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      KCI등재 SCOPUS

      Quantifications of Lipid Kinetics In Vivo Using Stable Isotope Tracer Methodology

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      https://www.riss.kr/link?id=A106545374

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      다국어 초록 (Multilingual Abstract)

      Like other bodily materials, lipids such as plasma triacylglycerol, cholesterols, and free fatty acids are in a dynamic state of constant turnover (i.e., synthesis, breakdown, oxidation, and/or conversion to other compounds) as essential processes for...

      Like other bodily materials, lipids such as plasma triacylglycerol, cholesterols, and free fatty acids are in a dynamic state of constant turnover (i.e., synthesis, breakdown, oxidation, and/or conversion to other compounds) as essential processes for achieving dynamic homeostasis in the body. However, dysregulation of lipid turnover can lead to clinical conditions such as obesity, fatty liver disease, and dyslipidemia. Assessment of “snap-shot” information on lipid metabolism (e.g., tissue contents of lipids, abundance of mRNA and protein and/or signaling molecules) are often used in clinical and research settings, and can help to understand one's health and disease status. However, such “snapshots” do not provide critical information on dynamic nature of lipid metabolism, and therefore may miss “true” origin of the dysregulation implicated in related diseases. In this regard, stable isotope tracer methodology can provide the in vivo kinetic information of lipid metabolism. Combining with “static” information, knowledge of lipid kinetics can enable the acquisition of in depth understanding of lipid metabolism in relation to various health and disease status. This in turn facilitates the development of effective therapeutic approaches (e.g., exercise, nutrition, and/or drugs). In this review we will discuss 1) the importance of obtaining kinetic information for a better understanding of lipid metabolism, 2) basic principles of stable isotope tracer methodologies that enable exploration of “lipid kinetics” in vivo, and 3) quantification of some aspects of lipid kinetics in vivo with numerical examples.

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      참고문헌 (Reference)

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      4 Schoenheimer R, "The dynamic state of body constituents" Harvard University Express 1946

      5 Kim IY, "The anabolic response to a meal containing different amounts of protein is not limited by the maximal stimulation of protein synthesis in healthy young adults" 310 : E73-E80, 2016

      6 Donnelly KL, "Sources of fatty acids stored in liver and secreted via lipoproteins in patients with nonalcoholic fatty liver disease" 115 : 1343-1351, 2005

      7 Kim IY, "Short term elevation in dietary protein intake does not worsen insulin resistance or lipids in older adults with metabolic syndrome : a randomized-controlled trial" 3 : 33-, 2017

      8 Kim IY, "Quantity of dietary protein intake, but not pattern of intake, affects net protein balance primarily through differences in protein synthesis in older adults" 308 : E21-E28, 2015

      9 Neinast MD, "Quantitative analysis of the whole-body metabolic fate of branched-chain amino acids" 29 : 417-429, 2019

      10 Martini WZ, "Quantification of DNA synthesis from different pathways in cultured human fibroblasts and myocytes" 53 : 128-133, 2004

      1 Castillo L, "Whole body nitric oxide synthesis in healthy men determined from [15N] arginine-to-[15N]citrulline labeling" 93 : 11460-11465, 1996

      2 Cobelli C, "Tracer kinetics in biomedical research" Springer US 2002

      3 Roche HM, "The impact of postprandial lipemia in accelerating atherothrombosis" 7 : 317-324, 2000

      4 Schoenheimer R, "The dynamic state of body constituents" Harvard University Express 1946

      5 Kim IY, "The anabolic response to a meal containing different amounts of protein is not limited by the maximal stimulation of protein synthesis in healthy young adults" 310 : E73-E80, 2016

      6 Donnelly KL, "Sources of fatty acids stored in liver and secreted via lipoproteins in patients with nonalcoholic fatty liver disease" 115 : 1343-1351, 2005

      7 Kim IY, "Short term elevation in dietary protein intake does not worsen insulin resistance or lipids in older adults with metabolic syndrome : a randomized-controlled trial" 3 : 33-, 2017

      8 Kim IY, "Quantity of dietary protein intake, but not pattern of intake, affects net protein balance primarily through differences in protein synthesis in older adults" 308 : E21-E28, 2015

      9 Neinast MD, "Quantitative analysis of the whole-body metabolic fate of branched-chain amino acids" 29 : 417-429, 2019

      10 Martini WZ, "Quantification of DNA synthesis from different pathways in cultured human fibroblasts and myocytes" 53 : 128-133, 2004

      11 Kim IY, "Quality of meal protein determines anabolic response in older adults" 37 : 2076-2083, 2018

      12 Kim IY, "Protein intake distribution pattern does not affect anabolic response, lean body mass, muscle strength or function over 8 weeks in older adults : a randomized-controlled trial" 37 : 488-493, 2018

