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    Please use this identifier to cite or link to this item: https://ir.csmu.edu.tw:8080/ir/handle/310902500/15894


    Title: Inhibition of breast cancer with transdermal tamoxifen-encapsulated lipoplex
    Authors: YL, Lin
    CH, Chen
    HY, Wu
    NM, Tsai
    TY, Jian
    YC, Chang
    CH, Lin
    CH, Wu
    FT, Hsu
    TK, Leung
    KW, Liao
    Contributors: 中山醫學大學
    Keywords: Lipo-PEG-PEI complex;Tamoxifen;Transdermal treatment;Breast cancer
    Date: 2016
    Issue Date: 2016-09-05T07:05:22Z (UTC)
    ISSN: 1477-3155
    Abstract: BACKGROUND:
    Tamoxifen is currently used for the treatment of both early and advanced estrogen receptor (ER) positive breast cancer in pre- and post-menopausal women. However, using tamoxifen routinely to inhibit endogenous or exogenous estrogen effects is occasionally difficult because of its potential side effects.
    OBJECTIVES:
    The aim of this study is to design a local drug delivery system to encapsulate tamoxifen for observing their efficacy of skin penetration, drug accumulation and cancer therapy.
    METHODS:
    A cationic liposome-PEG-PEI complex (LPPC) was used as a carrier for the encapsulation of tamoxifen and forming 'LPPC/TAM' for transdermal release. The cytotoxicity of LPPC/TAM was analyzed by MTT. The skin penetration, tumor growth inhibition and organ damages were measured in xenograft mice following transdermal treatment.
    RESULTS:
    LPPC/TAM had an average size less than 270 nm and a zeta-potential of approximately 40 mV. LPPC/TAM displayed dramatically increased the cytotoxic activity in all breast cancer cells, especially in ER-positive breast cancer cells. In vivo, LPPC drug delivery helped the fluorescent dye penetrating across the skim and accumulating rapidly in tumor area. Administration of LPPC/TAM by transdermal route inhibited about 86 % of tumor growth in mice bearing BT474 tumors. This local treatment of LPPC/TAM did not injury skin and any organs.
    CONCLUSION:
    LPPC-delivery system provided a better skin penetration and drug accumulation and therapeutic efficacy. Therefore, LPPC/TAM drug delivery maybe a useful transdermal tool of drugs utilization for breast cancer therapy.
    URI: http://dx.doi.org/10.1186/s12951-016-0163-3
    https://ir.csmu.edu.tw:8080/ir/handle/310902500/15894
    Relation: J Nanobiotechnology. 2016 Feb 19;14:11
    Appears in Collections:[醫學檢驗暨生物技術學系暨碩士班] 期刊論文

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