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动态 mRNA 多聚物得益于具有生物还原性切割位点,有利于体外和体内转移。

Dynamic mRNA polyplexes benefit from bioreducible cleavage sites for in vitro and in vivo transfer.

机构信息

Pharmaceutical Biotechnology, Department of Pharmacy, Ludwig-Maximilians-Universität (LMU) Munich, Butenandtstr. 5-13, D-81377 Munich, Germany.

Ethris GmbH, Semmelweisstr. 3, Planegg D-82152, Germany.

出版信息

J Control Release. 2021 Nov 10;339:27-40. doi: 10.1016/j.jconrel.2021.09.016. Epub 2021 Sep 20.

Abstract

Currently, messenger RNA (mRNA)-based lipid nanoparticle formulations revolutionize the clinical field. Cationic polymer-based complexes (polyplexes) represent an alternative compound class for mRNA delivery. After establishing branched polyethylenimine with a succinylation degree of 10% (succPEI) as highly effective positive mRNA transfection standard, a diverse library of PEI-like peptides termed sequence-defined oligoaminoamides (OAAs) was screened for mRNA delivery. Notably, sequences, which had previously been identified as potent plasmid DNA (pDNA) or small-interfering RNA (siRNA) carriers, displayed only moderate mRNA transfection activity. A second round of screening combined the cationizable building block succinoyl tetraethylene pentamine and histidines for endosomal buffering, tyrosine tripeptides and various fatty acids for mRNA polyplex stabilization, as well as redox-sensitive units for programmed intracellular release. For the tested OAA carriers, balancing of extracellular stability, endosomal lytic activity, and intracellular release capability was found to be of utmost importance for optimum mRNA transfection efficiency. OAAs with T-shape topology containing two oleic acids as well-stabilizing fatty acids, attached via a dynamic bioreducible building block, displayed superior activity with up to 1000-fold increased transfection efficiency compared to their non-reducible analogs. In the absence of the dynamic linkage, incorporation of shorter less stabilizing fatty acids could only partly compensate for mRNA delivery. Highest GFP expression and the largest fraction of transfected cells (96%) could be detected for the bioreducible OAA with incorporated histidines and a dioleoyl motif, outperforming all other tested carriers as well as the positive control succPEI. The good in vitro performance of the dynamic lead structure was verified in vivo upon intratracheal administration of mRNA complexes in mice.

摘要

目前,基于信使 RNA(mRNA)的脂质纳米粒制剂正在彻底改变临床领域。基于阳离子聚合物的复合物(多聚物)是 mRNA 递送的另一种化合物类别。在确定具有 10%琥珀酰化度的支化聚乙烯亚胺(succPEI)作为高效正 mRNA 转染标准后,筛选了称为序列定义的寡聚氨基酸酰胺(OAAs)的 PEI 样肽的多样化文库用于 mRNA 递送。值得注意的是,先前被鉴定为有效质粒 DNA(pDNA)或小干扰 RNA(siRNA)载体的序列仅显示出中等的 mRNA 转染活性。第二轮筛选将可阳离子化的构建块琥珀酰四乙烯五胺和组氨酸结合用于内涵体缓冲,酪氨酸三肽和各种脂肪酸用于 mRNA 多聚物稳定,以及用于程序细胞内释放的氧化还原敏感单元。对于测试的 OAA 载体,平衡细胞外稳定性、内涵体溶酶活性和细胞内释放能力对于最佳 mRNA 转染效率至关重要。具有 T 形拓扑结构的 OAA 含有两个油酸作为稳定脂肪酸,通过动态生物还原构建块连接,与非还原类似物相比,显示出优越的活性,转染效率提高了 1000 倍。在不存在动态键的情况下,较短的不太稳定的脂肪酸的掺入只能部分补偿 mRNA 递送。在不存在动态键的情况下,较短的不太稳定的脂肪酸的掺入只能部分补偿 mRNA 递送。在不存在动态键的情况下,较短的不太稳定的脂肪酸的掺入只能部分补偿 mRNA 递送。在不存在动态键的情况下,较短的不太稳定的脂肪酸的掺入只能部分补偿 mRNA 递送。在不存在动态键的情况下,较短的不太稳定的脂肪酸的掺入只能部分补偿 mRNA 递送。最高 GFP 表达和转染细胞的最大比例(96%)可检测到带有组氨酸和二油酰基基序的生物可还原 OAA,其性能优于所有其他测试载体以及阳性对照 succPEI。在小鼠气管内给予 mRNA 复合物后,体内验证了动态先导结构的良好体外性能。

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