• 제목/요약/키워드: Pine nut oil

검색결과 22건 처리시간 0.022초

잣기름의 Triglyceride조성(組成) (Triglyceride Composition of Pine Nut Oil)

  • 천석조;박영호
    • 한국식품과학회지
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    • 제16권2호
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    • pp.179-181
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    • 1984
  • 잣기름을 TLC에 의하여 트리 - 글리세리드를 분리하고, HPLC에 의하여 PN별(別)로 트리 - 글러세리드를 분획(分劃)하여 분취(分取)하였다. 분취(分取)한 각획분(各劃分)을 GLC 에 의하여 아실탄소수별(炭素數別)로 재분획(再分劃)하는 한편, 각획분(各劃分)의 지방산조성(脂肪酸組成)을 분석(分析)하였다. 주요(主要) 트리 - 글리세리드를 들면 다음과 같다. $(C_{18:2},\;C_{18:2},\;C_{18:3},\;34.9%)$, $(C_{18:1},\;C_{18:2},\;C_{18:3}\;;\;10.8%)$, $(C_{18:1},\;C_{18:1},\;C_{18:2}\;;\;9.9%)$, $(C_{18:1},\;C_{18:1},\;C_{18:1}\;;\;6.5%)$, $(C_{18:1},\;C_{18:1},\;C_{18:2}\;;\;6.3%)$, $(C_{18:1},\;C_{18:1},\;C_{18:3}\;;\;4.8%)$, $(C_{16:0},\;C_{18:2},\;C_{18:3}\;;\;3.3%)$, $(C_{18:0},\;C_{18:1},\;C_{18:2}\;;\;2.7%)$, $(C_{16:0},\;C_{18:1},\;C_{18:2}\;;\;2.6%)$, $(C_{16:0},\;C_{18:2},\;C_{18:2}\;;\;2.2%)$, $(C_{16:0},\;C_{18:1},\;C_{18:3}\;;\;1.9%)$, $(C_{16:0},\;C_{18:2},\;C_{18:2}\;;\;1.7%)$, $(C_{16:0},\;C_{18:1},\;C_{18:1}\;;\;1.7%)$, $(C_{18:1},\;C_{18:3},\;C_{18:3}\;;\;1.5%)$.

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호도와 잣기름중의 트리글리세리드 조성에 관하여 (On the Compsition of Triglyceride in the Oil of Walnut and Pine-nuts)

  • 김영호;차월석;김종수;류성렬
    • KSBB Journal
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    • 제5권4호
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    • pp.341-345
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    • 1990
  • 잣기름과 호도기름의 트리글리세리드 조성을 규명하기 위하여 HPLC의 Tri-analysis column을 사용 분석한 결과는 다음과 같다. 1. 잣기름중 트리글리세리드 조성은 총 14종이 함유되었으며 탄소수별로 확인된 종류가 10종이고, 미확인수는 4종이고, 그 포함 순서는 $C_{52}=31.55%,\;C_{44}=20.72%,\;C_{54}=17.52%,\;C_{34}=15.24%,\;C_{56}=12.50%$의 순으로 조성되어 있다. 2. 호도기름중 트리글리세리드 조성은 총 12종이 함유되어 있으며 탄소수별로 확인된 종류가 10종이고, 미확인된 종류는 2종이고, 그 포함 순서는 $C_{44}=38.66%,\;C_{52}=29.47%,\;C_{54}=16.53%,\;C_{34}=11.12%,\;C_{50}=1.51%$ 순으로 조성되어 있다.

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Korean pine nut oil replacement decreases intestinal lipid uptake while improves hepatic lipid metabolism in mice

