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Photobleaching behavior of protoporphyrin IX during 5-aminolevulinic acid marked glioblastoma detection

机译:5-氨基乙酰丙酸标记胶质母细胞瘤检测过程中原卟啉IX的光漂白行为

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The highly malignant brain tumor, glioblastoma multiforme (GBM), is difficult to fully delineate during surgical resection due to its infiltrative ingrowth and morphological similarities to surrounding functioning brain tissue. Selectiveness of GBM to 5-aminolevulinic acid (5-ALA) induced protoporphyrin IX (PpIX) is reported by other researchers to visualize tumor margins under blue light microscopy. To allow objective detection of GBM, a compact and portable fiber optic based fluorescence spectroscopy system is developed. This system is able to deliver excitation laser light (405 nm) in both the continuous and pulsed mode. PpIX fluorescence peaks are detected at 635 and 704 nm, using a fiber-coupled spectrometer. It is necessary to optimize the detection efficiency of the system as the PpIX quickly photobleaches during the laser illumination. A light dose of 2.5 mJ (fluence rate = 9 mJ/mm~2) is experimentally approved to excite an acceptable level of fluourescence signal arising from glioblastoma. In pulsed illumination mode, an excitation dose of 2.5 mJ, with a dark interval of 0.5 s (duty cycle 50%) shows a significantly shorter photobleaching time in comparison to the continuous illumination mode with the same laser power (p < 0.05). To avoid photobleaching (the remaining signal is more than 90% of its initial value) when measuring with 2.5 mJ delivered energy, the time for continuous and pulsed illumination should be restricted to 2.5 and 1.1s, respectively.
机译:高度恶性的脑肿瘤,多形胶质母细胞瘤(GBM),由于其浸润性向内生长和与周围功能性脑组织的形态相似,因此很难在手术切除期间完全描绘出来。其他研究人员报道了GBM对5-氨基乙酰丙酸(5-ALA)诱导的原卟啉IX(PpIX)的选择性,以在蓝光显微镜下可视化肿瘤边缘。为了能够客观地检测GBM,开发了一种基于便携式光纤的紧凑型荧光光谱系统。该系统能够以连续和脉冲模式传送激发激光(405 nm)。使用光纤耦合光谱仪在635和704 nm处检测到PpIX荧光峰。有必要优化系统的检测效率,因为PpIX在激光照射过程中会迅速发生光漂白。实验中批准了2.5 mJ的光剂量(通量率= 9 mJ / mm〜2),以激发可接受水平的胶质母细胞瘤引起的荧光信号。在脉冲照明模式下,与相同激光功率下的连续照明模式相比,暗剂量间隔为0.5 s(占空比为50%)的2.5 mJ激发剂量显示出显着更短的光致漂白时间(p <0.05)。为避免在使用2.5 mJ的输送能量进行测量时发生光漂白(剩余信号大于其初始值的90%),连续照明和脉冲照明的时间应分别限制为2.5s和1.1s。

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