Suppr超能文献

研究核酸纳米载体的生物分布和疗效评估的 3R 体内方法:肽模拟可离子化脂质的研究。

Investigating 3R In Vivo Approaches for Bio-Distribution and Efficacy Evaluation of Nucleic Acid Nanocarriers: Studies on Peptide-Mimicking Ionizable Lipid.

机构信息

Department of Medicinal Chemistry/Department of Pharmacology, Institute of Pharmacy Martin Luther University Halle-Wittenberg, Wolfgang-Langenbeck-Str. 4, 06120, Halle (Saale), Germany.

Department of Pharmaceutics and Biopharmaceutics, University of Marburg, Robert-Koch-Str. 4, 35037, Marburg, Germany.

出版信息

Small. 2022 May;18(18):e2107768. doi: 10.1002/smll.202107768. Epub 2022 Mar 30.

Abstract

Formulations based on ionizable amino-lipids have been put into focus as nucleic acid delivery systems. Recently, the in vitro efficacy of the lipid formulation OH4:DOPE has been explored. However, in vitro performance of nanomedicines cannot correctly predict in vivo efficacy, thereby considerably limiting pre-clinical translation. This is further exacerbated by limited access to mammalian models. The present work proposes to close this gap by investigating in vivo nucleic acid delivery within simpler models, but which still offers physiologically complex environments and also adheres to the 3R guidelines (replace/reduce/refine) to improve animal experiments. The efficacy of OH4:DOPE as a delivery system for nucleic acids is demonstrated using in vivo approaches. It is shown that the formulation is able to transfect complex tissues using the chicken chorioallantoic membrane model. The efficacy of DNA and mRNA lipoplexes is tested extensively in the zebra fish (Danio rerio) embryo which allows the screening of biodistribution and transfection efficiency. Effective transfection of blood vessel endothelial cells is seen, especially in the endocardium. Both model systems allow an efficacy screening according to the 3R guidelines bypassing the in vitro-in vivo gap. Pilot studies in mice are performed to correlate the efficacy of in vivo transfection.

摘要

基于可离子化氨基酸脂质的制剂已成为核酸传递系统的焦点。最近,研究了脂质制剂 OH4:DOPE 的体外功效。然而,纳米药物的体外性能不能正确预测体内疗效,从而极大地限制了临床前转化。这进一步加剧了获得哺乳动物模型的限制。本工作通过研究更简单的模型中的体内核酸传递来弥补这一差距,但这些模型仍提供生理复杂的环境,并且还符合 3R 准则(替代/减少/优化),以改进动物实验。使用体内方法证明了 OH4:DOPE 作为核酸传递系统的功效。结果表明,该制剂能够使用鸡胚绒毛尿囊膜模型转染复杂组织。在斑马鱼(Danio rerio)胚胎中广泛测试了 DNA 和 mRNA 脂质体的功效,这允许筛选生物分布和转染效率。可以看到血管内皮细胞的有效转染,特别是在心内膜。这两个模型系统都允许根据 3R 准则进行功效筛选,从而避免了体外-体内差距。在小鼠中进行了初步研究,以关联体内转染的功效。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验