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Systematic investigation of fabrication conditions of nanocarrier based on carboxymethyl chitosan for sustained release of insulin

机译:基于羧甲基壳聚糖持续释放胰岛素的纳米载波制造条件的系统研究

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pH-responsive nanoparticles (NPs) comprised of degradable carboxymethyl chitosan (CMCS) crosslinked with CaCl2 were simply prepared via ionic gelation. Fabrication conditions including insulin dosage, CMCS concentration, and crosslinking density were systematically investigated for insulin loading and release in vitro. The encapsulation efficiencies (EE), loading capacity (LC) and average size of the NPs decreased with the increasing insulin concentrations (<0.192 mg/mL), while they notably increased as the insulin dosage was above 0.192 mg/mL. When the concentration of CMCS increased from 0.5 to 2.0 mg/mL, the EE of the NPs reduced while the size of the NPs increased. We further demonstrated that crosslinking density offered a simple method for tuning the properties of the NPs towards various insulin concentrations. The mass ratio 10:5 of CMCS to CaCl2 exhibited the optimal performance at higher insulin concentration, whereas a higher crosslinking density of 10:7 (m:m) gave the optimal performance at low insulin concentration, The cumulative release of insulin from insulin loaded NPs decreased with the elevating crosslinking density. These findings not only provided a better understanding of the synthesis of CMCS NPs but also contributed to the practical applications of insulin loading and release. (C) 2017 Published by Elsevier B.V.
机译:通过离子凝胶化制备由与CaCl 2交联的可降解羧甲基壳聚糖(CMC)组成的pH响应纳米颗粒(NPS)。系统地研究了包括胰岛素剂量,CMC浓度和交联密度的制造条件,用于胰岛素载荷和体外释放。随着胰岛素浓度(<0.192mg / mL)的增加,NPS的封装效率(EE),加载能力(LC)和平均尺寸减小,而当胰岛素剂量高于0.192mg / ml时,它们显着增加。当CMC的浓度从0.5%增加到2.0mg / ml时,NPS的EE减少,而NP的尺寸增加。我们进一步证明,交联密度提供了一种简单的方法,用于调节NPS朝向各种胰岛素浓度的性质。 CMCs至CaCl2的质量比10:5在较高的胰岛素浓度下表现出最佳性能,而交联密度为10:7(M:m),在低胰岛素浓度下给出了最佳性能,胰岛素的抑制释放胰岛素随着交联密度的升高,NPS降低。这些发现不仅提供了对CMCS NPS的合成而更好地理解,而且有助于胰岛素载荷和释放的实际应用。 (c)2017年由Elsevier B.V发布。

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