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Biomedical subjects

Gary W Small

Publications and source records attributed to Gary W Small.

49 records · Page 3Linked to original sources

Added clinical benefit of incorporating 2-deoxy-2-[18F]fluoro-D-glucose with positron emission tomography into the clinical evaluation of patients with cognitive impairment.

PURPOSE: Growing evidence indicates that appropriate incorporation of positron emission tomography (PET) into the evaluation of patients with early symptoms of cognitive decline can improve diagnostic and prognostic accuracy. In the present work, an explicitly defined role for PET and its associated impact on expected clinical outcomes were systematically examined. PROCEDURES: We compared the relative value of two strategies for assessing whether Alzheimer's disease (AD) was responsible for cognitive decline in geriatric patients, and in subsequently managing those patients according to the recommended standards of the American Academy of Neurology (AAN). The first strategy was based on an approach already endorsed by the AAN, following evidence-based reviews carried out by its quality standards subcommittee. The second approach was based on many of the same AAN recommendations-with respect to initial general medical and neurologic examination, structural imaging and laboratory tests, as well as ultimate management-but additionally incorporated PET in appropriate cases, to determine the presence or absence of a pattern of regional cerebral metabolism characteristic of AD. Clinical outcomes accruing to each strategy were calculated using formalized tools of decision analysis. RESULTS: The strategy making use of PET increased diagnostic accuracy, yielding decreased rates of both false negative (from 8.3 to 3.1%) and false positive (from 23.0 to 11.9%) diagnoses for AD, compared with the conventional strategy. When coupled with AAN treatment recommendations for patients having (or not having) non-severe AD, these differences in diagnostic accuracy corresponded to approximately a 62% decrease in avoidable months of nursing home care, and a 48% decrease in months of unnecessary drug therapy resulting from inaccurate diagnoses. The benefit in clinical outcome of the proposed strategy was maintained over a wide range of values for sensitivity, specificity, and projected impact on need for nursing home care. CONCLUSION: Use of PET for evaluating early cognitive decline in geriatric patients can add valuable information to the clinical assessment, resulting in a greater number of patients being accurately diagnosed and properly treated. PET can be used to diminish disease-related and treatment-related morbidity of dementia, through earlier institution of appropriate management.

Journal Article↗

The impact of symptom severity on the cost of Alzheimer's disease.

OBJECTIVES: ITo examine the economic impact of Alzheimer's disease (AD) as the disease progresses on patients' medical costs and caregivers' productivity. DESIGN: A 12-page, self-administered mail survey, fielded in November 1999. SETTING: Households with AD caregivers, selected from a nationwide (U.S.) consumer database. PARTICIPANTS: One thousand seven hundred fifteen caregivers of noninstitutionalized AD patients. MEASUREMENTS: Disease progression was measured using a scale of symptom frequency and measures of instrumental and physical functioning. Cost components included hospital days, physician visits, and emergency room visits. Lost productivity was assessed using hours per week that caregivers provided care and the number of days that they missed from work because of caregiving. RESULTS: The direct costs of caring for AD patients for 6 months totaled $3,129, whereas the indirect costs were $26,080. Patients with more-frequent symptoms used all healthcare resources, including the hospital, emergency room, and physicians, more often than those with less-frequent symptoms. Those with lower levels of physical and instrumental functioning also used the hospital and physicians more often than those with higher levels of physical and instrumental functioning. Caregivers of these more severely impaired patients spent more hours providing care and reported missing more work than those caring for higher-functioning patients. These relationships remained after controlling for potentially confounding factors. CONCLUSIONS: This large study of patients at all stages of AD shows that the direct and indirect costs of AD are considerably lower for patients with fewer symptoms. Longitudinal studies will determine the impact on the overall cost of care of interventions that reduce symptoms and maintain patients at earlier stages of the disease.

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Mood symptoms and cognitive performance in women estrogen users and nonusers and men.

