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Biomedical subjects

Richard J Caselli

Publications and source records attributed to Richard J Caselli.

At least 19 recordsLinked to original sources

Cognitive performance in older women relative to ApoE-epsilon4 genotype and aerobic fitness.

INTRODUCTION: Apolipoprotein E (ApoE) genotype and aerobic fitness are each associated with cognitive performance in older adults. However, their potentially interactive effects on cognitive performance have not been examined. PURPOSE: The primary purpose of this study was to determine whether ApoE genotype and aerobic fitness interact to uniquely impact memory performance and executive functioning. A secondary purpose was to examine the interactive effects on other measures of cognition to provide a more comprehensive assessment of cognitive abilities across a broad range of functions. METHODS: Community-dwelling, cognitively normal older women (N = 90) provided blood samples to allow for assessment of ApoE genotype, completed cognitive tests, and performed a maximal aerobic fitness test. Primary outcome variables were the auditory verbal learning test (AVLT), the complex figures test (CFT), and the Wisconsin card-sorting task (WCST). Secondary outcome variables were the block design test and the paced auditory serial addition task (PASAT). RESULTS: Regression analyses indicated that aerobic fitness was associated with significantly better performance on measures of the AVLT, the CFT, and the PASAT for the ApoE-epsilon4 homozygotes. CONCLUSION: The preliminary findings from this study support the possibility that aerobic fitness is positively associated with the memory performance of those individuals at most genetic risk for Alzheimer disease.

Aged↗

Gene expression profiles in anatomically and functionally distinct regions of the normal aged human brain.

In this article, we have characterized and compared gene expression profiles from laser capture microdissected neurons in six functionally and anatomically distinct regions from clinically and histopathologically normal aged human brains. These regions, which are also known to be differentially vulnerable to the histopathological and metabolic features of Alzheimer's disease (AD), include the entorhinal cortex and hippocampus (limbic and paralimbic areas vulnerable to early neurofibrillary tangle pathology in AD), posterior cingulate cortex (a paralimbic area vulnerable to early metabolic abnormalities in AD), temporal and prefrontal cortex (unimodal and heteromodal sensory association areas vulnerable to early neuritic plaque pathology in AD), and primary visual cortex (a primary sensory area relatively spared in early AD). These neuronal profiles will provide valuable reference information for future studies of the brain, in normal aging, AD and other neurological and psychiatric disorders.

Aged↗

Common Kibra alleles are associated with human memory performance.

Human memory is a polygenic trait. We performed a genome-wide screen to identify memory-related gene variants. A genomic locus encoding the brain protein KIBRA was significantly associated with memory performance in three independent, cognitively normal cohorts from Switzerland and the United States. Gene expression studies showed that KIBRA was expressed in memory-related brain structures. Functional magnetic resonance imaging detected KIBRA allele-dependent differences in hippocampal activations during memory retrieval. Evidence from these experiments suggests a role for KIBRA in human memory.

Adolescent↗

Quantitation of heteroplasmy of mtDNA sequence variants identified in a population of AD patients and controls by array-based resequencing.

The role of mitochondrial dysfunction in the pathogenesis of Alzheimer's disease (AD) has been well documented. Though evidence for the role of mitochondria in AD seems incontrovertible, the impact of mitochondrial DNA (mtDNA) mutations in AD etiology remains controversial. Though mutations in mitochondrially encoded genes have repeatedly been implicated in the pathogenesis of AD, many of these studies have been plagued by lack of replication as well as potential contamination of nuclear-encoded mitochondrial pseudogenes. To assess the role of mtDNA mutations in the pathogenesis of AD, while avoiding the pitfalls of nuclear-encoded mitochondrial pseudogenes encountered in previous investigations and showcasing the benefits of a novel resequencing technology, we sequenced the entire coding region (15,452 bp) of mtDNA from 19 extremely well-characterized AD patients and 18 age-matched, unaffected controls utilizing a new, reliable, high-throughput array-based resequencing technique, the Human MitoChip. High-throughput, array-based DNA resequencing of the entire mtDNA coding region from platelets of 37 subjects revealed the presence of 208 loci displaying a total of 917 sequence variants. There were no statistically significant differences in overall mutational burden between cases and controls, however, 265 independent sites of statistically significant change between cases and controls were identified. Changed sites were found in genes associated with complexes I (30.2%), III (3.0%), IV (33.2%), and V (9.1%) as well as tRNA (10.6%) and rRNA (14.0%). Despite their statistical significance, the subtle nature of the observed changes makes it difficult to determine whether they represent true functional variants involved in AD etiology or merely naturally occurring dissimilarity. Regardless, this study demonstrates the tremendous value of this novel mtDNA resequencing platform, which avoids the pitfalls of erroneously amplifying nuclear-encoded mtDNA pseudogenes, and our proposed analysis paradigm, which utilizes the availability of raw signal intensity values for each of the four potential alleles to facilitate quantitative estimates of mtDNA heteroplasmy. This information provides a potential new target for burgeoning diagnostics and therapeutics that could truly assist those suffering from this devastating disorder.

