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通过造粒法获得的海藻酸钠珠粒的形成与解体机制。

Mechanisms of formation and disintegration of alginate beads obtained by prilling.

作者信息

Del Gaudio Pasquale, Colombo Paolo, Colombo Gaia, Russo Paola, Sonvico Fabio

机构信息

Department of Pharmacy, University of Parma, I-43100 Parma, Italy.

出版信息

Int J Pharm. 2005 Sep 30;302(1-2):1-9. doi: 10.1016/j.ijpharm.2005.05.041.


DOI:10.1016/j.ijpharm.2005.05.041
PMID:16102925
Abstract

In this paper, compendial sodium alginate beads have been manufactured by laminar jet break-up technology. The effect of polymer concentration, viscosity and polymeric solution flow rate on the characteristics of beads was studied. Size distribution of alginate beads in the hydrated state was strongly dependent on the flow rate and viscosity of polymer solutions, since a transition from laminar jet break-up conditions to vibration-assisted dripping was observed. The re-hydration kinetics of dried beads in simulated gastric fluid (SGF) showed that the maximum swelling of beads was reached after 1-2 h, with an increase in volume of two to three times and a time lag dependent on the polymer concentration. The re-hydration swelling profiles in simulated intestinal fluid (SIF) showed no time lag and higher swelling volume; moreover, in this medium after the maximum swelling was reached, the bead structure was quickly disaggregated because of the presence in the medium of phosphate able to capture calcium ions present in the alginate gel structure.

摘要

在本文中,采用层流射流破碎技术制备了药典级海藻酸钠珠粒。研究了聚合物浓度、粘度和聚合物溶液流速对珠粒特性的影响。水合状态下海藻酸钠珠粒的尺寸分布强烈依赖于聚合物溶液的流速和粘度,因为观察到从层流射流破碎条件到振动辅助滴流的转变。干燥珠粒在模拟胃液(SGF)中的再水化动力学表明,珠粒在1-2小时后达到最大溶胀,体积增加两到三倍,且存在与聚合物浓度相关的时间滞后。模拟肠液(SIF)中的再水化溶胀曲线没有时间滞后且溶胀体积更大;此外,在该介质中达到最大溶胀后,由于介质中存在能够捕获海藻酸盐凝胶结构中钙离子的磷酸盐,珠粒结构迅速解体。

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Mechanisms of formation and disintegration of alginate beads obtained by prilling.

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