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SIMS ion microscopy as a novel, practical tool for subcellular chemical imaging in cancer research

机译:SIMS离子显微镜是癌症研究中亚细胞化学成像的一种新型实用工具

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The development of cryogenic sample preparations, subcellular image quantification schemes, and correlative confocal laser scanning microscopy and ion microscopy have made dynamic SIMS a versatile tool in biology and medicine. For example, ion microscopy can provide much needed, novel information on calcium influx and intracellular calcium stores at organelle resolution in normal and transformed cells in order to better understand the altered calcium signaling in malignant cells. 3-D SIMS imaging of cells revealed dynamic gradients of calcium in cells undergoing mitosis and cytokinesis. Studies of subcellular localization of anticancer drugs is another area of research where ion microscopy can provide novel observations in many types of cancers. Ion microscopy is already an essential tool in boron neutron capture therapy (BNCT) of brain cancer as it can be used to quantitatively image the subcellular location of boron in cells and tissues. This information is critically needed for testing the efficacy of boronated agents and for calculations of radiation dosimetry.
机译:低温样品制备,亚细胞图像定量方案以及相关的共聚焦激光扫描显微镜和离子显微镜的发展使动态SIMS成为生物学和医学上的多功能工具。例如,离子显微镜可以在正常细胞和转化细胞中以细胞器分辨率提供关于钙内流和细胞内钙储存的急需的新颖信息,以便更好地了解恶性细胞中钙信号的改变。细胞的3-D SIMS成像显示了细胞在有丝分裂和胞质分裂过程中钙的动态梯度。抗癌药物亚细胞定位的研究是离子显微镜可以在许多类型的癌症中提供新颖观察的另一个研究领域。离子显微镜已经成为脑癌硼中子捕获疗法(BNCT)的重要工具,因为它可用于定量成像细胞和组织中硼的亚细胞位置。至关重要的是,此信息对于测试含硼试剂的功效和辐射剂量计算是必不可少的。

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