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1.
C. Lawrence Kien Dwight E. Matthews Matthew E. Poynter Janice Y. Bunn Naomi K. Fukagawa Karen I. Crain David B. Ebenstein Emily K. Tarleton Robert D. Stevens Timothy R. Koves Deborah M. Muoio 《Journal of lipid research》2015,56(9):1795-1807
Palmitic acid (PA) is associated with higher blood concentrations of medium-chain acylcarnitines (MCACs), and we hypothesized that PA may inhibit progression of FA β-oxidation. Using a cross-over design, 17 adults were fed high PA (HPA) and low PA/high oleic acid (HOA) diets, each for 3 weeks. The [1-13C]PA and [13-13C]PA tracers were administered with food in random order with each diet, and we assessed PA oxidation (PA OX) and serum AC concentration to determine whether a higher PA intake promoted incomplete PA OX. Dietary PA was completely oxidized during the HOA diet, but only about 40% was oxidized during the HPA diet. The [13-13C]PA/[1-13C]PA ratio of PA OX had an approximate value of 1.0 for either diet, but the ratio of the serum concentrations of MCACs to long-chain ACs (LCACs) was significantly higher during the HPA diet. Thus, direct measurement of PA OX did not confirm that the HPA diet caused incomplete PA OX, despite the modest, but statistically significant, increase in the ratio of MCACs to LCACs in blood. 相似文献
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Atypical surface behavior of ceramides with nonhydroxy and 2-hydroxy very long-chain (C28–C32) PUFAs
Daniel A. Peñalva Gerardo M. Oresti Fernando Dupuy Silvia S. Antollini Bruno Maggio Marta I. Aveldaño María L. Fanani 《生物化学与生物物理学报:生物膜》2014
Unique species of ceramide (Cer) with very-long-chain polyunsaturated fatty acid (VLCPUFA), mainly 28–32 carbon atoms, 4–5 double bonds, in nonhydroxy and 2-hydroxy forms (n-V Cer and h-V Cer, respectively), are generated in rat spermatozoa from the corresponding sphingomyelins during the acrosomal reaction. The aim of this study was to determine the properties of these sperm-distinctive ceramides in Langmuir monolayers. Individual Cer species were isolated by HPLC and subjected to analysis of surface pressure, surface potential, and Brewster angle microscopy (BAM) as a function of molecular packing. In comparison with known species of Cer, n-V Cer and h-V Cer species showed much larger mean molecular areas and increased molecular dipole moments in liquid expanded phases, which suggest bending and partial hydration of the double bonded portion of the VLCPUFA. The presence of the 2-hydoxyl group induced a closer molecular packing in h-V Cer than in their chain-matched n-V Cer. In addition, all these Cer species showed liquid-expanded to liquid-condensed transitions at room temperature. Existence of domain segregation was confirmed by BAM. Additionally, thermodynamic analysis suggests a phase transition close to the physiological temperature for VLCPUFA-Cers if organized as bulk dispersions. 相似文献
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目的:研究氢火焰气相色谱仪(GC112A)内标法测定反式脂肪酸的实验室最佳条件。方法:采用气相色谱内标-标准曲线法,通过测定反式脂肪酸标准品工作液的标准曲线、重现性和分离度来确定和验证GC112A的最佳色谱条件。结果:实验室最佳色谱条件:毛细管柱,PC-88(100 m×0.25 mm×0.2μm);进样口温度:260℃;载气:高纯N2,压力220 k Pa,流速41.0 m L/min;检测器(FID)温度:290℃,氢气压力100 k Pa,流速21.0 m L/min;空气压力160 k Pa,流速215.0 m L/min;检测器(FID)灵敏度:1010;手动进样,进样量:1.0μL。结论:该方法避免了外标法(国标方法)的国产仪器局限性和操作者人工进样的不确定性,具有受仪器参数变化的影响较小的特点,适合在基层食品检验机构推广。 相似文献
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目的:探讨PNPLA3在非酒精性脂肪性肝病中的表达水平及其Cp G岛甲基化状态,探讨PNPLA3在NAFLD发生、发展中的作用。方法:1.采用10μg/m L的油酸作用于人正常肝细胞株L02建立脂肪肝细胞模型,72 h后经油红O染色,观察正常组、脂肪肝模型组及给药组细胞内脂滴形成情况,并用荧光定量PCR检测PNPLA3在三组肝细胞中的表达情况。2.采用专用DNA提取试剂盒分别提取正常组、脂肪肝模型组、给药组细胞中DNA,经亚硫酸转化后行PCR扩增目的基因,并用焦磷酸测序方法检测不同组PNPLA3 Cp G岛中甲基化水平,探讨其在非酒精性脂肪肝中的作用。结果:1、脂肪肝模型组肝细胞PNPLA3 m RNA的表达高于正常组,经姜黄素给药后,其表达降低,差异均有统计学意义(P0.05)。2、在PNPLA3启动子区6个检测位点中,脂肪肝组位点2甲基化水平高于正常组,姜黄素给药后甲基化水平降低,差异均有统计学意义(P0.05),在其余各检测位点中甲基化水平无差异。结论:1、油红O染色后,脂肪肝模型组细胞内发现有大量红色脂滴积聚,而正常组基本上未见脂滴,姜黄素给药组脂滴较模型组减少,表明用10μg/m L的油酸诱导能成功建立体外肝细胞模型。2、PNPLA3 m RNA在肝细胞中高表达及其启动子区甲基化状态异常参与非酒精性脂肪肝发病。3、抑制肝脏PNPLA3活性或降低肝细胞PNPLA3 m RNA的表达水平可能是今后治疗非酒精性脂肪性肝病(NAFLD)的一个新的治疗方法。 相似文献
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Microbial signature lipid biomarker analysis – an approach that is still preferred,even amid various method modifications 下载免费PDF全文
C. Willers P.J. Jansen van Rensburg S. Claassens 《Journal of applied microbiology》2015,118(6):1251-1263
