• 제목/요약/키워드: Free Fatty Acids

검색결과 930건 처리시간 0.03초

지방산대사이상질환 스크리닝을 위한 TBDMS 유도체화 후 GC-MS를 이용한 혈장 중 유리지방산의 분석 (A Sensitive Determination of Plasma Free Fatty Acids Following Tert-butyldimethylsilyl Derivatization using Gas Chromatography-Mass Spectrometry for Screening of Fatty Acid Oxidation Disorders)

  • 윤혜란;타파마헤샬
    • 대한유전성대사질환학회지
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    • 제17권2호
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    • pp.39-47
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    • 2017
  • Purpose: A sensitive gas chromatography mass spectrometry (GC-MS) method was developed for screening of fatty acid oxidation disorders. Methods: The assay utilized a simple protein precipitation with sulfosalicylic acid followed by tert-butyl dimethylsilyl (TBDMS) derivatization of hydroxyl functional group by N-tert-butyldimethylsilyl-N-methyltrifluoroacetamide (MTBSTFA). Results: Calibration curves of spiked pooled plasma showed a linear relationship in the range of 0.01 ng -2 mg with correlation coefficient value greater than 0.98. Limits of detection (LOD) and limits of quantification (LOQ) were found in the range of 0.9-8.8 ng and 9-88 ng, respectively. Conclusion: The new developed method might be useful for a rapid, sensitive screening of inherited fatty acid oxidation disorders. In addition, the method expected to be one of the alternative method for screening newborns of metabolic disorders in the laboratories where expensive MS/MS is unavailable.

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자연치즈와 치즈향 농축물의 화학적, 관능적 분석에 의한 향미 비교 (Comparison of GC Profile and Sensory Properties of Fermented Cheese Flavor Concentrates and Cheese Varieties)

  • 한영실
    • 한국식품영양과학회지
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    • 제24권6호
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    • pp.925-931
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    • 1995
  • Cheddar, Emmentaler, Parmesan 그리고 Roquefort 치즈 등 자연 숙성 치즈와 지방 분해효소를 첨가하여 발효시킨 뒤 치즈향 농축물의 휘발성 향기 성분을 GC 및 관능적 분석을 통하여 비교하였다. 저급지방산이 그 특유의 향미를 나타내는데 가장 큰 영향을 미치는 성분으로 알려진 Parmesan 치즈향 농축물과 향미와 주성분으로 알려진 Cheddar 치즈향 농축물은 그 함량이 다른 시료 보다 10배 이상 높게 나타났따. 또한 메틸 케톤이 그 독특한 풍미의 결정적 온도가 되는 Roquefort 치즈의 경우는 제조시 lipase 및 P. roqueforti의 첨가로 메틸 케톤의 생성을 촉진시켜준 Roquefort 향 농축물의 함량이 월등히 높았다. 관능적 특성 차이를 비교한 결과 Cheddar, Emmentaler 그리고 Parmesan 치즈향 농축물이 sharpness, rancidity, soapy의 강도가 자연치즈 보다 유의성 있게 높았다. 반면, Roquefort 향 농축물에 있어서는 acidity, fruitness 등이 유의성 있게 높게 나타났다. GC profile과 관능적 특성과의 상관관계는 free fatty acid와 sharpness, rancidity, soap는 각각 0.8239, 0.8918, 0.7503 그리고 methyl ketone과 acidity, fruitness는 각기 0.9284, 09659의 높은 상관계수를 보였다.

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한국산 식용패류중의 지방질성분에 관한 연구 (Studies on the Lipid Components of Edible Shellfishes in Korea)

