Polyunsaturated Fatty Acids in Male and Female Reproduction1

Полиненасыщенные жирные кислоты в репродукции мужчин и женщин
D.C. Wathes, D.R.E. Abayasekara, R. John Aitken
2007-04-18

n-3 PUFAsn-6 PUFAspolyunsaturated fatty acidsprostaglandin synthesissperm oxidative stress
In Westernized societies, average consumption of n-6 polyunsaturated fatty acids (PUFAs) far exceeds nutritional requirements. The ratio of n-6 to n-3 PUFAs is generally >10:1 whereas on a primitive human diet it was closer to 1:1. Diets fed to intensively farmed livestock have followed a similar trend. Both n-6 and n-3 PUFAs can influence reproductive processes through a variety of mechanisms. They provide the precursors for prostaglandin synthesis and can modulate the expression patterns of many key enzymes involved in both prostaglandin and steroid metabolism. They are essential components of all cell membranes. The proportions of different PUFAs in tissues of the reproductive tract reflect dietary consumption. PUFA supplements (particularly n-3 PUFAs in fish oil) are promoted for general health reasons. Fish oils may also benefit fertility in cattle and reduce the risk of preterm labor in women, but in both cases current evidence to support this is inconclusive. Gamma-linolenic acid containing oils can alter the types of prostaglandins produced by cells in vitro, but published data to support claims relating to effects on reproductive health are lacking. Spermatozoa require a high PUFA content to provide the plasma membrane with the fluidity essential at fertilization. However, this makes spermatozoa particularly vulnerable to attack by reactive oxygen species, and lifestyle factors promoting oxidative stress have clear associations with reduced fertility. Adequately powered trials that control for the ratios of different PUFAs consumed are required to determine the extent to which this aspect of our diets does influence our fertility.
1
Adequately powered trials controlling dietary PUFA ratios are needed to establish how PUFA intake affects fertility; evidence supporting reproductive benefits of gamma-linolenic-acid oils is currently lacking.
2
Both n-6 and n-3 PUFAs influence reproduction as prostaglandin precursors, regulators of prostaglandin and steroid-metabolism enzymes, and essential cell-membrane components.
3
Fish-oil n-3 PUFA supplementation may benefit cattle fertility and reduce preterm-labor risk in women, but available evidence remains inconclusive.
4
Reproductive-tract tissue PUFA composition reflects dietary intake, indicating that dietary fatty-acid ratios can modify the biochemical environment of reproduction.
5
Spermatozoa require high PUFA content for membrane fluidity during fertilization, yet this increases vulnerability to reactive oxygen species and oxidative-stress-associated infertility.
6
Westernized diets provide disproportionately high n-6 PUFA intake, with n-6:n-3 ratios generally exceeding 10:1 versus approximately 1:1 on ancestral diets.

Polyunsaturated fatty acids (n-6 and n-3 PUFAs) in male and female reproductive systems, including spermatozoa and reproductive tissues

The effects and mechanisms of dietary PUFA composition on reproductive processes and fertility, including prostaglandin and steroid metabolism, membrane function, sperm vulnerability to oxidative stress, and reproductive outcomes

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2007-04-18
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D.C. Wathes
D.R.E. Abayasekara
R. John Aitken
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