Biotechnology Research Institute, National Research Council Canada, Montreal, Quebec, Canada 4P 2R2.
Analyst. 2009 Jul;134(7):1447-52. doi: 10.1039/b822133b. Epub 2009 Apr 15.
A noninvasive technique based on electric cell-substrate impedance sensing (ECIS) was demonstrated for on-line probing inhibitory effects of five destruxins on Spodoptera frugiperda Sf9 insect cells. Such chemically structurally similar cyclic hexadepsipeptides, were isolated and purified from the fungus Metarhizium anisopliae. Based on a response function, the inhibitory effect of the destruxins was established from determining the half-inhibition concentration (ECIS50), i.e., the level at which 50% inhibition of the cell response was obtained. Probing by cell based impedance spectroscopy indicated that only a slight change in their chemical structures provoked a significant effect on inhibition. Destruxin B was most inhibitory but replacement of a single methyl group with hydrogen (destruxin B2) or addition of a hydroxyl group (destruxin C) significantly reduced the inhibition. The removal of one methyl group and one hydrogen (destruxin A) lowered the inhibitory effect even more whereas the formation of an epoxy ring (destruxin E) in the structure nullified the inhibitory effect.
基于电细胞-基底阻抗传感(ECIS)的非侵入性技术被证明可在线探测五种杀虫素对鳞翅目昆虫 Sf9 细胞的抑制作用。这些在化学结构上相似的环状十六肽是从真菌金龟子绿僵菌中分离和纯化出来的。基于响应函数,通过确定半抑制浓度(ECIS50),即获得细胞反应抑制 50%的水平,建立了杀虫素的抑制作用。细胞阻抗谱探测表明,它们的化学结构只有稍有变化就会对抑制作用产生显著影响。杀虫素 B 的抑制作用最强,但用氢取代一个甲基(杀虫素 B2)或添加一个羟基(杀虫素 C)会显著降低抑制作用。去掉一个甲基和一个氢(杀虫素 A)会使抑制作用进一步降低,而在结构中形成环氧环(杀虫素 E)则会使抑制作用失效。