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Dried Blood Spot Collection of Health Biomarkers to Maximize Participation in Population Studies
Published on: January 28, 2014
Biomarkers
Joanna L Eckhardt1, A Lisette Isenberg1, Teresa Monreal2
1Alzheimer's Disease Cooperative Study (ADCS), University of California, San Diego, La Jolla, CA, USA.
Background:
Exercise and circadian therapies are promising lifestyle interventions for reducing Alzheimer's disease risk and progression. This work investigates how 6-months of aerobic exercise impacts circadian rhythms in older adults with objective early cognitive impairment.
Method:
This work utilized longitudinal data from the Lifestyle Enriching Activities for Research in Neuroscience Intervention Trial (LEARNit). The sample included 55 sedentary older adults ages 55-79 with objective early cognitive impairment. Over 6 months, participants completed either 1) 150 minutes/week of moderate-aerobic walking (n = 29) or 2) self-paced reading of healthy lifestyles topics (n = 26). Participants wore a GENEActiv (Activinsights Ltd) accelerometer for on average 31.8 ± 4.2 days (range: 21-45 days) at baseline, and 25.3 ± 7.3 days (range: 10-40 days) at 6-month follow-up. All analyses were conducted in R (version 4.3.1). Processing of raw accelerometer data was conducted with GGIR (version 3.0-1). ActCR (version 0.3.0) was used to extract amplitude and Midline Estimating Statistic of Rhythm (MESOR), two measures of circadian strength. Amplitude refers to the activity oscillation amplitude, whereas MESOR is a rhythm-adjusted mean of activity levels. nparACT (version 0.8) was used to extract M10 start time-the start time of the 10 hours with highest average amplitude. Percent change was quantified for these measures between baseline and 6-months. Analysis of covariance (ANCOVA) were conducted to compare percent change between randomization groups, and were adjusted for age, sex, and APOE4 carrier status.
Result:
Participant demographics are summarized and split by randomization group in Table 1. ANCOVA showed a significant difference in percent change of MESOR (F(1,50)=12.18, p = 0.0010 η2=0.18) and amplitude (F(1,50)=6.04, p = 0.018, η2=0.10) between groups, such that the exercise group increased both measures of circadian strength (Figure 1). There was also a significant difference in percent change of M10 start time (F(1,50)=4.64, p = 0.036, η2=0.083), such that the exercise group shifted M10 start time later (Figure 1).
Conclusion:
Moderate aerobic walking over 6 months resulted in a greater positive percent change in MESOR, amplitude, and M10 start time compared to the health education group. These results indicate that a moderate aerobic walking program, or exercise, in sedentary older adults can increase circadian strength and shift rhythm timing.
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