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[In vitro cotransfer human multidrug resistance gene (mdr-1) and dihydrofolate reductase gene (DHFR) into human CD(34)(+) progenitor cells to broaden the spectrum of drug resistance]

[In vitro cotransfer human multidrug resistance gene (mdr-1) and dihydrofolate reductase gene (DHFR) into human CD(34)(+) progenitor cells to broaden the spectrum of drug resistance] Research Abstract Details 

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  • [In vitro cotransfer human multidrug resistance gene (mdr-1) and dihydrofolate reductase gene (DHFR) into human CD(34)(+) progenitor cells to broaden the spectrum of drug resistance] Abstract Text:

    f zhuF Zhu,l panL Pan,y zhangY Zhang,n maoN Mao,

    OBJECTIVE: To explore the feasibility of cotransferring human mdr-1 gene and DHFR gene into human CD(34)(+) progenitor cells to broaden the spectrum of drug resistance and improve the tolerance of myelosuppression following combination chemotherapy. METHODS: The recombinant retroviral vector pSF-DIM containing mdr-1 and DHFR (L22Y) gene was constructed by introducing IRES sequence into vector FMCF which enable highly efficient gene expression in early hematopoietic cells. The retrovirus titers were raised by repeated supernatant cross infection between the amphotropic and ectropic retroviral packaging cells. Human CD(34)(+) progenitor cells were transduced by supernatant infection. Expression of P-gp was detected by flow cytometry. Integration of the foreign drug resistance gene in CD(34)(+) cells was determined by PCR. Drug resistance was evaluated by CFU-GM assay. RESULT: Integration of the two foreign drug resistance genes was detected in the CD(34)(+) cells after pSF-DIM transduction. Compared with the untransduced group, the expression of P-gp elevated by 10.98% after gene transduction and the CFU-GM yields were significantly increased at 48 nmol/L of MTX and 10 ng/ml or 12 ng/ml of taxol (P < 0.05). CONCLUSION: The retroviral vector pSF-DIM can mediate mdr-1 and DHFR gene integration and co-expression in human hematopoietic progenitor cells so as to broaden the spectrum of drug resistance.

    [In vitro cotransfer human multidrug resistance gene (mdr-1) and dihydrofolate reductase gene (DHFR) into human CD(34)(+) progenitor cells to broaden the spectrum of drug resistance] Publishing Authors By Initials

    f zhuF Zhu,l panL Pan,y zhangY Zhang,n maoN Mao,

    For similar abstracts research abstracts see: abstracts research

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    [In vitro cotransfer human multidrug resistance gene (mdr-1) and dihydrofolate reductase gene (DHFR) into human CD(34)(+) progenitor cells to broaden the spectrum of drug resistance] Journal Published:

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

    Journal: Zhonghua xue ye xue za zhi = Zhonghua xueyexue zaz

    VOLUME: 22

    Page Numbers: 292-5

    Journal Abbreviation: Zhonghua Xue Ye Xue Za Zhi

    ISSN: 0253-2727

    DAY: 5

    MONTH: Jun

    YEAR: 2001

    [In vitro cotransfer human multidrug resistance gene (mdr-1) and dihydrofolate reductase gene (DHFR) into human CD(34)(+) progenitor cells to broaden the spectrum of drug resistance] Information

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    LANGUAGE: chi

    NlmUniqueID: 8212398

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    Grant and Affiliation Information for [In vitro cotransfer human multidrug resistance gene (mdr-1) and dihydrofolate reductase gene (DHFR) into human CD(34)(+) progenitor cells to broaden the spectrum of drug resistance]

    AFFILIATION: Gynecological and Obstetric Department, Peking Uion Medical College Hospital, CAMS & PUMC, Beijing 100730, China.

    Country: China

    China Research PublicationChina Research Publication

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    MEDLINETA: Zhonghua Xue Ye Xue Za Zhi

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    In vitro cotransfer human multidrug resistance gene mdr-1 and dihydrofolate reductase gene DHFR into human CD34+ progenitor cells to broaden the spectrum of drug resistance Related Publications

     

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