Annual Review of Nutrition, ISSN 0199-9885, 7/2015, Volume 35, Issue 1, pp. 265 - 294
Dietary lipids are efficiently absorbed by the small intestine, incorporated into triglyceride-rich lipoproteins (chylomicrons), and transported in the...
atherosclerosis | chylomicron | triglyceride-rich lipoprotein | apolipoprotein B-48 | diabetic dyslipidemia | Chylomicron | Apolipoprotein B-48 | Diabetic dyslipidemia | Triglyceride-rich lipoprotein | Atherosclerosis | TRIGLYCERIDE TRANSFER PROTEIN | FATTY-ACID-BINDING | TRIACYLGLYCEROL-RICH LIPOPROTEINS | APOLIPOPROTEIN A-IV | INTESTINAL LIPOPROTEIN PRODUCTION | OF-FUNCTION MUTATIONS | NUTRITION & DIETETICS | HOMOZYGOUS FAMILIAL HYPERCHOLESTEROLEMIA | POSTPRANDIAL LIPID-METABOLISM | GLUCAGON-LIKE PEPTIDE-2 | TYPE-2 DIABETES-MELLITUS | Chylomicrons - biosynthesis | Dietary Fats - metabolism | Triglycerides - biosynthesis | Cholesterol, Dietary - metabolism | Humans | Insulin Resistance | Nutritional Physiological Phenomena | Gastrointestinal Microbiome - physiology | Intestines - metabolism | Circadian Rhythm | Intestinal Absorption | Atherosclerosis - blood | Diabetes Mellitus, Type 2 - blood | Diet | Cholesterol, Dietary - pharmacology | Homeostasis - physiology | Triglycerides - blood | Chylomicrons - blood | Chylomicrons - genetics | Hormones - physiology | Triglycerides - genetics | Dietary Supplements | Dietary Fats - pharmacokinetics | Lipid Metabolism - physiology | Prevention | Chylomicrons | Dyslipidemias | Health aspects | Risk factors
atherosclerosis | chylomicron | triglyceride-rich lipoprotein | apolipoprotein B-48 | diabetic dyslipidemia | Chylomicron | Apolipoprotein B-48 | Diabetic dyslipidemia | Triglyceride-rich lipoprotein | Atherosclerosis | TRIGLYCERIDE TRANSFER PROTEIN | FATTY-ACID-BINDING | TRIACYLGLYCEROL-RICH LIPOPROTEINS | APOLIPOPROTEIN A-IV | INTESTINAL LIPOPROTEIN PRODUCTION | OF-FUNCTION MUTATIONS | NUTRITION & DIETETICS | HOMOZYGOUS FAMILIAL HYPERCHOLESTEROLEMIA | POSTPRANDIAL LIPID-METABOLISM | GLUCAGON-LIKE PEPTIDE-2 | TYPE-2 DIABETES-MELLITUS | Chylomicrons - biosynthesis | Dietary Fats - metabolism | Triglycerides - biosynthesis | Cholesterol, Dietary - metabolism | Humans | Insulin Resistance | Nutritional Physiological Phenomena | Gastrointestinal Microbiome - physiology | Intestines - metabolism | Circadian Rhythm | Intestinal Absorption | Atherosclerosis - blood | Diabetes Mellitus, Type 2 - blood | Diet | Cholesterol, Dietary - pharmacology | Homeostasis - physiology | Triglycerides - blood | Chylomicrons - blood | Chylomicrons - genetics | Hormones - physiology | Triglycerides - genetics | Dietary Supplements | Dietary Fats - pharmacokinetics | Lipid Metabolism - physiology | Prevention | Chylomicrons | Dyslipidemias | Health aspects | Risk factors
Journal Article
Annual Review of Nutrition, ISSN 0199-9885, 2014, Volume 34, Issue 1, pp. 281 - 303
CD36 (cluster of differentiation 36) is a scavenger receptor that functions in high-affinity tissue uptake of long-chain fatty acids (FAs) and contributes...
