Mitchell D H, James G T, Kruse C A
Department of Surgery, University of Colorado Health Sciences Center, Denver 80262.
Biotechnol Appl Biochem. 1990 Jun;12(3):264-75.
The molecular integrity of human recombinant interleukin-2 (rIL-2), as measured by size exclusion chromatography, was not altered when exposed to high electrical field intensities. In addition, the biological activity was unaffected, as evidenced by the ability of the rIL-2 to stimulate the proliferation (by cell growth assays and tritiated thymidine uptake) and differentiation (by cytotoxicity assay) of human lymphocytes into killer cells. Electroporation conditions chosen for the loading of rIL-2, based upon those which provided for good recovery of carriers and minimal hemoglobin release, involved a lower field intensity (i.e., 6 kV/cm instead of 7 or 8 kV/cm) and multiple pulses (eight pulses, 5 microseconds) rather than a single pulse (40 microseconds). Human erythrocyte carriers consistently encapsulated 5-7.5% of the rIL-2 by electroporation (6 kV/cm, eight pulses, 5 microseconds duration). A rIL-2 concentration of 600,000 U/ml surrounding the erythrocytes during loading resulted in ca. 245,000 U/ml carriers, which represents a therapeutically significant quantity. Thus, rIL-2 shows potential as an encapsulated agent for slow release in the erythrocyte carrier system.
通过尺寸排阻色谱法测定,人重组白细胞介素-2(rIL-2)在暴露于高电场强度时,其分子完整性未发生改变。此外,其生物活性也未受影响,这可通过rIL-2刺激人淋巴细胞增殖(通过细胞生长测定和氚标记胸腺嘧啶核苷摄取)以及分化为杀伤细胞(通过细胞毒性测定)的能力得以证明。基于能实现载体良好回收率和最小血红蛋白释放的条件来选择用于加载rIL-2的电穿孔条件,这些条件包括较低的场强(即6 kV/cm,而非7或8 kV/cm)和多个脉冲(八个脉冲,5微秒),而非单个脉冲(40微秒)。通过电穿孔(6 kV/cm,八个脉冲,持续5微秒),人红细胞载体始终能包裹5 - 7.5%的rIL-2。加载过程中红细胞周围rIL-2的浓度为600,000 U/ml时,会产生约245,000 U/ml的载体,这代表了具有治疗意义的量。因此,rIL-2在红细胞载体系统中作为缓释包封剂显示出潜力。