  • 노정미
    • 대한가정학회지
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    • 제25권4호
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    • pp.47-55
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    • 1987
  • This study was designed to elucidate the lipid contents, neutral lipids components and fatty acid composition in fresh shellfishes, produced in Korea. Four kinds of shellfishes including sea mussel, short-necked clam, corb shell and and ark shell were selected according to the higher sales order and cheaper retail price at fish markets in Seoul in July 1985. The results abtained were as follows; 1. The average total lipid contents in four shellfishes were 2.3% by wet weight basis. The ratios of neutrial lipid, glycolipid and phospholipid in the total lipid were 51.1 : 4.9 : 44.0 in sea mussel, 66.0 : 3.2 : 30.8 in ark shell, 37.8 : 2.2 : 60.0 in short-necked clam and 54.5 : 2.0 : 53.5 in corb shell, 2. The average value of acid value, iodine value and unsaponifiables contents of total lipids were 1.3, 217.8, 92.0 and 20.3%, respectively. 3. The composition of the neutral lipids were triglycerides, esterified fatty acids, sterylesters, free sterols and monoglycerides in four shellfishes. 4. The major fatty acid composition of total lipids were palmitic, eicosapentaenoic, docosahexaenoic and palmitoleic acids in four shellfishes. The average total unsaturated fatty acids of total lipid were 64.5%, and $\omega$-3 highly unsaturated fatty acids were 27.0%. The average p/s Ratiio were 1.3.

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Determination of Saturated and Unsaturated Fatty Acids Amount in Leukocyte Membranes from Subjects Fed with Solid and Fluid Oils

  • Erman, Fazilet;Aydin, Suleyman;Demir, Yasar;Akcay, Fatih;Bakan, Ebubekir
    • BMB Reports
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    • 제39권5호
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    • pp.516-521
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    • 2006
  • Modifications in dietary fatty acid intake might lead to a modification in membrane phospholipid fatty acid composition. The purpose of this study was to investigate relationship between different type of oil consumption and leukocyte membrane phospholipid composition. This study was carried out in subjects utilizing butter (n = 15), margarine (n = 15), fluid oil (n = 15) and mixed types of oils (n = 15) in total 60 subjects. Leukocytes were separated from total blood by dextran sedimentation method. Membrane lipids and proteins were isolated following the cell disruption. Fatty acids of membrane phospholipids were isolated by hydrolysation with phospholipase B under ultrasonic dismembranator. Free fatty acids were identified with gas chromatography at chloroform phase. The results obtained were compared with data obtained by chromatograms of the standards. Results more prominent values of arachidic, dihomo-$\gamma$-linolenic and palmitoleic acids were found in butter-or mixed oil-user groups; eicosadienoic, eicosamonoenoic, dihomo-$\gamma$-linolenic and behenic acids in fluid oil; heptanoic, valeric, eicosadienoic and linolenic acids in margarine groups. The fatty acid composition of mixed oil was similar to butter, while other two oils were so different. From this study, it was concluded that the type of oil consumption might have an influence on phospholipid components of plasma membranes.

Production responses of Holstein dairy cows when fed supplemental fat containing saturated free fatty acids: a meta-analysis

  • Hu, Wenping;Boerman, Jacquelyn P.;Aldrich, James M.
    • Asian-Australasian Journal of Animal Sciences
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    • 제30권8호
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    • pp.1105-1116
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    • 2017
  • Objective: A meta-analysis was conducted to evaluate the effects of supplemental fat containing saturated free fatty acids (FA) on milk performance of Holstein dairy cows. Methods: A database was developed from 21 studies published between 1991 and 2016 that included 502 dairy cows and a total of 29 to 30 comparisons between dietary treatment and control without fat supplementation. Only saturated free FA (>80% of total FA) was considered as the supplemental fat. Concentration of the supplemental fat was not higher than 3.5% of diet dry matter (DM). Dairy cows were offered total mixed ration, and fed individually. Statistical analysis was conducted using random- or mixed-effects models with Metafor package in R. Results: Sub-group analysis showed that there were no differences in studies between randomized block design and Latin square/crossover design for dry matter intake (DMI) and milk production responses to the supplemental fat (all response variables, $p{\geq}0.344$). The supplemental fat across all studies improved milk yield, milk fat concentration and yield, and milk protein yield by 1.684 kg/d (p<0.001), 0.095 percent unit (p = 0.003), 0.072 kg/d (p<0.001), and 0.036 kg/d (p<0.001), respectively, but tended to decrease milk protein concentration (mean difference = -0.022 percent unit; p = 0.063) while DMI (mean difference = 0.061 kg/d; p = 0.768) remained unchanged. The assessment of heterogeneity suggested that no substantial heterogeneity occurred among all studies for DMI and milk production responses to the supplemental fat (all response variables, $I^2{\leq}24.1%$; $p{\geq}0.166$). Conclusion: The effects of saturated free FA were quantitatively evaluated. Higher milk production and yields of milk fat and protein, with DMI remaining unchanged, indicated that saturated free FA, supplemented at ${\leq}3.5%$ dietary DM from commercially available fat sources, likely improved the efficiency of milk production. Nevertheless, more studies are needed to assess the variation of production responses to different saturated free FA, either C16:0 or C18:0 alone, or in combination with potentially optimal ratio, when supplemented in dairy cow diets.

