首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >cis-Dichlorodiamminoplatinum (II) glyconanoparticles by drug-induced ionic gelation technique targeted to prostate cancer:Preparation, optimization and in vitro characterization
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cis-Dichlorodiamminoplatinum (II) glyconanoparticles by drug-induced ionic gelation technique targeted to prostate cancer:Preparation, optimization and in vitro characterization

机译:药物诱导离子胶凝技术靶向前列腺癌的顺式-二氯二氨铂(II)糖纳米颗粒:制备,优化和体外表征

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摘要

Cancer stem cells (CSC) have been proposed as the reason of cancer relapse which are characterized mainly based on CD44+ phenotype with other supplementary markers. The aim of the present study is to fabricate cis-dichlorodiamminoplatinum (II) (CDDP) loaded glyconanoparticles using hyaluronic acid (HA) which is also known as the endogenous substrate for CD44 in vivo. Methods:For this purpose, a drug-induced ionic gelation technique has been used to prepare CDDP-incorporated nanoparticles. To optimize the fabrication technique, stirring rate, stirring time, and HA/CDDP ratio have been selected as the main factors from other factors and subjected to face-centered central composite design for optimization purposes. The optimized nanoparticles were further characterized using different complementary methods including FTIR, SEM, AFM and DSC. To evaluate the biological effectiveness of CDDP nanoparticles release study, MTS assay, tumor cell clonogenicity and sphere formation assay have been performed as well. Results:Spherical CDDP nanoparticles with Z-average approx. 150 nm with low Pdl were prepared by adjusting the selected variables. FTIR results indicated the presence of inclusion complexes between CDDP and HA which lead to preparing nanoparticles with high entrapment efficiency and drug content of 87.4 and 43.74 percentage respectively. In vitro release study showed a sustained release of CDDP up to 4 days, and cellular studies confirmed that nanoparticles formation keeps the anticancer activity of formulated CDDP while moderate increase in cancer stem cell suppression. Conclusion:It seems hyaluronic acid could be successfully exploited as carrier in cancer-targeted drug delivery with a look at targeting the CSCs.
机译:已经提出了癌干细胞(CSC)作为癌症复发的原因,其主要基于具有其他补充标记的CD44 +表型来表征。本研究的目的是使用透明质酸(HA)制备顺式二氯二氨基铂(II)(CDDP)负载的糖纳米颗粒,透明质酸(HA)也被称为体内CD44的内源性底物。方法:为此目的,已使用药物诱导的离子凝胶技术制备结合了CDDP的纳米颗粒。为了优化制造技术,从其他因素中选择了搅拌速率,搅拌时间和HA / CDDP比作为主要因素,并进行了以面心为中心的中央复合材料设计,以实现优化目的。使用不同的互补方法(包括FTIR,SEM,AFM和DSC)进一步对优化的纳米颗粒进行了表征。为了评估CDDP纳米颗粒释放研究的生物学有效性,还进行了MTS分析,肿瘤细胞克隆形成性和球形成分析。结果:球形CDDP纳米粒子的Z平均约为。通过调整所选变量,可以制备低Pdl的150 nm。 FTIR结果表明CDDP与HA之间存在包合物,从而制备了具有高包封率的纳米颗粒,药物含量分别为87.4和43.74%。体外释放研究表明CDDP可持续释放长达4天,细胞研究证实纳米颗粒的形成保持了配制CDDP的抗癌活性,同时适度增加了对癌症干细胞的抑制作用。结论:透明质酸似乎可以成功地用作癌症靶向药物递送的载体,并着眼于靶向CSC。

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