient. We hypothesized that clear impairments in at least 1 cognitive domain in addition to memory would help identify those who will progress to AD. OBJECTIVE: To determine whether nondemented patients with impairments in memory and other domains are more likely than those with memory impairment alone to develop AD. DESIGN AND METHODS: In a retrospective study, we evaluated 48 nondemented, nondepressed patients with clinical and psychometric evidence of memory impairment who were followed up for 2 or more years. Age-adjusted normative criteria were used to identify whether additional impairments were present in language, attention, motor visuospatial function, and verbal fluency at this initial evaluation. The presence or absence of dementia after 2 years and at the most recent neurological evaluation was compared in subjects with normal scores in all 4 of these cognitive areas apart from memory (M-) and those with impairment in 1 or more of these areas (M+). Outcomes were adjusted for age, intelligence at initial evaluation, and years of education. RESULTS: Of the 48 nondemented patients with memory loss, 17 met M- criteria, leaving 31 in the M+ group. Deficits in block design were the most frequent abnormality other than memory loss. At the 2-year follow-up, 1 M- subject (6%) had progressed to AD, whereas 15 (48%) of the M+ group had progressed to AD (P =.003). At the most recent follow-up (mean +/- SD, 4.0 +/- 2.0 years), 4 (24%) of the M- patients progressed to AD compared with 24 (77%) of the M+ patients (P<.001). CONCLUSIONS: Among nondemented elderly patients, memory loss alone rarely progresses to dementia in the subsequent 2 years. However, the risk of dementia is significantly increased among patients with clear cognitive impairments beyond memory loss. Further study is needed to determine whether patients with impairments limited to memory loss have a distinctive clinical course or pathophysiology.

Aged↗

Alzheimer's disease versus dementia with Lewy bodies: cerebral metabolic distinction with autopsy confirmation.

Seeking antemortem markers to distinguish Dementia with Lewy bodies (DLB) and Alzheimer's disease (AD), we examined brain glucose metabolism of DLB and AD. Eleven DLB patients (7 Lewy body variant of AD [LBVAD] and 4 pure diffuse Lewy body disease [DLBD]) who had antemortem position emission tomography imaging and autopsy confirmation were compared to 10 autopsy-confirmed pure AD patients. In addition, 53 patients with clinically-diagnosed probable AD, 13 of whom later fulfilled clinical diagnoses of DLB, were examined. Autopsy-confirmed AD and DLB patients showed significant metabolic reductions involving parietotemporal association, posterior cingulate, and frontal association cortices. Only DLB patients showed significant metabolic reductions in the occipital cortex, particularly in the primary visual cortex (LBVAD -23% and DLBD -29% vs AD -8%), which distinguished DLB versus AD with 90% sensitivity and 80% specificity. Multivariate analysis revealed that occipital metabolic changes in DLB were independent from those in the adjacent parietotemporal cortices. Analysis of clinically diagnosed probable AD patients showed a significantly higher frequency of primary visual metabolic reduction among patients who fulfilled later dinical criteria for DLB. In these patients, occipital hypometabolism preceded some clinical features of DLB. Occipital hypometabolism is a potential antemortem marker to distinguish DLB versus AD.

Aged↗

Barriers to treatment: the unique challenges for physicians providing dementia care.

Evaluating and treating dementia is intellectually demanding and enormously satisfying. However, physicians providing dementia care also confront unique challenges that cause discomfort and overwhelming frustration unless they are recognized and overcome. Physicians must care for individuals who do not adopt the "sick role." They must establish and maintain rapport with patients while also approaching collateral sources to obtain a complete history. They must develop a complex alliance with the patient, caregivers, community agencies, and other health professionals to provide effective treatment. Physicians must relate "bad news" to several people at once who are unequally prepared for it, while dealing with their own diagnostic uncertainty. Furthermore, physicians must honor patient autonomy and balance it with the needs of caregivers. Since the demands of providing dementia care are not typical of most medical practice, the special attributes needed are often not taught to students or adequately reimbursed by health insurance. The quality of dementia care will improve when strategies that address these aspects of care for patients with dementia are widely adopted.

