首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >Enhanced intrapulmonary delivery of anticancer siRNA for lung cancer therapy using cationic ethylphosphocholine-based nanolipoplexes.
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Enhanced intrapulmonary delivery of anticancer siRNA for lung cancer therapy using cationic ethylphosphocholine-based nanolipoplexes.

机译:利用阳离子乙基磷胆碱基纳米普利克斯增强了肺癌治疗的抗癌患者的颅内递送。

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Here, we report a cationic nanolipoplex as a pulmonary cellular delivery system for small-interfering RNA (siRNA). Six nanoliposomes differing in cationic lipids were formulated and screened in vitro and in vivo for cellular delivery functions in lung cells/tissues. Although the six nanoliposomes showed similar siRNA delivery efficiency in vitro, they exhibited significant differences in pulmonary cellular delivery functions in vivo. Among the various nanoliposomes, cationic dioleoyl-sn-glycero-3-ethylphosphocholine and cholesterol (ECL)-based nanoliposomes showed the highest pulmonary cellular delivery in vivo and the lowest cytotoxicity in vitro. The delivery efficiency of fluorescent siRNA in ECL nanoliposomes was 26.2-fold higher than that of naked siRNA in vivo. Treatment with Mcl1 (myeloid cell leukemia sequence 1)-specific siRNA (siMcl1) using ECL nanolipoplexes reduced target expression in B16F10 cell lines, whereas control, luciferase-specific siGL2 in ECL nanolipoplexes did not. In metastatic lung cancer mouse models induced by B16F10 or Lewis lung carcinoma (LLC) cells, intratracheal administration of siMcl1 in ECL nanolipoplexes significantly silenced Mcl1 mRNA and protein levels in lung tissue. Reduced formation of melanoma tumor nodules was observed in the lung. These results demonstrate the utility of ECL nanoliposomes for pulmonary delivery of therapeutic siRNA for the treatment of lung cancers and potentially for other respiratory diseases.
机译:在这里,我们将阳离子纳米纤维素产品报告为用于小干扰RNA(siRNA)的肺细胞输送系统。在体外和体内配制阳离子脂质不同的六个纳米脂质体,用于肺细胞/组织中的细胞递送功能。虽然六个纳米脂质体在体外显示出类似的siRNA递送效率,但它们在体内表现出肺细胞递送功能的显着差异。在各种纳米脂质体中,阳离子Dioleyl-Sn-甘油-3-乙基磷胆碱和胆固醇(ECL)基础纳米体显示,体内肺细胞递送最高,体外最低细胞毒性。 ECL纳米脂质体中荧光siRNA的输送效率高出比体内裸体siRNA的26.2倍。使用ECL纳米纤维素的MCL1(骨髓细胞白血病序列1)治疗方法(骨髓细胞白血病序列1)的特异性siRNA(SIMCL1)降低了B16F10细胞系中的靶表达,而ECL纳米普利普斯的对照,荧光素酶特异性Sig12没有。在B16F10或Lewis肺癌(LLC)细胞诱导的转移性肺癌小鼠模型中,ECL纳米人中的肿瘤内施用SIMCL1显着沉默于肺组织中的MCL1 mRNA和蛋白质水平。在肺中观察到减少黑色素瘤肿瘤结节的形成。这些结果证明了ECL纳米粒茶体用于治疗肺癌治疗肺癌的肺递送,并可能用于其他呼吸系统疾病。

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