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首页> 外文期刊>ACS Omega >Real-Time Label-Free Targeting Assessment and in Vitro Characterization of Curcumin-Loaded Poly-lactic-co-glycolic Acid Nanoparticles for Oral Colon Targeting
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Real-Time Label-Free Targeting Assessment and in Vitro Characterization of Curcumin-Loaded Poly-lactic-co-glycolic Acid Nanoparticles for Oral Colon Targeting

机译:实时无标记靶向评估和姜黄素负载的聚乳酸-乙醇酸纳米粒子的口服结肠靶向体外表征。

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The exploitation of curcumin for oral disease treatment is limited by its low solubility, poor bioavailability, and low stability. Surface-functionalized poly-lactic-co-glycolic acid (PLGA) nanoparticles (NPs) have shown promising results to ameliorate selective delivery of drugs to the gastro-intestinal tract. In this study, curcumin-loaded PLGA NPs (C-PLGA NPs) of about 200 nm were surface-coated with chitosan (CS) for gastro-intestinal mucosa adhesion, wheat germ agglutinin (WGA) for colon targeting or GE11 peptide for tumor colon targeting. Spectrometric and zeta potential analyses confirmed the successful functionalization of the C-PLGA NPs. Real-time label-free assessment of the cell membrane-NP interactions and NP cell uptake were performed by quartz crystal microbalance coupled with supported lipid bilayers and by surface plasmon resonance coupled with living cells. The study showed that CS-coated C-PLGA NPs interact with cells by the electrostatic mechanism, while both WGA- and GE11-coated C-PLGA NPs interact and are taken up by cells by specific active mechanisms. In vitro cell uptake studies corroborated the real-time label-free assessment by yielding a curcumin cell uptake of 7.3 ± 0.3, 13.5 ± 1.0, 27.3 ± 4.9, and 26.0 ± 1.3 μg per 104 HT-29 cells for noncoated, CS-, WGA-, and GE11-coated C-PLGA NPs, respectively. Finally, preliminary in vivo studies showed that the WGA-coated C-PLGA NPs efficiently accumulate in the colon after oral administration to healthy Balb/c mice. In summary, the WGA- and GE11-coated C-PLGA NPs displayed high potential for application as active targeted carriers for anticancer drug delivery to the colon.
机译:姜黄素用于口腔疾病治疗的开发受到其低溶解度,差的生物利用度和低稳定性的限制。表面官能化的聚乳酸-乙醇酸共聚物(PLGA)纳米颗粒(NPs)已显示出可喜的结果,可改善药物向胃肠道的选择性递送。在这项研究中,将约200 nm的姜黄素负载PLGA NP(C-PLGA NP)表面涂有壳聚糖(CS)用于胃肠粘膜粘附,小麦胚芽凝集素(WGA)用于结肠靶向或GE11肽用于肿瘤结肠。定位。光谱和ζ电势分析证实了C-PLGA NP的成功功能化。实时无标记的细胞膜-NP相互作用和NP细胞摄取的无标记评估是通过石英晶体微量天平与支持的脂质双层结合,以及通过表面等离子体激元共振与活细胞结合进行的。研究表明,CS涂层的C-PLGA NPs通过静电机制与细胞相互作用,而WGA涂层和GE11涂层的C-PLGA NPs相互作用并被细胞通过特定的活性机制吸收。体外细胞摄取研究证实了姜黄素对104 HT-29细胞的无涂层CS-29细胞摄取7.3±0.3、13.5±1.0、27.3±4.9和26.0±1.3μg的姜黄素细胞的摄取,从而证实了无标记的实时性。分别涂覆了WGA和GE11的C-PLGA NP。最后,初步的体内研究表明,对健康的Balb / c小鼠口服后,WGA包被的C-PLGA NPs在结肠中有效积聚。总之,WGA和GE11包被的C-PLGA NP具有很高的潜力,可作为抗癌药物向结肠的有效靶向载体。

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