首页> 外文期刊>European Journal of Pharmacology: An International Journal >Hypocrellin B-encapsulated nanoparticle-mediated rev-caspase-3 gene transfection and photodynamic therapy on tumor cells.
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Hypocrellin B-encapsulated nanoparticle-mediated rev-caspase-3 gene transfection and photodynamic therapy on tumor cells.

机译:Hycrecrellin B封装的纳米粒子介导的rev-caspase-3基因转染和对肿瘤细胞的光动力治疗。

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摘要

Gene therapy and photodynamic therapy are two kinds of important therapeutic strategies for treating malignant tumors. In order to explore the combined effects of gene therapy and PDT on tumor cells, rev-caspase-3 gene was transfected into the tumor model CNE2 cells using hypocrellin B-encapsulated nanoparticle (nano-HB) as a carrier. The transfected CNE2 cells were then irradiated by light from a LED source and the survival rate was investigated 18 h after PDT. Apoptosis was analyzed by a flow cytometer with propidium iodine (PI) staining and the active caspase-3 expression was measured using flow cytometry with phycoerythrin (PE)-conjugated anti-active caspase-3 antibody. The result from the flow cytometer showed that the level of the activated caspase-3 significantly increased up to 63.10% in the transfected CNE2 cells. The survival rate 18 h after gene transfection alone and nano-HB-mediated PDT was 96.6±2.07%, 72.6±4.15%, respectively. However, the survival rate of the transfected CNE2 cells 18 h after LED exposure significantly decreased to 50.6±5.98% under the light energy of 4 J/cm(2). Apoptotic rate 18 h after the combination of gene transfection and PDT increased up to 24.65%. Our findings demonstrated that nano-HB could significantly enhance the transfection efficiency of rev-caspase-3 gene in the CNE2 cells. LED irradiation could effectively kill the treated CNE2 cells and induce apoptosis, suggesting hypocrellin B-encapsulated nanoparticle as an efficient gene carrier and a novel photosensitizer. The combination of gene therapy and PDT using nanoparticle as a mediator can be developed for treating nasopharyngeal carcinoma.
机译:基因治疗和光动力治疗是治疗恶性肿瘤的两种重要治疗策略。为了探索基因治疗和PDT对肿瘤细胞的联合作用,将rev-caspase-3基因转染到肿瘤模型CNE2细胞中,并用胰凝乳素B包裹的纳米颗粒(nano-HB)作为载体。然后用来自LED光源的光照射转染的CNE2细胞,并在PDT后18小时研究存活率。用流式细胞仪分析碘化丙啶(PI)染色后的细胞凋亡,并使用流式细胞仪结合藻红蛋白(PE)偶联的抗活性caspase-3抗体测量活性caspase-3的表达。流式细胞仪的结果表明,在转染的CNE2细胞中,活化的caspase-3的水平显着增加至63.10%。单独基因转染和纳米HB介导的PDT后18小时的存活率分别为96.6±2.07%,72.6±4.15%。然而,在4 J / cm(2)的光能下,LED暴露后18 h转染的CNE2细胞的存活率显着降低至50.6±5.98%。基因转染和PDT结合后18 h的细胞凋亡率增加至24.65%。我们的发现表明,nano-HB可以显着提高rev-caspase-3基因在CNE2细胞中的转染效率。 LED辐照可以有效杀死被治疗的CNE2细胞并诱导细胞凋亡,这表明,将高甲酚B包封的纳米粒子是有效的基因载体和新型光敏剂。可以开发将基因治疗与PDT结合使用纳米粒子作为介体来治疗鼻咽癌的方法。

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