• Title/Summary/Keyword: n-6 지방산

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Effect of n-3 Fatty Acid Deficiency on Fatty Acid Composition in Brain, Retina and Liver Using a Novel Artificial Rearing System (인공 사육 동물 모델 시스템을 이용한 n-3 지방산 결핍이 쥐의 뇌, 망막, 간의 지방산 조성에 미치는 영향)

  • Lim, Sun-Young
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.34 no.4
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    • pp.466-475
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    • 2005
  • Docosahexaenoic acid (22:6n-3, DHA) is highly enriched in membrane of brain and retina, and plays an important role in maintaining an optimal function of the central nervous system. We investigated the effect of n-3 fatty acid deficiency on rat brain, retina and liver fatty acyl composition at two different ages (3 wks and 15 wks) under DHA deficient condition. Rat pups born to dams fed a diet with $3.1\%$ of total fatty acids as $\alpha-linolenic$ acid (LNA) were fed using an artificial rearing system either an n-3 deficient (n-3 Def) or n-3 adequate (n-3 Adq) diet. Both diets contained $17.1\%$ linoleic acid (LA) but the n-3 Adq diet also contained $3.1\%$ LNA. Rats consuming the n-3 Def diet showed a lower brain $(50\%\;in\;13\;wks\;and\;70\%\;in\;15\;wks,\;p<0.05)$ and retinal $(50\%\;in\;13\;wks\;and\;63\%\;in\;15\;wks,\;p<0.05)$ DHA than those on the n-3 Adq diet, which was largely compensated for by an increase in docosapentaenoic acid (22:5n-6, DPAn-6). In the liver of the n-3 Def group, the percentage of DHA decreased by $97\%$ at 3 wks of age with an apparent increase in DPAn-6 relative to the n-3 Adq group (p<0.05), while there was a $65\%$ lower liver DHA in n-3 Def group at 15 wks of age than the n-3 Adq group (p<0.05). Liver arachidonic acid (20:4n-6, AA) was increased at 3 wks of age but decreased at 15 wks of age in the n-3 Def group compared with n-3 Adq group (p<0.05). In conclusion, the replacement of DHA by DPAn-6 in brain and retina fatty acid composition may be related to the suboptimal function in spatial learning, memory and visual acuity. This artificial rearing method presents a first generation model for n-3 deficiency that is similar to the case of human nutrition that commonly employed two generation model.

Effect of Treatment with Docosahexaenoic Acid into N-3 Fatty Acid Deficient and Adequate Diets on Rat Brain and Liver Fatty Acid Composition (필수 지방산 조성이 다른 식이의 docosahexaenoic acid 투여가 흰쥐 뇌 및 간의 지방산 조성에 미치는 영향)

  • Lim, Sun-Young
    • Journal of Life Science
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    • v.19 no.10
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    • pp.1417-1423
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    • 2009
  • Previous studies have suggested that docosahexaenoic acid (DHA) supplementation into n-3 fatty acid deficient diet improved spatial learning performance, but there was no significant difference in brain related function when DHA was added into a n-3 fatty acid adequate diet. Here, we investigated the effect of adding DHA into an n-3 fatty acid deficient or adequate diet on brain and liver fatty acid composition. On the second day after conception, Sprague Dawley strain dams were divided into four groups as follows; n-3 fatty acid deficient (Def), n-3 fatty acid deficient plus DHA (Def+DHA, 10.2% DHA), n-3 fatty acid adequate (Adq, 3.4% linolenic acid), and n-3 fatty acid adequate plus DHA (Adq+DHA, 3.31% linolenic acid plus 9.65% DHA). After weaning, male pups were fed on the same diets of their respective dams until adulthood. In brain fatty acid composition, the Def group showed a lower brain DHA (64% decrease), which was largely compensated for by an increase in docosapentaenoic acid (22:5n-6). Brain DHA in the Def+DHA group was increased to almost the same extent as in the Adq and Adq+DHA groups and there were no significant differences among them. Liver fatty acid composition showed a similar pattern to that of the brain, but liver DHA in the Def+DHA showed the highest percentage among the diet groups. In conclusion, n-3 fatty acid deficiency from gestation to adulthood leads to decreased brain DHA, which has been shown to be highly associated with poor spatial leaning performance. Thus, adequate brain DHA levels are required for optimal nervous function.

