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Evaluation of cell damage induced by irradiated Zinc-Phthalocyanine-gold dendrimeric nanoparticles in a breast cancer cell line

机译:辐射的锌酞菁-金树枝状纳米粒子在乳腺癌细胞系中诱导的细胞损伤评估

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Background Cancer is a non-communicable disease that occurs following a mutation in the genes which control cell growth. Breast cancer is the most diagnosed cancer among South African women and a major cause of cancer-related deaths worldwide. Photodynamic therapy (PDT) is an alternative cancer therapy that uses photochemotherapeutic agents, known as photosensitizers. Drug-delivery nanoparticles are commonly used in nanomedicine to enhance drug-therapeutic efficiency. This study evaluated the photodynamic effects following treatment with 0.3?μM multiple particles delivery complex (MPDC) and irradiated with a laser fluence of 10?J/cm2 using a 680?nm diode laser in a breast cancer cell line (MCF-7). Methods Cell damage was assessed by inverted light microscopy for cell morphology; the Apoptox-Glo triple assay was used for cell viability, caspase activity and identification of cytodamage markers; flow cytometric analysis for cell death pathways and mitochondrial membrane potential; the enzyme linked immunosorbent assay (ELISA) for cytochrome C release; and real-time reverse transcriptase polymerase chain reaction (RT-PCR) array for gene expression. Results Laser activated-MPDC induced a significant change in morphology of PDT-treated cells, with the appearance of apoptotic like morphological features. An increase in cytotoxicity, caspase activity, cell depolarization and cytochrome C release were identified in PDT-treated cells. Finally, the upregulation of BAX, BCL-2, CASP-2 and ULK-1 genes was observed. Conclusion The MPDC yielded a successful and stable hybrid agent with potent photodynamic abilities.
机译:背景技术癌症是一种非传染性疾病,发生在控制细胞生长的基因突变后。乳腺癌是南非女性中被诊断最多的癌症,并且是全世界与癌症相关的死亡的主要原因。光动力疗法(PDT)是使用光化学治疗剂(称为光敏剂)的另一种癌症疗法。药物递送纳米颗粒通常用于纳米医学中以增强药物治疗效率。这项研究评估了在乳腺癌中用0.3?μM的多颗粒递送复合物(MPDC)处理并使用680?nm二极管激光以10?J / cm 2 的激光通量辐照后的光动力效应。细胞系(MCF-7)。方法用倒置光学显微镜观察细胞损伤情况。 Apoptox-Glo三重分析用于细胞活力,半胱天冬酶活性和细胞损伤标记物的鉴定。流式细胞仪分析细胞死亡途径和线粒体膜电位;酶联免疫吸附法(ELISA)检测细胞色素C的释放;和实时逆转录聚合酶链反应(RT-PCR)阵列进行基因表达。结果激光激活的MPDC诱导了PDT处理的细胞的形态发生了显着变化,并出现了类似凋亡的形态特征。在PDT处理的细胞中发现细胞毒性,半胱天冬酶活性,细胞去极化和细胞色素C释放增加。最后,观察到BAX,BCL-2,CASP-2和ULK-1基因的上调。结论MPDC产生了一种成功且稳定的具有强大光动力学能力的杂化剂。

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