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Novel fluorescent oxides provide insight into dynamics of nanoparticle- mediated drug uptake from gastro-intestinal tract

机译:新型荧光氧化物提供了纳米粒子介导的药物吸收的动态的洞察力来自胃肠道

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In recent years nanotechnology gathered much attention due to promising applications in biomedicine. Using nanoparticles as drug carriers could allow for more effective and efficient therapy in treating cancer or neurological diseases. This is due to their unique properties such as enhancement of drug bioavailability or the ability to protect the drug from degradation. In this study we performed in vivo (BALB-c mice) and in vitro (Caco-2 cell line) experiments with Y_2O_3Tblectin conjugates as well as pure lectin to characterize the dynamics of nanoparticles mediated drug uptake from gastro-intestinal tract. Mice were given 0.3ml of Y_2O_3:Tb_lectin conjugates or pure lectin suspension and were sacrificed after 3h, 24h and 1 week (Y_2O_3b:Tb_lectin conjugates) or 3h and 24h (pure lectin). Cell cultures were incubated for 24h with increasing concentration (0.001mg/ml; 0.01mg/ml; 0.1mg/ml; 1mg/ml) of Y_2O_3:Tb_lectin or pure lectin. After analysing gathered data we concluded that our nanoparticles successfully conjugated with lectin and allowed for its transport through physiological barriers. NPs_Lectin conjugates undergo absorption, distribution and redistribution similarly as free nanoparticles do, although it decreased the efficiency of absorption compared to free nanoparticles. Lastly after reaching the tissue conjugates dissolved leading to lectin deposition in the tissue.
机译:近年来,纳米技术因生物医学中有前途的应用而聚集了很多关注。使用纳米粒子作为药物载体可以允许更有效和有效的治疗治疗癌症或神经疾病。这是由于它们独特的性质,例如增强药物生物利用度或保护药物免于降解的能力。在这项研究中,我们在体内(BALB-C小鼠)和体外(Caco-2细胞系)实验中进行了Y_2O_3TBlectin缀合物以及纯凝集素,以表征纳米颗粒的动态介导的来自胃肠道的药物吸收。将小鼠得到0.3ml Y_2O_3:Tb_Lectin缀合物或纯凝集素悬浮液,并在3小时,24h和1周(Y_2O_3B:Tb_Lectin缀合物)或3H和24H(纯凝集素)中处死。将细胞培养物温育24小时,浓度升高(0.001mg / ml; 0.01mg / ml; 0.1mg / ml; 1mg / ml)的Y_2O_3:Tb_Lectin或纯凝集素。在分析收集的数据后,我们得出结论,我们的纳米颗粒与凝集素成功缀合并允许通过生理屏障运输。与游离纳米颗粒相比,NPS_Lectin缀合物与游离纳米颗粒相比,相对于自由纳米颗粒相比,虽然它降低了吸收效率,但与游离纳米颗粒相比,相比,NPS_Lectin缀合物的蛋白质相似,分布和再分分配。最后在达到组织缀合物之后溶解在组织中的凝胶凝集粘膜后。

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