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Inhibition of HeLa cell growth by doxorubicin-loaded and tuftsin-conjugated arginate-PEG microparticles

机译:阿霉素和簇蛋白缀合的精氨酸-PEG微粒对HeLa细胞生长的抑制作用

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In order to improve the release pattern of chemotherapy drug and reduce the possibility of drug resistance, poly(ethylene glycol amine) (PEG)-modified alginate microparticles (ALG-PEG MPs) were developed then two different mechanisms were employed to load doxorubicin (Dox): 1) forming Dox/ALG-PEG complex by electrostatic attractions between unsaturated functional groups in Dox and ALG-PEG; 2) forming Dox-ALG-PEG complex through EDC-reaction between the amino and carboxyl groups in Dox and ALG, respectively. Additionally, tuftsin (TFT), a natural immunomodulation peptide, was conjugated to MPs in order to enhance the efficiency of cellular uptake. It was found that the Dox-ALG-PEG-TFT MPs exhibited a significantly slower release of Dox than Dox/ALG-PEG-TFT MPs in neutral medium, suggesting the role of covalent bonding in prolonging Dox retention. Besides, the release of Dox from these MPs was pH-sensitive, and the release rate was observably increased at pH 6.5 compared to the case at pH 7.4. Compared with Dox/ALG-PEG MPs and Dox-ALG-PEG MPs, their counterparts further conjugated with TFT more efficiently inhibited the growth of HeLa cells over a period of 48?h, implying the effectiveness of TFT in enhancing cellular uptake of MPs. Over a period of 48?h, Dox-ALG-PEG-TFT MPs inhibited the growth of HeLa cells less efficiently than Dox/ALG-PEG-TFT MPs but the difference was not significant ( p >?0.05). In consideration of the prolonged and sustained release of Dox, Dox-ALG-PEG-TFT MPs possess the advantages for long-term treatment.
机译:为了改善化疗药物的释放方式并降低耐药性,开发了聚乙二醇胺(PEG)修饰的藻酸盐微粒(ALG-PEG MPs),然后采用两种不同的机理加载阿霉素(Dox)。 ):1)通过Dox中不饱和官能团和ALG-PEG之间的静电吸引形成Dox / ALG-PEG复合物; 2)分别通过Dox和ALG中的氨基和羧基之间的EDC反应形成Dox-ALG-PEG复合物。此外,为了提高细胞摄取效率,将天然免疫调节肽tuftsin(TFT)偶联到MPs上。发现在中性介质中,Dox-ALG-PEG-TFT MPs的Dox释放明显慢于Dox / ALG-PEG-TFT MPs,这表明共价键在延长Dox保留时间内的作用。此外,Dox从这些MP中的释放对pH敏感,与pH 7.4的情况相比,pH 6.5的释放速率明显增加。与Dox / ALG-PEG MPs和Dox-ALG-PEG MPs相比,它们与TFT进一步偶联的对应物在48?h的时间内更有效地抑制了HeLa细胞的生长,这暗示着TFT在增强MPs细胞摄取方面的有效性。在48?h的时间内,Dox-ALG-PEG-TFT MPs抑制HeLa细胞生长的效率低于Dox / ALG-PEG-TFT MPs,但差异不显着(p>?0.05)。考虑到Dox的持续释放,Dox-ALG-PEG-TFT MP具有长期治疗的优势。

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