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Single molecule localizations of voltage-gated sodium channel NaV1.5 on the surfaces of normal and cancer breast cells

机译:电压门控钠通道 NaV1.5 在正常和癌性乳腺细胞表面的单分子定位

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Voltage-gated sodium channels (VGSCs) are widely expressed in various types of tumor and cancer cells, and NaV1.5 is overexpressed in highly metastatic breast cancer cells. There may be positive relations between the expression levels of NaV1.5 and breast cancer recurrence and metastasis. Herein, NaV1.5 was detected and localized on the surfaces of normal and cancer breast cells by the single molecule recognition imaging (SMRI) mode of atomic force microscopy (AFM). The results reveal that NaV1.5 was irregularly distributed on the surfaces of normal and cancer breast cells. The NaV1.5 has an area percentage of 0.6% and 7.2% on normal and cancer breast cells, respectively, which indicates that there is more NaV1.5 on cancer cells than on normal cells. The specific interaction forces and binding kinetics in the NaV1.5–antibody complex system were investigated with the single molecule force spectroscopy (SMFS) mode of AFM, indicating that the stability of the NaV1.5–antibody on normal breast cells is higher than that on cancer breast cells. All these results will be useful to study the interactions of other ion channel–antibody systems, and will also be useful to understand the role of sodium channels in tumor metastasis and invasion.
机译:电压门控钠通道(VGSC)在各种类型的肿瘤和癌细胞中广泛表达,NaV1.5在高度转移的乳腺癌细胞中过表达。NaV1.5的表达水平与乳腺癌复发转移可能呈正相关。本文通过原子力显微镜(AFM)的单分子识别成像(SMRI)模式检测NaV1.5并将其定位在正常和癌细胞的表面。结果表明,NaV1.5不规则地分布在正常和癌细胞的表面。NaV1.5 在正常和癌乳腺细胞上的面积百分比分别为 0.6% 和 7.2%,这表明癌细胞上的 NaV1.5 比正常细胞上的 NaV1.5 多。采用AFM的单分子力谱(SMFS)模式研究了NaV1.5抗体复合物体系中的特异性相互作用力和结合动力学,表明NaV1.5抗体在正常乳腺细胞上的稳定性高于癌乳腺细胞。所有这些结果将有助于研究其他离子通道-抗体系统的相互作用,也有助于理解钠通道在肿瘤转移和侵袭中的作用。

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