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首页> 外文期刊>Radiation oncology >Autophagy inhibition plays the synergetic killing roles with radiation in the multi-drug resistant SKVCR ovarian cancer cells
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Autophagy inhibition plays the synergetic killing roles with radiation in the multi-drug resistant SKVCR ovarian cancer cells

机译:自噬抑制在多药物抗性SKVCR卵巢癌细胞中发挥辐射的协同杀伤作用

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Purpose Autophagy has attracted attentions as a novel mechanism for tumor development. In this study Human ovarian carcinoma cell line SKOV3 and multidrug-resistant phenotype SKVCR cells were used and the roles of autophagy in radiation-induced cell death were analyzed. Methods and materials Cell viability was examined by colony formation and cell counting kit-8 (CCK-8) assay, 3MA and ZVAD were used to block autophagy and apoptosis, respectively. Quantitative real-time PCR was used to detect mRNA level and Western blot was used to detect protein expression, monodansylcadaverine (MDC) staining and flow cytometery were used for autophagy, apoptosis and cell cycle dynamics, respectively. Results (1) The radiosensitivity exhibited differently in SKOV3 and SKVCR cells (SKOV3: D0=3.37, SKVCR: D0= 4.18); compared with SKOV3 the constitutive expression of MAPLC3 in SKVCR was higher, but no change of Caspase-3 and cleaved Caspase-3. (2) The ionizing radiation (IR)- induced apoptosis and autophagy were significant in both cells (P<0.05); inhibition of apoptosis with ZVAD showed no impact on survival of SKOV3 and SKVCR cells after radiation, while inhibition of autophagy significantly decreased viability in SKVCR cells, for SKVO3 cells only low level of radiation (2 Gy and 4 Gy) could decrease the viability(P<0.05). (3) ZVAD inhibited apoptosis and autophagy in both cells, 3MA inhibit apoptosis in SKOV3, and promote apoptosis in SKVCR, together with inhibition of autophagy. (4) G2/M arrest was induced by radiation in both cells; the accumulation of G2/M was more significant in SKOV3, 3MA attenuated the radiation-induced S phase delay in SKVCR. Conclusion IR-induced autophagy provides a self-protective mechanism against radiotherapy in SKVCR cells, the use of autophagy inhibitor, 3MA, increases the killing effects of radiation by inhibiting autophagy and radiation- induced S phase delay, also by the increase of apoptosis, which suggests a better therapeutic strategy in drug- resistant SKVCR ovarian cancer cells.
机译:目的自噬引起了以下的肿瘤发展机制。在这项研究中,使用人卵巢癌细胞系Skov3和多药抗性表型SkVCR细胞,分析了自噬在辐射诱导的细胞死亡中的作用。通过菌落形成和细胞计数试剂盒-8(CCK-8)测定,3mA和ZVAD分别用于阻断自噬和凋亡的方法和材料细胞活力。定量实时PCR用于检测mRNA水平,并且用于检测蛋白质表达的Western印迹,分别用于分别用于自噬,细胞凋亡和细胞周期动力学的单峰酰甲酰胺(MDC)染色和流式细胞。结果(1)SKOV3和SKVCR细胞中不同的放射敏感性(SKOV3:D0 = 3.37,SKVCR:D0 = 4.18);与SKOV3相比,SKVCR中MAPLC3的组成型表达较高,但是胱天蛋白酶-3和裂解Caspase-3没有变化。 (2)电离辐射(IR)诱导的凋亡和自噬在两种细胞中都是显着的(P <0.05); ZVAD抑制对辐射后SkoV3和SkVCR细胞的存活对凋亡显示没有影响,同时对SkVCR细胞中的可生力抑制显着降低,对于SKVO3细胞仅辐射水平(2 Gy和4 Gy)可以降低生存度(P <0.05)。 (3)ZVAD抑制两种细胞中的细胞凋亡和自噬,3mA抑制SKOV3中的凋亡,并促进SKVCR中的凋亡,以及抑制自噬。 (4)通过两种细胞的辐射诱导G2 / M被捕;在Skov3中,G2 / m的累积更显着,3mA衰减SKVCR中的辐射诱导的S期延迟。结论IR-诱导的自噬在SKVCR细胞中提供自我保护机制,使用自噬抑制剂3mA,通过抑制自噬和辐射诱导的S期延迟来增加辐射的杀伤作用,也通过增加的凋亡暗示耐药性SKVCR卵巢癌细胞更好的治疗策略。

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