Phospholipase | Chylomicron | Calcium | Eicosanoid | Fat taste | VLDL | FA binding | Secretin | CCK | eicosanoid | calcium | fat taste | SMALL-MOLECULE | LINOLEIC-ACID | chylomicron | ARACHIDONIC-ACID | PLASMA-MEMBRANE | phospholipase | NUTRITION & DIETETICS | ORAL-SENSITIVITY | INSULIN-RESISTANCE | secretin | BITTER-TASTE | TASTE BUD CELLS | MEMBRANE-PROTEINS | DIETARY LIPIDS | Dietary Fats - metabolism | Signal Transduction | Humans | CD36 Antigens - chemistry | Chylomicrons - metabolism | Fatty Acids, Nonesterified - metabolism | Animals | Biological Transport | CD36 Antigens - metabolism | Lipoproteins, VLDL - blood | Models, Biological | Lipoproteins, VLDL - metabolism | Chylomicrons - blood | Fatty Acids, Nonesterified - blood | Protein Conformation | Binding Sites | CD36 Antigens - blood | Protein research | Cellular signal transduction | Research | Metabolism | Fatty acids | Health aspects
Phospholipase | Chylomicron | Calcium | Eicosanoid | Fat taste | VLDL | FA binding | Secretin | CCK | eicosanoid | calcium | fat taste | SMALL-MOLECULE | LINOLEIC-ACID | chylomicron | ARACHIDONIC-ACID | PLASMA-MEMBRANE | phospholipase | NUTRITION & DIETETICS | ORAL-SENSITIVITY | INSULIN-RESISTANCE | secretin | BITTER-TASTE | TASTE BUD CELLS | MEMBRANE-PROTEINS | DIETARY LIPIDS | Dietary Fats - metabolism | Signal Transduction | Humans | CD36 Antigens - chemistry | Chylomicrons - metabolism | Fatty Acids, Nonesterified - metabolism | Animals | Biological Transport | CD36 Antigens - metabolism | Lipoproteins, VLDL - blood | Models, Biological | Lipoproteins, VLDL - metabolism | Chylomicrons - blood | Fatty Acids, Nonesterified - blood | Protein Conformation | Binding Sites | CD36 Antigens - blood | Protein research | Cellular signal transduction | Research | Metabolism | Fatty acids | Health aspects
Journal Article
Journal of Clinical Investigation, ISSN 0021-9738, 03/2014, Volume 124, Issue 3, pp. 929 - 935
The life cycles of VLDLs and most LDLs occur within plasma. By contrast, the role of HDLs in cholesterol transport from cells requires that they readily gain...
HUMAN CHYLE CHYLOMICRONS | MEDICINE, RESEARCH & EXPERIMENTAL | SR-BI | B TYPE-I | PLASMA-LIPOPROTEINS | REVERSE CHOLESTEROL TRANSPORT | ENDOTHELIAL-CELLS | TARGETED MUTATION | HUMAN INTERSTITIAL FLUID | HUMAN PERIPHERAL LYMPH | APOLIPOPROTEIN-A-I | Chylomicrons - metabolism | Extracellular Fluid - metabolism | Lymphatic Vessels - metabolism | Animals | Biological Transport | Humans | Lipoproteins, HDL - metabolism | Cholesterol - metabolism | Atherosclerosis - metabolism | Physiological aspects | Chylomicrons | Lymphatics | High density lipoproteins | Biological transport | Studies | Lipoproteins | Skin | Rodents | Cholesterol | Veins & arteries | Review Series
HUMAN CHYLE CHYLOMICRONS | MEDICINE, RESEARCH & EXPERIMENTAL | SR-BI | B TYPE-I | PLASMA-LIPOPROTEINS | REVERSE CHOLESTEROL TRANSPORT | ENDOTHELIAL-CELLS | TARGETED MUTATION | HUMAN INTERSTITIAL FLUID | HUMAN PERIPHERAL LYMPH | APOLIPOPROTEIN-A-I | Chylomicrons - metabolism | Extracellular Fluid - metabolism | Lymphatic Vessels - metabolism | Animals | Biological Transport | Humans | Lipoproteins, HDL - metabolism | Cholesterol - metabolism | Atherosclerosis - metabolism | Physiological aspects | Chylomicrons | Lymphatics | High density lipoproteins | Biological transport | Studies | Lipoproteins | Skin | Rodents | Cholesterol | Veins & arteries | Review Series
Journal Article
BBA - Molecular and Cell Biology of Lipids, ISSN 1388-1981, 05/2012, Volume 1821, Issue 5, pp. 727 - 735
Our knowledge of how the body absorbs triacylglycerols (TAG) from the diet and how this process is regulated has increased at a rapid rate in recent years....