OBJECTIVES: Previous studies have suggested sex differences in mood and cognition and that estrogen effects may partially explain such differences. In this study, we explore sex differences for a range of mood symptoms and for neuropsychological performance in men and postmenopausal women and assess the potential influence of estrogen on these measures. DESIGN: Cross-sectional study of men and women examining mood, neuropsychological test data, and estrogen replacement therapy (ERT) use. SETTING: Outpatient study at an urban teaching hospital with subjects recruited from the community. PARTICIPANTS: All subjects (N = 96) were between the ages of 57 and 75 and included 31 women using ERT, 16 non-ERT users, and 49 men. Subjects did not have major depression and were nondemented. MEASUREMENT: The three groups were compared according to profile of mood states and neuropsychological performance, and statistical analyses were controlled for socioeconomic status, age, and education level. RESULTS: Female ERT users were less depressed and less angry and performed better on measures of verbal fluency and working memory than the other subject groups. CONCLUSION: Postmenopausal estrogen use is associated with better mood and cognitive performance on tasks of fluency and working memory. These results suggest that estrogen should be examined as a potentially critical variable influencing late-life sex differences in mood and cognition.

Affect↗

In vivo brain imaging of tangle burden in humans.

Cerebral neurofibrillary tangles (NFTs) accumulate in a predictable sequence decades before the clinical symptoms of Alzheimer's disease emerge, and the degree of tangle degeneration correlates with the severity of cognitive impairment. A valid in vivo marker of tangle burden, therefore, would be useful for presymptomatic and symptomatic disease detection and treatment monitoring. Recent advances using positron emission tomography (PET) indicate the feasibility of in vivo imaging that provides a combined signal of both neurofibrillary tangles and senile plaques. Such results are encouraging that a tangle-specific marker will be found; however, several methodological issues first need to be addressed, including scanner spatial resolution in the relatively small brain regions where tangles accumulate. NFT-specific imaging probes will need to be lipophilic in order to cross the blood-brain barrier and neuronal membranes and have a high binding affinity to NFTs with minimal nonspecific binding, which would result in a high signal-to-background ratio in PET images.

Alzheimer Disease↗

Clinical pharmacokinetics and pharmacodynamics of cholinesterase inhibitors.

Cholinesterase inhibitors are the 'first-line' agents in the treatment of Alzheimer's disease. This article presents the latest information on their pharmacokinetic properties and pharmacodynamic activity. Tacrine was the first cholinesterase inhibitor approved by regulatory agencies, followed by donepezil, rivastigmine and recently galantamine. With the exception of low doses of tacrine, the cholinesterase inhibitors exhibit a linear relationship between dose and area under the plasma concentration-time curve. Cholinesterase inhibitors are rapidly absorbed through the gastrointestinal tract, with time to peak concentration usually less than 2 hours; donepezil has the longest absorption time of 3 to 5 hours. Donepezil and tacrine are highly protein bound, whereas protein binding of rivastigmine and galantamine is less than 40%. Tacrine is metabolised by hepatic cytochrome P450 (CYP) 1A2, and donepezil and galantamine are metabolised by CYP3A4 and CYP2D6. Rivastigmine is metabolised by sulfate conjugation. Two cholinesterase enzymes are present in the body, acetylcholinesterase (AChE) and butyrylcholinesterase (BChE). Tacrine and rivastigmine inhibit both enzymes, whereas donepezil and galantamine specifically inhibit AChE. Galantamine also modulates nicotine receptors, thereby enhancing acetylcholinergic activity at the synapse. These different pharmacological profiles provide distinctions between these agents. Cholinesterase inhibitors show a nonlinear relationship between dose and cholinesterase inhibition, where a plateau effect occurs. Cholinesterase inhibitors display a different profile as each agent achieves its plateau at different doses. In clinical trials, cholinesterase inhibitors demonstrate a dose-dependent effect on cognition and functional activities. Improvement in behavioural symptoms also occurs, but without a dose-response relationship. Gastrointestinal adverse events are dose-related. Clinical improvement occurs with between 40 and 70% inhibition of cholinesterase. A conceptual model for cholinesterase inhibitors has been proposed, linking enzyme inhibition, clinical efficacy and adverse effects. Currently, measurement of enzyme inhibition is used as the biomarker for cholinesterase inhibitors. New approaches to determining the efficacy of cholinesterase inhibitors in the brain could involve the use of various imaging techniques. The knowledge base for the pharmacokinetics and pharmacodynamics of cholinesterase inhibitors continues to expand. The increased information available to clinicians can optimise the use of these agents in the management of patients with Alzheimer's disease.

