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One-step encapsulation of siRNA between lipid-layers of multi-layer polycation liposomes by lipoplex freeze-thawing

机译:通过脂质复合物冻融一步法将siRNA包裹在多层聚阳离子脂质体的脂质层之间

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Small interfering RNA (siRNA) has the potential to be a candidate as a cure for intractable diseases. However, an appropriate vector is required for siRNA delivery because of the low transfection efficiency of siRNA without a vector and its easy degradation in vivo. Here, we report a simple, only one step, and efficient method for siRNA encapsulation into a lipidic nanocarrier by freeze-thawing: siRNA was entrapped between the lipid layers of multi-layer liposomes by freeze-thawing of lipoplexes composed of polycation liposomes (PCLs) and siRNA. siRNA-holding capacity to the PCL was increased by repeating freeze-thaw of the lipoplex up to 5 cycles. Although siRNA in the conventional lipoplex was degraded after incubation in 90% fetal bovine serum for 72 h, siRNA in the frozen and thawed lipoplex was not degraded. Interestingly, we found that the lipoplex formed a "packed multi-layer" structure after the freeze-thawing of "single-layer" PCL and siRNA complex, suggesting that siRNA exists between the lipid layers working as a binder. The frozen and thawed lipoplex showed significantly higher knockdown efficacy compared with the conventional lipoplex. In addition, PEGylated freeze-thawed lipoplexes delivered a higher amount of siRNA to a tumor in vivo compared with the PEGylated conventional ones. These results provide an attractive strategy for "one-step" encapsulation of siRNA into liposomes by freeze-thawing. (C) 2016 Elsevier B.V. All rights reserved.
机译:小干扰RNA(siRNA)有可能成为治疗顽固性疾病的候选药物。然而,由于没有载体的siRNA的转染效率低并且其在体内易于降解,因此siRNA递送需要合适的载体。在这里,我们报告了一种简单,仅一步且有效的方法,用于通过冷冻-解冻将siRNA封装到脂质纳米载体中:通过冷冻解冻由聚阳离子脂质体(PCLs)构成的脂质体,将siRNA包裹在多层脂质体的脂质层之间。 )和siRNA。通过重复脂质复合物的冻融直至5个循环,增加了对PCL的siRNA保持能力。尽管常规脂质复合物中的siRNA在90%的胎牛血清中孵育72小时后会降解,但冷冻和融化的脂质复合物中的siRNA并没有降解。有趣的是,我们发现在“单层” PCL和siRNA复合物冷冻融化后,脂质复合物形成了“堆积的多层”结构,这表明siRNA存在于作为粘合剂的脂质层之间。与常规脂质复合物相比,冷冻和解冻的脂质复合物显示出显着更高的击倒功效。另外,与常规的PEG化的相比,PEG化的冻融脂质复合物在体内向肿瘤递送了更高量的siRNA。这些结果为通过冷冻-解冻将siRNA“一步”封装到脂质体中提供了有吸引力的策略。 (C)2016 Elsevier B.V.保留所有权利。

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