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Suzanne Craft

Publications and source records attributed to Suzanne Craft.

26 records · Page 2Linked to original sources

Asymmetries in visual-spatial processing following childhood stroke.

The authors compared hemisphere-based and cognitive-domain-based hypotheses for visual-spatial deficits in children with stroke (n = 33) and children without stroke (n = 43). Children with unilateral left (n = 14) or right (n = 7) injury showed less efficient search for the visual field contralateral to their injury. Right-hemisphere injury was associated with deficient global-level processing and coordinate spatial judgments. Left-hemisphere injury resulted in relatively intact local versus global processing and categorical versus coordinate judgments. Bilateral injury (n = 12) resulted in disruption of visual search across visual fields and relative deficits in global-level processing and coordinate spatial judgments. Recovery of visual-spatial processing in children following childhood stroke is task specific. Certain visual-spatial functions typically mediated by the left hemisphere appear less vulnerable to disruption.

Adolescent↗

Reduced hippocampal insulin-degrading enzyme in late-onset Alzheimer's disease is associated with the apolipoprotein E-epsilon4 allele.

Abeta is the major component of amyloid plaques characterizing Alzheimer's disease (AD). Abeta accumulation can be affected by numerous factors including increased rates of production and/or impaired clearance. Insulin-degrading enzyme (IDE) has been implicated as a candidate enzyme responsible for the degradation and clearance of Abeta in the brain. We have previously shown that AD patients exhibit abnormalities in insulin metabolism that are associated with apoliprotein E (APOE) status. The possible association of IDE with AD, as well as the link between APOE status and insulin metabolism, led us to examine the expression of IDE in AD. We report that hippocampal IDE protein is reduced by approximately 50% in epsilon4+ AD patients compared to epsilon4- patients and controls. The allele-specific decrease of IDE in epsilon4+ AD patients is not associated with neuronal loss since neuron-specific enolase levels were comparable between the AD groups, regardless of APOE status. Hippocampal IDE mRNA levels were also reduced in AD patients with the epsilon4 allele compared to AD and normal subjects without the epsilon4 allele. These findings show that reduced IDE expression is associated with a significant risk factor for AD and suggest that IDE may interact with APOE status to affect Abeta metabolism.

Aged↗

Insulin dose-response effects on memory and plasma amyloid precursor protein in Alzheimer's disease: interactions with apolipoprotein E genotype.

In previous studies, adults with Alzheimer's disease (AD) showed memory enhancement when plasma insulin levels were raised to 85 microU/ml, whereas normal adults' memory was unchanged. Degree of memory enhancement was also related to apolipoprotein E (apoE) genotype status for AD patients. Response differences between normal and AD groups could reflect dose-response differences for insulin. To examine this question, 22 adults with AD and 15 normal adults received five doses of insulin on separate days in counterbalanced order, resulting in five plasma insulin levels (10, 25, 35, 85 and 135 microU/ml), while plasma glucose levels of ~100 mg/dl were maintained. Cognitive performance and plasma APP levels were measured after 120 min of infusion. Relative to baseline, AD patients who were not apoE- epsilon 4 homozygotes had improved memory at higher insulin levels of 35 and 85 microuU/ml, whereas normal adults and AD patients who were epsilon 4 homozygotes showed improved memory at insulin levels of 25 microU/ml. Normal adults' memory was also improved at insulin levels of 85 microU/ml. Plasma APP was lowered for adults with AD without the epsilon 4 allele at higher levels (85 microU/ml) than for normal adults and epsilon 4 homozygotes, who showed decreased APP at the 35 microU/ml level. AD patients with a single epsilon 4 allele showed a different pattern of insulin effects on APP than did other subjects. In general, few effects of insulin were seen at the highest dose for any subject group. These results support a role for insulin in normal memory and APP modulation that follows a curvilinear response pattern, and suggest that AD patients who are not epsilon 4 homozygotes have reduced sensitivity to insulin that may interfere with such modulation.

Aged↗

The role of insulin resistance in the pathogenesis of Alzheimer's disease: implications for treatment.

An emerging body of evidence suggests that an increased prevalence of insulin abnormalities and insulin resistance in Alzheimer's disease may contribute to the disease pathophysiology and clinical symptoms. It has long been known that insulin is essential for energy metabolism in the periphery. In the past 2 decades, convergent findings have begun to demonstrate that insulin also plays a role in energy metabolism and other aspects of CNS function. Investigators reported 20 years ago that insulin and insulin receptors were densely but selectively expressed in the brain, including the medial temporal regions that support the formation of memory. It has recently been demonstrated that insulin-sensitive glucose transporters are localised to the same regions supporting memory and that insulin plays a role in memory functions. Collectively, these findings suggest that insulin may contribute to normal cognitive functioning and that insulin abnormalities may exacerbate cognitive impairments, such as those associated with Alzheimer's disease. Insulin may also play a role in regulating the amyloid precursor protein and its derivative beta-amyloid (Abeta), which is associated with senile plaques, a neuropathological hallmark of Alzheimer's disease. It has been proposed that insulin can accelerate the intracellular trafficking of Abeta and interfere with its degradation. These findings are consistent with the notion that insulin abnormalities may potentially influence levels of Abeta in the brains of patients with Alzheimer's disease. The increased occurrence of insulin resistance in Alzheimer's disease and the numerous mechanisms through which insulin may affect clinical and pathological aspects of the disease suggest that improving insulin effectiveness may have therapeutic benefit for patients with Alzheimer's disease. The thiazolidinedione rosiglitazone has been shown to have a potent insulin-sensitising action that appears to be mediated through the peroxisome proliferator-activated receptor-gamma (PPAR-gamma). PPAR-gamma agonists, such as rosiglitazone, also have anti-inflammatory effects that may be of therapeutic benefit in patients with Alzheimer's disease. This review presents evidence suggesting that insulin resistance plays a role in the pathophysiology and clinical symptoms of Alzheimer's disease. Based on this evidence, we propose that treatment of insulin resistance may reduce the risk or retard the development of Alzheimer's disease.

