首页> 美国卫生研究院文献>Cancers >Targeted Osmotic Lysis of Highly Invasive Breast Carcinomas Using Pulsed Magnetic Field Stimulation of Voltage-Gated Sodium Channels and Pharmacological Blockade of Sodium Pumps
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Targeted Osmotic Lysis of Highly Invasive Breast Carcinomas Using Pulsed Magnetic Field Stimulation of Voltage-Gated Sodium Channels and Pharmacological Blockade of Sodium Pumps

机译:使用电压门控钠通道的脉冲磁场刺激和钠泵的药理学阻断作用对高浸润性乳腺癌进行靶向渗透溶解

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摘要

Concurrent activation of voltage-gated sodium channels (VGSCs) and blockade of Na pumps causes a targeted osmotic lysis (TOL) of carcinomas that over-express the VGSCs. Unfortunately, electrical current bypasses tumors or tumor sections because of the variable resistance of the extracellular microenvironment. This study assesses pulsed magnetic fields (PMFs) as a potential source for activating VGSCs to initiate TOL in vitro and in vivo as PMFs are unaffected by nonconductive tissues. In vitro, PMFs (0–80 mT, 10 msec pulses, 15 pps for 10 min) combined with digoxin-lysed (500 nM) MDA-MB-231 breast cancer cells stimulus-dependently. Untreated, stimulation-only, and digoxin-only control cells did not lyse. MCF-10a normal breast cells were also unaffected. MDA-MB-231 cells did not lyse in a Na -free buffer. In vivo, 30 min of PMF stimulation of MDA-MB-231 xenografts in J/Nu mice or 4T1 homografts in BALB/c mice, concurrently treated with 7 mg/kg digoxin reduced tumor size by 60–100%. Kidney, spleen, skin and muscle from these animals were unaffected. Stimulation-only and digoxin-only controls were similar to untreated tumors. BALB/C mice with 4T1 homografts survived significantly longer than mice in the three control groups. The data presented is evidence that the PMFs to activate VGSCs in TOL provide sufficient energy to lyse highly malignant cells in vitro and to reduce tumor growth of highly malignant grafts and improve host survival in vivo, thus supporting targeted osmotic lysis of cancer as a possible method for treating late-stage carcinomas without compromising noncancerous tissues.
机译:电压门控钠通道(VGSC)的同时激活和钠泵的阻塞会导致过表达VGSC的癌症的定向渗透裂解(TOL)。不幸的是,由于细胞外微环境的可变电阻,电流绕过了肿瘤或肿瘤切片。这项研究评估了脉冲磁场(PMF)作为激活VGSC在体外和体内启动TOL的潜在来源,因为PMF不受非导电组织的影响。在体外,PMF(0–80 mT,10毫秒脉冲,15 pps,持续10分钟)与地高辛溶解的(500 nM)MDA-MB-231乳腺癌细胞联合刺激依赖。未经处理,仅刺激和仅地高辛的对照细胞未裂解。正常的乳腺癌细胞MCF-10a也未受影响。 MDA-MB-231细胞未在不含Na的缓冲液中裂解。在体内,PMF刺激J / Nu小鼠中的MDA-MB-231异种移植物或BALB / c小鼠中的4T1同种移植物,同时用7 mg / kg地高辛治疗可刺激肿瘤缩小60-100%。这些动物的肾脏,脾脏,皮肤和肌肉不受影响。仅刺激和仅地高辛的对照与未经治疗的肿瘤相似。具有4T1同种移植物的BALB / C小鼠的存活时间明显长于三个对照组的小鼠。所提供的数据证明激活TOL中的VGSC的PMF提供足够的能量在体外裂解高度恶性细胞,并减少高度恶性移植物的肿瘤生长并改善体内宿主存活率,从而支持癌症的定向渗透裂解用于治疗晚期癌症而不损害非癌性组织。

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