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367 results on '"foam cell formation"'

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51. Macrophage lipid accumulation in the presence of immunosuppressive drugs mycophenolate mofetil and cyclosporin A.

52. Phenylpropanoid glucosides from Tadehagi triquetrum inhibit oxLDL-evoked foam cell formation through modulating cholesterol homeostasis in RAW264.7 macrophages.

53. High Uric Acid Activates the ROS-AMPK Pathway, Impairs CD68 Expression and Inhibits OxLDL-Induced Foam-Cell Formation in a Human Monocytic Cell Line, THP-1

56. Oleacein and Foam Cell Formation in Human Monocyte-Derived Macrophages: A Potential Strategy against Early and Advanced Atherosclerotic Lesions

58. Antioxidant Properties of Essential Oil Extracted from Pinus morrisonicola Hay Needles by Supercritical Fluid and Identification of Possible Active Compounds by GC/MS

59. Bioengineered Vascular Model of Foam Cell Formation.

60. Gypenoside LVI attenuates foam cell formation by promoting cholesterol export and inhibiting inflammation response.

61. MicroRNA-23a-5p promotes atherosclerotic plaque progression and vulnerability by repressing ATP-binding cassette transporter A1/G1 in macrophages.

62. Andrographolide Ameliorates Atherosclerosis by Suppressing Pro-Inflammation and ROS Generation-Mediated Foam Cell Formation.

63. Agent Based Modeling of Atherosclerosis: A Concrete Help in Personalized Treatments

64. Novel soybean polypeptide dglycin alleviates atherosclerosis in apolipoprotein E-deficient mice.

73. Kuwanon G attenuates atherosclerosis by upregulation of LXRα-ABCA1/ABCG1 and inhibition of NFκB activity in macrophages.

74. Inhibition of the NLRP3 inflammasome attenuates foam cell formation of THP-1 macrophages by suppressing ox-LDL uptake and promoting cholesterol efflux.

75. Tofacitinib ameliorates atherosclerosis and reduces foam cell formation in apoE deficient mice.

76. Phosphoinositide phosphatase Sac3 regulates the cell surface expression of scavenger receptor A and formation of lipid droplets in macrophages.

77. Histamine promotes the differentiation of macrophages from CD11b+ myeloid cells and formation of foam cells through a Stat6-dependent pathway.

78. How do macrophages sense modified low-density lipoproteins?

82. Macrophage PPAR gamma Co‐activator‐1 alpha participates in repressing foam cell formation and atherosclerosis in response to conjugated linoleic acid

92. CYP2J2 participates in atherogenesis by mediating cell proliferation, migration and foam cell formation.

93. Cyclophilin A enhances macrophage differentiation and lipid uptake in high glucose conditions: a cellular mechanism for accelerated macro vascular disease in diabetes mellitus.

94. Endophilin-A2-mediated increase in scavenger receptor expression contributes to macrophage-derived foam cell formation.

95. The inhibition of macrophage foam cell formation by tetrahydroxystilbene glucoside is driven by suppressing vimentin cytoskeleton.

96. microRNA-150 inhibits the formation of macrophage foam cells through targeting adiponectin receptor 2.

97. NUMERICAL MODELING OF ATHEROSCLEROSIS LESION EVOLUTION IN TIME I. INITIAL STAGE OF THE DISEASE.

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