Alzheimer Disease↗

Treatment of agitation in AD: a randomized, placebo-controlled clinical trial.

BACKGROUND: Treatment of agitation is a crucial problem in the care of patients with AD. Although antipsychotic and antidepressant medications and behavior management techniques (BMT) have each been used to treat agitation, clinical trials of these treatments have been characterized by small sample sizes and uncontrolled treatment designs. OBJECTIVE: To compare haloperidol, trazodone, and BMT with placebo in the treatment of agitation in AD outpatients. METHODS: A total of 149 patients with AD and their caregivers participated in a randomized, placebo-controlled, multicenter trial. Blind assessment was conducted at baseline and after 16 weeks of treatment. The three active treatments were haloperidol, trazodone, and BMT. The Alzheimer's Disease Cooperative Study Clinical Global Impression of Change was the primary outcome measure. Secondary outcomes included patient agitation, cognition, and function, and caregiver burden. RESULTS: Thirty-four percent of subjects improved relative to baseline. No significant differences on outcome were obtained between haloperidol (mean dose, 1.8 mg/d), trazodone (mean dose, 200 mg/d), BMT, or placebo. Significantly fewer adverse events of bradykinesia and parkinsonian gait were evident in the BMT arm. No other significant difference in adverse events was seen. Symptoms did not respond differentially to the different treatments. CONCLUSIONS: Comparable modest reductions in agitation occurred in patients receiving haloperidol, trazodone, BMT, and placebo. More effective pharmacologic, nonpharmacologic, and combination treatments are needed.

Aged↗

PET measures of benzodiazepine receptors in progressive supranuclear palsy.

OBJECTIVE: To evaluate the integrity of neurons containing benzodiazepine receptors in metabolically affected regions of the brain in patients with clinically diagnosed progressive supranuclear palsy (PSP). METHODS: The cerebral distribution of [11C]flumazenil (FMZ), a ligand that binds to the gamma-aminobutyric acid A (GABAA) receptor, and [18F]fluorodeoxyglucose (FDG), a measure of local cerebral glucose metabolism, was determined with PET in 12 patients with PSP and 10 normal control subjects. Tracer kinetic analysis was applied to quantify data and analysis was performed using three-dimensional stereotactic surface projections and stereotactically determined volumes of interest. RESULTS: There was a global reduction in FMZ binding of 13%, with a reduction in the anterior cingulate gyrus of 20% (p = 0.004), where glucose metabolic rates also showed the greatest reduction. CONCLUSIONS: PSP causes loss of benzodiazepine receptors in the cerebral cortex. Consistent with postmortem studies, the authors did not find significant changes in FMZ binding in subcortical nuclei that exhibit the most pathologic change. This study suggests that both loss of intrinsic neurons containing benzodiazepine receptors and deafferentation of the cerebral cortex from distant brain regions contribute to cerebral cortical hypometabolism in PSP.

Aged↗

Limited donepezil inhibition of acetylcholinesterase measured with positron emission tomography in living Alzheimer cerebral cortex.

Based on surrogate assays of peripheral red blood cells, reports state that widely prescribed doses of donepezil hydrochloride provide nearly complete inhibition of cerebral cortical acetylcholinesterase activity in the treatment of Alzheimer's disease (AD). To test this, direct positron emission tomography measures of cerebral acetylcholinesterase activity were made in AD patients before and after treatment with donepezil (5 and 10 mg/day) for at least 5 weeks and compared with similar measures in normal controls who were untreated or after acute administration of another AChE inhibitor, physostigmine salicylate (1.5 mg/hr). After physostigmine, acetylcholinesterase inhibition averaged 52% in normal cerebral cortex. After donepezil, cerebral cortical inhibition in AD brain averaged only 27%. Clinical trials of this donepezil dose schedule are not testing the effect of nearly complete cerebral cortical inhibition.