The lipid composition of microbial communities can indicate their response to changes in the surrounding environment induced by anthropogenic practices, chemical contamination or climatic conditions. A considerable number of analytical techniques exist for the examination of microbial lipids. This article reviews a selection of methods available for environmental samples as applied for lipid extraction, fractionation, derivatization and quantification. The discussion focuses on the origin of the standard methods, the different modified versions developed for investigation of microbial lipids, as well as the advantages and limitations of each. Current modifications to standard methods show a number of improvements for each of the different steps associated with analysis. The advantages and disadvantages of lipid analysis compared to other popular techniques are clarified. Accordingly, the preferential utilization of signature lipid biomarker analysis in current research is considered. It is clear from recent literature that this technique stays relevant – mainly for the variety of microbial properties that can be determined in a single analysis. 相似文献
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Preparative enantioseparation of four β‐substituted‐2‐phenylpropionic acids was performed by countercurrent chromatography with substituted β‐cyclodextrin as chiral selectors. The two‐phase solvent system was composed of n‐hexane‐ethyl acetate‐0.10 mol L‐1 of phosphate buffer solution at pH 2.67 containing 0.10 mol L‐1 of hydroxypropyl‐β‐cyclodextrin (HP‐β‐CD) or sulfobutylether‐β‐cyclodextrin (SBE‐β‐CD). The influence factors, including the type of substituted β‐cyclodextrin, composition of organic phase, concentration of chiral selector, pH value of the aqueous phase, and equilibrium temperature were optimized by enantioselective liquid–liquid extraction. Under the optimum separation conditions, 100 mg of 2‐phenylbutyric acid, 100 mg of tropic acid, and 50 mg of 2,3‐diphenylpropionic acid were successfully enantioseparated by high‐speed countercurrent chromatography, and the recovery of the (±)‐enantiomers was in the range of 90–91% for (±)‐2‐phenylbutyric acid, 91–92% for (±)‐tropic acid, 85–87% for (±)‐2,3‐diphenylpropionic acid with purity of over 97%, 96%, and 98%, respectively. The formation of 1:1 stoichiometric inclusion complex of β‐substituted‐2‐phenylpropionic acids with HP‐β‐CD was determined by UV spectrophotometry and the inclusion constants were calculated by a modified Benesi‐Hildebrand equation. The results showed that different enantioselectivities among different racemates were mainly caused by different enantiorecognition between each enantiomer and HP‐β‐CD, while it might be partially caused by different inclusion capacity between racemic solutes and HP‐β‐CD. Chirality 27:795–801, 2015. © 2015 Wiley Periodicals, Inc. 相似文献
10.
Chikara Otsubo Sivakama Bharathi Radha Uppala Olga R. Ilkayeva Dongning Wang Kevin McHugh Ye Zou Jieru Wang John F. Alcorn Yi Y. Zuo Matthew D. Hirschey Eric S. Goetzman 《The Journal of biological chemistry》2015,290(39):23897-23904
The role of mitochondrial energy metabolism in maintaining lung function is not understood. We previously observed reduced lung function in mice lacking the fatty acid oxidation enzyme long-chain acyl-CoA dehydrogenase (LCAD). Here, we demonstrate that long-chain acylcarnitines, a class of lipids secreted by mitochondria when metabolism is inhibited, accumulate at the air-fluid interface in LCAD−/− lungs. Acylcarnitine accumulation is exacerbated by stress such as influenza infection or by dietary supplementation with l-carnitine. Long-chain acylcarnitines co-localize with pulmonary surfactant, a unique film of phospholipids and proteins that reduces surface tension and prevents alveolar collapse during breathing. In vitro, the long-chain species palmitoylcarnitine directly inhibits the surface adsorption of pulmonary surfactant as well as its ability to reduce surface tension. Treatment of LCAD−/− mice with mildronate, a drug that inhibits carnitine synthesis, eliminates acylcarnitines and improves lung function. Finally, acylcarnitines are detectable in normal human lavage fluid. Thus, long-chain acylcarnitines may represent a risk factor for lung injury in humans with dysfunctional fatty acid oxidation. 相似文献