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麦芽糖修饰的聚(丙交酯-乙交酯)树枝状大分子与脂质模型膜之间的相互作用研究

Interaction study between maltose-modified PPI dendrimers and lipidic model membranes.

作者信息

Wrobel Dominika, Appelhans Dietmar, Signorelli Marco, Wiesner Brigitte, Fessas Dimitrios, Scheler Ulrich, Voit Brigitte, Maly Jan

机构信息

Department of Biology, Jan Evangelista Purkinje University, Usti nad Labem, Czech Republic.

Leibniz-Institut für Polymerforschung Dresden e.V., Hohe Straße 6, 01069 Dresden, Germany.

出版信息

Biochim Biophys Acta. 2015 Jul;1848(7):1490-501. doi: 10.1016/j.bbamem.2015.03.033. Epub 2015 Apr 3.

Abstract

The influence of maltose-modified poly(propylene imine) (PPI) dendrimers on dimyristoylphosphatidylcholine (DMPC) or dimyristoylphosphatidylcholine/dimyristoylphosphatidylglycerol (DMPC/DMPG) (3%) liposomes was studied. Fourth generation (G4) PPI dendrimers with primary amino surface groups were partially (open shell glycodendrimers - OS) or completely (dense shell glycodendrimers - DS) modified with maltose residues. As a model membrane, two types of 100nm diameter liposomes were used to observe differences in the interactions between neutral DMPC and negatively charged DMPC/DMPG bilayers. Interactions were studied using fluorescence spectroscopy to evaluate the membrane fluidity of both the hydrophobic and hydrophilic parts of the lipid bilayer and using differential scanning calorimetry to investigate thermodynamic parameter changes. Pulsed-filed gradient NMR experiments were carried out to evaluate common diffusion coefficient of DMPG and DS PPI in D2O when using below critical micelle concentration of DMPG. Both OS and DS PPI G4 dendrimers show interactions with liposomes. Neutral DS dendrimers exhibit stronger changes in membrane fluidity compared to OS dendrimers. The bilayer structure seems more rigid in the case of anionic DMPC/DMPG liposomes in comparison to pure and neutral DMPC liposomes. Generally, interactions of dendrimers with anionic DMPC/DMPG and neutral DMPC liposomes were at the same level. Higher concentrations of positively charged OS dendrimers induced the aggregation process with negatively charged liposomes. For all types of experiments, the presence of NaCl decreased the strength of the interactions between glycodendrimers and liposomes. Based on NMR diffusion experiments we suggest that apart from electrostatic interactions for OS PPI hydrogen bonds play a major role in maltose-modified PPI dendrimer interactions with anionic and neutral model membranes where a contact surface is needed for undergoing multiple H-bond interactions between maltose shell of glycodendrimers and surface membrane of liposome.

摘要

研究了麦芽糖修饰的聚(丙烯亚胺)(PPI)树枝状大分子对二肉豆蔻酰磷脂酰胆碱(DMPC)或二肉豆蔻酰磷脂酰胆碱/二肉豆蔻酰磷脂酰甘油(DMPC/DMPG)(3%)脂质体的影响。具有伯氨基表面基团的第四代(G4)PPI树枝状大分子用麦芽糖残基进行了部分修饰(开壳糖树枝状大分子 - OS)或完全修饰(密壳糖树枝状大分子 - DS)。作为模型膜,使用了两种直径为100nm的脂质体来观察中性DMPC和带负电荷的DMPC/DMPG双层之间相互作用的差异。使用荧光光谱法研究相互作用以评估脂质双层疏水和亲水部分的膜流动性,并使用差示扫描量热法研究热力学参数变化。当使用低于DMPG临界胶束浓度时,进行脉冲场梯度NMR实验以评估DMPG和DS PPI在D2O中的共同扩散系数。OS和DS PPI G4树枝状大分子均显示与脂质体有相互作用。与OS树枝状大分子相比,中性DS树枝状大分子在膜流动性方面表现出更强的变化。与纯中性DMPC脂质体相比,阴离子DMPC/DMPG脂质体的双层结构似乎更刚性。一般来说,树枝状大分子与阴离子DMPC/DMPG和中性DMPC脂质体的相互作用处于同一水平。较高浓度的带正电荷的OS树枝状大分子会诱导与带负电荷的脂质体发生聚集过程。对于所有类型的实验,NaCl的存在降低了糖树枝状大分子与脂质体之间相互作用的强度。基于NMR扩散实验,我们认为除了静电相互作用外,对于OS PPI,氢键在麦芽糖修饰的PPI树枝状大分子与阴离子和中性模型膜的相互作用中起主要作用,在这种相互作用中,糖树枝状大分子的麦芽糖壳与脂质体表面膜之间需要接触表面以进行多个氢键相互作用。

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