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High-resolution dose–response screening using droplet-based microfluidics

机译:使用基于液滴的微流控技术进行高分辨率的剂量反应筛选

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摘要

A critical early step in drug discovery is the screening of a chemical library. Typically, promising compounds are identified in a primary screen and then more fully characterized in a dose–response analysis with 7–10 data points per compound. Here, we describe a robust microfluidic approach that increases the number of data points to approximately 10,000 per compound. The system exploits Taylor–Aris dispersion to create concentration gradients, which are then segmented into picoliter microreactors by droplet-based microfluidics. The large number of data points results in IC50 values that are highly precise (± 2.40% at 95% confidence) and highly reproducible (CV = 2.45%, n = 16). In addition, the high resolution of the data reveals complex dose–response relationships unambiguously. We used this system to screen a chemical library of 704 compounds against protein tyrosine phosphatase 1B, a diabetes, obesity, and cancer target. We identified a number of novel inhibitors, the most potent being sodium cefsulodine, which has an IC50 of 27 ± 0.83 μM.
机译:药物发现中关键的早期步骤是筛选化学文库。通常情况下,有希望的化合物会在初步筛选中被鉴定出来,然后在剂量反应分析中被更全面地表征,每种化合物具有7-10个数据点。在这里,我们描述了一种强大的微流体方法,该方法将每个化合物的数据点数量增加到大约10,000个。该系统利用泰勒-阿里斯(Taylor-Aris)分散体创建浓度梯度,然后通过基于液滴的微流体将其细分为皮升微反应器。大量数据点产生的IC50值非常精确(95%置信度下为±2.40%)和高度可重复的(CV = 2.45%,n = 16)。此外,数据的高分辨率清楚地揭示了复杂的剂量反应关系。我们使用该系统筛选了针对蛋白质酪氨酸磷酸酶1B,糖尿病,肥胖症和癌症靶标的704种化合物的化学文库。我们鉴定了许多新型抑制剂,其中最有效的是头孢舒罗定钠,IC50为27±0.83μM。

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