Alzheimer Disease↗

Regional network of magnetic resonance imaging gray matter volume in healthy aging.

Healthy aging has been associated with brain volume reductions preferentially affecting the frontal cortex, but also involving other regions. We used a network model of regional covariance, the Scaled Subprofile Model, with magnetic resonance imaging voxel-based morphometry to identify the regional distribution of gray matter associated with aging in 26 healthy adults, 22-77 years old. Scaled Subprofile Model analysis identified a pattern that was highly correlated with age (R2=0.66, P<or=0.0001). Older age was associated with less gray matter in the bilateral frontal, temporal,thalamic, and right cerebellar regions. Gender differences suggested more advanced brain aging in the men. In this healthy adult sample, aging was associated with a regional pattern of gray matter atrophy most prominently involving the frontal and temporal cortices. Scaled Subprofile Model network analysis may aid in the detection and tracking of brain aging and in the evaluation of putative antiaging therapies.

Adult↗

Giant cell arteritis.

Giant cell, or temporal, arteritis is a vasculitis of the medium and large arteries that preferentially involves vessels originating from the arch of the aorta. Classically, this disease manifests in an older individual with new-onset persistent headache, an abnormal temporal artery on examination, and increased serum inflammatory markers. The level of clinical suspicion for giant cell arteritis should be based upon patient age, clinical symptoms, and laboratory evaluation. However, the diagnostic gold standard is achieved by histologic confirmation by temporal artery biopsy. Prompt treatment with corticosteroids is essential in order to minimize the frequency of permanent sequelae such as visual loss and stroke.

Age Factors↗

A preliminary fluorodeoxyglucose positron emission tomography study in healthy adults reporting dream-enactment behavior.

STUDY OBJECTIVES: To test the hypothesis that healthy adults reporting dream-enactment behavior (DEB+) have reduced cerebral metabolic rate for glucose (CMRgl) in regions preferentially affected in patients with dementia with Lewy bodies (DLB). DESIGN: Automated brain-mapping algorithms were used to compare regional fluorodeoxyglucose (FDG) positron emission tomography (PET) measurements from previously evaluated DEB cases and controls. SETTING: Tertiary-care academic medical centers. PARTICIPANTS: Seventeen cognitively normal patients with DEB+ and 17 control subjects (DEB-) who were individually matched for age (59 +/- 11 years), education level (16 +/- 4 years), sex (67% women), body mass index (26 +/- 4.8 kg/m2), first-degree relative with dementia (85%), and proportion of apolipoprotein E (APOE) e4 carriers (13 e4 carriers, 4 noncarriers). INTERVENTIONS: FDG-PET. MEASUREMENTS AND RESULTS: DEB was associated with significantly lower CMRgl in several brain regions known to be preferentially affected in both DLB and Alzheimer disease (parietal, temporal, and posterior cingulate cortexes) and in several other regions, including the anterior cingulate cortex (p < .001, uncorrected for multiple comparisons). The DEB-associated CMRgl reductions were significantly greater in the APOE e4 noncarriers than in the carriers. CONCLUSIONS: These preliminary findings suggest that cognitively normal persons with DEB have reduced CMRgl in brain regions known to be metabolically affected by DLB, supporting further study of DEB as a possible risk factor for the development of DLB.

