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Discovery and Evaluation of nNav1.5 Sodium Channel Blockers with Potent Cell Invasion Inhibitory Activity in Breast Cancer Cells

机译:发现和评估乳腺癌细胞中具有强大的细胞侵袭抑制活性的nNav1.5钠通道阻滞剂

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摘要

Voltage-gated sodium channels (VGSC) are a well-established drug target for anti-epileptic, anti-arrhythmic and pain medications due to their presence and important roles that they play in excitable cells. Recently, their presence has been recognized in non-excitable cells such as cancer cells and their overexpression has been shown to be associated with metastatic behavior in a variety of human cancers. The neonatal isoform of the VGSC subtype, Nav1.5 (nNav1.5) is overexpressed in the highly aggressive human breast cancer cell line, MDA-MB-231. The activity of nNav1.5 is known to promote the breast cancer cell invasion in vitro and metastasis in vivo, and its expression in primary mammary tumors has been associated with metastasis and patient death. Metastasis development is responsible for the high mortality of breast cancer and currently there is no treatment available to specifically prevent or inhibit breast cancer metastasis. In the present study, a 3D-QSAR model is used to assist the development of low micromolar small molecule VGSC blockers. Using this model we have designed, synthesized and evaluated five small molecule compounds as blockers of nNav1.5-dependent inward currents in whole-cell patch-clamp experiments in MDA-MB-231 cells. The most active compound identified from these studies blocked sodium currents by 34.9 ± 6.6 % at 1 μM. This compound also inhibited the invasion of MDA-MB-231 cells by 30.3 ± 4.5 % at 1 μM concentration without affecting the cell viability. The potent small molecule compounds presented here have the potential to be developed as drugs for breast cancer metastasis treatment.
机译:电压门控钠通道(VGSC)是抗癫痫,抗心律不齐和止痛药物的行之有效的药物靶标,因为它们的存在及其在兴奋性细胞中的重要作用。最近,在诸如癌细胞等非兴奋性细胞中已经认识到它们的存在,并且已经表明它们的过表达与多种人类癌症中的转移行为有关。 VGSC亚型Nav1.5(nNav1.5)的新生儿同工型在高度侵袭性的人类乳腺癌细胞系MDA-MB-231中过表达。已知nNav1.5的活性可促进乳腺癌细胞的体外侵袭和体内转移,其在原发性乳腺肿瘤中的表达与转移和患者死亡有关。转移的发展是造成乳腺癌高死亡率的原因,目前尚无可用于特异性预防或抑制乳腺癌转移的治疗方法。在本研究中,使用3D-QSAR模型来协助开发低微摩尔小分子VGSC阻滞剂。使用该模型,我们在MDA-MB-231细胞的全细胞膜片钳实验中设计,合成和评估了5种小分子化合物,作为nNav1.5依赖性内向电流的阻断剂。从这些研究中鉴定出的最具活性的化合物在1μM时可阻止钠电流34.9±6.6%。该化合物还以1μM的浓度将MDA-MB-231细胞的侵袭抑制了30.3±4.5%,而不会影响细胞活力。本文介绍的强效小分子化合物有潜力被开发为乳腺癌转移治疗药物。

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