Effect of intake of dried mackerel on fatty acid compositions in liver and nervous tissue (건조 고등어 섭취가 마우스의 간 및 신경조직의 지방산 조성에 미치는 영향)

  • Choi, Hyung-Ju;Kim, Kyung-Kun;Lim, Sun-Young
    • Journal of Life Science
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    • v.17 no.4 s.84
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    • pp.546-551
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    • 2007
  • The purpose of this investigation was to determine the effect of feeding dried mackerel as a means of increasing the intake of these n-3 polyunsaturated fatty acids on fatty acid compositions in liver and nervous tissue. Twenty male mice aged at 4 weeks were fed on the control (5% palm oil, control group) and 5% dried mackerel diets (mackerel group) for four weeks. In fatty acid compositions of liver and cortex, levels of total n-3 fatty acid, specially docosahexaenoic (22:6n-3, DHA) and eicosapentaenoic (20:5n-3, EPA) acids, were increased in the mackerel group compared to the control group, while docosapentaenoic acid (22:5n-6, DPAn-6) levels were decreased (p<0.05). In cerebellum and retina, levels of DHA were not significantly different between the control and mackerel groups, but levels of total n-6 fatty acids and arachidonic acid (20:4n-6, AA) were decreased in the mackerel group. These results indicated that intake of 5% dried mackerel increased levels of n-3 polyunsaturated fatty acids in cortex. Thus, we will investigate the relationship between brain function and cortex fatty acid compositions following intake of mackerel by assessing discrimination leaning ability.

Effect of n-3 fatty acid deficiency on fatty acid compositions of nervous system in rats reared by artificial method. (N-3 지방산 결핍이 혈청 및 신경조직의 지방산 조성에 미치는 영향)

  • Lim, Sun-Young
    • Journal of Life Science
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    • v.17 no.5 s.85
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    • pp.634-640
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    • 2007
  • Our previous study suggested that n-3 fatty acid deficiency was associated with significantly reduced spatial learning as assessed by Morris water maze test. Here we investigated an effect of n-3 fatty acid deficiency on rat brain, retina and serum fatty acyl compositions at 15 wks age using a first generational artificial rearing technique. Newborn Rat pups were separated on day 2 and assigned to two artificial rearing groups or a dam-reared control group. Pups were hand fed artificial milk via custom-designed nursing bottles containing either 0.02%(n-3 Deficient) or 3.1% (n-3 Adequate) of total fatty acids as a-linolenic acid(LNA). At day 21, rats were weaned to either n-3 deficient or n-3 adequate pelleted diets and fatty acid compositions of brain, retina and liver were analyzed at 15 wks age. Brain docosahexaenoic acid(DHA) was lower(58% and 61%, P<0.05) in n-3 deficient in comparison to n-3 adequate and dam-reared groups, receptively, while brain docosapentaenoic acid(DPAn-6) was increased in the n-3 deficient group. In retina and serum fatty acid compositions, the decreased precentage of DHA and increased precentage of DPAn-6 were observed. These results suggested that artificial rearing method can be used to produce n-3 fatty acid deficiency in the first generation and that adequate brain DHA levels are required for optimal brain function.

Effect of Low Temperature Vacuum Dried Mackerel Intake on Lipid Profiles and Fatty Acid Compositions in Serum, Heart, Kidney and Adipose Tissue in Mice (저온 진공 건조기를 이용하여 건조된 고등어의 투여가 마우스 혈청과 조직의 지질 및 지방산 조성에 미치는 영향)

  • Choi, Hyung-Ju;Kim, Chang-Bok;Kim, Kyung-Kun;Lim, Sun-Young
    • Journal of Marine Bioscience and Biotechnology
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    • v.1 no.3
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    • pp.198-205
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    • 2006
  • This study was designed to investigate the possibility of the use of dried mackerel, which is enriched with docosahexaenoic (22:6n-3, DHA) and eicosapentaenoic (20:5n-3, EPA) acids, as a means of increasing the intake of these n-3 polyunsaturated fatty acids, and to investigate the effect of the consumption of mackerel on tissue triglyceride, cholesterol contents and fatty acid compositions. Twenty male mice were fed on 5% palm oil (control group) and 5% dried mackerel (mackerel group) diets for four weeks. Total triglyceride, cholesterol and LDL-cholesterol levels tended to decrease in serum, heart and kidney of the mackerel group compared to the control group, while HDL-cholesterol levels were increased with the intake of mackerel. In fatty acid compositions of serum and heart, the mackerel group showed increased percentages of n-3 fatty acids, especially DHA and EPA, and decreased percentages of arachidonic (20:4n-6, AA) and docosapentaenoic (22:5n-6, DPAn-6) acids compared to the control group (p<0.05). There was a similar tendency in kidney and adipose tissue but AA levels were not significantly different between the control and mackerel groups. These results indicate that intake of dried mackerel as the n-3 vehicle for increasing tissue n-3 fatty acids may be associated with improvement in lipid metabolism.