Adult↗

Alzheimer's disease a century later.

OBJECTIVE: To provide a current survey of the clinical and pathologic features, known genetic and suggested pathogenic contributions, diagnosis, and treatment of Alzheimer's disease (AD) and related forms of dementia. DATA SOURCES: PubMed was searched for specific indexing terms identified by the authors as relevant to the topic. Also included were diagnostic and consensus criteria and classic references long standing in the Alzheimer's disease literature. DATA SYNTHESIS: AD is the most common form of disabling cognitive impairment in older persons, and its prevalence is rapidly growing as people live to older ages. Clinically, the disorder is characterized by a gradual but progressive decline in memory and other cognitive domains and the frequent occurrence of noncognitive behavioral symptoms. Neuropathologically, the cardinal features of AD include neuritic plaques, neuro-fibrillary tangles, and the loss of synapses and neurons. The clinical evaluation of AD includes a history and physical examination, laboratory tests, and structural brain imaging to exclude less common forms of dementia. The clinical management of AD includes medication and nonmedication strategies for addressing cognitive, behavioral, and other commonly associated symptoms of patients as well as lifestyle changes such as driving cessation and residential care. Genetic causes of familial Alzheimer's disease as well as genes that predispose to late-onset and sporadic Alzheimer's disease have led to greater understanding of the pathophysiology of the neurodegenerative process. CONCLUSIONS: While there has been great promise in the scientific understanding, early detection, and tracking of AD and in the discovery of promising disease-slowing treatments, there remains an unmet urgent need to identify effective primary and secondary prevention therapies in order to avert a financially overwhelming public health problem.

Alzheimer Disease↗

Cognitive frailty: Predementia syndrome and vascular risk factors.

With increasing emphasis on early diagnosis of Alzheimer disease (AD), clinical research has focused on the identification of risk factors that may be modified at a preclinical and early clinical stage of dementing disorders. Prevalence and incidence of different predementia syndromes vary as a result of different diagnostic criteria, as well as different sampling and assessment procedures. Particular interest in mild cognitive impairment (MCI) arises from the fact that MCI is thought to be a prodromal phase and therefore highly predictive of subsequent AD. Furthermore, many of the risk factors for cerebrovascular disease (CVD) and vascular dementia (VaD), including serum total cholesterol, hypertension, atherosclerosis, and apolipoprotein E (APOE) genotype have also been shown to increase the risk of AD. Both vascular factors and APOE epsilon4 allele have been associated with higher risk of AD. Some recent studies suggested further that CVD or vascular factors increased the risk of conversion of MCI to dementia. This review will focus on the possible role of vascular risk factors in modulating the risk of age-related cognitive decline, and the progression of predementia syndrome such as MCI to dementia.

Alzheimer Disease↗

Correlations between apolipoprotein E epsilon4 gene dose and brain-imaging measurements of regional hypometabolism.

Patients with Alzheimer's disease (AD) have abnormally low positron emission tomography (PET) measurements of the cerebral metabolic rate for glucose (CMRgl) in regions of the precuneus and the posterior cingulate, parietotemporal, and frontal cortex. Apolipoprotein E (APOE) epsilon4 gene dose (i.e., the number of epsilon4 alleles in a person's APOE genotype) is associated with a higher risk of AD and a younger age at dementia onset. We previously found that cognitively normal late-middle-aged APOE epsilon4 carriers have abnormally low CMRgl in the same brain regions as patients with probable Alzheimer's dementia. In a PET study of 160 cognitively normal subjects 47-68 years of age, including 36 epsilon4 homozygotes, 46 heterozygotes, and 78 epsilon4 noncarriers who were individually matched for their gender, age, and educational level, we now find that epsilon4 gene dose is correlated with lower CMRgl in each of these brain regions. This study raises the possibility of using PET as a quantitative presymptomatic endophenotype to help evaluate the individual and aggregate effects of putative genetic and nongenetic modifiers of AD risk.

