...
首页> 外文期刊>Acta biomaterialia >Interaction of cruciferin-based nanoparticles with Caco-2 cells and Caco-2/HT29-MTX co-cultures
【24h】

Interaction of cruciferin-based nanoparticles with Caco-2 cells and Caco-2/HT29-MTX co-cultures

机译:基于Caco-2细胞和Caco-2 / HT29-MTX共培养物的十字花素纳米粒子的相互作用

获取原文
获取原文并翻译 | 示例

摘要

Graphical abstract Display Omitted Abstract The objective of this work was to assess the potential of Cruciferin/Calcium (Cru/Ca) and Cruciferin/Chitosan (Cru/Cs) nanoparticles for oral drug delivery. For this purpose, Cru/Ca and Cru/Cs nanoparticles were developed through cold gelation of Cruciferin, a major canola protein, and in interaction with calcium and chitosan, respectively. The extent and rate of particle uptake in Caco-2 cells and Caco-2/HT29 co-culture was then evaluated by fluorescence spectroscopy as well as flow cytometry. Through pre-incubation of Caco-2 cell monolayer with specific endocytosis inhibitors, the mechanism of cell uptake was investigated. Our results showed that the uptake of negatively-charged Cru/Ca particles to be ~3 times higher than positively-charged Cru/Cs ones by Caco-2 cells. Presence of mucus secreted by HT29 cells in their co-culture with Caco-2 had negligible influence on the uptake and transport of both particles. In contrast to Cru/Ca particles which were dissociated in the simulated gastrointestinal conditions, digestion of Cru/Cs particles resulted in 6- and 2-fold increase in the cellular uptake and transport of encapsulated coumarin in the latter particles, respectively. While the presence of mucus in Caco-2/HT29 co-culture caused 40–50% decrease of cellular uptake and transport for coumarin encapsulated in digested Cru/Cs particles, it had no significant effect on the cell uptake and transport of coumarin associated with Cru/Ca particles after digestion. Energy-dependent mechanisms were the dominant mechanism for uptake of both undigested and digested particles. Therefore, in Caco-2/HT29 co-culture which closely simulated intestinal epithelial cells, undigested Cru/Ca and Cru/Cs particles had the ability to penetrate mucus layers, while digested Cru/Cs particles showed mucoadhesive property, and digested Cru/Ca particles were dissociated. Our results points to a potential for cruciferin based nanoparticles for oral drug delivery. Statement of Significance The long-term objective of this research is to investigate the potential of edible and safe biopolymer in enhanced oral delivery of drugs and/or vaccines. Here, we investigated the potential application of nanoparticles based on a protein extracted from Canola seeds, i.e., cruciferin, for oral delivery of a model small molecule, i.e., coumarin, through cells representing gastrointestinal epithelium, Caco-2 and Caco-2/HT29 cell monolayer. This study was completed for intact cruciferin nanoparticles and cruciferin coated chitosan nanoparticles, before and after digestion with gastric or intestine simulating fluids. This comparison was useful to understand the fate the cruciferin based particles in digestive mucosal tissues and their potential mucoadhesive and/or mucus-penetrating property.
机译:图形摘要显示省略了本工作的目的是评估十字花蛋白/钙(CRU / CA)和十字花蛋白/壳聚糖(CRU / CS)纳米粒子的口服药物递送的潜力。为此目的,Cru / Ca和Cru / Cs纳米颗粒通过Cruciferin,主要的CALOLA蛋白,以及与钙和壳聚糖的相互作用。然后通过荧光光谱和流式细胞术评估CaCO-2细胞和Caco-2 / HT29共培养中的颗粒摄取的程度和速率。通过对具有特异性内吞作用抑制剂的Caco-2细胞单层的预孵育,研究了细胞吸收的机制。我们的研究结果表明,带负电的CRU / Ca颗粒的摄取为Caco-2细胞比带正电荷的CRU / CS〜3倍。 HT29细胞在其与Caco-2的共同培养中分泌的粘液的存在对于两种颗粒的摄取和运输有忽略不计。与在模拟的胃肠条件下解离的Cru / Ca颗粒相反,CRU / CS颗粒的消化产生了后一种颗粒中的蜂窝摄取和包封的香豆素的蜂窝摄取和运输的6-和2倍。虽然Caco-2 / HT29共同培养中粘液的存在引起了40-50%的细胞摄取和封装在消化的CRU / CS颗粒中的运输减少,但对与...相关的香豆素的传输没有显着影响消化后Cru / Ca颗粒。能量依赖机制是吸收未消化和消化颗粒的主要机制。因此,在密切地模拟肠上皮细胞的CaCo-2 / HT29共培养中,未消化的CRU / CA和CRU / CS颗粒具有渗透粘液层的能力,而消化的CRU / CS颗粒显示出粘膜粘附性,并消化CRU / CA颗粒被解离。我们的结果指出了基于十字花蛋白酶的纳米粒子的口服药物递送的潜力。重要性陈述本研究的长期目标是探讨可食用和安全生物聚合物的潜力,增强药物和/或疫苗的口服递送。在这里,我们研究了纳米颗粒的潜在应用,基于从CANOLA种子,即十字花蛋白,用于口服递送模型小分子,即香豆素,通过代表胃肠上皮,Caco-2和Caco-2 / HT29的细胞进行口服递送的蛋白质细胞单层。本研究完成为完整的十字花蛋白纳米粒子和十字花蛋白涂覆的壳聚糖纳米粒子,在用胃或肠道模拟流体消化之前和之后。这种比较可用于理解生物粘膜组织中的FALE基于Cruciferin基颗粒及其潜在的粘膜粘附和/或粘液穿透性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

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