MTP | Lipid Metabolism | Chylomicron | Fat absorption | ApoB | Fatty acid | RAT-LIVER | FATTY-ACID-BINDING | BIOCHEMISTRY & MOLECULAR BIOLOGY | B-CONTAINING LIPOPROTEINS | INTESTINAL LIPID ABSORPTION | CELL BIOLOGY | APOLIPOPROTEIN-A-IV | TRANSFER PROTEIN | BIOPHYSICS | PRECHYLOMICRON TRANSPORT VESICLE | MESSENGER-RNA | INSULIN-RESISTANCE | MONOACYLGLYCEROL ACYLTRANSFERASE | Chylomicrons - metabolism | Animals | Enterocytes - metabolism | Humans | Endoplasmic Reticulum - metabolism | Intestines - metabolism | Chylomicrons - secretion | Fatty Acids - metabolism | Intestinal Absorption | Triglycerides - metabolism | Proteins | Physiological aspects | Triglycerides | Binding proteins | Fatty acids | Monoglycerides | Protein binding
MTP | Lipid Metabolism | Chylomicron | Fat absorption | ApoB | Fatty acid | RAT-LIVER | FATTY-ACID-BINDING | BIOCHEMISTRY & MOLECULAR BIOLOGY | B-CONTAINING LIPOPROTEINS | INTESTINAL LIPID ABSORPTION | CELL BIOLOGY | APOLIPOPROTEIN-A-IV | TRANSFER PROTEIN | BIOPHYSICS | PRECHYLOMICRON TRANSPORT VESICLE | MESSENGER-RNA | INSULIN-RESISTANCE | MONOACYLGLYCEROL ACYLTRANSFERASE | Chylomicrons - metabolism | Animals | Enterocytes - metabolism | Humans | Endoplasmic Reticulum - metabolism | Intestines - metabolism | Chylomicrons - secretion | Fatty Acids - metabolism | Intestinal Absorption | Triglycerides - metabolism | Proteins | Physiological aspects | Triglycerides | Binding proteins | Fatty acids | Monoglycerides | Protein binding
Journal Article
Journal of Lipid Research, ISSN 0022-2275, 05/2017, Volume 58, Issue 5, pp. 853 - 865
Since its initial report in 2009, the intestinal enteroid culture system has been a powerful tool used to study stem cell biology and development in the...
Apolipoprotein C-III | Organoids | Stem cells | Chylomicrons | Intestinal lipid transport | Dietary fat absorption | Triglyceride | triglyceride | stem cells | STEM-CELLS | LIPID ABSORPTION | CORONARY EVENTS | organoids | BIOCHEMISTRY & MOLECULAR BIOLOGY | RISK | apolipoprotein C-III | intestinal lipid transport | IN-VITRO | TRANSPORT | PHYSIOLOGICAL REGULATION | dietary fat absorption | SECRETION | chylomicrons | CHYLOMICRON | Chylomicrons - biosynthesis | Dietary Fats - metabolism | Intestinal Mucosa - metabolism | Humans | Mice, Inbred C57BL | Apolipoprotein C-III - metabolism | Mice, Transgenic | Apolipoprotein C-III - genetics | Absorption, Physicochemical | Organ Specificity | Triglycerides - metabolism | Chylomicrons - metabolism | Animals | Cell Differentiation | Mice | Intestines - cytology | Cell culture | Intestine | Etiology | Secretion | Oils & fats | Physiology | Gastrointestinal tract | Apolipoproteins | Risk factors
Apolipoprotein C-III | Organoids | Stem cells | Chylomicrons | Intestinal lipid transport | Dietary fat absorption | Triglyceride | triglyceride | stem cells | STEM-CELLS | LIPID ABSORPTION | CORONARY EVENTS | organoids | BIOCHEMISTRY & MOLECULAR BIOLOGY | RISK | apolipoprotein C-III | intestinal lipid transport | IN-VITRO | TRANSPORT | PHYSIOLOGICAL REGULATION | dietary fat absorption | SECRETION | chylomicrons | CHYLOMICRON | Chylomicrons - biosynthesis | Dietary Fats - metabolism | Intestinal Mucosa - metabolism | Humans | Mice, Inbred C57BL | Apolipoprotein C-III - metabolism | Mice, Transgenic | Apolipoprotein C-III - genetics | Absorption, Physicochemical | Organ Specificity | Triglycerides - metabolism | Chylomicrons - metabolism | Animals | Cell Differentiation | Mice | Intestines - cytology | Cell culture | Intestine | Etiology | Secretion | Oils & fats | Physiology | Gastrointestinal tract | Apolipoproteins | Risk factors
Journal Article
2010, ISBN 9783527324484, xxi, 398
With atherosclerosis being the number one cause of death in the western world, this handbook and ready reference provides a comprehensive account of the...
Arteries | Atherosclerosis | Diseases | Atherosclerotic plaque
Arteries | Atherosclerosis | Diseases | Atherosclerotic plaque
Book