Age of Onset↗

Increased tau burden in the cortices of progressive supranuclear palsy presenting with corticobasal syndrome.

The objective of this study is to better define the pathological characteristics of pathologically proven progressive supranuclear palsy (PSP) presenting with the corticobasal syndrome (CBS). PSP is characterized by early falls, vertical supranuclear ophthalmoplegia, and axial rigidity, whereas asymmetric limb features, including rigidity, bradykinesia, apraxia, alien limb phenomena, and cortical sensory loss are characteristic of CBS. We investigated clinicopathological characteristics of 5 cases of PSP that presented with CBS (CBS-PSP). Comprehensive pathological analysis was undertaken to determine the presence of concomitant pathological processes as well as quantitative tau burden in cortical regions of CBS-PSP, compared with 8 typical PSP cases (Typ-PSP). The clinical features in the CBS-PSP cases included asymmetrical features, apraxia, alien limb phenomena, and progressive aphasia. All cases had Parkinsonism, and vertical supranuclear ophthalmoplegia was noted in all but 1 case of CBS-PSP. Secondary neuropathological diagnoses included argyrophilic grain disease (AGD) in 1 of the 8 cases of Typ-PSP, whereas Alzheimer's disease (AD), Lewy body disease, AGD, and vascular disease was found in 3 cases of CBS-PSP. Image analysis of cortical tau burden performed in 8 Typ-PSP and 3 CBS-PSP cases revealed a significant increased tau burden in mid-frontal and inferior-parietal cortices in the CBS-PSP cases. This study demonstrates that when PSP presents as CBS, it is most likely due to either a concurrent cortical pathology from a secondary process such as AD or from the primary pathology of PSP extending into cortical areas that are primarily and commonly affected in CBD.

Aged↗

Current epidemiology of mild cognitive impairment and other predementia syndromes.

A variety of clinically-defined predementia syndromes, with differing diagnostic criteria and nomenclature, have been proposed to describe nondisabling symptomatic cognitive deficits arising in elderly persons. Incidence and prevalence of different predementia syndromes vary as a result of different diagnostic criteria, sampling, and assessment procedures. The incidence rates of all predementia syndromes increase with age and are higher in subjects with less education; but age, educational background, and gender are not consistently related to prevalence rates. There is particular interest in "Mild Cognitive Impairment (MCI)" because this predementia syndrome is thought to be a prodromal phase of Alzheimer disease (AD). Several studies have suggested that most patients who meet MCI criteria will progress to AD, but rates of conversion to AD and dementia vary widely among studies. Furthermore, MCI definition is less consistent in population-based studies than clinical studies, in which progression to AD is also more consistent. To clarify the sources of discrepant findings in the literature, this review summarizes existing epidemiological studies of the defined clinical predementia syndromes and their progression to dementia.

Aged↗

Hippocampal adaptation to face repetition in healthy elderly and mild cognitive impairment.

We examined the dynamic process of encoding novel repeating faces using functional MRI (fMRI) in non-demented elderly volunteers with and without diagnosed memory problems. We hypothesized that adaptation (repetition dependent reduction in activity) would occur in the mesial temporal lobe (MTL), and that this would be associated with cognitive status. Twenty-three right-handed volunteers were studied with an experimental encoding paradigm during fMRI scanning. Twelve participants had the diagnosis of mild cognitive impairment-amnestic type (MCI). The remaining 11 were cognitively healthy. All were diagnosed with a comprehensive neuropsychological battery and neurological evaluation prior to the study; they also received a brief cognitive battery the day of the scan. During the event-related fMRI task, participants viewed unfamiliar faces that repeated on average every 25s with seven repetitions. The reduction in activation response as a function of repetition of unfamiliar faces was modeled in SPM99. Statistical parametric maps of adaptation slopes reflecting the decrease in activation with stimulus repetition were calculated for each participant, followed by a random-effects group analysis in which slope images were tested for significant group differences. Significant differences in adaptation slopes, with more negative slopes in the controls, were found in the medial temporal search region in the hippocampus and parahippocampal gyrus bilaterally, right more than left. Gray matter density analyses suggest the adaptation difference is not due to atrophy. Results suggest that the medial temporal response over repeated presentation is related to clinical status. Probes of incremental encoding processes over trials may be useful markers of medial temporal lobe integrity.

