Center for Applied Proteomics and Molecular Medicine, George Mason University, Manassas, VA 20110, USA.
School of Systems Biology, George Mason University, Manassas, VA 20110, USA.
Int J Mol Sci. 2021 Mar 10;22(6):2819. doi: 10.3390/ijms22062819.
Targetable alterations in cancer offer novel opportunities to the drug discovery process. However, pre-clinical testing often requires solubilization of these drugs in cosolvents like dimethyl sulfoxide (DMSO). Using a panel of cell lines commonly used for in vitro drug screening and pre-clinical testing, we explored the DMSO off-target effects on functional signaling networks, drug targets, and downstream substrates. Eight Non-Small Cell Lung Cancer (NSCLC) cell lines were incubated with three concentrations of DMSO (0.0008%, 0.002%, and 0.004% ) over time. Expression and activation levels of 187 proteins, of which 137 were kinases and downstream substrates, were captured using the Reverse Phase Protein Array (RPPA). The DMSO effect was heterogeneous across cell lines and varied based on concentration, exposure time, and cell line. Of the 187 proteins measured, all were statistically different in at least one comparison at the highest DMSO concentration, followed by 99.5% and 98.9% at lower concentrations. Only 46% of the proteins were found to be statistically different in more than 5 cell lines, indicating heterogeneous response across models. These cell line specific alterations modulate response to in vitro drug screening. Ultra-low DMSO concentrations have broad and heterogeneous effects on targetable signaling proteins. Off-target effects need to be carefully evaluated in pre-clinical drug screening and testing.
肿瘤的靶向改变为药物发现过程提供了新的机会。然而,临床前测试通常需要将这些药物溶解在助溶剂中,如二甲基亚砜 (DMSO)。本研究使用常用于体外药物筛选和临床前测试的细胞系面板,探索了 DMSO 对功能信号网络、药物靶点和下游底物的非靶向效应。将八种非小细胞肺癌 (NSCLC) 细胞系在不同浓度的 DMSO(0.0008%、0.002%和 0.004%)中孵育一段时间。使用反相蛋白阵列(RPPA)捕获 187 种蛋白质中的 137 种表达和激活水平,其中包括激酶和下游底物。DMSO 对细胞系的影响是异质的,并且取决于浓度、暴露时间和细胞系而变化。在所测量的 187 种蛋白质中,在最高 DMSO 浓度下,所有蛋白质在至少一种比较中均具有统计学差异,其次是在较低浓度下为 99.5%和 98.9%。只有 46%的蛋白质在超过 5 个细胞系中具有统计学差异,表明模型之间存在异质反应。这些细胞系特异性改变调节了对体外药物筛选的反应。超低浓度的 DMSO 对可靶向信号蛋白具有广泛而异质的影响。在临床前药物筛选和测试中,需要仔细评估非靶向效应。