Alzheimer Disease↗

Visual attention in preschool children prenatally exposed to cocaine: implications for behavioral regulation.

The presence of cocaine during the prenatal period disrupts the development of neural systems involved in mediating visual attention; therefore, it is possible that prenatal cocaine exposure results in impairments in visual attention in early childhood. In the current study we hypothesized that preschool children with prenatal cocaine exposure would exhibit difficulties in the disengagement operation of visual attention and in sustaining attention, particularly for targets presented in the right visual field. Fourteen cocaine-exposed children and 20 control children between 14 and 60 months of age were assessed on measures of visual attention, cognition, and behavior. Cocaine-exposed children had slower reaction times on disengagement trials in the second half of our attention task, supporting our hypotheses that impairments in disengagement and sustained attention are associated with prenatal cocaine exposure. There was a trend for slower reaction times to targets presented in the right visual field, but not to targets presented in the left visual field. Cocaine-exposed children also exhibited greater difficulties in behavioral regulation. Overall, our findings suggest that children with prenatal cocaine exposure demonstrate specific impairments in visual attention and behavioral regulation.

Adult↗

Cognitive changes associated with supplementation of testosterone or dihydrotestosterone in mildly hypogonadal men: a preliminary report.

This study prospectively examined changes in cognition in hypogonadal men given testosterone (T) or older hypogonadal men given dihydrotestosterone (DHT) gel. A battery of cognitive tests assessing verbal and spatial memory, language, and attention was administered at baseline (prior to medication) and again at days 90 and 180 of treatment for men receiving T gel and at baseline and days 30 and 90 of treatment for men receiving DHT gel. For men receiving T gel, circulating total T and estradiol (E(2)) were significantly raised compared with baseline, and a significant improvement in verbal memory was observed. For men receiving DHT gel, serum DHT levels increased and T levels decreased significantly compared with baseline, and a significant improvement in spatial memory was observed. The results suggest that beneficial changes in cognition can occur in hypogonadal men using T replacement levels and DHT treatment, and these changes in cognition can be reliably measured during a relative steady-state dose level. Further, our results suggest that aromatization of T to E(2) may regulate verbal memory in men, whereas nonaromatizable androgens may regulate spatial memory.

Adult↗

Insulin resistance syndrome and Alzheimer disease: pathophysiologic mechanisms and therapeutic implications.

Insulin plays a key role in cognition and other aspects of normal brain function. Insulin resistance induces chronic peripheral insulin elevations, reduces insulin activity, and reduces brain insulin levels. The insulin resistance syndrome and associated conditions such as type 2 diabetes mellitus and hypertension, are associated with age-related memory impairment and Alzheimer disease. Our work has focused on potential mechanisms through which this association is forged, including the effects of peripheral hyperinsulinemia on memory, inflammation, and regulation of the beta-amyloid peptide. We have shown that raising plasma insulin to levels that characterize patients with insulin resistance invokes synchronous increases in levels of beta-amyloid and inflammatory agents. These convergent effects may impair memory and induce AD pathology. Therapeutic strategies focused on preventing or correcting insulin abnormalities may thus benefit adults with age-related memory impairment and AD.

Alzheimer Disease↗

17beta-estradiol reduces plasma Abeta40 for HRT-naïve postmenopausal women with Alzheimer disease: a preliminary study.

OBJECTIVE: One mechanism to support the potentially beneficial effects of estrogen in the brain for postmenopausal women potentially involves the hormone's ability to favorably alter the processing of amyloid-precursor protein (APP), believed to play an important role in the pathobiology of Alzheimer disease (AD). The authors evaluated the effects of estrogen administration on plasma concentration of one by-product of APP processing, Abeta40, for postmenopausal women with AD. METHODS: In a placebo-controlled, double blind, parallel-group design study, 20 women were randomized to receive either 0.10 mg/day of transdermal 17beta-estradiol or a placebo for 8 weeks and were retrospectively evaluated as to whether basal levels of Abeta40 were affected by pre-study use of hormone replacement therapy (HRT). Blood samples were collected and cognitive tests were administered at baseline; at Weeks 3, 5, and 8 during treatment; and again 8 weeks after treatment termination. RESULTS: For the group as a whole, plasma Abeta40 was not reliably reduced in response to short-term estradiol administration. For HRT-naïve subjects, baseline Abeta40 concentrations were higher than those of previous HRT users, and controlled estradiol administration significantly reduced plasma Abeta40 by the end of the 8-week treatment period. CONCLUSIONS: These results provide preliminary clinical evidence to support an effect of estradiol on Abeta-processing for AD women who are HRT-naïve. This finding suggests that the hormone may serve as an Abeta-lowering agent for HRT-naïve AD women, which may, in turn, have ultimate ramifications for the progression of AD pathology.

Administration, Cutaneous↗