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抗多药耐药基因肽核酸与反义寡脱氧核苷酸增强K562/ADM细胞的敏感性和促进凋亡
引用本文:Wei HL,Wu YJ,Jing T,Bai DC,Ma LF. 抗多药耐药基因肽核酸与反义寡脱氧核苷酸增强K562/ADM细胞的敏感性和促进凋亡[J]. Acta pharmacologica Sinica, 2003, 24(8): 805-811
作者姓名:Wei HL  Wu YJ  Jing T  Bai DC  Ma LF
作者单位:[1]KeyLaboratoryofPreclinicalStudyforNewChineseTraditionalDrugsofGansuProvince [2]KeyLaboratoryofPreclinicalStudyforNewChineseTraditionalDrugsofGansuProvince [3]LaboratoryCenterforMedicalScience [4]InstituteofHematology,LanzhouMedicalCollege,Lanzhou730000,China
基金项目:Project supported by Gansu Scientific and Technological Foundation for the Middle-Age and Youth (№ YS981-A23-010).
摘    要:AIM: To investigate the reversal effect and apoptosis enhancement of peptide nucleic acid (PNA) and antisenseoligodeoxyribonucleotide (ASODN) targeted to multidrug resistance gene (mdrl) on human multidrug resistantleukemia K562/ADM cells. METHODS: A 15-mer PNA and the same sequence of ASODN, complementary to the5' end of the AUG initiator codon-containing region of mdrl messenger RNA (MDR1-PNA, MDR1-ASODN), weredesigned and synthesized. Proliferation and sensitivity to adriamycin of K562/ADM cells treated with MDRI-PNAand MDR1-ASODN were analyzed with a MTT colorimetric assay. Apoptotic morphologies, P-glycoprotein (P-gp)expression, intracellular adriamycin accumulation, and cell cycle were measured. RESULTS: MDRI-PNA 1 to 10μmol/L and MDR1-ASODN 2 to 20 μmol/L alone had no inhibitory effects on the proliferation of K562/ADM cells,but significantly inhibited the growth of K562/ADM cells cultured in adriamycin-containing medium. After treatment with MDRI-PNA and MDRI-ASODN, intracellular adriamycin accumulation in K562/ADM cells increasedgreatly and P-gp synthesis was strikingly reduced. The resistance to adriamycin of the drug-resistant cells waspartly reversed and the cells were induced to apoptosis by adriamycin. The reversal efficacy of MDR1-PNA was3.1-fold higher than that of the same sequence of MDR-ASODN, but neither MDRI-PNA nor MDRI-ASODNcould completely block the mdrllP-gp expression. CONCLUSION: Sequence-special PNA targeted to mdr1 genemore effectively than the same sequence of MDR1-ASODN inhibited the expression of P-glycoprotein to overcomethe drug-resistance.

关 键 词:抗多药耐药基因肽核酸 反义寡脱氧核苷酸 K562/ADM细胞 药物敏感性 细胞凋亡 P-糖蛋白

Sensitization and apoptosis augmentation of K562/ADM cells by anti-multidrug resistance gene peptide nucleic acid and antisense oligodeoxyribonucleotide
Wei Hu-Lai,Wu Yong-Jie,Jing Tao,Bai De-Cheng,Ma Lan-Fang. Sensitization and apoptosis augmentation of K562/ADM cells by anti-multidrug resistance gene peptide nucleic acid and antisense oligodeoxyribonucleotide[J]. Acta pharmacologica Sinica, 2003, 24(8): 805-811
Authors:Wei Hu-Lai  Wu Yong-Jie  Jing Tao  Bai De-Cheng  Ma Lan-Fang
Affiliation:Laboratory Center for Medical Science, Lanzhou Medical College, Lanzhou 730000, China. weihl@public.lz.gs.cn.
Abstract:AIM: To investigate the reversal effect and apoptosis enhancement of peptide nucleic acid (PNA) and antisense oligodeoxyribonucleotide (ASODN) targeted to multidrug resistance gene (mdr1) on human multidrug resistant leukemia K562/ADM cells. METHODS: A 15-mer PNA and the same sequence of ASODN, complementary to the 5' end of the AUG initiator codon-containing region of mdr1 messenger RNA (MDR1-PNA, MDR1-ASODN), were designed and synthesized. Proliferation and sensitivity to adriamycin of K562/ADM cells treated with MDR1-PNA- and MDR1-ASODN were analyzed with a MTT colorimetric assay. Apoptotic morphologies, P-glycoprotein (P-gp) expression, intracellular adriamycin accumulation, and cell cycle were measured. RESULTS: MDR1-PNA 1 to 10 micromol/L and MDR1-ASODN 2 to 20 micromol/L alone had no inhibitory effects on the proliferation of K562/ADM cells, but significantly inhibited the growth of K562/ADM cells cultured in adriamycin-containing medium. After treatment with MDR1-PNA and MDR1-ASODN, intracellular adriamycin accumulation in K562/ADM cells increased greatly and P-gp synthesis was strikingly reduced. The resistance to adriamycin of the drug-resistant cells was partly reversed and the cells were induced to apoptosis by adriamycin. The reversal efficacy of MDR1-PNA was 3.1-fold higher than that of the same sequence of MDR-ASODN, but neither MDR1-PNA nor MDR1-ASODN could completely block the mdr1/P-gp expression. CONCLUSION: Sequence-special PNA targeted to mdr1 gene more effectively than the same sequence of MDR1-ASODN inhibited the expression of P-glycoprotein to overcome the drug-resistance.
Keywords:peptide nucleic acids  antisense oligodeoxyribonucleotides  MDR genes  P-glycoprotein  multiple drug resistance  apoptosis  leukemia  doxorubicin
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