Increase of Conjugated Linoleic Acid Level in Milk Eat by Bovine Feeding Regimen and Urea Fractionation

  • KIM, YOUNG JUN;KI WON LEE;HYONG JOO LEE
    • Journal of Microbiology and Biotechnology
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    • 제13권1호
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    • pp.22-28
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    • 2003
  • Increasing conjugated linoleic acid (CLA) content in dairy products has been a research Interest due to the potential health benefits resulted from consuming CLA. Attempts were made to obtain high level natural CLA containing fatty acid fractions from milk fat through bovine feeding of sunflower oil (SO) and urea fractionation. SO feeding changed the fatty acid profile of milk fat. increasing the CLA content five-fold at eight weeks of trial. Milk fat obtained from S0-fed cows was hydrolyzed to free fatty acids, which were then fractionated with urea at various ratios. The profiles of fatty acids were also greatly influenced by urea fractionation. Long-chain unsaturated fatty acids, Including CLA, were concentrated in milk fat after the fractionation, whereas saturated long-chain counterparts were eliminated. The highest level of CLA was achieved by the fractionation at 2:1 urea/fatty acid ratio (UFR2). CLA level was elevated 2.5-fold, and the Cl8:1/C18:0 fatty acid ratio was increased 120 times after the fractionation. The level of CLA in high CLA-milk fat (24mg/g fat) obtained from the feeding study was further increased through urea fractionation up to 52mg/g fat, 10 folds as high as CLA in the control milk fat (5mg/g fat).

An Essential Role of the N-Terminal Region of ACSL1 in Linking Free Fatty Acids to Mitochondrial β-Oxidation in C2C12 Myotubes

  • Nan, Jinyan;Lee, Ji Seon;Lee, Seung-Ah;Lee, Dong-Sup;Park, Kyong Soo;Chung, Sung Soo
    • Molecules and Cells
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    • 제44권9호
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    • pp.637-646
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    • 2021
  • Free fatty acids are converted to acyl-CoA by long-chain acyl-CoA synthetases (ACSLs) before entering into metabolic pathways for lipid biosynthesis or degradation. ACSL family members have highly conserved amino acid sequences except for their N-terminal regions. Several reports have shown that ACSL1, among the ACSLs, is located in mitochondria and mainly leads fatty acids to the β-oxidation pathway in various cell types. In this study, we investigated how ACSL1 was localized in mitochondria and whether ACSL1 overexpression affected fatty acid oxidation (FAO) rates in C2C12 myotubes. We generated an ACSL1 mutant in which the N-terminal 100 amino acids were deleted and compared its localization and function with those of the ACSL1 wild type. We found that ACSL1 adjoined the outer membrane of mitochondria through interaction of its N-terminal region with carnitine palmitoyltransferase-1b (CPT1b) in C2C12 myotubes. In addition, overexpressed ACSL1, but not the ACSL1 mutant, increased FAO, and ameliorated palmitate-induced insulin resistance in C2C12 myotubes. These results suggested that targeting of ACSL1 to mitochondria is essential in increasing FAO in myotubes, which can reduce insulin resistance in obesity and related metabolic disorders.