Aging↗

Evaluating early dementia with and without assessment of regional cerebral metabolism by PET: a comparison of predicted costs and benefits.

UNLABELLED: Evaluating dementia in patients with early symptoms of cognitive decline is clinically challenging. Growing evidence indicates that appropriate incorporation of PET into the clinical work-up can improve diagnostic and prognostic accuracy with respect to Alzheimer's disease (AD), the most common cause of dementia in the geriatric population. The precise diagnostic role of PET and its economic impact in this context, however, have not been systematically examined previously. METHODS: We compared the relative value of 2 strategies for assessing whether early AD is responsible for cognitive symptoms in geriatric patients: (a) a conventional approach, based largely on establishing clinical criteria for the presence of dementia and excluding non-AD etiologies that could contribute to the patient's symptoms, and (b) a proposed approach using PET to examine regional cerebral metabolism and look for characteristic patterns of abnormal metabolism. The total costs (measured in dollars) and benefits (measured in number of accurate diagnoses) of diagnostic testing and clinical outcomes accruing to each strategy were calculated using formalized tools of decision analysis. The primary outcome measure by which the strategies were compared was the ratio of costs to benefits obtained following each approach. RESULTS: Following the proposed approach led to improved accuracy in identifying early AD, without adding to the overall costs of diagnosis and treatment ($3,433 vs. $3,564 per patient approached by the proposed or conventional algorithm, respectively). The strategy making use of PET was associated with a reduced rate of false-negative and false-positive findings compared with the conventional approach (3.1% vs. 8.2% and 12.0% vs. 23.0%, respectively, at a prevalence of 51.6% in the studied symptomatic population) and a cost savings of $1,138 per correct diagnosis rendered ($4,047 vs. $5,185). The lower cost per unit benefit for the proposed strategy was maintained over a wide range of tested values for variables of sensitivity, specificity, costs of PET and long-term care, and varying approaches to the use of structural neuroimaging. CONCLUSION: Appropriate use of PET for evaluating early dementia in geriatric patients can add valuable information to the clinical work-up, without adding to the overall costs of evaluation and management, resulting in a greater number of patients being accurately diagnosed for the same level of financial expenditure. Thus, the opportunity exists for diminishing the morbidity of dementia economically, with earlier institution of more appropriate management in evaluated patients.

Aged↗

Brain-imaging surrogate markers for detection and prevention of age-related memory loss.

Recent evidence points to the importance of neuropathological and cognitive changes preceding Alzheimer's disease (AD), and clinical trials have begun to focus on preventive treatments designed to slow age-related cognitive decline and delay the onset of AD in people with age-associated memory impairment (AAMI). Studying subjects with few deficits leads to diagnostic heterogeneity and a need for larger samples in order to detect active drug effects. In this report, I review results of recent studies designed to address such issues. Middle-aged and older adults with mild memory complaints were studied using brain imaging and measures of the major known genetic risk for AD, the apolipoprotein E-4 (APOE-4) allele. In a study of positron emission tomography during mental rest, glucose metabolic rates were significantly lower in APOE-4 carriers in brain regions affected by AD. Another study using functional magnetic resonance imaging showed increased brain activation during memory tasks in APOE-4 carriers in similar brain regions. Longitudinal follow-up after 2 yr indicated the potential utility of such brain-imaging measures, combined with genetic-risk information, as surrogate markers in treatment trials for AAMI to prevent further cognitive decline. Current development focuses on novel technologies using positron emission tomography to directly image the neuritic plaques and neurofibrillary tangles of AD in order to provide more specific measures of disease progression in future clinical trials.

Aging↗

2-Dialkylamino-6-acylmalononitrile substituted naphthalenes (DDNP analogs): novel diagnostic and therapeutic tools in Alzheimer's disease.

