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- W2015293456 abstract "Objectives: This review article will summarize the current knowledge surrounding the reverse cholesterol transport system; the process, the effect of mutations in genes coding for proteins which function in the system, and the possible clinical implications of these alterations. Results: High-density lipoprotein-cholesterol (HDL-C) concentration is a marker for the reverse cholesterol transport (RCT) system, whereby cholesterol is returned from peripheral cells to the liver for reuse or excretion in the bile. Increased HDL-C concentrations are generally accepted to be protective against the future development of atherosclerosis and coronary artery disease (CAD), but recent evidence has indicated that the underlying cause of the increased HDL-C may affect whether it is protective or detrimental. The major steps in the RCT pathway are the efflux of free cholesterol from cells and binding by pre-β HDL, esterification of HDL-bound cholesterol by lecithin cholesterol acyl transferase (LCAT), cholesteryl ester transfer protein (CETP) mediated exchange of cholesteryl ester and triglycerides between HDL and apo B-containing particles, and hepatic lipase (HL) mediated uptake of cholesterol and triglycerides by the liver. Mutations in proteins active in the RCT pathway can shed light on the functions and control of the various steps in the system. LCAT deficiency, leading to greatly reduced HDL and fish eye disease, is not usually associated with increased risk of CAD. Several new mutations in LCAT have recently been reported, however, which do result in CAD. Mutations leading to reduced CETP activity result in less CE being directed into apo-B containing particles and more remaining in the HDL. This has been associated with increased HDL-C concentrations. The generally accepted hypothesis that reduced CETP activity leads to reduced CAD risk has been challenged by a number of recent publications, and has become an area of active investigation. Mutations leading to reduced HL activity are rare occurrences. To date, all have been associated with increased HDL-C concentrations and CAD. Conclusion: The development of techniques to identify and characterize the functional significance of mutations in proteins involved in RCT will aid in the understanding of the mechanisms and control of this pathway." @default.
- W2015293456 created "2016-06-24" @default.
- W2015293456 creator A5054848268 @default.
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- W2015293456 date "1997-10-01" @default.
- W2015293456 modified "2023-09-30" @default.
- W2015293456 title "Reverse Cholesterol Transport—A Review of the Process and Its Clinical Implications" @default.
- W2015293456 cites W1491391137 @default.
- W2015293456 cites W1510710298 @default.
- W2015293456 cites W1514625818 @default.
- W2015293456 cites W1518920838 @default.
- W2015293456 cites W1529989543 @default.
- W2015293456 cites W1537433933 @default.
- W2015293456 cites W1552121147 @default.
- W2015293456 cites W1567529717 @default.
- W2015293456 cites W1582749228 @default.
- W2015293456 cites W1793465713 @default.
- W2015293456 cites W1815531632 @default.
- W2015293456 cites W1859959423 @default.
- W2015293456 cites W1947043095 @default.
- W2015293456 cites W1968948434 @default.
- W2015293456 cites W1975103250 @default.
- W2015293456 cites W1976559252 @default.
- W2015293456 cites W1977321522 @default.
- W2015293456 cites W1979386443 @default.
- W2015293456 cites W1982396383 @default.
- W2015293456 cites W1988448764 @default.
- W2015293456 cites W1995123501 @default.
- W2015293456 cites W1998091483 @default.
- W2015293456 cites W2012831185 @default.
- W2015293456 cites W2017703585 @default.
- W2015293456 cites W2018206261 @default.
- W2015293456 cites W2024124757 @default.
- W2015293456 cites W2026530829 @default.
- W2015293456 cites W2028565218 @default.
- W2015293456 cites W2030028094 @default.
- W2015293456 cites W2035395035 @default.
- W2015293456 cites W2041074255 @default.
- W2015293456 cites W2041591106 @default.
- W2015293456 cites W2045315999 @default.
- W2015293456 cites W2045687868 @default.
- W2015293456 cites W2046526092 @default.
- W2015293456 cites W2046925245 @default.
- W2015293456 cites W2051220451 @default.
- W2015293456 cites W2054355774 @default.
- W2015293456 cites W2056544808 @default.
- W2015293456 cites W2058735916 @default.
- W2015293456 cites W2066200110 @default.
- W2015293456 cites W2073336522 @default.
- W2015293456 cites W2082858014 @default.
- W2015293456 cites W2083190905 @default.
- W2015293456 cites W2083392018 @default.
- W2015293456 cites W2088006918 @default.
- W2015293456 cites W2096167106 @default.
- W2015293456 cites W2101110382 @default.
- W2015293456 cites W2110670175 @default.
- W2015293456 cites W2114409077 @default.
- W2015293456 cites W2122384861 @default.
- W2015293456 cites W2123151772 @default.
- W2015293456 cites W2125757745 @default.
- W2015293456 cites W2130368942 @default.
- W2015293456 cites W2134120897 @default.
- W2015293456 cites W2144170867 @default.
- W2015293456 cites W2145666707 @default.
- W2015293456 cites W2164755470 @default.
- W2015293456 cites W2165075265 @default.
- W2015293456 cites W2166606079 @default.
- W2015293456 cites W2169943839 @default.
- W2015293456 cites W2185261374 @default.
- W2015293456 cites W2189572630 @default.
- W2015293456 cites W2286030148 @default.
- W2015293456 cites W2336122760 @default.
- W2015293456 cites W2339616051 @default.
- W2015293456 cites W2344423072 @default.
- W2015293456 cites W2344806730 @default.
- W2015293456 cites W2345169404 @default.
- W2015293456 cites W2413650885 @default.
- W2015293456 doi "https://doi.org/10.1016/s0009-9120(97)00098-2" @default.
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