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Relation of polyunsaturated fatty acid, n-3 fatty acid and n-6 fatty acid intakes and atopic dermatitis in the 9~ 11 year old children: KNHANES 2013 ~ 2015 (9 ~ 11세 아동의 불포화지방산, n-3 지방산 및 n-6 지방산의 섭취와 아토피 피부염 과의 관련성 : 2013 ~ 2015년 국민건강영양조사)

  • Kim, Ji-Myung
    • Journal of Nutrition and Health
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    • v.52 no.1
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    • pp.47-57
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    • 2019
  • Purpose: This study was conducted to investigate the relationship between atopic dermatitis and dietary fat and fatty acid (FA) intakes in 9 ~ 11 year old children. Methods: We analyzed data from the combined 2013 ~ 2015 KNHANES (Korean National Health and Nutrition Examination Survey). Subjects were divided into two groups according to atopic dermatitis (AD); with AD and without AD. Data pertaining to macronutrients and FA intakes were obtained by a single 24-h dietary recall. Food sources were identified based on the amounts of total fat and FA consumption according to each food. The associations between each FA intake and atopic dermatitis were analyzed using simple and multiple logistic regression analyses. Age, sex, body mass index (BMI) and income levels were adjusted as covariates. Results: Of the participants, 17.69% suffered from atopic dermatitis. Children with AD had significantly lower fat percentages of total energy and higher carbohydrate percentages of total energy than normal children. Percentages of energy and intakes of polyunsaturated fatty acid (PUFA), n-3 FA and n-6 FA in children with AD were significantly lower than those in normal children. In the FA, linoleic acid, ${\gamma}$-linoleic acid and ${\alpha}$-linolenic acid levels of children with AD were significantly lower than those of normal children. However, the P/S ratio and n-6/n-3 ratio did not differ significantly between children with AD and normal children. Soybean oil was the main contributor to PUFA, n-3 FA and n-6 FA in both groups, while perilla seed oil and mackerel were the major food sources of n-3 FA in children with atopic dermatitis. Atopic dermatitis was significantly correlated with low-fat and high-carbohydrate diets. The adjusted odds ratios were 0.966, 0.776 and 0.963 for PUFA, n-3 FA, and n-6 FA intakes, respectively. Conclusion: The present study provides reliable evidence regarding the relationship between fat and FA intakes and AD in Korean children 9 ~ 11 years of age.

시판하는 재래흑돼지육과 개량종 돼지육의 도체성적, 육색, 지방산 조성 비교

  • Gang, Seon-Mun;Kim, Yong-Seon;Gang, Chang-Gi;Lee, Seong-Gi
    • Proceedings of the Korean Society for Food Science of Animal Resources Conference
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    • 2005.10a
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    • pp.240-244
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    • 2005
  • 본 연구는 시판하는 재리흑돼지육과 개량종 돼지육의 도체성적, 육색, 지방산 조성을 비교함으로서 재래흑돼지육에 대한 기초자료를 제시하고자 실시하였다. 도체성적은 지육중량, 지육율이 재래흑돼지가 낮았으며(p<0.05), 저장기간 동안 $L^*,\;h^{\circ}$ 값은 저장기간 동안 재래흑돼지육이 낮았으며(p<0.05), $a^*,\;b^*,\;C^*$ 값은 저장기간 동안 재래흑돼지육이 높았다(p<0.05). 지방산 조성은 C14: 0, C18:3n6, C18:3n3, C20:5n3, n3 지방산이 재래흑돼지육이 낮았고(p<0.05), n6 지방산과 n3 지방산의 비율은 재래흑돼지육이 높았다(p<0.05). 따라서 이상의 결과를 종합해보면 재래흑돼지육이 개량종 돼지육보다 육색은 우수하였으나 지육중량, 지육율, n3 지방산은 낮았다.

