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首页> 外文期刊>European Biophysics Journal >Single cell adhesion measuring apparatus (SCAMA): application to cancer cell lines of different metastatic potential and voltage-gated Na+ channel expression
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Single cell adhesion measuring apparatus (SCAMA): application to cancer cell lines of different metastatic potential and voltage-gated Na+ channel expression

机译:单细胞粘附力测量仪(SCAMA):应用于具有不同转移电位和电压门控Na + 通道表达的癌细胞系

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We have developed a simple yet effective apparatus, based upon negative pressure directed to the tip of a micro-pipette, to measure the adhesiveness of single cells. The “single cell adhesion measuring apparatus” (SCAMA) could differentiate between the adhesion of strongly versus weakly metastatic cancer cells as well as normal cells. Adhesion was quantified as “detachment negative pressure” (DNP) or “DNP relative to cell size” (DNPR) where a noticeable difference in cell size was apparent. Thus, for rat and human prostate and human breast cancer cell lines, adhesiveness (DNPR values) decreased in line with increased metastatic potential. Using the SCAMA, we investigated the effect of tetrodotoxin (TTX), a specific blocker of voltage-gated Na+ channels (VGSCs), on the adhesion of rat and human prostate cancer cell lines of markedly different metastatic potential. Following pretreatment with TTX (48 h with 1 μM), the adhesion values for the Mat-LyLu cells increased significantly 4.3-fold; there was no effect on the AT-2 cells. For the strongly metastatic PC-3M cells, TTX treatment caused a significant (∼30%) increase in adhesion. The adhesion of PNT2-C2 (“normal”) cells was not affected by the TTX pretreatment. The TTX-induced increase in the adhesiveness of the strongly metastatic cells was consistent with the functional VGSC expression in these cells and the proposed role of VGSC activity in metastatic cell behaviour. In conclusion, the SCAMA, which can be constructed easily and cheaply, offers a simple and effective method to characterise single-cell adhesion and its modulation.
机译:我们基于指向微量移液器尖端的负压,开发了一种简单而有效的设备,用于测量单个细胞的粘附性。 “单细胞粘附力测量仪”(SCAMA)可以区分强转移癌细胞和弱转移癌细胞以及正常细胞之间的粘附。粘附力量化为“分离负压”(DNP)或“相对于细胞大小的DNP”(DNPR),其中细胞大小有明显差异。因此,对于大鼠和人前列腺以及人乳腺癌细胞系,粘附性(DNPR值)随着转移潜能的增加而降低。使用SCAMA,我们研究了河豚毒素(TTX)(一种电压门控Na + 通道(VGSCs)的特异性阻滞剂)对明显不同的转移性大鼠和人前列腺癌细胞系粘附的作用潜在。用TTX预处理(48 h,1μM)后,Mat-LyLu细胞的粘附值显着提高了4.3倍;对AT-2细胞没有影响。对于转移性强的PC-3M细胞,TTX处理可导致粘附力显着提高(〜30%)。 PNT2-C2(“正常”)细胞的粘附不受TTX预处理的影响。 TTX诱导的强转移细胞粘附性的增加与这些细胞中功能性VGSC的表达以及拟议的VGSC活性在转移性细胞行为中的作用是一致的。总之,可以轻松,廉价地构建的SCAMA提供了一种简单有效的方法来表征单细胞粘附及其调节。

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