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用于设计能够络合并保护质粒DNA的稳定脂质聚合物的二乙炔脂质。

Diacetylenic lipids in the design of stable lipopolymers able to complex and protect plasmid DNA.

作者信息

Temprana C Facundo, Prieto M Jimena, Igartúa Daniela E, Femia A Lis, Amor M Silvia, Alonso Silvia Del Valle

机构信息

Laboratorio de Biomembranas (LBM), Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes, Bernal, Argentina.

Grupo vinculado GBEyB, IMBICE, CICPBA, CCT, La Plata - CONICET.

出版信息

PLoS One. 2017 Oct 11;12(10):e0186194. doi: 10.1371/journal.pone.0186194. eCollection 2017.

Abstract

Different viral and non-viral vectors have been designed to allow the delivery of nucleic acids in gene therapy. In general, non-viral vectors have been associated with increased safety for in vivo use; however, issues regarding their efficacy, toxicity and stability continue to drive further research. Thus, the aim of this study was to evaluate the potential use of the polymerizable diacetylenic lipid 1,2-bis(10,12-tricosadiynoyl)-sn-glycero-3-phosphocholine (DC8,9PC) as a strategy to formulate stable cationic lipopolymers in the delivery and protection of plasmid DNA. Cationic lipopolymers were prepared following two different methodologies by using DC8,9PC, 1,2-dimyristoyl-sn-glycero-3-phosphocholine (DMPC), and the cationic lipids (CL) 1,2-dioleoyl-3-trimethylammonium-propane (DOTAP), stearylamine (SA), and myristoylcholine chloride (MCL), in a molar ratio of 1:1:0.2 (DMPC:DC8,9PC:CL). The copolymerization methodology allowed obtaining cationic lipopolymers which were smaller in size than those obtained by the cationic addition methodology although both techniques presented high size stability over a 166-day incubation period at 4°C. Cationic lipopolymers containing DOTAP or MCL were more efficient in complexing DNA than those containing SA. Moreover, lipopolymers containing DOTAP were found to form highly stable complexes with DNA, able to resist serum DNAses degradation. Furthermore, neither of the cationic lipopolymers (with or without DNA) induced red blood cell hemolysis, although metabolic activity determined on the L-929 and Vero cell lines was found to be dependent on the cell line, the formulation and the presence of DNA. The high stability and DNA protection capacity as well as the reduced toxicity determined for the cationic lipopolymer containing DOTAP highlight the potential advantage of using lipopolymers when designing novel non-viral carrier systems for use in in vivo gene therapy. Thus, this work represents the first steps toward developing a cationic lipopolymer-based gene delivery system using polymerizable and cationic lipids.

摘要

已设计出不同的病毒和非病毒载体,用于在基因治疗中递送核酸。一般来说,非病毒载体在体内使用时安全性更高;然而,关于其功效、毒性和稳定性的问题仍推动着进一步的研究。因此,本研究的目的是评估可聚合的二乙炔脂质1,2-双(10,12-二十三碳二炔酰基)-sn-甘油-3-磷酸胆碱(DC8,9PC)作为一种策略在质粒DNA递送和保护中制备稳定阳离子脂质聚合物的潜在用途。通过使用DC8,9PC、1,2-二肉豆蔻酰-sn-甘油-3-磷酸胆碱(DMPC)和阳离子脂质(CL)1,2-二油酰基-3-三甲基铵丙烷(DOTAP)、硬脂胺(SA)和肉豆蔻酰胆碱氯(MCL),按照两种不同方法制备阳离子脂质聚合物,摩尔比为1:1:0.2(DMPC:DC8,9PC:CL)。共聚方法得到的阳离子脂质聚合物尺寸比阳离子加成法得到的更小,尽管两种技术在4℃下166天的孵育期内均表现出高尺寸稳定性。含DOTAP或MCL的阳离子脂质聚合物比含SA的更有效地络合DNA。此外,发现含DOTAP的脂质聚合物与DNA形成高度稳定的复合物,能够抵抗血清DNA酶的降解。此外,阳离子脂质聚合物(有或无DNA)均未诱导红细胞溶血,尽管在L-929和Vero细胞系上测定的代谢活性取决于细胞系、制剂和DNA的存在。含DOTAP的阳离子脂质聚合物具有高稳定性、DNA保护能力以及降低的毒性,突出了在设计用于体内基因治疗的新型非病毒载体系统时使用脂质聚合物的潜在优势。因此,这项工作代表了开发基于阳离子脂质聚合物的基因递送系统的第一步,该系统使用可聚合和阳离子脂质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52f4/5636127/1b6ec3fe1b3c/pone.0186194.g001.jpg

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