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Fatty Acid Compositions of Sea Algaes in the Southern Sea Coast of Korea (남해안 해조류의 지방산 조성)

  • 최강주;최선남
    • The Korean Journal of Food And Nutrition
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    • v.15 no.1
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    • pp.58-63
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    • 2002
  • Lipid contents and fatty acid compositions of 16 kind sea algaes in the southern sea coast of Korea were analyzed to evaluate nutrient significance of total polyene, n-3 polyenes and n-6 polyene fatty acids. Total lipid contents were 0.58 ∼ 3.00% in 9 kinds of brown algaes, 0.47 ∼ 2.16% in 5 kinds of red algaes and 0.55 ∼2..99% in 2 kinds of green algeas. N-3 polyenes and n-6 polyenes of the fatty acid compositions were 1.46∼25.67% and 0∼48.51% in the brown algaes, 1.17∼21.91% and 0.28 ∼29.35% in the red algaes, and 3.67%∼ 10.61% and 4.10 ∼ 8.66% in the green algaes, respectirely. The fatty acid contents and compositions of n-3 polyenes and n-6 polyenes, monoenes and saturates were vary different in the algae groups and sepecies.

Quality Factors and Functional Components in the Edible Seaweeds I. Distribution of n-3 Fatty Acids in 10 Species of Seaweeds by Their Habitats (식용 해조류의 품질구성요인과 그 기능성 성분 I. 서식지에 따른 10종 해조류의 n-3 지방산의 분포)

  • 정보영;조득문;문수경;변재형
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.22 no.5
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    • pp.621-628
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    • 1993
  • Total lipid contents from 10 species of marine algae(2 green, 5 brown, and 3 red algae) collected from different places in Korea were examined and their fatty acid compositions were compared among species and habitats. Total lipid(TL) was prominent in green laver(about 7.3~10.1%) of the green algae, in sea mustard and seaweed fusiforme(about 3.1~4.8%) of the brown algae and purple laver(about 4.9~6.4%) of the red algae. Sea mustard and seaweed fusiforme collected at Chungmu contained a relatively high level of TL than that at Yosu and Kijang. The TL content of purple laver showed the highest portion in that collected at Nakdong. Green algae comprised the majority of n-3 fatty acids(29.0~66.3%), which mainly consisted of 16 : 4(n-3) (or 16 : 3 (n-3)), 18 : 3(n-3) and 18 : 4(n-3). Brown algae accounted for a low level of n-3 fatty acids(17.9~36.5%) mainly 18 : 4(n-3), 18 : 3(n-3) and 20 : 5(n-3), whereas the brown algae contained a significant level of n-6 fatty acids(7.23~26.5%) such as 20 : 4(n-6) and 18 : 2(n-6). In the case of red algae, the n-3 fatty acids consisted mostly of 20 : 5(n-3) which scored 53% of polyenoic acids in purple laver collected at Nakdong. The proportion of n-3 fatty acids in algae belonging to the same species was higher in algae of high TL contents. Consequently, TL and n-3 fatty acid levels from the seaweeds studied in this paper were different from their habitats.

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Effects of the Feeding Mixed with Various Levels of n-3 and n-6 Polyunsaturated Fatty Acid on the Lipid Components and Fatty Acid Metabolism of Serum Lipoprotein in Hyperlipidemic Rats (n-3 및 n-6계 다불포화 지방산의 함유비율이 다른 유지가 고지혈증 흰쥐의 혈청 지단백 지질성분 및 지방산 대사에 미치는 영향)

  • 김한수;김성희;정효숙;강정옥;정승용
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.22 no.5
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    • pp.543-551
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    • 1993
  • This study was designed to observe the effects of the feeding mixed with the sardine oil containing n-3 EPA, DHA and the safflower oil in which rich n-6 linoleic acid on the improvement of the lipids and on the fatty acid matabolism of serum lipoprotein in the dietary hyperlipidemic rats. Experimental oils mixed with 16% butter(control group) and 8% butter+8% olive oil, 8% butter and various level of sardine and safflower oils were administered to the male rats of the Sprague Dawley for 4 weeks. Concentrations of total cholesterol in serum lipoproteins were highest in the LDL, followed by VLDL, HDL and chylomicron components. in the triglyceride concentrations, chylomicron were highest, and much VLDL, LDL, HDL components. There were highest in the HDL, followed by LDL, VLDL and chylomicron in phospholipid concentrations of serum lipoproteins. Concentrations of total cholesterol, triglyceride and phospholipid in serum lipoprotein were lower in the other groups than in the control groups, and particularly, lowest in the group 5(4% sardine oil+4% safflower oil). From this results, the feeding equal quantity mixed oil with n-3 PUFA rich sardine oil and n-6 PUFA rich safflower oil were effective on the improvement of the lipid composition in the serum lipoprotein. It might be due to the effects of appropriate rations of P/S, 0.85 and n-6/n-3P, 2.85 in the test lipids. In the fatty acid composition of serum lipoprotein, ratio of P/S and n-3/n-6P were influenced from the fatty acid compositions of the mixed test lipids. And EPA contents were higher in the chylomicron components.

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