Adaptation, Physiological↗

A distinctive interaction between chronic anxiety and problem solving in asymptomatic APOE e4 homozygotes.

We correlated measures of problem solving (Wisconsin Card Sorting Test [WCST] categories, total errors, and perseverative errors) and chronic anxiety (Personality Assessment Inventory Anxiety Scale [ANX]) in asymptomatic apolipoprotein E (APOE) e4 homozygotes (HMZs), heterozygotes, and noncarriers (NC) (n = 42 in each group) matched for age, education, and gender. Differences between HMZ and NC in the slope of the regression of WCST scores on ANX reached statistical significance on all three WCST measures. Chronic anxiety adversely affects cognitive skills in all groups, and is associated with significantly greater decline in problem solving skills in cognitively normal APOE e4 HMZ.

Anxiety Disorders↗

Functional brain abnormalities in young adults at genetic risk for late-onset Alzheimer's dementia.

Fluorodeoxyglucose positron emission tomography (PET) studies have found that patients with Alzheimer's dementia (AD) have abnormally low rates of cerebral glucose metabolism in posterior cingulate, parietal, temporal, and prefrontal cortex. We previously found that cognitively normal, late-middle-aged carriers of the apolipoprotein E epsilon4 allele, a common susceptibility gene for late-onset Alzheimer's dementia, have abnormally low rates of glucose metabolism in the same brain regions as patients with probable AD. We now consider whether epsilon4 carriers have these regional brain abnormalities as relatively young adults. Apolipoprotein E genotypes were established in normal volunteers 20-39 years of age. Clinical ratings, neuropsychological tests, magnetic resonance imaging, and PET were performed in 12 epsilon4 heterozygotes, all with the epsilon3/epsilon4 genotype, and 15 noncarriers of the epsilon4 allele, 12 of whom were individually matched for sex, age, and educational level. An automated algorithm was used to generate an aggregate surface-projection map that compared regional PET measurements in the two groups. The young adult epsilon4 carriers and noncarriers did not differ significantly in their sex, age, educational level, clinical ratings, or neuropsychological test scores. Like previously studied patients with probable AD and late-middle-aged epsilon4 carriers, the young epsilon4 carriers had abnormally low rates of glucose metabolism bilaterally in the posterior cingulate, parietal, temporal, and prefrontal cortex. Carriers of a common Alzheimer's susceptibility gene have functional brain abnormalities in young adulthood, several decades before the possible onset of dementia.

Adult↗

Apolipoprotein E epsilon 4 affects new learning in cognitively normal individuals at risk for Alzheimer's disease.

The Apolipoprotein E (APOE) epsilon 4 allele is an important risk factor for Alzheimer's disease (AD). Given the interest in early identification of at-risk individuals, we examined memory decline as a function of APOE status and age in cognitively intact participants aged 48-77 years old (yo). Participants were grouped by age (<60 versus > or =60) and APOE (epsilon4+/-). Longitudinal analysis of several components of memory over a 2-year interval showed a significant Age-by-APOE interaction reflecting a decline in new learning for the > or =60 epsilon4+ group only. Among epsilon4+, 76% of the > or =60 participants showed a decline versus 32% of the <60, but the amount of decline in new learning over the 2-year interval within the > or =60 group was not further influenced by age. That is, the size of the 2-year change was the same for 60 and 70 year old participants. This suggests that longitudinal study of new learning is a sensitive measure for detecting early cognitive changes in at-risk individuals that precede the symptomatic onset of mild cognitive impairment and AD.

Aged↗

Current issues in the diagnosis and management of dementia.

Aging, memory loss, Alzheimer's disease, and other forms of dementia assume increasing importance to patients, physicians, and society as our population becomes older. Mild cognitive impairment, topography and semiology of dementia syndromes, reversible forms of dementia, dementia therapy, driving, genetic testing of patients and family members, and caregiver risk are reviewed.

Adrenal Cortex Hormones↗