Bioelectrics Department, Institute of Pulsed Power Science, Kumamoto University, 2-39-1 Kurokami, Kumamoto, 860-8555, Japan.
Institute of Pharmacology and Structural Biology, University Paul Sabatier, Toulouse, France.
Drug Deliv Transl Res. 2018 Oct;8(5):1152-1161. doi: 10.1007/s13346-018-0533-5.
Pulsed electric fields (PEFs) are applied as physical stimuli for DNA/drug delivery, cancer therapy, gene transformation, and microorganism eradication. Meanwhile, calcium electrotransfer offers an interesting approach to treat cancer, as it induces cell death easier in malignant cells than in normal cells. Here, we study the spatial and temporal cellular responses to 10 μs duration PEFs; by observing real-time, the uptake of extracellular calcium through the cell membrane. The experimental setup consisted of an inverted fluorescence microscope equipped with a color high-speed framing camera and a specifically designed miniaturized pulsed power system. The setup allowed us to accurately observe the permeabilization of HeLa S3 cells during application of various levels of PEFs ranging from 0.27 to 1.80 kV/cm. The low electric field experiments confirmed the threshold value of transmembrane potential (TMP). The high electric field observations enabled us to retrieve the entire spatial variation of the permeabilization angle (θ). The temporal observations proved that after a minimal permeabilization of the cell membrane, the ionic diffusion was the prevailing mechanism of the delivery to the cell cytoplasm. The observations suggest 0.45 kV/cm and 100 pulses at 1 kHz as an optimal condition to achieve full calcium concentration in the cell cytoplasm. The results offer precise levels of electric fields to control release of the extracellular calcium to the cell cytoplasm for inducing minimally invasive cancer calcium electroporation, an interesting affordable method to treat cancer patients with minimum side effects.
脉冲电场(PEF)被用作 DNA/药物输送、癌症治疗、基因转化和微生物消除的物理刺激。同时,钙电转染提供了一种有趣的治疗癌症的方法,因为它在恶性细胞中比在正常细胞中更容易诱导细胞死亡。在这里,我们研究了 10μs 持续时间的 PEF 的空间和时间细胞反应;通过观察实时通过细胞膜摄取细胞外钙。实验装置由配备彩色高速帧相机和专门设计的小型化脉冲电源系统的倒置荧光显微镜组成。该装置使我们能够准确观察到在应用从 0.27 到 1.80 kV/cm 不等的各种 PEF 水平时 HeLa S3 细胞的通透性。低电场实验证实了跨膜电位 (TMP) 的阈值。高电场观察使我们能够获取通透性角度 (θ) 的整个空间变化。时间观察证明,在细胞膜最小通透性之后,离子扩散是将物质输送到细胞质的主要机制。这些观察结果表明,0.45 kV/cm 和 100 个 1 kHz 的脉冲是实现细胞质中钙离子完全浓度的最佳条件。该结果提供了精确的电场水平,以控制细胞外钙向细胞质的释放,从而诱导微创癌症钙电穿孔,这是一种具有最小副作用的治疗癌症患者的经济实惠的方法。