目的基于实时细胞分析(real time cell analysis,RTCA)技术对中药挥发性组分的细胞毒性及抗人腺病毒3型(human adenovirus 3,HAdV-3)的作用进行毒/效整合分析,构建抗病毒药物高通量筛选的新策略。方法采用RTCA技术动态监测不同接种密度...目的基于实时细胞分析(real time cell analysis,RTCA)技术对中药挥发性组分的细胞毒性及抗人腺病毒3型(human adenovirus 3,HAdV-3)的作用进行毒/效整合分析,构建抗病毒药物高通量筛选的新策略。方法采用RTCA技术动态监测不同接种密度的A549细胞48 h生长曲线及10倍梯度稀释的HAdV-3感染A549细胞生长曲线,获得A549细胞最佳接种密度及HAdV-3最佳稀释浓度用于后续实验。以利巴韦林为阳性对照,基于RTCA技术采用曲线下面积(Area Under the Curve,AUC)方法对5种中药挥发性组分的细胞毒性及抗HAdV-3的作用进行毒/效整合分析,并与传统终点法数据处理进行对比。结果终点法中艾叶、柴胡、薄荷、荆芥、牛蒡子、酸枣仁和利巴韦林对细胞的保护率分别为0.73%、12.50%、20.99%、44.50%、27.99%、51.50%和82.70%;AUC法中艾叶、柴胡、薄荷的选择性指数(Selective Index,SI)为负数,分别为-0.57、-0.21和-0.08。荆芥、牛蒡子、酸枣仁和利巴韦林的SI值分别为0.14、0.40、0.72和5.33。以利巴韦林的抗病毒活性为参照,终点法中酸枣仁、牛蒡子和荆芥的抗病毒活性为利巴韦林抗病毒活性的62.27%、33.85%和53.81%;AUC法中酸枣仁、牛蒡子和荆芥的抗病毒活性为利巴韦林抗病毒活性的13.51%、7.50%和2.63%。结论传统终点法与研究采用的AUC法计算结果有较大的差异。传统的抗病毒活性筛选研究多采用终点法检测受试药物对病毒感染细胞的保护作用,无法反映整个感染周期的变化,缺乏细胞毒的数据也会对结果的判断产生偏差。研究提示基于RTCA技术对中药挥发性组分开展抗HAdV-3的毒/效整合评价,采用AUC方法计算药物的选择性指数作为高通量筛选新策略,能快速、精准地判断受试药物的抗病毒活性,具有准确性高、重复性好的优势。展开更多
We present integrated-optic building blocks and functional photonic devices based on amorphous siliconon-insulator technology. Efficient deep-etched fiber-to-chip grating couplers, low-loss single-mode photonic wire w...We present integrated-optic building blocks and functional photonic devices based on amorphous siliconon-insulator technology. Efficient deep-etched fiber-to-chip grating couplers, low-loss single-mode photonic wire waveguides, and compact power splitters are presented. Based on the sub-μm photonic wires, 2 × 2 Mach–Zehnder interferometers and add/drop microring resonators(MRRs) with low device footprints and high finesse up to 200 were realized and studied. Compact polarization rotators and splitters with ≥10 d B polarization extinction ratio were fabricated for the polarization management on-chip. The tuning and trimming capabilities of the material platform are demonstrated with efficient microheaters and a permanent device trimming method, which enabled the realization of energy-efficient photonic circuits. Wavelength multiplexers in the form of cascaded filter banks and 4 × 4 routers based on MRR switches are presented. Fabrication imperfections were analyzed and permanently corrected by an accurate laser-trimming method, thus enabling eight-channel multiplexers with record low metrics of sub-m W static power consumption and ≤1°C temperature overhead. The high quality of the functional devices, the high tuning efficiency, and the excellent trimming capabilities demonstrate the potential to realize low-cost, densely integrated, and ultralow-power 3D-stacked photonic circuits on top of CMOS microelectronics.展开更多
文摘目的基于实时细胞分析(real time cell analysis,RTCA)技术对中药挥发性组分的细胞毒性及抗人腺病毒3型(human adenovirus 3,HAdV-3)的作用进行毒/效整合分析,构建抗病毒药物高通量筛选的新策略。方法采用RTCA技术动态监测不同接种密度的A549细胞48 h生长曲线及10倍梯度稀释的HAdV-3感染A549细胞生长曲线,获得A549细胞最佳接种密度及HAdV-3最佳稀释浓度用于后续实验。以利巴韦林为阳性对照,基于RTCA技术采用曲线下面积(Area Under the Curve,AUC)方法对5种中药挥发性组分的细胞毒性及抗HAdV-3的作用进行毒/效整合分析,并与传统终点法数据处理进行对比。结果终点法中艾叶、柴胡、薄荷、荆芥、牛蒡子、酸枣仁和利巴韦林对细胞的保护率分别为0.73%、12.50%、20.99%、44.50%、27.99%、51.50%和82.70%;AUC法中艾叶、柴胡、薄荷的选择性指数(Selective Index,SI)为负数,分别为-0.57、-0.21和-0.08。荆芥、牛蒡子、酸枣仁和利巴韦林的SI值分别为0.14、0.40、0.72和5.33。以利巴韦林的抗病毒活性为参照,终点法中酸枣仁、牛蒡子和荆芥的抗病毒活性为利巴韦林抗病毒活性的62.27%、33.85%和53.81%;AUC法中酸枣仁、牛蒡子和荆芥的抗病毒活性为利巴韦林抗病毒活性的13.51%、7.50%和2.63%。结论传统终点法与研究采用的AUC法计算结果有较大的差异。传统的抗病毒活性筛选研究多采用终点法检测受试药物对病毒感染细胞的保护作用,无法反映整个感染周期的变化,缺乏细胞毒的数据也会对结果的判断产生偏差。研究提示基于RTCA技术对中药挥发性组分开展抗HAdV-3的毒/效整合评价,采用AUC方法计算药物的选择性指数作为高通量筛选新策略,能快速、精准地判断受试药物的抗病毒活性,具有准确性高、重复性好的优势。
基金supported by DFG and TUHH in the funding programme Open Access Publishing
文摘We present integrated-optic building blocks and functional photonic devices based on amorphous siliconon-insulator technology. Efficient deep-etched fiber-to-chip grating couplers, low-loss single-mode photonic wire waveguides, and compact power splitters are presented. Based on the sub-μm photonic wires, 2 × 2 Mach–Zehnder interferometers and add/drop microring resonators(MRRs) with low device footprints and high finesse up to 200 were realized and studied. Compact polarization rotators and splitters with ≥10 d B polarization extinction ratio were fabricated for the polarization management on-chip. The tuning and trimming capabilities of the material platform are demonstrated with efficient microheaters and a permanent device trimming method, which enabled the realization of energy-efficient photonic circuits. Wavelength multiplexers in the form of cascaded filter banks and 4 × 4 routers based on MRR switches are presented. Fabrication imperfections were analyzed and permanently corrected by an accurate laser-trimming method, thus enabling eight-channel multiplexers with record low metrics of sub-m W static power consumption and ≤1°C temperature overhead. The high quality of the functional devices, the high tuning efficiency, and the excellent trimming capabilities demonstrate the potential to realize low-cost, densely integrated, and ultralow-power 3D-stacked photonic circuits on top of CMOS microelectronics.