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首页> 外文期刊>ACS nano >Observing Real-Time Molecular Event Dynamics of Apoptosis in Living Cancer Cells using Nuclear-Targeted Plasmonically Enhanced Raman Nanoprobes
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Observing Real-Time Molecular Event Dynamics of Apoptosis in Living Cancer Cells using Nuclear-Targeted Plasmonically Enhanced Raman Nanoprobes

机译:使用核靶向的等离子增强拉曼纳米探针观察活癌细胞凋亡的实时分子事件动态。

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Apoptosis is a biological process that plays important roles in embryogenesis, aging, and various diseases. During the process of apoptosis, cells undergo a series of morphological and molecular events such as blebbing, cell shrinkage, proteolysis, and nuclear DNA fragmentation. Investigating these events on a molecular level is crucial for gaining a more complete understanding of the intricate mechanism of apoptosis; however, the simultaneous direct observation of morphological and molecular events in real-time on a single living cell scale still remains a challenge. Herein, we directly monitored morphological and molecular events during cellular apoptosis in real-time after the treatment of an apoptosis-inducing agent, by utilizing our previously described plasmonically enhanced Rayleigh/Raman spectroscopic technique. Spectroscopic analysis of the DNA/protein composition around the cell nucleus revealed the occurrence and dynamics of three apoptotic molecular events: protein denaturation, proteolysis, and DNA fragmentation. Themolecular event dynamicswere used to create a temporal profile of apoptotic events in single cells. It is found that the sequence of events occurring in the apoptotic process induced by hydrogen peroxide addition is protein denaturation through disulfide bond breakage as well as DNA fragmentation, followed in time by protein unraveling with hydrophobic amino acid exposure, and finally protein degradation. These results demonstrate the potential of using this time-dependent plasmonically enhanced vibrational imaging technique to study the detailed mechanism of other apoptosis molecular pathways induced by different agents (e.g., anticancer drugs). A note is given in the conclusion discussing the expected large difference between the SERS spectrum of biological molecules in solution and that observed in live cells which are enhanced by the plasmonic field of the aggregated nanoparticles.
机译:凋亡是在胚胎发生,衰老和各种疾病中起重要作用的生物过程。在细胞凋亡过程中,细胞会经历一系列形态和分子事件,例如起泡,细胞收缩,蛋白水解和核DNA断裂。从分子水平研究这些事件对于更全面地了解细胞凋亡的复杂机制至关重要。然而,在单个活细胞规模上同时实时直接观察形态学和分子事件仍然是一个挑战。在本文中,我们通过利用我们先前描述的等离激元增强的瑞利/拉曼光谱技术,直接实时监测细胞凋亡诱导剂处理后细胞凋亡期间的形态和分子事件。光谱分析细胞核周围的DNA /蛋白质组成揭示了三种凋亡分子事件的发生和动态:蛋白质变性,蛋白水解和DNA片段化。分子事件动力学被用来在单个细胞中创建凋亡事件的时间分布。已经发现,由过氧化氢添加引起的凋亡过程中发生的事件顺序是通过二硫键断裂以及DNA断裂引起的蛋白质变性,随后是蛋白质被疏水性氨基酸暴露而解开,最后是蛋白质降解。这些结果证明了使用这种时间依赖性的等离子体增强振动成像技术研究由不同药剂(例如抗癌药)诱导的其他凋亡分子途径的详细机理的潜力。结论中给出了注释,讨论了溶液中生物分子的SERS光谱与在活细胞中观察到的SERS光谱之间的预期大差异,这些差异通过聚集的纳米粒子的等离子体场增强。

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