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Chitosan Cross-Linked Pentasodium Tripolyphosphate Micro/Nanoparticles Produced by Ionotropic Gelation

机译:离子凝胶法制备的壳聚糖交联三聚磷酸五钠微/纳米颗粒

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摘要

Chitosan cross-linked pentasodium tripolyphosphate particles were produced by ionotropic gelation. The aim of this study was to evaluate the influence of the molar mass and deacetylation degree of chitosan and of the concentration of pentasodium tripolyphosphate in the production of chitosan microanoparticles. The obtained charge ratio (R +/-), mean particle size, surface electrical charge, polydispersity index, and tendency of particle aggregation were selected as dependent variables. Results demonstrated that stable particles exhibited a high zeta potential value, between +62 and +68 mV. Particles were produced in different size ranges controlling the R +/- between the positively charged chitosan and negatively charged pentasodium tripolyphosphate. Chitosan microanoparticles were successfully prepared via the ionic gelation method controlling R +/-, therefore the association of an active ingredient to a microanoparticle allows the molecule to intimately interact with specific structures, to overcome barriers and to prolong its residence time in the target. Chitosan cross-linked pentasodium tripolyphosphate particles are expected to be a good approach for active ingredients formulation in the agrofood sector and related industries.
机译:壳聚糖交联的五聚磷酸五钠颗粒是通过离子凝胶法制备的。这项研究的目的是评估壳聚糖的摩尔质量和脱乙酰度以及三聚磷酸五钠的浓度对壳聚糖微/纳米颗粒生产的影响。选择所获得的电荷比(R +/-),平均粒度,表面电荷,多分散指数和颗粒聚集趋势作为因变量。结果表明,稳定的颗粒在+62至+68 mV之间显示出较高的Zeta电位值。产生了不同大小的颗粒,控制带正电荷的壳聚糖和带负电荷的三聚磷酸五钠之间的R +/-。通过控制R +/-的离子凝胶法成功制备了壳聚糖微/纳米颗粒,因此,活性成分与微/纳米颗粒的缔合使分子与特定结构紧密结合,克服了障碍并延长了其停留时间。目标。壳聚糖交联的三聚磷酸五钠五钠颗粒有望成为农业食品部门及相关行业中活性成分配制的好方法。

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