The effect of dietary omega-3 polyunsaturated fatty acids on plasma lipids and lipoproteins of C57BL/6 mice is age and sex specific

被引:20
作者
Balogun, K. A. [1 ]
Randunu, R. S. [1 ]
Cheema, S. K. [1 ]
机构
[1] Mem Univ, Dept Biochem, St John, NF A1B 3X9, Canada
来源
PROSTAGLANDINS LEUKOTRIENES AND ESSENTIAL FATTY ACIDS | 2014年 / 91卷 / 1-2期
基金
加拿大自然科学与工程研究理事会; 加拿大创新基金会;
关键词
n-3; PUFA; Age; Sex; Cholesterol efflux; Lipids and lipoproteins; LOW-DENSITY-LIPOPROTEIN; CORONARY-HEART-DISEASE; ALPHA-LINOLENIC ACID; CARDIOVASCULAR RISK-FACTORS; FISH-OIL SUPPLEMENTATION; LDL PARTICLE-SIZE; DOCOSAHEXAENOIC ACID; MYOCARDIAL-INFARCTION; RECEPTOR-ALPHA; PPAR-ALPHA;
D O I
10.1016/j.plefa.2014.05.002
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
070307 [化学生物学]; 071010 [生物化学与分子生物学];
摘要
There is clear evidence of the effects of sex and age on the prevalence of cardiovascular disease. We investigated the interactions of dietary omega (n)-3 polyunsaturated fatty acids (PUFA), sex, and age on plasma lipids and lipoproteins in the offspring of C57BL/6 mice exposed to high, medium, or low n-3 PUFA at weaning and 16 weeks postweaning. There was an increase in plasma triglycerides from weaning to 16 weeks in male and female offspring; however, the high n-3 PUFA group showed a reduction in triglycerides in both sexes at 16 weeks. High n-3 PUFA caused an increase in plasma LDL-cholesterol from weaning to 16 weeks in male offspring; however, the LDL particle size was significantly larger in the high n-3 PUFA group. Plasma from male mice showed higher cholesterol efflux compared to females; high n-3 PUFA increased cholesterol efflux. Thus the effects of n-3 PUFA are age and sex dependent. (C) 2014 Elsevier Ltd. All rights reserved.
引用
收藏
页码:39 / 47
页数:9
相关论文
共 124 条
[1]
Effects of menopause and hormone replacement therapy on plasma lipids, lipoproteins and LDL-receptor activity [J].
Abbey, M ;
Owen, A ;
Suzakawa, M ;
Roach, P ;
Nestel, PJ .
MATURITAS, 1999, 33 (03) :259-269
[2]
Mechanisms underlying the cardioprotective effects of omega-3 polyunsaturated fatty acids [J].
Adkins, Yuriko ;
Kelley, Darshan S. .
JOURNAL OF NUTRITIONAL BIOCHEMISTRY, 2010, 21 (09) :781-792
[3]
The roles of different pathways in the release of cholesterol from macrophages [J].
Adorni, Maria Pia ;
Zimetti, Francesca ;
Billheimer, Jeffrey T. ;
Wang, Nan ;
Rader, Daniel J. ;
Phillips, Michael C. ;
Rothblat, George H. .
JOURNAL OF LIPID RESEARCH, 2007, 48 (11) :2453-2462
[4]
Agren JJ, 1996, EUR J CLIN NUTR, V50, P765
[5]
Novel regulatory roles of omega-3 fatty acids in metabolic pathways: a proteomics approach [J].
Ahmed, Abeer A. ;
Balogun, Kayode A. ;
Bykova, Natalia V. ;
Cheema, Sukhinder K. .
NUTRITION & METABOLISM, 2014, 11
[6]
[Anonymous], 2011, Global Atlason Cardiovascular Disease Prevention and Control: Published by theWorld Health Organization in Collaboration with the World Heart Federationand the World Stroke Organization
[7]
Distribution, interconversion, and dose response of n-3 fatty acids in humans [J].
Arterburn, Linda M. ;
Hall, Eileen Bailey ;
Oken, Harry .
AMERICAN JOURNAL OF CLINICAL NUTRITION, 2006, 83 (06) :1467S-1476S
[8]
ASAYAMA K, 1990, CLIN CHEM, V36, P129
[9]
Hypertriglyceridemia as a cardiovascular risk factor [J].
Austin, MA ;
Hokanson, JE ;
Edwards, KL .
AMERICAN JOURNAL OF CARDIOLOGY, 1998, 81 (4A) :7B-12B
[10]
HIGH-DENSITY AND LOW-DENSITY LIPOPROTEIN SUBFRACTIONS IN SURVIVORS OF MYOCARDIAL-INFARCTION AND IN CONTROL SUBJECTS [J].
BALLANTYNE, FC ;
CLARK, RS ;
SIMPSON, HS ;
BALLANTYNE, D .
METABOLISM-CLINICAL AND EXPERIMENTAL, 1982, 31 (05) :433-437