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Polysarcosine-Based Lipids: From Lipopolypeptoid Micelles to Stealth-Like Lipids in Langmuir Blodgett Monolayers

机译:基于聚肌氨酸的脂质:从脂多糖类胶束到Langmuir Blodgett单分子膜中的类似类脂的脂质

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摘要

Amphiphiles and, in particular, PEGylated lipids or alkyl ethers represent an important class of non-ionic surfactants and have become key ingredients for long-circulating (“stealth”) liposomes. While poly-(ethylene glycol) (PEG) can be considered the gold standard for stealth-like materials, it is known to be neither a bio-based nor biodegradable material. In contrast to PEG, polysarcosine (PSar) is based on the endogenous amino acid sarcosine (N-methylated glycine), but has also demonstrated stealth-like properties in vitro, as well as in vivo. In this respect, we report on the synthesis and characterization of polysarcosine based lipids with C14 and C18 hydrocarbon chains and their end group functionalization. Size exclusion chromatography (SEC) and matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) analysis reveals that lipopeptoids with a degree of polymerization between 10 and 100, dispersity indices around 1.1, and the absence of detectable side products are directly accessible by nucleophilic ring opening polymerization (ROP). The values for the critical micelle concentration for these lipopolymers are between 27 and 1181 mg/L for the ones with C18 hydrocarbon chain or even higher for the C14 counterparts. The lipopolypeptoid based micelles have hydrodynamic diameters between 10 and 25 nm, in which the size scales with the length of the PSar block. In addition, C18PSar50 can be incorporated in 1,2-distearoyl-sn-glycero-3-phosphocholine (DSPC) monolayers up to a polymer content of 3%. Cyclic compression and expansion of the monolayer showed no significant loss of polymer, indicating a stable monolayer. Therefore, lipopolypeptoids can not only be synthesized under living conditions, but my also provide a platform to substitute PEG-based lipopolymers as excipients and/or in lipid formulations.
机译:两亲物,尤其是聚乙二醇化脂质或烷基醚代表了一类重要的非离子表面活性剂,并已成为长循环(“隐身”)脂质体的关键成分。尽管聚乙二醇(PEG)可以被视为隐形材料的金标准,但它既不是生物基材料也不是可生物降解材料。与PEG相比,聚肌氨酸(PSar)基于内源性氨基酸肌氨酸(N-甲基化甘氨酸),但在体外和体内也表现出隐身性。在这方面,我们报道了具有C14和C18烃链的基于聚肌氨酸的脂质的合成和表征及其端基功能化。尺寸排阻色谱(SEC)和基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF MS)分析显示脂肽类化合物的聚合度为10至100,分散指数为1.1,并且没有可检测的副产物可通过亲核开环聚合(ROP)直接获得。这些脂聚合物的临界胶束浓度值在具有C18烃链的脂聚合物中为27到1181 mg / L,对于C14对应物甚至更高。基于脂多糖的胶束的流体力学直径在10到25 nm之间,其中尺寸随PSar嵌段的长度成比例。此外,C18PSar50可以掺入1,2-二硬脂酰基-sn-甘油-3-磷酸胆碱(DSPC)单层中,聚合物含量最高为3%。单层的循环压缩和膨胀显示聚合物没有明显损失,表明稳定的单层。因此,脂类多肽不仅可以在生活条件下合成,而且还提供了一个平台来替代基于PEG的脂聚合物作为赋形剂和/或脂质制剂。

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