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红细胞和淋巴细胞作为药物载体系统:将药物包封于活细胞内的技术。

Erythrocytes and lymphocytes as drug carrier systems: techniques for entrapment of drugs in living cells.

作者信息

Zimmermann U, Pilwat G, Vienken J

出版信息

Recent Results Cancer Res. 1980;75:252-9. doi: 10.1007/978-3-642-81491-4_39.

Abstract

Mouse thymocytes and erythrocytes are loaded electrically with drugs in isotonic solution. The loaded cells are used for targeting the drugs to specific sites in the organism in order to achieve a controlled drug release in time and space. The field technique used for the loading of the cells is based on the dielectric breakdown of the cell membrane which is observed when cell suspensions are subjected to external field pulses of 2-20 kV/cm for short time intervals (ns to microseconds). When an apparent membrane potential of about 1 V is reached in response to the external field, the membrane breaks down reversibly. The breakdown of the membrane is associated with a remarkable and reversible permeability increase of the cell membrane. The increase in permeability depends on the strength and the duration of the field pulse.

摘要

小鼠胸腺细胞和红细胞在等渗溶液中通过电加载药物。加载后的细胞用于将药物靶向输送到生物体的特定部位,以便在时间和空间上实现可控的药物释放。用于细胞加载的场技术基于细胞膜的介电击穿,当细胞悬液在短时间间隔(纳秒到微秒)内受到2-20 kV/cm的外部场脉冲作用时,就会观察到这种现象。当响应外部场达到约1 V的表观膜电位时,膜会可逆地击穿。膜的击穿与细胞膜显著且可逆的通透性增加有关。通透性的增加取决于场脉冲的强度和持续时间。

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