Acetylcholinesterase↗

In vivo mapping of cerebral acetylcholinesterase activity in aging and Alzheimer's disease.

OBJECTIVE: To validate an in vivo method for mapping acetylcholinesterase (AChE) activity in human brain, preparatory to monitoring inhibitor therapy in AD. BACKGROUND: AChE activity is decreased in postmortem AD brain. Lacking a reliable in vivo measure, little is known about central activity in early AD, when the disease is commonly targeted by AChE inhibitor drug therapy. METHODS: Intravenous N-[11C]methylpiperidin-4-yl propionate ([11C]PMP) served as an in vivo AChE substrate. AChE activity was defined using cerebral PET for tracer kinetic estimates of the local rate of [11C]PMP hydrolysis in 26 normal controls and 14 patients with AD. Eleven AD patients also had concomitant in vivo cerebral measures of vesicular acetylcholine transporter (cholinergic terminal) density and glucose metabolism. RESULTS: Cerebral AChE activity measures 1) were independent of changes in tracer delivery to cerebral cortex; 2) agreed with reported postmortem data concerning normal relative cerebral distributions, absence of large age-effect in normal aging, and deficits in AD; 3) correlated in AD cerebral cortex with concomitant in vivo measures of cholinergic terminal deficits, but not with metabolic deficits; and 4) agreed quantitatively with predicted level of cerebral AChE inhibition induced by physostimine. CONCLUSIONS: This in vivo PET method provided valid measures of central AChE activity in normal subjects and AD patients. Applied in early AD, it should facilitate inhibitor treatment by confirming central inhibition, optimizing drug dosage, identifying likely responders, and testing surrogate markers of therapeutic response.

Acetylcholinesterase↗

Discordance between traditional pathologic and energy metabolic changes in very early Alzheimer's disease. Pathophysiological implications.

These results suggest that neither the loss of entorhinal efferents nor cholinergic deficit explains all the metabolic features seen in very early AD. Given recent immunohistological evidence of massive glutamatergic synaptic alteration in early AD cortex and insights into neuronal and glial mechanisms of glucose metabolism, very early metabolic changes in AD probably reflect a significant impairment of glycolytic activities in the cortico-cortical glutamatergic systems in a preclinical stage of the disease. However, the exact mechanisms of such impairment in these neurons are yet to be determined.

Acetylcholinesterase↗

Neuropathology of chromosome-17-linked dementia.

We describe the characteristic neuropathologic changes in chromosome-17-linked dementia. Identified cases to date demonstrate a uniform pathology consisting of neuronal loss, gliosis and vacuolization of frontal, anterior cingulate and temporal cortex and occipital association areas. Similar changes are present in substantia nigra, ventral striatum and amygdala. Hippocampus itself is spared, whereas the afferent perforant tract is consistently affected. Characteristic neuronal inclusions consisting of lattice-like neurofilaments are present in subcortical nuclei and glial cytoplasmic tau-positive inclusions are present throughout the white matter. These pathologic changes appear to be unique for chromosome-17-linked dementia.

Chromosomes, Human, Pair 17↗

Caffeine based measures of CYP1A2 activity correlate with oral clearance of tacrine in patients with Alzheimer's disease.

