about
Reduced neonatal mortality in Meishan piglets: a role for hepatic fatty acids?Saturated Fatty Acids and Cardiovascular Disease: Replacements for Saturated Fat to Reduce Cardiovascular Risk.Nutritional profiles in a public health perspective: a critical review.Increased lipogenesis and stearate accelerate vascular calcification in calcifying vascular cellsStearic acid content of abdominal adipose tissues in obese women.Sterol regulatory element-binding protein-1c mediates increase of postprandial stearic acid, a potential target for improving insulin resistance, in hyperlipidemia.Fatty acid composition of adipose tissue triglycerides after weight loss and weight maintenance: the DIOGENES studyLipidomic risk score independently and cost-effectively predicts risk of future type 2 diabetes: results from diverse cohortsMetabolomic markers for intestinal ischemia in a mouse model.Different Serum Free Fatty Acid Profiles in NAFLD Subjects and Healthy Controls after Oral Fat LoadThe association of red blood cell n-3 and n-6 fatty acids with bone mineral density and hip fracture risk in the women's health initiative.Effect of dietary docosahexaenoic acid on biosynthesis of docosahexaenoic acid from alpha-linolenic acid in young rats.High-Fat Diet Induces Unexpected Fatal Uterine Infections in Mice with aP2-Cre-mediated Deletion of Estrogen Receptor Alpha.Triomics Analysis of Imatinib-Treated Myeloma Cells Connects Kinase Inhibition to RNA Processing and Decreased Lipid Biosynthesis.Metabolic changes in rat serum after administration of suberoylanilide hydroxamic acid and discriminated by SVM.Inhibitory effect of Ginkgo biloba extract on fatty liver: regulation of carnitine palmitoyltransferase 1a and fatty acid metabolism.Serum fatty acids in infants, reflecting family fish consumption, were inversely associated with allergy development but not related to farm residence.Lipidomic analysis of the liver identifies changes of major and minor lipid species in adiponectin deficient mice.In rat hepatocytes, myristic acid occurs through lipogenesis, palmitic acid shortening and lauric acid elongation.Stearic acid-induced cardiac lipotoxicity is independent of cellular lipid and is mitigated by the fatty acids oleic and capric acid but not by the PPAR agonist troglitazone.Decreasing high postprandial stearic acid in impaired fasting glucose by dietary regulation.The effect of dietary fat content on phospholipid fatty acid profile is muscle fiber type dependent.
P2860
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P2860
description
2005 nî lūn-bûn
@nan
2005年の論文
@ja
2005年学术文章
@wuu
2005年学术文章
@zh-cn
2005年学术文章
@zh-hans
2005年学术文章
@zh-my
2005年学术文章
@zh-sg
2005年學術文章
@yue
2005年學術文章
@zh
2005年學術文章
@zh-hant
name
The fate and intermediary metabolism of stearic acid.
@ast
The fate and intermediary metabolism of stearic acid.
@en
type
label
The fate and intermediary metabolism of stearic acid.
@ast
The fate and intermediary metabolism of stearic acid.
@en
prefLabel
The fate and intermediary metabolism of stearic acid.
@ast
The fate and intermediary metabolism of stearic acid.
@en
P1433
P1476
The fate and intermediary metabolism of stearic acid.
@en
P2093
Harini Sampath
James M Ntambi
P2888
P304
P356
10.1007/S11745-005-1484-Z
P577
2005-12-01T00:00:00Z