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基于生物灵感的多糖衍生物,具有高效稳定的硅基器件润滑性能。

Bioinspired Polysaccharide Derivative with Efficient and Stable Lubrication for Silicon-Based Devices.

机构信息

State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, China.

State Key Laboratory of Applied Organic Chemistry, Lanzhou University, Lanzhou 730000, China.

出版信息

Biomacromolecules. 2022 Sep 12;23(9):3766-3778. doi: 10.1021/acs.biomac.2c00640. Epub 2022 Aug 18.

Abstract

It is becoming increasingly important to synthesize efficient biomacromolecule lubricants suitable for medical devices. Even though the development of biomimetic lubricants has made great progress, the current system suitable for hydrophobic silicone-based medical devices is highly limited. In this work, we synthesize one kind of novel polysaccharide-derived macromolecule lubricant of chitosan (CS) grafted polyethylene glycol (PEG) chains and catechol groups (CT) (CS-g-PEG-g-CT). CS-g-PEG-g-CT shows good adsorption ability by applying quantitative analysis of quartz crystal microbalance (QCM), attenuated total reflectance-Fourier transform infrared spectroscopy (ATR-FTIR), and confocal fluorescence imaging technique, as well as the typical shear-thinning feature. CS-g-PEG-g-CT exhibits low and stable coefficients of friction (COFs) (0.01-0.02) on polydimethylsiloxane (PDMS) surfaces at a wide range of mass concentrations in diverse media including pure water, physiological saline, and PBS buffer solution and is even tolerant to various normal loads and sliding frequencies for complex pressurizing or shearing environments. Subsequently, systematic surface characterizations are used to verify the dynamic attachment ability of the CS-g-PEG-g-CT lubricant on the loading/shearing process. The lubrication mechanism of CS-g-PEG-g-CT can be attributed to the synergy of strong adsorption from catechol groups to form a uniform assembly layer, excellent hydration effect from PEG chains, and typical shear-thinning feature to dissipate viscous resistance. Surprisingly, CS-g-PEG-g-CT exhibits efficient lubricity on silicone-based commercial contact lenses and catheters. The current macromolecule lubricant demonstrates great real application potential in the fields of medical devices and disease treatments.

摘要

合成适用于医疗器械的高效生物大分子润滑剂变得越来越重要。尽管仿生润滑剂的发展已经取得了很大的进展,但目前适用于疏水性硅基医疗器械的系统仍然非常有限。在这项工作中,我们合成了一种新型多糖衍生的大分子润滑剂壳聚糖(CS)接枝聚乙二醇(PEG)链和儿茶酚基团(CT)(CS-g-PEG-g-CT)。通过定量分析石英晶体微天平(QCM)、衰减全反射傅里叶变换红外光谱(ATR-FTIR)和共聚焦荧光成像技术,以及典型的剪切稀化特性,CS-g-PEG-g-CT 表现出良好的吸附能力。CS-g-PEG-g-CT 在聚二甲基硅氧烷(PDMS)表面上表现出低而稳定的摩擦系数(COFs)(0.01-0.02),在包括纯水、生理盐水和 PBS 缓冲溶液在内的多种介质中,其质量浓度范围很宽,甚至可以耐受各种复杂加压或剪切环境下的正常负载和滑动频率。随后,系统的表面特性分析用于验证 CS-g-PEG-g-CT 润滑剂在加载/剪切过程中的动态附着能力。CS-g-PEG-g-CT 的润滑机制可以归因于儿茶酚基团的强吸附形成均匀的组装层、PEG 链的优异水合作用以及典型的剪切稀化特性以耗散粘性阻力的协同作用。令人惊讶的是,CS-g-PEG-g-CT 对基于硅的商业隐形眼镜和导管表现出有效的润滑性。目前的大分子润滑剂在医疗器械和疾病治疗领域具有巨大的实际应用潜力。

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