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Karen M Prestwood

Publications and source records attributed to Karen M Prestwood.

15 recordsLinked to original sources

Low-dose estradiol alters brain activity.

Although several studies have examined the effects of estrogen replacement therapy (ERT) on neural activity associated with tasks of learning and memory, no study has examined such effects on a sustained attention task. This study examined the effect of low-dose estrogen replacement therapy on hemodynamic activity elicited by a visual three-stimulus oddball task recorded using event-related functional magnetic resonance imaging (fMRI). Participants included 16 women between the ages of 73 and 84 who were part of a randomized controlled double-blind study to evaluate the effect of an ultralow dose micronized estradiol on bone. No significant differences in behavioral performance were found with ERT. However, there was evidence that ERT group participants had both reductions and increases in the amplitude of hemodynamic response in a variety of subcortical and cortical brain regions. These included regions involved in perception and attention such as the occipital and parietal lobes, motor cortex, anterior cingulate and prefrontal cortex. These findings suggest that estrogen may facilitate the efficiency of brain function during the performance of sustained attention tasks in post-menopausal elderly women.

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Effects of ultra-low-dose estrogen therapy on muscle and physical function in older women.

OBJECTIVES: To determine the effects of ultra-low-dose hormone therapy on muscle mass and physical function in community-dwelling women. DESIGN: Double-blind, placebo-controlled trial. SETTING: Clinical research center in Connecticut. PARTICIPANTS: Healthy, community-dwelling women aged 65 and older (n=167). INTERVENTION: Eligible women were randomly assigned to treatment with 0.25 mg 17-beta estradiol or placebo for 36 months. All women (estradiol or placebo) with an intact uterus received micronized progesterone 100 mg/d for 2 weeks every 6 months. All participants received 1,300 mg elemental calcium with 1,000 IU vitamin D per day. MEASUREMENTS: Appendicular skeletal muscle mass (ASM), lean body mass (LBM), and percentage body fat were measured using dual x-ray absorptiometry. Sarcopenia was defined as skeletal muscle mass (ASM/height2) 2 standard deviations or less than young, healthy reference population mean. Physical activity (Physical Activity Scale in the Elderly (PASE)) and performance were measured. Serum estrone, estradiol, and sex hormone-binding globulin were measured. RESULTS: The prevalence of sarcopenia at baseline was 13%. There were no baseline differences between groups except for PASE score and chair rise time, in which the estrogen group had better performance. No changes in ASM, LBM, percentage of body fat, or physical performance were found after 3 years of estrogen therapy. CONCLUSION: Sarcopenia was present in 13% of this group of community-dwelling, postmenopausal older women. Ultra-low-dose estrogen therapy neither improves nor harms ASM. Similarly, no changes in body fat or physical performance were detected.

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Comparison of the effects of calcium loading with calcium citrate or calcium carbonate on bone turnover in postmenopausal women.

Calcium supplementation is known to increase bone mineral density and decrease fractures, but the relative efficacy of different forms of calcium supplementation is not established. We compared the effects of calcium carbonate and calcium citrate on markers of bone resorption in older postmenopausal women in an open-labeled crossover study. Forty women were randomized to receive 1000 mg/day of either calcium citrate or calcium carbonate for 12 weeks, followed by a 2-week washout without calcium supplements and 12 weeks treatment with the alternate calcium supplement. All women received vitamin D (900 IU/day). Thirty-four women (25 Caucasian, nine Hispanic) completed the study. No significant differences in the decrease in parathyroid hormone (PTH) or bone specific alkaline phosphatase or the increase in urinary calcium/creatinine were detected between the two treatments. However, calcium citrate supplementation decreased the collagen cross-link resorption markers, urinary N-telopeptide (-30%), C-telopeptide (-31%), free deoxypyridinoline (19%) and serum N-telopeptide (-8%), compared to no significant change following calcium carbonate supplementation (+2%, +3%, +2% and +2%, respectively; P<0.05). Calcium citrate decreased markers of bone resorption significantly more than calcium carbonate in postmenopausal women, although no differences in their effects in calcium excretion or PTH were detected.

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Bone health and aging: implications for menopause.

Osteoporosis is one major health condition that contributes to excess morbidity and mortality in women after menopause. In the past, hormone therapy (HT) was prescribed commonly for symptoms of menopause, and there was also evidence that HT protected against osteoporosis. Recently, however, the overall health risks have been reported to exceed benefits, with the beneficial effects seen only in the decreased incidence of hip fractures and colon cancer. The role of HT in menopausal women is unclear at this time, although many women may require it to reduce menopausal symptoms. Osteoporosis may be an area where the benefit of using HT may outweigh the risks in a select group of women. Further, because lower than usual doses of estrogen have been shown to reduce menopausal symptoms and to protect bone, additional research will likely expand physicians' current knowledge of the use of HT in menopausal women. This article reviews the use of low-dose estrogen to promote bone health in postmenopausal women.

