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首页> 外文期刊>Pigment cell & melanoma research >Apoptosis initiation and angiogenesis inhibition: Melanoma targets for nanosecond pulsed electric fields
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Apoptosis initiation and angiogenesis inhibition: Melanoma targets for nanosecond pulsed electric fields

机译:凋亡的起始和血管生成的抑制:黑色素瘤的目标为纳秒脉冲电场

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摘要

Many effective anti-cancer strategies target apoptosis and angiogenesis mechanisms. Applications of non-ionizing, nanosecond pulsed electric fields (nsPEFs) induce apoptosis in vitro and eliminate cancer in vivo; however in vivo mechanisms require closer analysis. These studies investigate nsPEF-induced apoptosis and anti-angiogenesis examined by fluorescent microscopy, immunoblots, and morphology. Six hours after treatment with one hundred 300 ns pulses at 40 kV/cm, cells transiently expressed active caspases indicating that caspase-mediated mechanisms. Three hours after treatment transient peaks in Histone 2AX phosphorylation coincided with terminal deoxynucleotidyl transferase dUTP nick end labeling positive cells and pyknotic nuclei, suggesting caspase-independent mechanisms on nuclei/DNA. Large DNA fragments, but not 180 bp fragmentation ladders, were observed, suggesting incomplete apoptosis. Nevertheless, tumor weight and volume decreased and tumors disappeared. One week after treatment, vessel numbers, vascular endothelial growth factor (VEGF), platelet derived endothelial cell growth factor (PD-ECGF), CD31, CD35 and CD105 were decreased, indicating anti-angiogenesis. The nsPEFs activate multiple melanoma therapeutic targets, which is consistent with successes of nsPEF applications for tumor treatment in vivo as a new cancer therapeutic modality.
机译:许多有效的抗癌策略靶向凋亡和血管生成机制。非电离,纳秒脉冲电场(nsPEF)的应用可在体外诱导细胞凋亡并在体内消除癌症;然而,体内机制需要进一步分析。这些研究通过荧光显微镜,免疫印迹和形态学研究了nsPEF诱导的细胞凋亡和抗血管生成。用40 kV / cm的一百个300 ns脉冲处理六小时后,细胞瞬时表达了活跃的胱天蛋白酶,表明胱天蛋白酶介导的机制。处理后三个小时,组蛋白2AX磷酸化的瞬时峰值与末端脱氧核苷酸转移酶dUTP缺口末端标记的阳性细胞和固缩核相符,提示核/ DNA不依赖caspase的机制。观察到较大的DNA片段,但未观察到180 bp的片段阶梯,表明细胞凋亡不完全。然而,肿瘤的重量和体积减小并且肿瘤消失。治疗1周后,血管数目,血管内皮生长因子(VEGF),血小板衍生内皮细胞生长因子(PD-ECGF),CD31,CD35和CD105减少,表明抗血管生成。 nsPEF激活多个黑色素瘤治疗靶标,这与nsPEF作为一种新的癌症治疗方法在体内肿瘤治疗中的成功应用相一致。

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