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Cell-based impedance spectroscopy for probing inhibitory effects of steroids and ergostane/lanosta-related compounds

机译:基于细胞的阻抗谱,用于探测类固醇和麦角甾烷/羊毛甾体相关化合物的抑制作用

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Electric cell–substrate impedance sensing (ECIS) was used for probing inhibitory effects on Spodoptera frugiperda Sf9 insect cells exposed to five synthesized steroid compounds. The results were compared to the levels obtained using three ergostane-related steroids and five lanosta-related triterpenes purified from the fruiting bodies of Antrodia camphorata. The half-inhibition concentration (ECIS50), the level of 50% inhibition of the resistance response, was determined from the response function to establish inhibitory effects of the different compounds. Significant effects on inhibition as probed by impedance spectroscopy were noticed because of slight changes in chemical structure. Only two of the synthesized compounds, 24(R,S)-5α-lanost-8-ene-3,24,25-triol and 5α-lanost-8-ene-3,7,11-trione, showed inhibitory effects which were much less significant compared to the A. camphorata steroids. The ECIS50 values were 150–250 μM, similar to the value for the least inhibitory lanosta-related triterpene. This noninvasive measurement in combination with Sf9 insect cells has been proven as a simple and reliable tool for screening inhibition/cytotoxicity and designing steroid-related compounds...
机译:电池-基板阻抗感测(ECIS)用于探测对暴露于五种合成类固醇化合物的草地夜蛾Sf9昆虫细胞的抑制作用。将结果与使用从樟脑樟子实体的子实体中纯化得到的三种麦角甾烷相关类固醇和五种拉诺斯塔相关三萜的水平进行比较。由响应函数确定半抑制浓度(ECIS50),即50%的抗性响应抑制水平,以建立不同化合物的抑制作用。由于化学结构的轻微变化,注意到通过阻抗谱探测到的对抑制的显着影响。只有两种合成的化合物24(R,S)-5α-lanost-8-ene-3,24,25-三醇和5α-lanost-8-ene-3,7,11-trione具有抑制作用,与樟脑类固醇相比,它们的重要性要低得多。 ECIS50值为150–250μM,与抑制最小的拉诺斯塔相关三萜的值相似。这种与Sf9昆虫细胞结合的非侵入性测量方法已被证明是用于筛选抑制/细胞毒性和设计类固醇相关化合物的简单可靠的工具...

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