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具有胆固醇脂质锚定基团的聚恶唑啉用于快速细胞内递送

Polyoxazolines with Cholesterol Lipid Anchor for Fast Intracellular Delivery.

作者信息

Simon Laurianne, Reichel Liên Sabrina, Benkhaled Belkacem Tarek, Devoisselle Jean-Marie, Catrouillet Sylvain, Eberhardt Juliane, Hoeppener Stephanie, Schubert Ulrich S, Brendel Johannes Christopher, Morille Marie, Lapinte Vincent, Traeger Anja

机构信息

ICGM, CNRS, ENSCM, Univ. Montpellier, Montpellier, France.

Laboratory of Organic and Macromolecular Chemistry (IOMC), Friedrich Schiller University Jena, Humboldtstrasse 10, 07743, Jena, Germany.

出版信息

Macromol Biosci. 2024 Dec;24(12):e2400148. doi: 10.1002/mabi.202400148. Epub 2024 Oct 7.

Abstract

Due to the increasing challenges posed by the growing immunity to poly(ethylene glycol) (PEG), there is growing interest in innovative polymer-based materials as viable alternatives. In this study, the advantages of lipids and polymers are combined to allow efficient and rapid cytoplasmic drug delivery. Specifically, poly(2-methyl-2-oxazoline) is modified with a cholesteryl hemisuccinate group as a lipid anchor (CHEMSPOx). The CHEMSPOx is additionally functionalized with a coumarin group (CHEMSPOx-coumarin). Both polymers self-assembled in water into vesicles of ≈100 nm and are successfully loaded with a hydrophobic model drug. The loaded vesicles reveal high cellular internalization across variant cell lines within 1 h at 37 °C as well as 4 °C, albeit to a lesser extent. A kinetic study confirms the fast internalization within 5 min after the sample's addition. Therefore, different internalization pathways are involved, e.g., active uptake but also nonenergy dependent mechanisms. CHEMSPOx and CHEMSPOx-coumarin further demonstrate excellent cyto-, hemo-, and membrane compatibility, as well as a membrane-protecting effect, which underlines their good safety profile for potential biological intravenous application. Overall, CHEMSPOx, as a lipopolyoxazoline, holds great potential for versatile biological applications such as fast and direct intracellular delivery or cellular lysis protection.

摘要

由于聚乙二醇(PEG)免疫性增强带来的挑战日益增加,人们对创新的聚合物基材料作为可行替代方案的兴趣与日俱增。在本研究中,脂质和聚合物的优势相结合,以实现高效快速的细胞质药物递送。具体而言,聚(2-甲基-2-恶唑啉)用胆固醇半琥珀酸酯基团作为脂质锚定物进行修饰(CHEMSPOx)。CHEMSPOx还被香豆素基团功能化(CHEMSPOx-香豆素)。两种聚合物在水中自组装成约100 nm的囊泡,并成功负载了一种疏水性模型药物。负载的囊泡在37°C以及4°C下1小时内可在多种细胞系中实现高效细胞内化,尽管程度较小。动力学研究证实了样品添加后5分钟内的快速内化。因此,涉及不同的内化途径,例如主动摄取以及非能量依赖机制。CHEMSPOx和CHEMSPOx-香豆素进一步证明了其优异的细胞、血液和膜相容性,以及膜保护作用,这突出了它们在潜在生物静脉应用中的良好安全性。总体而言,CHEMSPOx作为一种脂聚恶唑啉,在快速直接的细胞内递送或细胞裂解保护等多种生物应用中具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0dd9/11648592/b0b874b3f808/MABI-24-2400148-g001.jpg

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