AIMS: To study the potential utility of caffeine based probes of CYP1A2 enzyme activity in predicting the pharmokinetics of tacrine in patients with Alzheimer's disease. METHODS: The pharmokinetics of a single 40 mg oral dose of tacrine were measured in 19 patients with Alzheimer's disease. Each patient also received 2 mg kg(-1) [13C-3-methyl] caffeine orally and had breath and urine samples collected. RESULTS: Tacrine oral clearance (CL F(-1) kg(-1)), which varied 15-fold among the patients, correlated significantly with the 2 h total production of 13CO2 in breath (r=0.56, P=0.01), and with each of two commonly used urinary caffeine metabolite ratios: the 'paraxanthine/caffeine ratio' (1,7X + 1, 7U)/1,3,7X) (r=0.76, P=0.0002) and the 'caffeine metabolic ratio' (AFMU + 1X + 1U)/1, 7U)(r=0.76, P=0.0001). CONCLUSIONS: These observations support a central role for CYP1A2 in the in vivo disposition of tacrine and the potential for drug interactions when tacrine treated patients receive known inducers or inhibitors of this enzyme. The magnitude of the correlations we observed, however, are probably not sufficient to be clinically useful in individualizing tacrine therapy.

Administration, Oral↗

Frontotemporal dementia and parkinsonism linked to chromosome 17: a consensus conference. Conference Participants.

We held an international consensus conference on frontotemporal dementia, behavioral disturbances, and parkinsonism linked to chromosome 17 to determine whether these are homogeneous or heterogeneous disorders, to agree on terminology, and to develop strategies for further research. The group identified 13 kindreds with sufficient evidence for linkage, finding in common to all a critical 2 cM between markers D17S791 and D17S800. There was agreement that (1) despite previous descriptions that have emphasized one or another clinical or neuropathological feature, the kindreds share clinical and neuropathological features; (2) until more specific information about the genetic defects becomes available, this disorder is best termed frontotemporal dementia and parkinsonism linked to chromosome 17; and (3) further research will be enhanced by identifying the gene or genes responsible for this disorder, detecting additional cases within known families and, in new families, correlating mutations with phenotypes and more fully delineating the clinical, neuropsychological, and neuropathological characteristics of this disorder.

Brain↗

Metabolic reduction in the posterior cingulate cortex in very early Alzheimer's disease.

This study investigated cerebral glucose metabolism in very early Alzheimer's disease, before a clinical diagnosis of probable Alzheimer's disease is possible, using [18F]fluorodeoxyglucose positron emission tomography. First, 66 patients with probable Alzheimer's disease with a spectrum of dementia severity (Mini-Mental State Examination score, 0-23) were recruited and studied. Cortical metabolic activity was analyzed topographically using three-dimensional stereotactic surface projections. Regression analysis was performed for each brain pixel to predict metabolic patterns of very early disease. Predictions were tested prospectively in a group of 8 patients who complained only of memory impairment without general cognitive decline (Mini-Mental State Examination score, 25 +/- 1) at the time of scanning but whose condition later progressed to probable Alzheimer's disease. Both results were compared to cerebral metabolic activity in 22 age-similar normal control subjects. Prediction and analysis of actual patients consistently indicated marked metabolic reduction (21-22%) in the posterior cingulate cortex and cinguloparietal transitional area in patients with very early Alzheimer's disease. Mean metabolic reduction in the posterior cingulate cortex was significantly greater than that in the lateral neocortices or parahippocampal cortex. The result suggests a functional importance for the posterior cingulate cortex in impairment of learning and memory, which is a feature of very early Alzheimer's disease.

Aged↗

Unmasking the heterogeneity of Alzheimer's disease: case studies of individuals from distinct neuropsychological subgroups.

Case descriptions of patients with probable Alzheimer's disease (AD) who were reliably classified into three neuropsychological subgroups (global [GAD], right-hemisphere [RAD], and left-hemisphere [LAD]) in an earlier cluster analytic study (Fisher et al., 1996) are presented. Concordance between the neuropsychological patterns and clinical histories of randomly selected and hand-selected cases from within each subgroup was high. Longitudinal analysis revealed stable subgroup-specific neuropsychological progression patterns. Results are discussed in terms of future research avenues worth pursuing, in addition to the conceptual shift in research design necessary to uncover both quantitative and qualitative subgroup-specific ability differences.

Aged↗