首页> 美国卫生研究院文献>International Journal of Nanomedicine >Uptake and transport of a novel anticancer drug-delivery system: lactosyl-norcantharidin-associated N-trimethyl chitosan nanoparticles across intestinal Caco-2 cell monolayers
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Uptake and transport of a novel anticancer drug-delivery system: lactosyl-norcantharidin-associated N-trimethyl chitosan nanoparticles across intestinal Caco-2 cell monolayers

机译:新型抗癌药物递送系统的吸收和转运:乳糖酸-降冰片素相关的N-三甲基壳聚糖纳米颗粒跨肠Caco-2细胞单层。

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摘要

In this paper, novel liver-targeting nanoparticles (NPs), lactosyl-norcantharidin (Lac-NCTD)-associated N-trimethyl chitosan (TMC) NPs (Lac-NCTD-TMC-NPs), were prepared using ionic cross-linkage. The physical properties, particle size, and encapsulation efficiency of the nanoparticles were then investigated. The continuous line of heterogeneous human epithelial colorectal adenocarcinoma cells (Caco-2) cell monolayer model was used to study the transport mechanism of Lac-NCTD, and the effects of factors such as time, temperature, pH level, drug concentration, enhancers, and inhibitors. This model was also used to indicate the differences among Lac-NCTD, Lac-NCTD-associated chitosan NPs (Lac-NCTD-CS-NPs), and Lac-NCTD-TMC- NPs in the absorption and transportation of membranes. Drug concentration levels were measured using high-performance liquid chromatography. Active transport and paracellular transport were suggested to be both the primary and secondary mechanisms for Lac-NCTD absorption, respectively. Lac-NCTD uptake and absorption were not controlled by pH levels, but were positively correlated to uptake time, and negatively correlated to temperature. The basolateral to apical apparent permeability coefficients (Papps) were higher than those of the apical to basolateral values. The inhibitor of P-glycoprotein and the multidrug resistance-associated protein 2 significantly enhanced the uptake amount of Lac-NCTD. Compared with Lac-NCTD, Lac-NCTD-CS-NPs and Lac-NCTD-TMC-NPs significantly enhanced drug absorption. Additionally, the latter exhibited stronger action. Lac-NCTD-NPs could penetrate the plasma membrane of Caco-2 cells and translocate into the cytoplasm and even into the nucleus. Nanoparticles were uptaken into Caco-2 cells through the endocytosis pathway.
机译:在本文中,使用离子交联制备了新型的肝脏靶向纳米颗粒(NPs),即乳糖基-降冰片素(Lac-NCTD)相关的N-三甲基壳聚糖(TMC)NPs(Lac-NCTD-TMC-NPs)。然后研究了纳米粒子的物理性质,粒径和包封效率。使用异质性人上皮结肠直肠腺癌细胞(Caco-2)细胞单层模型的连续细胞研究Lac-NCTD的转运机制,以及时间,温度,pH值,药物浓度,增强剂和抑制剂。该模型还用于指示Lac-NCTD,与Lac-NCTD相关的壳聚糖NPs(Lac-NCTD-CS-NPs)和Lac-NCTD-TMC-NPs之间在膜吸收和转运方面的差异。使用高效液相色谱法测量药物浓度水平。主动转运和细胞旁转运被认为分别是Lac-NCTD吸收的主要和次要机制。 Lac-NCTD的吸收和吸收不受pH值的控制,但与吸收时间呈正相关,与温度呈负相关。基底外侧至顶部的表观通透性系数(Papps)高于顶端至基底外侧的值。 P-糖蛋白抑制剂和多药耐药相关蛋白2显着提高了Lac-NCTD的摄取量。与Lac-NCTD相比,Lac-NCTD-CS-NPs和Lac-NCTD-TMC-NPs显着提高了药物吸收。另外,后者表现出更强的作用。 Lac-NCTD-NPs可以穿透Caco-2细胞的质膜并转移到细胞质中,甚至转移到细胞核中。纳米颗粒通过内吞途径被摄取到Caco-2细胞中。

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