  • Zhu, Shuang;Park, Soyoung;Lim, Yeseo;Shin, Sunhye;Han, Sung Nim
    • Nutrition Research and Practice
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    • 제10권5호
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    • pp.477-486
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    • 2016
  • BACKGROUND/OBJECTIVES: Consumption of pine nut oil (PNO) was shown to reduce weight gain and attenuate hepatic steatosis in mice fed a high-fat diet (HFD). The aim of this study was to examine the effects of PNO on both intestinal and hepatic lipid metabolism in mice fed control or HFD. MATERIALS/METHODS: Five-week-old C57BL/6 mice were fed control diets containing 10% energy fat from either Soybean Oil (SBO) or PNO, or HFD containing 15% energy fat from lard and 30% energy fat from SBO or PNO for 12 weeks. Expression of genes related to intestinal fatty acid (FA) uptake and channeling (Cd36, Fatp4, Acsl5, Acbp), intestinal chylomicron synthesis (Mtp, ApoB48, ApoA4), hepatic lipid uptake and channeling (Lrp1, Fatp5, Acsl1, Acbp), hepatic triacylglycerol (TAG) lipolysis and FA oxidation (Atgl, Cpt1a, Acadl, Ehhadh, Acaa1), as well as very low-density lipoprotein (VLDL) assembly (ApoB100) were determined by real-time PCR. RESULTS: In intestine, significantly lower Cd36 mRNA expression (P<0.05) and a tendency of lower ApoA4 mRNA levels (P = 0.07) was observed in PNO-fed mice, indicating that PNO consumption may decrease intestinal FA uptake and chylomicron assembly. PNO consumption tended to result in higher hepatic mRNA levels of Atgl (P = 0.08) and Cpt1a (P = 0.05). Significantly higher hepatic mRNA levels of Acadl and ApoB100 were detected in mice fed PNO diet (P<0.05). These results suggest that PNO could increase hepatic TAG metabolism; mitochondrial fatty acid oxidation and VLDL assembly. CONCLUSIONS: PNO replacement in the diet might function in prevention of excessive lipid uptake by intestine and improve hepatic lipid metabolism in both control diet and HFD fed mice.

Impact of Korean pine nut oil on weight gain and immune responses in high-fat diet-induced obese mice

  • Park, Soyoung;Lim, Yeseo;Shin, Sunhye;Han, Sung Nim
    • Nutrition Research and Practice
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    • 제7권5호
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    • pp.352-358
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    • 2013
  • Korean pine nut oil (PNO) has been reported to have favorable effects on lipid metabolism and appetite control. We investigated whether PNO consumption could influence weight gain, and whether the PNO-induced effect would result in an improvement of immune function in high-fat diet (HFD)-induced obese mice. C57BL/6 mice were fed control diets with 10% energy fat from either PNO or soybean oil (SBO), or HFDs with 45% energy fat from 10% PNO or SBO and 35% lard, 20% PNO or SBO and 25% lard, or 30% PNO or SBO and 15% lard for 12 weeks. The proliferative responses of splenocytes upon stimulation with concanavalin A (Con A) or lipopolysaccharide (LPS), Con A-stimulated production of interleukin (IL)-2 and interferon (IFN)-${\gamma}$, and LPS-stimulated production of IL-6, IL-$1{\beta}$, and prostaglandin $E_2$ ($PGE_2$) by splenocytes were determined. Consumption of HFDs containing PNO resulted in significantly less weight gain (17% less, P < 0.001), and lower weight gain was mainly due to less white adipose tissue (18% less, P = 0.001). The reduction in weight gain did not result in the overall enhancement in splenocyte proliferation. Overall, PNO consumption resulted in a higher production of IL-$1{\beta}$ (P = 0.04). Replacement of SBO with PNO had no effect on the production of IL-2, IFN-${\gamma}$, IL-6, or $PGE_2$ in mice fed with either the control diets or HFDs. In conclusion, consumption of PNO reduced weight gain in mice fed with HFD, but this effect did not result in the overall improvement in immune responses.

국내산 소나무, 잣나무, 낙엽송, 분비나무 정유의 제초활성 (Herbicidal Activities of Essential Oils from Pine, Nut Pine, Larch and Khingan Fir in Korea)