기체크로마토그래피법에 의한 타액내 유기산의 신속한 스크리닝 (Rapid Gas Chromatographic Screening of Saliva Samples for Organic Acids)

  • 김경례;김정한;박영준;김정옥
    • 약학회지
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    • 제39권3호
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    • pp.283-288
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    • 1995
  • Rapid gas chromatographic profiling method was applied to saliva from healthy subjects for the analysis of free organic acids. Saliva samples were first saturated with NaHCO$_{3}$ and extracted with diethyl ether. The aqueous phase was solid-phase extracted using Chromosorb P as the adsorbent and diethyl ether as the eluent after the acidification and NaCl saturation, followed by triethylamine treatment. The resulting tiiethylammonium salts of acids were directly converted into stable tert.-butyl-dimethylsflyl derivatives, with subsequent analysis by dual-capiuary column gas chromatography and gas chromatograpy -mass spectrometry. From the ten saliva samples studied, twenty eight free organic acids including various fatty acids, hydroxy acids, dicarboxylic acids, md aromatic acids were tentatively identified. Among the acids identified , the concentration of lactic acid was highest for five saliva samples while $\alpha$-hydroxyisocaproic acid was most abundant for me sample, and succinic acid and glycolic acid for two samples. respectively. When the GC profiles were simplified to the corresponding acid retention index spectra of bar graphical form, they presented characteristic patterns for each individual.

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인삼(人蔘)의 부위별(部位別) 지방산(脂肪酸) 조성(組成) (Fatty Acid Compositions of the Various Parts of Ginseng Plant)

  • 최강주;김만욱;김동훈
    • 한국식품영양과학회지
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    • 제12권4호
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    • pp.357-363
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    • 1983
  • 인삼(人蔘)의 근부(根部)(뇌두(腦頭), 표피(表皮), 동체피층(胴體皮層), 동체내층(胴體內層), 지근(支根), 세미(細尾))와 지상부(地上部)(과육(果肉), 종자(種字), 경(莖), 엽(葉))의 부위별(部位別) 지방질의 함량과 그 구성지방산을 조사하였다. 9부위(部位)의 유리지질(遊離脂質)과 결합지질(結合脂質)을 합한 총 지방질 함량은 0.91~3.48%였으나 종자(種子)는 15.08%로 다른 부위(部位)에 비하여 그 함량이 대단히 높았다. gas liquid chromatography에 의하여 14종(種)의 짝수지방산과 4종(種)의 홀수지방산을 분리, 정량하였으며 주된 지방산은 linoleic acid, palmitic acid, oleic acid 및 linolenic acid였다. 부위별(部位別) 지방산 조성은 현저한 차이를 나타내고 있었으며 특히 종자(種子)는 부위(部位)들과는 상당한 차이가 있었으며 10종(種)의 지방산만이 동정되었고 oleic acid와 linoleic acid(51.21%와 37.46%)가 다른 부위(部位)들보다 상당히 많았다. 또한 종자(種子), 동체내층(胴體內層) 및 동체피층(胴體皮層)에 함유된 유리지질(遊離脂質)은 다른 부위(部位)의 지방질(脂肪質)에 비하여 불포화 지방산의 함량이 높았다.

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메틸글리코시드에 의한 지방산의 효소적 배당화 (Enzymatic Glycosylation of Fatty Acids by Methyl Glycosides)

  • 선우환;김종태;김해성
    • 한국응용과학기술학회지
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    • 제16권1호
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    • pp.83-94
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    • 1999
  • Glycoside fatty acid esters were synthesized by lipase-catalyzed glycosylation of fatty acids with methyl glycoside in solvent and solvent free process. Optimum condition of solvent process using 2-methyl-2-propanol were : moral ratio of methyl glycoside to fatty acid 1:3: initial concentration of methyl glycoside 50g/l:enzyme(immodilized lipase Novozym 435 from Candidia antarctica) content 1%(w/v) : desiccant content 9%(w/v); reaction temperature $60^{\circ}C$: reaction time 10hrs. The yield of 99% was obtained. Solvent-free process was carried out in total absence of solvent at $70^{\circ}C$ under reduced pressure, 5-20mmHg. To give meximum yield of 99% at the optimum condition of molar ratio of methyl glycoside to fatty acid 1:3, enzyme content 10%(w/w), and reaction time 10hrs. The glycosylation reactivity of different glycosylation agents were sequent to $Methyl-{\beta}-D-fructofuranoside$. $Methyl-{\beta}-D-glucopyranoside$. $Methyl-{\beta}-D-fructofuranosi$ de, and $Methyl-{\alpha}-D-glucopyranoside$.