用于通过点击反应亲和吸附低密度脂蛋白的阴离子糖基化聚砜膜
Anionic glycosylated polysulfone membranes for the affinity adsorption of low-density lipoprotein via click reactions.
作者信息
Fang Fei, Zhu Xue-Yan, Chen Chen, Li Jing, Chen Da-Jing, Huang Xiao-Jun
机构信息
MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310027, China.
College of Biomedical Engineering and Instrument Science, Zhejiang University, Hangzhou 310027, China.
出版信息
Acta Biomater. 2017 Feb;49:379-387. doi: 10.1016/j.actbio.2016.11.050. Epub 2016 Nov 21.
UNLABELLED
An anionic glycosylated polysulfone (PSf) membrane was prepared as a high-affinity adsorbent for low-density lipoprotein (LDL). The UV-induced grafting of acrylic acid to the membrane was followed by amidation and a 'thiol-yne' click reaction to achieve glycosylation and sulfonation. Membrane modification was confirmed by attenuated total reflectance-Fourier transform infrared spectroscopy and X-ray photoelectron spectroscopy. These tests revealed that the chemical compositions of the membranes' surfaces were easily regulated by controlling the 'thiol-yne' click reaction through the feed ratio of 2,3,4,6-tetra-O-acetyl-1-thio-β-d-glucopyranose and sodium 3-mercapto-1-propanesulfonate. LDL adsorption and desorption rates were estimated using an enzyme-linked-immunosorbent assay, which revealed that the obtained anionic glycosylated PSf membrane had a higher affinity for LDL than either glycosylated or sulfonated membranes alone. The combination of glycosyl and sulfonyl groups enhanced the membranes' affinities for LDL. The modified PSf membrane had an excellent biocompatibility and adsorbed a large amount of LDL, making it a promising material for LDL apheresis.
STATEMENT OF SIGNIFICANCE
Low-density lipoprotein (LDL) adsorbents normally contain negative charged ligand to induce electrostatic interaction with the positively charged regions of LDL. Furthermore, saccharide is another common component which share in most of the LDL-adsorbents and the LDL-receptor (LDLR). Such structural similarity impels us to investigate the synergistic effect of anionic and saccharide on LDL recognition. For this purpose, an anionic glycosylated membrane of which surface composition can be controlled by click reaction with mutable glycosyl/sulfonyl ratios was prepared. The obtained membrane showed better LDL adsorption/desorption property and the adsorption amount for LDL at an optimum feed ratio. This finding highlights the role of synergistic effect of anionic and saccharide, which offer a new strategy for designing LDL adsorbent with high efficiency.
未标记
制备了一种阴离子糖基化聚砜(PSf)膜作为低密度脂蛋白(LDL)的高亲和力吸附剂。通过紫外线诱导丙烯酸接枝到膜上,然后进行酰胺化和“硫醇-炔”点击反应以实现糖基化和磺化。通过衰减全反射傅里叶变换红外光谱和X射线光电子能谱确认膜的改性。这些测试表明,通过控制2,3,4,6-四-O-乙酰基-1-硫代-β-D-吡喃葡萄糖和3-巯基-1-丙烷磺酸钠的进料比来控制“硫醇-炔”点击反应,可以轻松调节膜表面的化学成分。使用酶联免疫吸附测定法估计LDL的吸附和解吸速率,结果表明,所获得的阴离子糖基化PSf膜对LDL的亲和力高于单独的糖基化或磺化膜。糖基和磺酰基的组合增强了膜对LDL的亲和力。改性PSf膜具有优异的生物相容性,并吸附了大量LDL,使其成为用于LDL血液成分分离术的有前途的材料。
意义声明
低密度脂蛋白(LDL)吸附剂通常含有带负电荷的配体,以诱导与LDL带正电荷区域的静电相互作用。此外,糖类是大多数LDL吸附剂和LDL受体(LDLR)中另一个常见成分。这种结构相似性促使我们研究阴离子和糖类对LDL识别的协同作用。为此,制备了一种阴离子糖基化膜,其表面组成可通过与可变糖基/磺酰基比率的点击反应来控制。所获得的膜表现出更好的LDL吸附/解吸性能,并且在最佳进料比下对LDL的吸附量更高。这一发现突出了阴离子和糖类协同作用的作用,为设计高效LDL吸附剂提供了新策略。