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The effect of different doses of micronized 17beta-estradiol on C-reactive protein, interleukin-6, and lipids in older women.

BACKGROUND: The authors evaluated the effect of 3 doses (0.25 mg/day, 0.5 mg/day, and 1 mg/day) of micronized 17beta-estradiol (E2) on C-reactive protein (CRP), interleukin-6 (IL-6), and lipids, compared with placebo, in healthy older women participating in an osteoporosis study. METHODS: This randomized, double-blind, placebo-controlled study was conducted in a University clinical research center. Participants were healthy, community-living women older than 65 years. The primary outcome measure of the study was bone metabolism as estimated by serum and urine markers of bone turnover. For this analysis, the authors measured serum markers of CRP, IL-6, lipids, intracellular adhesion molecule-1, and E-selectin at baseline, after 12 weeks of treatment, and after 12 weeks with no treatment. RESULTS: A significant dose-response effect of estrogen occurred on CRP levels. After 12 weeks of treatment, CRP decreased 59% in the 0.25 mg/day E2 group and increased 65% in the 1 mg/day E2 group, compared with placebo. The CRP level continued to be elevated (92%), compared with placebo, 12 weeks after treatment was discontinued in the 1 mg/day E2 group. High-density lipoprotein (HDL) and HDL2 cholesterol increased and low-density lipoprotein (LDL) cholesterol decreased at 12 weeks in the 1 mg/day E2 group, with a significant dose-response effect. E-selectin decreased significantly in the 1 mg/day E2 group 12 weeks after discontinuation of treatment (-7%), and there was a significant dose-response effect at this time. The 2 lower doses did not affect any of these parameters. Total and HDL3 cholesterol, triglycerides, lipoprotein(a), intracellular adhesion molecule-1, and IL-6 did not change with any dose of E2. CONCLUSIONS: C-reactive protein, an inflammation marker associated with increased risk for cardiovascular disease, decreased in women taking the lowest estrogen dose but increased in women assigned to the highest estrogen dose, suggesting decreased inflammation with lower dose E2. However, with 3 months of treatment, 0.25 or 0.5 mg/day E2 did not have the same beneficial effects on HDL or LDL cholesterol as did 1 mg/day E2. These data suggest that estradiol doses have differential short-term effects on markers of cardiovascular disease. Low-dose E2 decreased CRP, an important marker of inflammation, but did not affect lipid parameters, whereas the highest dose increased CRP and had a beneficial effect on lipid parameters. The long-term consequences of these effects are unknown, but it is possible that estradiol dose should be considered when risk:benefit ratios are evaluated for individual women before estrogen replacement therapy is initiated.

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Multicultural medication adherence: a comparative study.

The purpose of this study was to evaluate the effect of several interventions on improving medication adherence among White, Black, and Hispanic older women. A total of 109 women older than age 65 who were participating in a clinical osteoporosis trial were recruited for this 12-month study examining medication adherence. After baseline medication adherence was assessed, participants underwent standardized teaching. Participants were contacted monthly by telephone and were seen in a clinic setting every 3 months. All participants used a pillbox for 6 months, and the minority women used an electronic monitoring bottle for 6 months. Adherence was highest in White women. Black women showed significant improvement in adherence at 9 and 12 months, and Hispanic women demonstrated a significant increase in adherence at 12 months. The use of electronic monitors had a positive effect on adherence for the minority women.

Black or African American↗

Ultralow-dose micronized 17beta-estradiol and bone density and bone metabolism in older women: a randomized controlled trial.

