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Keyword [Cholesterol efflux]
Result: 81 - 100 | Page: 5 of 7
81. Vaspin Promotes Macrophage ABCA1 Expression And Cholesterol Efflux Through The NF-?B Pathway In THP-1 Macrophages
82. Effects Of PCSK9 On The Cholesterol Efflux And SREBP-2 Expression In THP-1-derived Lipid-loaded Cells
83. MiR-486 Regulates Cholesterol Efflux By Targeting HAT1
84. MALP-2 Downregulated ABCA1 Expression Though The TLR2/NF-?B/ZNF202 Signaling Pathway In THP-1 Macrophages
85. Effects Of Intestinal Flora Changes On Ulcerative Colitis In Mice
86. MiR-216b Influences The Differentiation, Fusion And Survival Of Osteoclasts By Directly Targeting To Inhibitor The Expression Of ABCG1
87. The Effects Of Age And Gender On The Function Of High-density Lipoprotein
88. Mechanism Of Cordycepin Inhibiting Foam Cells Formation Via Autophagy
89. Effects Of Atorvastatin On Lipid Metabolism And Cholesterol Efflux In Lipopolysaccharide-induced Cells And Mouse Inflammatory Models
90. Momordicin Acclerated Cholesterol Efflux From THP-1 Macrophage-derived Foam Cells Through Activating LXR?/ABCA1 Pathway
91. ISG15 Promotes Cholesterol Efflux In THP-1 Macrophage Through MiR-17-5p/beclin-1 Pathway
92. Endogenous H2S Affects Cholesterol Efflux And Apoptosis Of Osteoclasts Through LXR?/ABCG1 Pathway
93. [Gly14]-humanin Inhibits Ox-LDL Uptake And Stimulates Cholesterol Efflux In Macrophage-derived Foam Cells
94. Molecular Regulation Mechanism Of Persimmon Tannin On Cholesterol Efflux
95. Myocardin Inhibits Atherosclerosis By Upregulating Abca1 Expression And The Regulatory Mechanism Of Mir-1192
96. Experimental Study Of Tangshen Formula Improved Renal Fibrosis And Lipid Accumulation In Diabetic Nephropathy
97. The Role Of SIRT6 In Inducing Macrophage Autophagy Flux And Promoting Cholesterol Efflux So As To Inhibit Macrophage Foam Cell Formation
98. Itaconate Protects Against Atherosclerosis By Inhibiting Macrophage Lipid Accumulation And Pyroptosis
99. Molecular Mechanism Of Metformin In Modulating Foam Cell Phenotype
100. Kallistatin Promotes Abca1 Expression And Antiatherosclerosis Through The MiR-29c-3p/BACH2 Pathway
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