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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Formation and dissolution of chitosan/pyrophosphate nanoparticles: Is the ionic crosslinking of chitosan reversible?
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Formation and dissolution of chitosan/pyrophosphate nanoparticles: Is the ionic crosslinking of chitosan reversible?

机译:壳聚糖/焦磷酸盐纳米颗粒的形成和溶解:壳聚糖的离子交联是否可逆?

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摘要

Ionically crosslinked chitosan particles with submicron dimensions attract widespread interest as materials for controlled release. To this end, we have examined the formation and dissolution of nanoparticles prepared by crosslinking chitosan with pyrophosphate (PPi). The formation of these particles required a critical PPi concentration (which increased with the chitosan concentration), and their z-average hydrodynamic diameters could be predictably tuned from roughly 60 to 220 nm by varying the concentration of the parent chitosan solutions. Unlike the nanoparticles crosslinked with the commonly used tripolyphosphate (TPP), which coagulated and precipitated when TPP was in excess, the chitosan/PPi nanoparticles remained colloidally stable even at high PPi concentrations. Moreover, the analysis of their dissolution revealed hysteresis in the particle formation/dissolution cycle, where portions of the crosslinked chitosan/PPi complexes remained stably intact at PPi concentrations below those required for their formation. This irreversible behavior was surmised to reflect the cooperativity of chitosan/PPi binding and was qualitatively modeled using the Bragg-Williams theory.
机译:具有亚微米尺寸的离子交联的壳聚糖颗粒作为控制释放的材料引起了广泛的关注。为此,我们研究了通过将壳聚糖与焦磷酸盐(PPi)交联制备的纳米颗粒的形成和溶解。这些颗粒的形成需要临界PPi浓度(随壳聚糖浓度的增加而增加),通过改变母体壳聚糖溶液的浓度,可以预测其z平均流体动力学直径从约60 nm调整到220 nm。与通常使用的三聚磷酸盐(TPP)交联的纳米颗粒不同(TPP过量时会聚结并沉淀),壳聚糖/ PPi纳米颗粒即使在高PPi浓度下也保持胶体稳定。此外,对它们的溶解的分析显示了颗粒形成/溶解循环中的滞后现象,其中部分交联的壳聚糖/ PPi复合物在低于其形成所需的PPi浓度下仍保持完整。据推测,这种不可逆的行为反映了壳聚糖/ PPi结合的协同作用,并使用Bragg-Williams理论进行了定性建模。

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