Fabrication possibilities, detailed size and structural characterization of biodegradable chitosan (Chit) polysaccharide-modified hyaluronic acid (HyA)-based colloidal carriers are demonstrated. The negatively charged and highly hydrophilic HyA polymer chains have been ionically modified by positively charged pure Chit and crosslinked Chit macromolecules at various Chit/HyA weight ratios, which resulted in the formation of carrier nanoparticles (NPs) having three different nanostructures depending on the polymer concentrations. Electrostatically-compensated Chit/HyA polymer coils with loose colloidal structure, tripolyphosphate (TPP)-crosslinked Chit-TPP/HyA NPs having interpenetrating polymer network and well-defined Chit-TPPcore-HyAshell NPs with diameters of 100-300 nm were also prepared and were loaded with tocopherol (TCP) and cholecalciferol (D3) having Vitamin E and D activity, respectively. By using rheological, particle charge titration and conductivity studies we first confirmed that the expected 1:1 Chit/HyA monomer molar ratio is strongly influenced by the pH of the polymer solutions as well as the deacetylation degree of Chit which are crucial factors for the solubility, purity and the quality of the commercially available biocompatible Chit in aqueous medium. Encapsulation studies revealed that D3 could be better incorporated in every system, especially in Chit-TPP/HyA NPs, while for TCP the simple Chit/HyA polymer coils were the most promising carriers.

译文

:展示了可生物降解的壳聚糖(Chit)多糖修饰的透明质酸(HyA)基胶体载体的制备可能性,详细的尺寸和结构特征。带负电荷且亲水性高的HyA聚合物链已通过带正电荷的纯Chit和交联的Chit高分子在各种Chit / HyA重量比下进行了离子修饰,这导致形成了根据聚合物浓度具有三种不同纳米结构的载体纳米颗粒(NPs) 。还制备了具有胶体结构松散的静电补偿Chit / HyA聚合物线圈,具有互穿聚合物网络的三聚磷酸盐(TPP)交联的Chit-TPP / HyA NP和直径100-300nm的轮廓分明的Chit-TPPcore-HyAshell NP。分别装载具有维生素E和D活性的生育酚(TCP)和胆钙化固醇(D3)。通过流变,颗粒电荷滴定和电导率研究,我们首先证实预期的1:1 Chit / HyA单体摩尔比受聚合物溶液的pH值和Chit脱乙酰度的强烈影响,这是溶解度的关键因素水性介质中市售的生物相容性Chit的纯度,质量和质量。封装研究表明,D3可以更好地集成到每个系统中,尤其是在Chit-TPP / HyA NP中,而对于TCP,简单的Chit / HyA聚合物线圈是最有前途的载体。

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