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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Neem gum based pH responsive hydrogel matrix: A new pharmaceutical excipient for the sustained release of anticancer drug
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Neem gum based pH responsive hydrogel matrix: A new pharmaceutical excipient for the sustained release of anticancer drug

机译:基于Neem Gum的pH响应水凝胶基质:一种新的药物赋形剂,用于抗癌药物的持续释放

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摘要

The present research work was aimed to synthesize neem gum-based site-specific drug delivery device for anticancer drug methotrexate at different pH condition. The hydrogel-based drug delivery device was synthesized by optimizing reaction parameters using a factorial design approach response surface method. This model comprised of various sets of reactions with varying concentrations of solvent, cross-linker, initiator and monomer under microwave radiation. Characterization of the candidate hydrogel was done using UV-visible spectrophotometer, FTIR, SEM, Raman, and XRD techniques. The release profile of the hydrogels network was studied through a methotrexate under different pH conditions. The drug encapsulation capacity was found to be around 93% and 90% in pH 7.4 and 6.8. Drug release through the synthesized hydrogel matrix was found to show non-Fickian behaviour at each medium. The hydrogel network showed less release in pH 6.8 than pH 7.4, suggesting that hydrogels may be suitable drug carriers for release of anticancer drug delivery system. Hemolysis testing was also done to check the compatibility of the synthesized drug delivery device with the four different blood samples. Hemolysis was found to be less than 1% in the case of all blood groups, which indicates that the synthesized candidate polymers are biocompatible with all blood groups. (C) 2019 Elsevier B.V. All rights reserved.
机译:目前的研究工作旨在在不同的pH条件下合成抗癌药物甲氨蝶呤的基于Neem Gum的特异性药物递送装置。通过使用因子设计方法响应表面方法优化反应参数来合成水凝胶基药物递送装置。该模型包括各种反应,其在微波辐射下具有不同浓度的溶剂,交联剂,引发剂和单体。使用UV可见分光光度计,FTIR,SEM,拉曼和XRD技术进行候选水凝胶的表征。通过在不同pH条件下通过甲氨蝶呤研究水凝胶网络的释放曲线。发现药物包封能力在pH 7.4和6.8中约为93%和90%。发现通过合成水凝胶基质的药物释放在每个培养基上显示非Fickian行为。水凝胶网络在pH 6.8中显示较少的pH 7.4释放,表明水凝胶可以是用于释放抗癌药物递送系统的合适药物载体。还进行了溶血测试以检查合成的药物递送装置与四种不同血液样品的相容性。在所有血液组的情况下发现溶血量小于1%,这表明合成的候选聚合物与所有血液组都是生物相容的。 (c)2019 Elsevier B.v.保留所有权利。

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