  • 윤미선;조해미;연보람;최정섭;김성문
    • Weed & Turfgrass Science
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    • 제2권1호
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    • pp.30-37
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    • 2013
  • 본 연구의 목적은 국내의 대표적인 침엽수인 소나무, 잣나무, 낙엽송, 분비나무로부터 추출된 정유의 제초활성을 이해하는데 있었다. 소나무, 잣나무, 낙엽송, 분비나무 정유의 기내 종자발아 제초활성 검정 결과, 유채에 대한 $GR_{50}$ 값은 각각 0, 4,766, 1,865, $5,934{\mu}g\;ml^{-1}$으로 소나무를 제외하고는 제초활성을 나타내었다. 온실조건에서 소나무, 잣나무, 낙엽송, 분비나무 정유 10%를 5종의 화본과 잡초와 5종의 광엽잡초에 처리한 결과 도꼬마리를 제외하고는 24시간 내에 완전 고사되었으며, 처리 식물의 부위는 타는 듯한 화염상 증상을 나타내었고, 처리 3일 이후에는 신초가 재생하여 4종 식물 정유는 속효성, 비선택성, 비이행성 특성을 나타내었다. 소나무, 잣나무, 낙엽송, 분비나무의 정유를 GC-MS로 분석한 결과 각각 16종, 25종, 25종, 16종의 유기화합물이 검출되었으며, 이들 정유에는 탄화수소, 알코올, 케톤, 에스테르가 공통적으로 함유되어 있었다. 그리고 정유 4종의 주 화합물은 3-carene, bornyl acetate, camphene, limonene, ${\alpha}$-pinene, ${\beta}$-pinene, ${\beta}$-phellandrene 이었다.

잣기름 성분분석 및 비만 예방효과 연구 (Analysis of Pine Nut Oil Composition and Its Effects on Obesity)

  • 김경곤;강윤환;김대중;김태우;최면
    • 한국식품과학회지
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    • 제46권5호
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    • pp.630-635
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    • 2014
  • 본 연구에서는 성분분석을 통해 품질이 확인된 PNO의 항비만효과를 세포수준에서 확인하고 기능성소재로서의 연구 가능성을 제시하고자 수행하였다. 그 결과 PNO는 기존에 알려진 바와 같이 linoleic acid, oleic acid, pinolenic acid, 및 palmitic acid가 분석되었으며 정량을 위한 표준물질인 undecanoic acid의 함량을 기준으로 확인한 결과 linoleic acid 43.4%, oleic acid 25.7%, pinolenic acid로 예측되는 11번 unknown peak 12.8%, palmitic acid 5.2% 및 다수의 미량 성분을 함유하고 있었다. 세포독성 실험을 통해 0.2 mg/mL 농도 까지 독성이 관찰되지 않음을 확인하였으며 그 이상의 농도에서도 PNO보다는 용매 DMSO에 의한 독성이 관찰되었다. PNO를 이용하여 항비만 효과에 대한 잠재적 기능 및 기전을 연구하기 위해 Oil Red O staining, $PPAR{\gamma}$ 및 aP2 mRNA 발현 확인 그리고 leptin의 분비량 측정을 진행하였다. 그 결과 PNO는 MDI solution 처리를 통해 분화가 유도된 mature adipocyte에서 지방적(lipid droplet) 형성을 유의하게 억제하는 것을 확인할 수 있었으며 이는 PNO가 항비만 활성에 잠재적으로 기능을 할 수 있음을 의미한다. 또한 $PPAR{\gamma}$와 aP2 mRNA 발현을 확인한 결과, 두 유전자가 유의한 수준으로 MDI control 대비 감소하는 반면 SREBP-1c, $C/EBP{\alpha}$, glucokinase, phosphoenolpyruvate carboxykinase 및 perilipin에는 영향이 없는 것을 확인할 수 있었다(data not shown). RT-PCR 결과는 PNO의 처리가 지방대사 및 축적을 단백질 및 유전자 발현조절 기전에 의해 억제할 수 있음을 제시하여 주며, 추가적인 연구가 필요함을 시사한다. 마지막으로 확인한 PNO의 leptin 방출유도 실험을 통해 leptin이 PNO의 처리에 의해 농도 의존적으로 방출량이 증가됨을 확인할 수 있었다. Leptin은 식욕억제 효과가 있는 호르몬으로 잘 알려져 있다. 이는 PNO가 기존에 알려진 cholecystokinin과 glucagon like peptide-1 (GLP-1)의 분비증가를 통해 식욕을 억제할 뿐만 아니라 leptin의 방출을 유도하여 추가적인 식욕억제작용을 유도할 수 있음을 의미한다. 위의 연구결과를 종합하면 PNO는 불포화지방산이 다량 함유된 우수한 식물성유지이며 기능적으로 항비만 효능을 잠재적으로 가지는 우수한 소재임을 확인할 수 있었다. 따라서 본 연구결과를 기초자료로 하여 효과적인 기능성 식품 및 소재의 개발을 위해 체계적이고 과학적인 연구가 필요할 것으로 판단된다.