CONTEXT: Estrogen therapy is known to prevent osteoporosis, but studies have shown that conventional doses increase adverse events. Whether lower doses, one quarter of standard treatment, prevent bone loss is not known. OBJECTIVE: To examine the effect of 3 years of treatment with 0.25 mg/d of micronized 17beta-estradiol on bone mineral density (BMD) and bone turnover in healthy older postmenopausal women. DESIGN, SETTING, AND PARTICIPANTS: Randomized, double-blind, placebo-controlled trial conducted from July 24, 1998, through June 14, 2002, at a university general clinical research center in the United States. Healthy, community-dwelling women (N = 167) who were older than 65 years at enrollment. INTERVENTION: Dosage of 0.25 mg/d of micronized 17beta-estradiol (n = 83) or placebo (n = 84); all women who had not had a hysterectomy received 100 mg/d of oral micronized progesterone for 2-week periods every 6 months. MAIN OUTCOME MEASURES: The BMD of the hip, spine, wrist, and total body measured annually for 3 years. Serum and urine biochemical markers of bone resorption and formation and sex hormones were measured at baseline, 3 months, and during years 1 and 3 of treatment. RESULTS: Mean BMD increased at all sites for participants taking low-dose estrogen (17beta-estradiol) compared with placebo (P<.001). Compared with participants receiving placebo, participants taking low-dose estrogen had BMD increases of 2.6% for the femoral neck; 3.6%, total hip; 2.8%, spine; and 1.2%, total body. Markers of bone turnover, N-telopeptides of type 1 collagen, and bone alkaline phosphatase decreased significantly (P<.001) in participants taking low-dose estrogen compared with placebo. Estradiol, estrone, and sex hormone-binding globulin levels increased in the estrogen-treated group compared with placebo. The adverse effect profile was similar; specifically, there were no statistically significant differences in breast tenderness, changes in endometrial thickness or pathological effects, or annual mammographic results between the 2 groups. The number of abnormal mammograms over 3 years was 15 for the low-dose estrogen group and 10 for the placebo group (8 occurred at baseline) (P =.26). There were no reports of breast cancer during the study. CONCLUSIONS: In older women, a dosage of 0.25 mg/d of 17beta-estradiol increased bone density of the hip, spine, and total body, and reduced bone turnover, with minimal adverse effects. Future studies evaluating the effect of low-dose estrogen on fractures are indicated.

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Osteoporosis in older men and women.

Hip fracture incidence accelerates approximately 10 years following the menopause in women and after age 70 in men. Approximately one million Americans suffer fragility fractures each year at a cost of over 14 billion dollars. The disability, mortality and cost of hip and vertebral fractures are substantial in the rapidly growing aging population so that prevention of osteoporosis is a major public health concern. Bone mineral density (BMD) measurement is used to make the diagnosis of osteoporosis prior to incident fracture, and to predict fracture risk. Recommendations for treatment and prevention of osteoporosis based on bone mineral density score published by the World Health Organization and the National Osteoporosis Foundation are outlined.

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Prevention and treatment of osteoporosis.

Osteoporosis develops in older adults when the normal processes of bone formation and resorption become uncoupled or unbalanced, resulting in bone loss. Fractures are the result of decreased bone mass and strength and, in the case of wrist and hip fractures, usually involve a fall. Osteoporosis prevention and treatment programs should then focus on strategies that minimize bone resorption and maximize bone formation as well as on strategies that reduce falls. Optimal treatment and prevention of osteoporosis require modification of risk factors, particularly smoking cessation, adequate physical activity, and attention to diet, in addition to pharmacologic intervention. A number of pharmacologic options are now available to health care providers. This article focuses on US Food and Drug Administration-approved medications for osteoporosis and emphasizes the importance of using these agents as part of a comprehensive program that includes nonpharmacologic measures, complete diagnostic evaluation, and adequate follow-up with bone mineral density measurement.

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Prevalence of sarcopenia and predictors of skeletal muscle mass in healthy, older men and women.

BACKGROUND: Sarcopenia refers to the loss of skeletal muscle mass with age. The objective of this study was to determine the prevalence of sarcopenia in a population of older, community-dwelling research volunteers. METHODS: Appendicular skeletal muscle mass was measured by dual x-ray absorptiometry in 195 women aged 64 to 93 years and 142 men aged 64 to 92 years. We defined sarcopenia as appendicular skeletal muscle mass/height(2) (square meters) less than 2 standard deviations below the mean for young, healthy reference populations. We used two different reference populations and compared prevalence in our population to that reported in previous studies. Body mass index (BMI) was calculated and physical activity and performance were measured with the Physical Activity Scale for the Elderly, the Short Physical Performance Battery, and the Physical Performance Test. We measured health-related quality of life by using the SF-36 general health survey. Serum estrone, estradiol, sex hormone-binding globulin, parathyroid hormone, and 25-hydroxy vitamin D were measured in all participants and bioavailable testosterone was measured only in men. Leg press strength and leg press power were determined in men. RESULTS: The prevalence of sarcopenia in our cohort was 22.6% in women and 26.8% in men. A subgroup analysis of women and men 80 years or older revealed prevalence rates of 31.0% and 52.9%, respectively. In women, skeletal muscle mass correlated significantly with BMI and levels of serum estrone, estradiol, and 25-hydroxy vitamin D; in men, it correlated significantly with BMI, single leg stance time, leg press strength, leg press power, SF-36 general health score, Physical Performance Test total score, and bioavailable testosterone levels. With the use of linear regression analysis, BMI was the only predictor of appendicular skeletal muscle mass in women, accounting for 47.9% of the variance (p <.05). In men, BMI accounted for 50.1%, mean strength accounted for 10.3%, mean power accounted for 4.1%, and bioavailable testosterone accounted for 2.6% of the variance in appendicular skeletal muscle mass (p <.05). CONCLUSIONS: Sarcopenia is common in adults over the age of 65 years and increases with age. BMI is a strong predictor of skeletal muscle mass in women and men. Strength, power, and bioavailable testosterone are further contributors in men. These data suggest that interventions to target nutrition, strength training, and testosterone replacement therapy should be further investigated for their role in preventing muscle loss with age.

