Comparison of tyrosine-modified low molecular weight branched and linear polyethylenimines for siRNA delivery.

IF 3.6 3区 医学 Q3 NANOSCIENCE & NANOTECHNOLOGY Nanotoxicology Pub Date : 2022-11-01 DOI:10.1080/17435390.2022.2159891
Małgorzata Kubczak, Sylwia Michlewska, Michael Karimov, Alexander Ewe, Achim Aigner, Maria Bryszewska, Maksim Ionov
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Abstract

Polyethylenimines (PEIs) have been previously introduced for siRNA delivery. In particular, in the case of higher molecular weight PEIs, this is associated with toxicity, while low molecular weight PEIs are often insufficient for siRNA complexation. The tyrosine-modification of PEIs has been shown to enhance PEI efficacy and biocompatibility. This paper evaluates a set of tyrosine-modified low molecular weight linear or branched polyethylenimines as efficient carriers of siRNA. Complexation efficacies and biophysical complex properties were analyzed by zeta potential, dynamic light scattering and circular dichroism measurements as well as gel electrophoresis. Biological knockdown was studied in 2 D cell culture and 3 D ex vivo tissue slice air-liquid interface culture. The results demonstrate that siRNAs were able to form stable complexes with all tested polymers. Complexation was able to protect siRNA from degradation by RNase and to mediate target gene knockdown, as determined on the mRNA level and in PC3-Luc3/EGFP and HCT116-Luc3/EGFP expressing reporter cells on the protein level, using flow cytometry and confocal microscopy. The direct comparison of the studied polymers revealed differences in biological efficacies. Moreover, the tyrosine-modified PEIs showed high biocompatibility, as determined by LDH release and mitochondria integrity (J-aggregate assay) as well as caspase 3/7 (apoptosis) and H2O2 levels (ROS). In 3 D tissue slices, complexes based on LP10Y proved to be most efficient, by combining tissue penetration with efficient gene expression knockdown.

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酪氨酸修饰的低分子量支链聚乙烯亚胺与线性聚乙烯亚胺递送siRNA的比较。
聚乙烯亚胺(pei)先前已被引入siRNA递送。特别是,在高分子量PEIs的情况下,这与毒性有关,而低分子量PEIs通常不足以进行siRNA络合。酪氨酸修饰PEI已被证明可以提高PEI的疗效和生物相容性。本文评价了一组酪氨酸修饰的低分子量线性或支化聚乙烯亚胺作为siRNA的有效载体。通过zeta电位、动态光散射和圆二色性测量以及凝胶电泳分析了络合效果和生物物理配合物性质。在二维细胞培养和三维离体组织切片气液界面培养中研究了生物敲除。结果表明,sirna能够与所有测试的聚合物形成稳定的配合物。通过流式细胞术和共聚焦显微镜,在mRNA水平和蛋白水平上表达PC3-Luc3/EGFP和HCT116-Luc3/EGFP的报告细胞中发现,络合能够保护siRNA不被RNase降解,并介导靶基因敲低。所研究的聚合物的直接比较揭示了生物功效的差异。此外,通过乳酸脱氢酶(LDH)释放、线粒体完整性(j聚集试验)、caspase 3/7(凋亡)和H2O2水平(ROS)检测,酪氨酸修饰的PEIs具有较高的生物相容性。在3d组织切片中,基于LP10Y的复合物通过结合组织渗透和有效的基因表达敲除被证明是最有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Nanotoxicology
Nanotoxicology 医学-毒理学
CiteScore
10.10
自引率
4.00%
发文量
45
审稿时长
3.5 months
期刊介绍: Nanotoxicology invites contributions addressing research relating to the potential for human and environmental exposure, hazard and risk associated with the use and development of nano-structured materials. In this context, the term nano-structured materials has a broad definition, including ‘materials with at least one dimension in the nanometer size range’. These nanomaterials range from nanoparticles and nanomedicines, to nano-surfaces of larger materials and composite materials. The range of nanomaterials in use and under development is extremely diverse, so this journal includes a range of materials generated for purposeful delivery into the body (food, medicines, diagnostics and prosthetics), to consumer products (e.g. paints, cosmetics, electronics and clothing), and particles designed for environmental applications (e.g. remediation). It is the nano-size range if these materials which unifies them and defines the scope of Nanotoxicology . While the term ‘toxicology’ indicates risk, the journal Nanotoxicology also aims to encompass studies that enhance safety during the production, use and disposal of nanomaterials. Well-controlled studies demonstrating a lack of exposure, hazard or risk associated with nanomaterials, or studies aiming to improve biocompatibility are welcomed and encouraged, as such studies will lead to an advancement of nanotechnology. Furthermore, many nanoparticles are developed with the intention to improve human health (e.g. antimicrobial agents), and again, such articles are encouraged. In order to promote quality, Nanotoxicology will prioritise publications that have demonstrated characterisation of the nanomaterials investigated.
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