首页> 外文会议>Conference on Biophotonics Micro- and Nano-Imaging; 20040428; Strasbourg; FR >Photodynamic therapy and knocking out of single tumor cells by multiphoton excitation processes
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Photodynamic therapy and knocking out of single tumor cells by multiphoton excitation processes

机译:光动力疗法和通过多光子激发过程剔除单个肿瘤细胞

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Near infrared (MIR) ultrashort laser pulses of 780 nm have been used to induce intracellular photodynamic reactions by nonlinear excitation of porphyrin photosensitizers. Intracellular accumulation and photobleaching of the fluorescent photosensitizers protoporphyrin DC and Photofrin (PF) have been studied by non-resonant two-photon fluorescence excitation of PF and aminolevulinic acid (ALA)-labeled Chinese hamster ovary (CHO) cells. To testify the efficacy of both substrates to induce irreversible destructive effects, the cloning efficiency (CE) of cells exposed to femtosecond pulses of a multiphoton laser scanning microscope (40x/1.3) was determined. In the case of Photofrin accumulation, CEs of 50% and 0% were obtained after 17 laserscans (2 mW?, 16 s/ frame) and 50 scans, respectively. All cells exposed to 50 scans died within 48h after laser exposure. 100 scans were required to induce lethal effects in ALA labeled cells. Sensitizer-free control cells could be scanned 250 times (1.1 h) and more without impact on the reproduction behavior, morphology, and vitality. In addition to the slow phototoxic effect by photooxidation processes, another destructive but immediate effect based on optical breakdown was induced when employing high intense NIR femtosecond laser beams. This was used to optically knock out single tumor cells in living mice (solid Ehrlich-Carcinoma) in a depth of 10 to 100 μm.
机译:780 nm的近红外(MIR)超短激光脉冲已用于通过卟啉光敏剂的非线性激发来诱导细胞内光动力反应。荧光光敏剂原卟啉DC和Photofrin(PF)的细胞内积累和光漂白已通过PF和氨基乙酰丙酸(ALA)标记的中国仓鼠卵巢(CHO)细胞的非共振双光子荧光激发进行了研究。为了证明两种底物诱导不可逆破坏性作用的功效,确定了在多光子激光扫描显微镜(40x / 1.3)的飞秒脉冲作用下暴露的细胞的克隆效率(CE)。在积累光敏蛋白的情况下,在进行17次激光扫描(2 mW?,16 s /帧)和50次扫描后,CE分别为50%和0%。暴露于50次扫描的所有细胞在激光暴露后48小时内死亡。需要100次扫描才能在ALA标记的细胞中诱导致命作用。不含敏化剂的对照细胞可以扫描250次(1.1小时)甚至更多,而不会影响繁殖行为,形态和活力。除了通过光氧化过程产生的缓慢光毒性作用外,当使用高强度NIR飞秒激光束时,还会引发基于光击穿的另一种破坏性但立即产生的作用。它用于光学敲除活小鼠(实体埃氏癌)中10至100μm深度的单个肿瘤细胞。

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