Dietary supplementation with Korean pine nut oil decreases body fat accumulation and dysregulation of the appetite-suppressing pathway in the hypothalamus of high-fat diet-induced obese mice

  • Shin, Sunhye;Park, Soyoung;Lim, Yeseo;Han, Sung Nim
    • Nutrition Research and Practice
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    • 제16권3호
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    • pp.285-297
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    • 2022
  • BACKGROUND/OBJECTIVES: Korean pine nut oil (PNO) has been reported to suppress appetite by increasing satiety hormone release. However, previous studies have rendered inconsistent results and there is lack of information on whether dietary Korean PNO affects the expression of satiety hormone receptors and hypothalamic neuropeptides. Therefore, our study sought to evaluate the chronic effects of Korean PNO on the long-term regulation of energy balance. MATERIALS/METHODS: Five-week-old male C57BL/6 mice were fed with control diets containing 10% kcal fat from Korean PNO or soybean oil (SBO) (PC or SC) or high-fat diets (HFDs) containing 35% kcal fat from lard and 10% kcal fat from Korean PNO or SBO (PHFD or SHFD) for 12 weeks. The expression of gastrointestinal satiety hormone receptors, hypothalamic neuropeptides, and genes related to intestinal lipid absorption and adipose lipid metabolism was then measured. RESULTS: There was no difference in the daily food intake between PNO- and SBO-fed mice; however, the PC and PHFD groups accumulated 30% and 18% less fat compared to SC and SHFD, respectively. Korean PNO-fed mice exhibited higher messenger RNA (mRNA) expression of Ghsr (ghrelin receptor) and Agrp (agouti-related peptide) (P < 0.05), which are expressed when energy consumption is low to induce appetite as well as the appetitesuppressing neuropeptides Pomc and Cartpt (P = 0.079 and 0.056, respectively). Korean PNO downregulated jejunal Cd36 and epididymal Lpl mRNA expressions, which could suppress intestinal fatty acid absorption and fat storage in white adipose tissue. Consistent with these findings, Korean PNO-fed mice had higher levels of fecal non-esterified fatty acid excretion. Korean PNO also tended to downregulate jejunal Apoa4 and upregulate epididymal Adrb3 mRNA levels, suggesting that PNO may decrease chylomicron synthesis and induce lipolysis. CONCLUSIONS: In summary, Korean PNO attenuated body fat accumulation, and appeared to prevent HFD-induced dysregulation of the hypothalamic appetite-suppressing pathway.

한국산(韓國産) 각종(各種) 종실유(種實油)의 지방산(脂肪酸)에 관(關)한 연구(硏究) (Fatty Acid Compositions of Varying Seed Oils of Korean Origin)

  • 모수미
    • Journal of Nutrition and Health
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    • 제8권2호
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    • pp.19-26
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    • 1975
  • The role of fat is important from nutritional standpoint. The physiological functions of fat are energy yielding as well as the carrier of fat soluble vitamins, with special activities of essential fatty acids. It is fortunate that Korean families prefer to use vegetable oils rather than those from animal origin. But the problems are focused on better qaulity of food oils with attempt to exploit the available resources. This study was undertaken to inevestigate the fatty acid compositions of Korean origin both from conventional and unconventional resources of gas-liquid chromatography. The results obtained are as follows. 1. The total lipid contents of seeds of red pepper, Korean squash, sesame, perilla (var Japonica), and Korean pine nuts and walnuts were 24.3%, 56.6%, 56.4%, 46.9%, 69.8%, and 67.2%, respectively. 2. The saponification numbers of samples ranged from 190 to 200. It showed that the mean molecular weights of fatty acids composing the lipids were very much closed each other. 3. Iodine numbers of varing seed oils ranged from 96.5 of Korean squash seed oil to 124.6 of walnut oil. Oils obtained from squash seeds and sesame seeds showed significantly lower value, while others ranged from 122 to 125. 4. In the fatty acid compositions, squash seed oil was composed mainly of unsaturated fatty acids, 74.9% of which was oleic acid, whereas red pepper seed oil, pine nut oil, and sesame oil contained linoleic acid as a major component showing 64.4%, 56%, 48.8%, and 47.8%, respectively. In perilla seed oil, the amounts of linoleic and linolenic acids were 14.1% and 58%, respectively which meant nearly three-fourths of the total fatty acidsbeing the unsaturated essential fatty acids. This study will encourage the use of these conventional and unconventional vegetable oils which have highr ratios of polyunsaturated to saturated fatty acids.