This article presents a comprehensive review of the in vitro and in vivo detection of neurofibrillary tangles (NFTs) and beta-amyloid senile plaques (SPs), neuropathological lesions found in the brains of the Alzheimer's disease (AD) patients, using FDDNP and its analogs. FDDNP and its analogs have excellent ability to bind to NFTs and SPs in vitro as shown by binding assays, confocal fluorescence microscopy with stained AD brain tissue and digital autoradiography with [18F]FDDNP. [18F]FDDNP-PET molecular imaging permits detection of these pathologies in living subjects. The discovery of a new binding site to Abeta(1-40) fibrils as a result of FDDNP binding also opens a therapeutic opportunity for early treatment of Alzheimer's disease. FDDNP shares a previously unrecognized common binding site on Abeta(1-40) fibrils and senile plaques with non-steroidal anti-inflammatory drugs (NSAIDs) (e.g., naproxen and ibuprofen). Naproxen, ibuprofen and even FDDNP significantly inhibit aggregation of the Abeta(1-40) peptide in the micromolar range. This new binding site on Abeta(1-40) fibrils also offers a molecular template for design of anti-aggregation drugs without the secondary effects of NSAIDs. Therefore it is anticipated that a new vision for prevention, early diagnosis and treatment of Alzheimer's disease would be rapidly developing.

Alzheimer Disease↗

Hippocampal atrophy in persons with age-associated memory impairment: volumetry within a common space.

OBJECTIVE: The objective of this study is to demonstrate the assessment of hippocampal atrophy within a standard brain atlas for persons with age-associated memory impairment (AAMI) compared with cognitively intact elderly. METHODS: High-resolution three-dimensional (3D) brain magnetic resonance imaging (MRI) was performed on 20 nondemented persons: 10 had AAMI and 10 were normal elderly. Scans were aligned to a common atlas template to control for errors due to variable brain size and orientation as well as facilitating communication of results across centers. Manual outlining every 1 mm with volumes determined for both the hippocampal head and body was accomplished after coronal resampling perpendicular to the long axis of the hippocampus. RESULTS: Subject groups were similar in age, sex ratios, and educational achievement. The AAMI group had significantly lower volumes for the right hippocampus and hippocampal head (p =.02) compared with controls. CONCLUSION: A growing body of work suggests the right hippocampal head as an early site of atrophy in early memory impairment. Subtle atrophic changes are detectable within a common atlas template allowing imaging assessment across centers.

Aged↗

Localization of neurofibrillary tangles and beta-amyloid plaques in the brains of living patients with Alzheimer disease.

The authors used 2-(1-(6-[(2-[18F]fluoroethyl)(methyl)amino]-2-naphthyl)ethylidene)malononitrile ([18F]FDDNP), a hydrophobic radiofluorinated derivative of 2-(1-[6-(dimethylamino)-2-naphthyl]ethylidene)malononitrile (DDNP), in conjunction with positron emission tomography to determine the localization and load of neurofibrillary tangles (NFTs) and beta-amyloid senile plaques (APs) in the brains of living Alzheimer disease (AD) patients. Previous work illustrated the in vitro binding characteristics of [18F]FDDNP to synthetic beta-amyloid(1-40) fibrils and to NFTs and APs in human AD brain specimens. In the present study, greater accumulation and slower clearance was observed in AP- and NFT-dense brain areas and correlated with lower memory performance scores. The relative residence time of the probe in brain regions affected by AD was significantly greater in patients with AD (n=9) than in control subjects (n=7; p=0.0007). This noninvasive technique for monitoring AP and NFT development is expected to facilitate diagnostic assessment of patients with AD and assist in response-monitoring during experimental treatments.

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Specificity of brain activation patterns in people at genetic risk for Alzheimer disease.

Previous studies with positron-emission tomography (PET) and functional magnetic resonance imaging (fMRI) have indicated differences in neural metabolism and activity between carriers of the APOE epsilon4 allele and those who are not at risk for Alzheimer disease (AD). Persons without dementia carrying the epsilon4 allele showed greater magnitude and extent of brain activation than noncarriers in regions required for memory, suggesting they performed additional cognitive work to accomplish the same task. To determine whether the fMRI differences were specific to a memory task or generalizable to any difficult cognitive task, the authors performed fMRI and compared images from 25 subjects with and without the APOE epsilon4 allele. In the most difficult conditions, all subjects showed increased MR signal in the prefrontal cortex, indicating increased cognitive effort. However, the two genetic groups showed no differences in activation patterns even at the most difficult task level, suggesting that additional cognitive effort in persons at genetic risk for AD is specific to episodic encoding and is not merely a reflection of task difficulty.

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