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Effects of transdermal testosterone on cognitive function and health perception in older men with low bioavailable testosterone levels.

BACKGROUND: Many men older than 50 years have bioavailable testosterone levels below the reference range for young adult men. The impact of the decreased androgen levels on cognition and health perception has received little attention. METHODS: Sixty-seven men (mean age 76 +/- 4 years, range 65-87) with bioavailable testosterone levels below 128 ng/dl (lower limit for adult normal range) were randomized to receive transdermal testosterone (2-2.5 mg patches/d) or placebo patches for 1 year. All men received 500 mg supplemental calcium and 400 IU vitamin D. Outcome measures included sex hormones [testosterone, bioavailable testosterone, sex hormone binding globulin (SHBG), estradiol, and estrone], cognitive tests (Digit Symbol, Digit Span, Trailmaking A and B), health perception (Medical Outcome Survey Short-form 36 or SF-36), lower extremity muscle strength and power, and calcium intake. RESULTS: Twenty-three men (34%) withdrew from the study; 44 men completed the trial. Bioavailable testosterone levels increased from 93 +/- 34 (SD) to 162 +/- 100 ng/dl (p <.002) at 12 months in the testosterone group (n = 24) while no change occurred in the control group (n = 20). While there was no change in estradiol levels in either group, estrone levels increased in the testosterone group (28 +/- 7 to 32 +/- 9 pg/dl, p =.017). Scores on the Digit Symbol test improved in both the testosterone and placebo groups. Scores on Trailmaking B improved in men treated with testosterone (p <.005), although the changes were not statistically different from the changes seen in the placebo group. Twelve-month scores on Trailmaking B for the entire group were correlated with 12-month testosterone levels (p =.016). Scores for health perception measured by SF-36 did not change significantly, though scores of mental and general health declined in both groups during the 12-month intervention. Twelve-month bioavailable testosterone scores were directly correlated with scores for physical role (p =.022), vitality (p =.036), and the physical composite score (p =.010). CONCLUSIONS: Transdermal testosterone treatment in men with low bioavailable testosterone levels does not impair and may improve cognitive function. Treatment did not improve health perception but this may have been due to the side effects of skin irritation suggested by similar reactions in both the testosterone and placebo groups.

Administration, Cutaneous↗

Effects of transdermal testosterone on lipids and vascular reactivity in older men with low bioavailable testosterone levels.

BACKGROUND: Sex hormones are known to affect cholesterol levels and vascular tone in women. The effects of testosterone on cholesterol and vascular tone in men are less well understood. Low testosterone levels have been associated with higher cholesterol levels in epidemiologic studies, but testosterone replacement has resulted in variable changes in cholesterol levels. Similarly, clinical studies suggest that testosterone may be vasodilatory, but few studies have directly evaluated the effects of testosterone on vascular tone. METHODS: Sixty-seven men (mean age 76 +/- 4 years, range 65-87) with bioavailable testosterone levels below 4.44 nmol/l (lower limit for adult normal range) were randomized to receive transdermal testosterone (2-2.5 mg patches/d) or placebo patches for 1 year. Twenty-three men (34%) withdrew from the study; 44 men completed the trial. RESULTS: While total cholesterol, triglyceride, and low-density lipoprotein cholesterol levels did not significantly change during the year of therapy, high-density lipoprotein (HDL) levels (p =.004) and, specifically, HDL(2) subfraction (p =.02) decreased in men receiving testosterone supplementation. Vascular tone was measured by brachial artery reactivity in 36 men. Endothelium-dependent brachial artery reactivity did not change from baseline measurements in men receiving transdermal testosterone (0.3 +/- 6.7% to 1.6 +/- 4.6%; p =.58) or in the placebo group (3.2 +/- 5.5% to 0.7 +/- 5.5%; p =.23). CONCLUSIONS: Transdermal testosterone decreased HDL(2) cholesterol but did not affect vascular reactivity in men older than 65 years selected for low testosterone levels. No study to date has addressed the direct relationship between testosterone replacement and cardiovascular events.

Administration, Cutaneous↗