      13 Kim IY, "Prolonged sitting negatively affects the postprandial plasma triglyceride-lowering effect of acute exercise" 311 : E891-E898, 2016

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      15 Chopra S, "Obstructive sleep apnea dynamically increases nocturnal plasma free fatty acids, glucose, and cortisol during sleep" 102 : 3172-3181, 2017

      16 Turner SM, "Measurement of TG synthesis and turnover in vivo by 2H2O incorporation into the glycerol moiety and application of MIDA" 285 : E790-E803, 2003

      17 Wolfe RR, "Lipolytic response to glucose infusion in human subjects" 252 : E218-E223, 1987

      18 Perry RJ, "Leptin mediates a glucose-fatty acid cycle to maintain glucose homeostasis in starvation" 172 : 234-248, 2018

      19 Wolfe RR, "Isotope tracers in metabolic research: principles and practice of kinetic analysis" Wiley-Liss 2004

      20 Bukhari SS, "Intake of low-dose leucine-rich essential amino acids stimulates muscle anabolism equivalently to bolus whey protein in older women at rest and after exercise" 308 : E1056-E1065, 2015

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      22 Hellerstein MK, "In vivo measurement of fluxes through metabolic pathways : the missing link in functional genomics and pharmaceutical research" 23 : 379-402, 2003

      23 Fontbonne A, "Hypertriglyceridaemia as a risk factor of coronary heart disease mortality in subjects with impaired glucose tolerance or diabetes. Results from the 11-year follow-up of the Paris Prospective Study" 32 : 300-304, 1989

      24 Zhang XJ, "Fractional synthesis rates of DNA and protein in rabbit skin are not correlated" 134 : 2401-2406, 2004

      25 Bansal S, "Fasting compared with nonfasting triglycerides and risk of cardiovascular events in women" 298 : 309-316, 2007

      26 Goodpaster BH, "Effects of obesity on substrate utilization during exercise" 10 : 575-584, 2002

      27 Kim IY, "Effects of moderate-and intermittent low-intensity exercise on postprandial lipemia" 46 : 1882-1890, 2014

      28 Fulks RM, "Effects of insulin, glucose, and amino acids on protein turnover in rat diaphragm" 250 : 290-298, 1975

      29 Hellerstein MK, "Effects of cigarette smoking and its cessation on lipid metabolism and energy expenditure in heavy smokers" 93 : 265-272, 1994

      30 McGuire EA, "Effects of arterial versus venous sampling on analysis of glucose kinetics in man" 41 : 565-573, 1976

      31 Gjedsted J, "Effects of adrenaline on lactate, glucose, lipid and protein metabolism in the placebo controlled bilaterally perfused human leg" 202 : 641-648, 2011

      32 Wolfe RR, "Effect of short-term fasting on lipolytic responsiveness in normal and obese human subjects" 252 : E189-E196, 1987

      33 Mazzeo RS, "Disposal of blood [1-13C]lactate in humans during rest and exercise" 60 : 232-241, 1986

      34 Rittenberg D, "Deuterium as an indicator in the study of intermediary metabolism : XI. Further studies on the biological uptake of deuterium into organic substances, with special reference to fat and cholesterol formation" 121 : 235-253, 1937

      35 Schoenheimer R, "Deuterium as an indicator in the study of intermediary metabolism : VI. Synthesis and destruction of fatty acids in the organism" 114 : 381-396, 1937

      36 Kim IY, "Consumption of a specially-formulated mixture of essential amino acids promotes gain in whole-body protein to a greater extent than a complete meal replacement in older women with heart failure" 11 : E1360-, 2019

      37 Khairallah EA, "Assessment of protein turnover in perfused rat liver. Evidence for amino acid compartmentation from differential labeling of free and tRNA-gound valine" 251 : 1375-1384, 1976

      38 de Betue CT, "Arginine appearance and nitric oxide synthesis in critically ill infants can be increased with a protein-energy-enriched enteral formula" 98 : 907-916, 2013

      39 김일영, "Applications of stable, nonradioactive isotope tracers in in vivo human metabolic research" 생화학분자생물학회 48 : 1-10, 2016

      40 Kim IY, "Acute lysine supplementation does not improve hepatic or peripheral insulin sensitivity in older, overweight individuals" 11 : 49-, 2014

      41 Kim IY, "Acute ingestion of citrulline stimulates nitric oxide synthesis but does not increase blood flow in healthy young and older adults with heart failure" 309 : E915-E924, 2015

      42 Brook MS, "A novel D2O tracer method to quantify RNA turnover as a biomarker of de novo ribosomal biogenesis, in vitro, in animal models, and in human skeletal muscle" 313 : E681-E689, 2017

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      연월일 이력구분 이력상세 등재구분
      2023 평가예정 재인증평가 신청대상 (재인증)
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