首页> 外文会议>International Conference on Photonics and Imaging in Biology and Medicine >Photosensitization of hematoporphyrin monomethyl ether enhance cellular concentrations of AS-ODNs targeting Bcr-abl gene in K562 cells and efficacy of AS-ODNs killing K562 cells
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Photosensitization of hematoporphyrin monomethyl ether enhance cellular concentrations of AS-ODNs targeting Bcr-abl gene in K562 cells and efficacy of AS-ODNs killing K562 cells

机译:血卟啉单甲醚的光敏作用增强了K562细胞中靶向Bcr-abl基因的AS-ODNs的细胞浓度以及AS-ODNs杀死K562细胞的功效

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This study was to investigate the effect of photosensitization of Hematoporphyrin monomethyl ether (HMME) on the intracellular uptake of antisense oligonucleotides (AS-ODNs) and cytotoxicity of AS-ODNs targeting bcr-abl gene in K562 cells. The cells were randomized into the experimental group and the controls. The cells in the experimental group were treated by photosensitization of HMME with AS-ODNs. The cells in the controls were treated by photosensitization of HMME, AS-ODNs alone, HMME treatment alone, laser radiation alone or sham radiation, respectively. Light source was from laser with red light (650 nm) delivered at a total dose of 9 J cm~(-2). The intracellular uptake of AS-ODNs was measured with flow cytometry and fluorescence microscope, and the proliferation of K562 cells was investigated by colony formation and cell cycle distribution was analyzed by flow cytometry and apoptosis was measured with terminal deoxyuridine nicked-labeling (TUNEL) assay. The results showed that the cells treated by photosenstization have higher fluorescence intensity compared with the cells in the controls. At 24 h after photosensitization with AS-ODNs, a 31% increase in the proportion of cells in the G0-G1 phase relative to sham irradiation was observed and G1 arrest occurred concurrently with a reduction in the percentage of S-phase cells and the rate of apoptosis in K562 cells significantly increased up to 8.60 ± 0.04%. At 14th day, treatment of photosensitization with AS-ODNs resulted in a significant decrease in colony formation in K562 cells. Our data demonstrate that photosensitization of HMME could enhance intracellular concentrations of AS-ODNs in K562 cells and increase the efficacy of AS-ODNs killing cells. Combination of photosensitization of HMME with AS-ODNs may be of value for more effective management of cancer.
机译:这项研究旨在研究血卟啉单甲醚(HMME)的光敏作用对K562细胞中反义寡核苷酸(AS-ODNs)的细胞内摄取以及靶向bcr-abl基因的AS-ODNs的细胞毒性的作用。将细胞随机分为实验组和对照。用AS-ODN对HMME进行光敏处理,对实验组细胞进行处理。通过分别对HMME,单独的AS-ODN,单独的HMME处理,单独的激光辐射或假放射线进行光敏处理来处理对照中的细胞。光源来自激光,发出的红光(650 nm)的总剂量为9 J cm〜(-2)。流式细胞仪和荧光显微镜检测AS-ODNs的细胞内摄取,集落形成研究K562细胞的增殖,流式细胞仪分析细胞周期分布,末端脱氧尿苷缺口标记法(TUNEL)检测细胞凋亡。结果表明,与对照组相比,光固化处理的细胞具有更高的荧光强度。在用AS-ODNs光敏后的24小时内,观察到G0-G1相中的细胞比例相对于假辐射增加了31%,并且G1阻滞同时发生,同时S相细胞的百分率和比率降低了。 K562细胞的凋亡率显着提高至8.60±0.04%。在第14天,用AS-ODN进行光敏治疗导致K562细胞集落形成显着减少。我们的数据表明,HMME的光敏作用可以增强K562细胞中AS-ODN的细胞内浓度,并提高AS-ODN杀死细胞的功效。 HMME的光敏化与AS-ODN的结合对于更有效地治疗癌症可能具有价值。

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