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无有机溶剂制备的阴离子脂质体用于有效的 siRNA 递释。

Anionic liposomes prepared without organic solvents for effective siRNA delivery.

机构信息

Department of Clinical Pharmacy, Affiliated Jinling Hospital, Medical School of Nanjing University, Nanjing, China.

Department of Gastroenterology, Children's Hospital of Nanjing Medical University, Nanjing, China.

出版信息

IET Nanobiotechnol. 2023 May;17(3):269-280. doi: 10.1049/nbt2.12117. Epub 2023 Feb 14.

Abstract

Currently, organic solvents are necessary for the preparation of anionic liposomes for siRNA delivery. The removal of organic solvent is time-consuming and the residual organic solvent is not only a hidden danger, but also affects the stability of anionic liposomes. Glycerol, which is physiologically compatible and does not need to be removed, is used to promote the dispersion of lipids and the formation of anionic liposomes. Additionally, the preparation process is simple and not time-consuming. The results showed that anionic liposomes, which were typically spherical with a particle size of 188.9 nm were successfully prepared with glycerol. And with the help of Ca , siRNA was encapsulated in anionic liposomes. The highest encapsulation efficiency at 2.4 mM Ca reached 91%. And the formation of calcium phosphate could promote the endosomal escape of siRNA effectively. The results from cell viability showed that the anionic liposomes had no obvious cytotoxicity. It was also verified that anionic liposomes could improve the resistance of siRNA against degradation. Additionally, siRNA delivered by anionic liposomes could play an effective role in knockout. Therefore, anionic liposomes prepared with glycerol will be a safe and effective delivery platform for siRNA and even other nucleic acid drugs.

摘要

目前,用于 siRNA 递送的阴离子脂质体的制备需要有机溶剂。去除有机溶剂既费时又费力,而且残留的有机溶剂不仅是一个隐患,还会影响阴离子脂质体的稳定性。甘油具有生理相容性,无需去除,可用于促进脂质的分散和阴离子脂质体的形成。此外,制备过程简单,不耗时。结果表明,成功地用甘油制备了典型的球形阴离子脂质体,粒径为 188.9nm。在 2.4mM Ca 的帮助下,siRNA 被包封在阴离子脂质体中。在 2.4mM Ca 时达到最高包封效率 91%。形成的磷酸钙可以有效地促进 siRNA 的内涵体逃逸。细胞活力的结果表明,阴离子脂质体没有明显的细胞毒性。还验证了阴离子脂质体可以提高 siRNA 对降解的抵抗力。此外,阴离子脂质体递送的 siRNA 可以发挥有效的敲除作用。因此,用甘油制备的阴离子脂质体将成为 siRNA 甚至其他核酸药物安全有效的递送平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/516b/10190622/44799c2f8d38/NBT2-17-269-g005.jpg

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