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Effect of Korean pine nut oil on hepatic iron, copper, and zinc status and expression of genes and proteins related to iron absorption in diet-induced obese mice

  • Shin, Sunhye;Lim, Yeseo;Chung, Jayong;Park, Soyoung;Han, Sung Nim
    • Journal of Nutrition and Health
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    • 제54권5호
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    • pp.435-447
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    • 2021
  • Purpose: Body adiposity is negatively correlated with hepatic iron status, and Korean pine nut oil (PNO) has been reported to reduce adiposity. Therefore, we aimed to study the effects of PNO on adiposity, hepatic mineral status, and the expression of genes and proteins involved in iron absorption. Methods: Five-week-old male C57BL/6 mice were fed a control diet containing 10% kcal from PNO (PC) or soybean oil (SBO; SC), or a high-fat diet (HFD) containing 35% kcal from lard and 10% kcal from PNO (PHFD) or SBO (SHFD). Hepatic iron, copper, and zinc content; and expression of genes and proteins related to iron absorption were measured. Results: HFD-fed mice had a higher white fat mass (2-fold; p < 0.001), lower hepatic iron content (25% lower; p < 0.001), and lower hepatic Hamp (p = 0.028) and duodenal Dcytb mRNA levels (p = 0.037) compared to the control diet-fed mice. Hepatic iron status was negatively correlated with body weight (r = -0.607, p < 0.001) and white fat mass (r = -0.745, p < 0.001). Although the PHFD group gained less body weight (18% less; p < 0.05) and white fat mass (18% less; p < 0.05) than the SHFD group, the hepatic iron status impaired by the HFD feeding did not improve. The expression of hepatic and duodenal ferroportin protein was not affected by the fat amount or the oil type. PNO-fed mice had significantly lower Slc11a2 (p = 0.022) and Slc40a1 expression (p = 0.027) compared to SBO-fed mice. However, the PC group had a higher Heph expression than the SC group (p < 0.05). The hepatic copper and zinc content did not differ between the four diet groups, but hepatic copper content adjusted by body weight was significantly lower in the HFD-fed mice compared to the control diet-fed mice. Conclusion: HFD-induced obesity decreased hepatic iron storage by affecting the regulation of genes related to iron absorption; however, the 18% less white fat mass in the PHFD group was not enough to improve the iron status compared to the SHFD group. The hepatic copper and zinc status was not altered by the fat amount or the oil type.

Improvement of Milk Fatty Acid Composition for Production of Functional Milk by Dietary Phytoncide Oil Extracted from Discarded Pine Nut Cones (Pinus koraiensis) in Holstein Dairy Cows

  • Kim, Min Jeong;Jung, U Suk;Jeon, Seung Woo;Lee, Jae Sung;Kim, Won Seob;Lee, Sang Bum;Kim, Youn Chil;Kim, Bae Young;Wang, Tao;Lee, Hong Gu
    • Asian-Australasian Journal of Animal Sciences
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    • 제29권12호
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    • pp.1734-1741
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    • 2016
  • This study was conducted to examine the effects of adding phytoncide oil extracted from Korean pine nut cone by-product to the diet of dairy cows on milk yield and compositions, fatty acid characteristics, complete blood count and stress response. A total of 74 Holstein cows were used for 30 days and divided into two groups. Each group was given a basal diet (C) or an experimental diet containing phytoncide additives at 0.016% (T) in feed. The results showed that phytoncide feeding had no effect on milk yield. In addition, there were no observed effects on milk composition, but the ratio of fatty acid in milk was significantly affected by the phytoncide diet, and it showed a positive effect. Not only were the major functional fatty acids, conjugated linoleic acid and eicosapentaenoic acid increased, but also ${\omega}6:{\omega}3$ fatty acid ratio was reduced in milk of T group (p<0.05). In blood analysis, the complete blood count showed no significant difference between C and T group on all parameters. However, the cortisol concentration was significantly decreased in T group compared to control (p<0.05). Taken together, we suggest that phytoncide oil does not have a great influence on the physiological changes, but can be a potential feed additive that improves the milk fatty acid and stress resilience in dairy cows. In addition, it will contribute to the development of feed resource, a reduction in feed cost and a lessening of environmental pollution.