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超声辅助制备具有油核的透明质酸基纳米胶囊

Ultrasound-Assisted Preparation of Hyaluronic Acid-Based Nanocapsules with an Oil Core.

作者信息

Rajtar Natan, Łazarski Grzegorz, Foryś Aleksander, Otulakowski Łukasz, Trzebicka Barbara, Jamróz Dorota, Kepczynski Mariusz

机构信息

Faculty of Chemistry, Jagiellonian University, Gronostajowa 2, 30-386 Kraków, Poland.

Doctoral School of Exact and Natural Sciences, Jagiellonian University, Prof. S. Łojasiewicza 11, 30-348 Krakow, Poland.

出版信息

Materials (Basel). 2024 Sep 14;17(18):4524. doi: 10.3390/ma17184524.

Abstract

Liquid-core nanocapsules (NCs) coated with amphiphilic hyaluronic acid (AmHA) have been proposed for the preparation of drug and food formulations. Herein, we focused on the use of ultrasound techniques to (i) optimize the polysaccharide chain length with respect to the properties of NCs stabilized with AmHAs and (ii) form oil-core nanocapsules with a coating composed of AmHAs. The results indicate that sonication is a convenient and effective method that allows for a controlled reduction in HA molecular weight. The initial (H-HA) and degraded (L-HA) polysaccharides were then reacted with dodecylamine to obtain hydrophobic HA derivatives (HA-C12s). Then, NCs were prepared based on HA-C12s using ultrasound-assisted emulsification of glyceryl triacetate oil. The nanocapsules coated with L-HA-C12 showed greater stability compared to the longer-chain polysaccharide. Molecular dynamics (MD) simulations revealed that HA-C12 readily adsorbs at the water-oil interphase, adopting a more compact conformation compared to that in the aqueous phase. The dodecyl groups are immersed in the oil droplet, while the main polysaccharide chain remaining in the aqueous phase forms hydrogen bonds or water bridges with the polar part of the triglycerides, thus increasing the stability of the NC. Our research underscores the usefulness of ultrasound technology in preparing suitable formulations of bioactive substances.

摘要

已有人提出用两亲性透明质酸(AmHA)包被的液芯纳米胶囊(NCs)来制备药物和食品制剂。在此,我们着重于利用超声技术:(i)根据用AmHAs稳定的NCs的性质优化多糖链长度;(ii)形成由AmHAs组成包衣的油芯纳米胶囊。结果表明,超声处理是一种方便有效的方法,可实现对HA分子量的可控降低。然后使初始的(H-HA)和降解的(L-HA)多糖与十二烷基胺反应,以获得疏水性HA衍生物(HA-C12s)。接着,基于HA-C12s,利用三乙酸甘油酯油的超声辅助乳化制备NCs。与长链多糖相比,用L-HA-C12包被的纳米胶囊表现出更高的稳定性。分子动力学(MD)模拟表明,HA-C12易于吸附在水-油界面,与在水相中相比,其构象更紧凑。十二烷基基团浸入油滴中,而留在水相中的主要多糖链与甘油三酯的极性部分形成氢键或水桥,从而提高了NC的稳定性。我们的研究强调了超声技术在制备合适的生物活性物质制剂方面的实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07d0/11433493/9a9e862ec609/materials-17-04524-g001.jpg

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