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Inhibitory effects of blocking voltage-dependent potassium channel 1.3 on human monocyte-derived macrophage differentiation into foam cells.

Inhibitory effects of blocking voltage-dependent potassium channel 1.3 on human monocyte-derived macrophage differentiation into foam cells. Research Abstract Details 

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  • Inhibitory effects of blocking voltage-dependent potassium channel 1.3 on human monocyte-derived macrophage differentiation into foam cells. Abstract Text:

    xin-jun leiXin-jun Lei,ai-qun maAi-qun Ma,yu-tao xiYu-tao Xi,wei zhangWei Zhang,yan yaoYan Yao,yuan duYuan Du,

    OBJECTIVE: To investigate the expression of voltage-dependent potassium channel 1.3 (Kv1.3) mRNA and protein during human monocyte-derived macrophage differentiation into foam cells and its function in foam cell formation. METHODS: Human peripheral blood monocytes were isolated from healthy male volunteers by density gradient centrifugation and then by adherent method. The obtained monocytes were cultured for 5 days to differentiate into macrophages. Based on establishment of the human macrophage-derived foam cell model, the expression of Kv1.3 channel was investigated by immunocytochemical staining, reverse transcription-polymerase chain reaction (RT-PCR) and Western blot. Furthermore, the effects of rMargatoxin, a Kv 1.3 channel-specific inhibitor, on cholesterol metabolism in macrophages incepting oxidized low density lipoprotein (OxLDL) were studied. RESULTS: After the macrophages co-incubated with 30 mg/L OxLDL at 37 degrees C for 60 hours, the cellular volume obviously enlarged and many red lipid granules were deposited in cytoplasm. The total amount of cholesterol (TC), free cholesterol (FC) and cholesterol ester (CE) in cells markedly increased and the ratio of CE/TC rose from (14.4+/-6.8)% to (57.9+/-3.5)% (n=7, P<0.05). However, the expression of Kv1.3 channel had no significant change. rMargatoxin (0.1 nmol/L and 10 nmol/L) markedly reduced the contents of TC, FC and CE in macrophages and the ratios of CE/TC decreased to (42.8+/-11.6)% and (22.6+/-8.0)%, respectively (n=7, P<0.05). Meanwhile, the red lipid granules deposited in the cytoplasm of macrophages also decreased. CONCLUSION: These data clearly show that the expression of Kv1.3 channel does not change obviously during human monocyte-derived macrophage differentiation into foam cells and the blocking of it would prevent foam cell formation.

    Inhibitory effects of blocking voltage-dependent potassium channel 1.3 on human monocyte-derived macrophage differentiation into foam cells. Publishing Authors By Initials

    xj leiXJ Lei,aq maAQ Ma,yt xiYT Xi,w zhangW Zhang,y yaoY Yao,y duY Du,

    For similar abstracts research abstracts see: abstracts research

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    Inhibitory effects of blocking voltage-dependent potassium channel 1.3 on human monocyte-derived macrophage differentiation into foam cells. Journal Published:

    PUBLICATION TYPE: Research Support, Non-U.S. Gov

    Journal: Beijing da xue xue bao. Yi xue ban = Journal of Pe

    VOLUME: 38

    Page Numbers: 257-61

    Journal Abbreviation: Beijing Da Xue Xue Bao

    ISSN: 1671-167X

    DAY: 18

    MONTH: Jun

    YEAR: 2006

    Inhibitory effects of blocking voltage-dependent potassium channel 1.3 on human monocyte-derived macrophage differentiation into foam cells. Information

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    LANGUAGE: eng

    NlmUniqueID: 101125284

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    Grant and Affiliation Information for Inhibitory effects of blocking voltage-dependent potassium channel 1.3 on human monocyte-derived macrophage differentiation into foam cells.

    AFFILIATION: Department of Cardiology, The First Affiliated Hospital of Medical School, Xi'an Jiaotong University, Xi'an 710061, China.

    Country: China

    China Research PublicationChina Research Publication

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    MEDLINETA: Beijing Da Xue Xue Bao

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