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Telomere shortening in elderly individuals with mild cognitive impairment may be attenuated with ω-3 fatty acid supplementation: a randomized controlled pilot study.

Nathan O'Callaghan, Natalie Parletta, Catherine M Milte, Bianca Benassi-Evans, Michael Fenech et al.
RCT Nutrition (Burbank, Los Angeles County, Calif.) 2014 74 trích dẫn
PubMed DOI
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Study Design

Loại nghiên cứu
Randomized Controlled Trial
Cỡ mẫu
12
Đối tượng nghiên cứu
elderly adults
Can thiệp
Telomere shortening in elderly individuals with mild cognitive impairment may be attenuated with ω-3 fatty acid supplementation: a randomized controlled pilot study. 1.67 g
Đối chứng
None
Kết quả chính
None
Xu hướng hiệu quả
Positive
Nguy cơ sai lệch
Moderate

Abstract

OBJECTIVES: Excessive shortening of the telomeric ends of chromosomes is a marker of accelerated aging. Oxidative stress and nutritional deficiency may influence this process. The aim of this study was to investigate the effect of ω-3 polyunsaturated fatty acid (ω-3 PUFA) supplementation on telomeric shortening in elderly individuals with mild cognitive impairment (MCI). METHODS: Thirty-three adults ages > 65 y with MCI were randomized to receive a supplement rich in the long-chain ω-3 PUFAs eicosapentaenoic acid (EPA; 1.67 g EPA + 0.16 g docosahexaenoic acid DHA/d; n = 12) or DHA (1.55 g DHA + 0.40 g EPA/d; n = 12), versus ω-6 PUFA linoleic acid (LA; 2.2 g/d; n = 9) for 6 mo. RESULTS: The intervention did not show an increase in telomere length with treatment and there was a trend toward telomere shortening during the intervention period. Linear mixed modeling produced a robust model although statistically underpowered. Telomere shortening was greatest in the LA group (d = 0.21) than in the DHA (d = 0.12) and EPA groups (d = 0.06). Increased erythrocyte DHA levels were associated with reduced telomere shortening (r = -0.67; P = 0.02) in the DHA group. CONCLUSION: Telomeric shortening may be attenuated by ω-3 PUFA supplementation, requiring further investigation in larger samples.

Tóm lược

Telomeric shortening may be attenuated by ω-3 PUFA supplementation, requiring further investigation in larger samples, although statistically underpowered.

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