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Rescuing compound bioactivity in a secondary cell-based screening by using γ-cyclodextrin as a molecular carrier

机译:通过使用γ-环糊精作为分子载体在二次细胞筛选中拯救化合物的生物活性

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摘要

In vitro primary screening for identifying bioactive compounds (inhibitors, activators or pharmacological chaperones) against a protein target results in the discovery of lead compounds that must be tested in cell-based efficacy secondary screenings. Very often lead compounds do not succeed because of an apparent low potency in cell assays, despite an excellent performance in primary screening. Primary and secondary screenings differ significantly according to the conditions and challenges the compounds must overcome in order to interact with their intended target. Cellular internalization and intracellular metabolism are some of the difficulties the compounds must confront and different strategies can be envisaged for minimizing that problem. Using a novel screening procedure we have identified 15 compounds inhibiting the hepatitis C NS3 protease in an allosteric fashion. After characterizing biophysically the interaction with the target, some of the compounds were not able to inhibit viral replication in cell assays. In order to overcome this obstacle and potentially improve cellular internalization three of these compounds were complexed with γ-cyclodextrin. Two of them showed a five- and 16-fold activity increase, compared to their activity when delivered as free compounds in solution (while γ-cyclodextrin did not show antiviral activity by itself). The most remarkable result came from a third compound that showed no antiviral activity in cell assays when delivered free in solution, but its γ-cyclodextrin complex exhibited a 50% effective concentration of 5 μM. Thus, the antiviral activity of these compounds can be significantly improved, even completely rescued, using γ-cyclodextrin as carrier molecule.
机译:体外初步筛选用于鉴定针对蛋白质靶标的生物活性化合物(抑制剂,活化剂或药理分子伴侣)导致发现必须在基于细胞的功效二次筛选中测试的先导化合物。尽管在初步筛选中表现出色,但由于细胞分析中明显的低效性,前导化合物常常无法成功。初次筛选和二次筛选因条件和化合物与目标靶点相互作用而必须克服的挑战而显着不同。细胞内在化和细胞内代谢是化合物必须面对的一些困难,并且可以设想出不同的策略来使该问题最小化。使用新颖的筛选程序,我们已经鉴定了15种以别构形式抑制丙型肝炎NS3蛋白酶的化合物。在生物学上表征了与靶标的相互作用后,某些化合物在细胞分析中无法抑制病毒复制。为了克服该障碍并潜在地改善细胞内在化,将这些化合物中的三种与γ-环糊精复合。与以游离化合物形式在溶液中递送时的活性相比,它们中的两个具有5倍和16倍的活性增加(而γ-环糊精本身并没有显示抗病毒活性)。最引人注目的结果来自第三个化合物,该化合物在溶液中自由递送时在细胞测定中没有抗病毒活性,但其γ-环糊精复合物的有效浓度为50%,为5μM。因此,使用γ-环糊精作为载体分子,可以显着提高甚至完全挽救这些化合物的抗病毒活性。

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