首页> 美国卫生研究院文献>Nanomaterials >The Influence of Polysaccharide Coating on the Physicochemical Parameters and Cytotoxicity of Silica Nanoparticles for Hydrophilic Biomolecules Delivery
【2h】

The Influence of Polysaccharide Coating on the Physicochemical Parameters and Cytotoxicity of Silica Nanoparticles for Hydrophilic Biomolecules Delivery

机译:多糖涂层对亲水性生物分子二氧化硅纳米粒子的理化参数和细胞毒性的影响

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

The present work reports the effect of polysaccharides (chitosan and sodium alginate) on silica nanoparticles (SiNP) for hydrophilic molecules delivery taking insulin as model drug. The influence of tetraethyl orthosilicate (TEOS) and homogenization speed on SiNP properties was assessed by a 22 factorial design achieving as optimal parameters: 0.43 mol/L of TEOS and homogenization speed of 5000 rpm. SiNP mean particle size (Z-Ave) was of 256.6 nm and polydispersity index (PI) of 0.218. SiNP coated with chitosan (SiNP-CH) or sodium alginate (SiNP-SA) increased insulin association efficacy; reaching 84.6% (SiNP-SA) and 90.8% (SiNP-CH). However, coated SiNP released 50–60% of the peptide during the first 45 min at acidic environment, while uncoated SiNP only released ~30%. Similar results were obtained at pH 6.8. The low Akaike’s (AIC) values indicated that drug release followed Peppas model for SiNP-SA and second order for uncoated SiNP and SiNP-CH (pH 2.0). At pH 6.8, the best fitting was Boltzmann for Ins-SiNP. However, SiNP-CH and SiNP-SA showed a first-order behavior. Cytotoxicity of nanoparticles, assessed in Caco-2 and HepG2 cells, showed that 100 to 500 µg/mL SiNP-CH and SiNP-SA slightly decreased cell viability, comparing with SiNP. In conclusion, coating SiNP with selected polysaccharides influenced the nanoparticles physicochemical properties, the insulin release, and the effect of these nanoparticles on cell viability.
机译:本工作报道了以胰岛素为模型药物的多糖(壳聚糖和藻酸钠)对二氧化硅纳米颗粒(SiNP)的亲水性分子传递的影响。通过2 2 析因设计评估原硅酸四乙酯(TEOS)和均质化速度对SiNP性能的影响,该设计达到了最佳参数:0.43 mol / L TEOS和均质化速度为5,000 rpm。 SiNP的平均粒径(Z-Ave)为256.6 nm,多分散指数(PI)为0.218。壳聚糖(SiNP-CH)或藻酸钠(SiNP-SA)包覆的SiNP可提高胰岛素缔合功效;达到84.6%(SiNP-SA)和90.8%(SiNP-CH)。但是,在酸性环境下的前45分钟内,包被的SiNP释放肽的50–60%,而未包被的SiNP仅释放〜30%。在pH 6.8下获得了相似的结果。低的Akaike(AIC)值表明,SiNP-SA的药物释放遵循Peppas模型,未涂覆的SiNP和SiNP-CH(pH 2.0)则遵循二阶方程。在pH 6.8时,最适合Ins-SiNP的是Boltzmann。但是,SiNP-CH和SiNP-SA表现出一阶行为。在Caco-2和HepG2细胞中评估的纳米颗粒的细胞毒性表明,与SiNP相比,100至500μg/ mL的SiNP-CH和SiNP-SA略微降低了细胞活力。总之,用选定的多糖包被SiNP会影响纳米颗粒的理化性质,胰岛素释放以及这些纳米颗粒对细胞生存力的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号