伊马替尼负载聚乙二醇聚丙亚胺树突状物递送至白血病细胞配方制作及评价

IF 1.2 Q4 NANOSCIENCE & NANOTECHNOLOGY international journal of nano dimension Pub Date : 2016-12-01 DOI:10.7508/IJND.2016.04.009
R. Karthikeyan, P. V. Kumar, O. Koushik
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引用次数: 2

摘要

Karthikeyan R, Kumar P, Koushik O S.伊马替尼负载聚乙二醇化聚丙烯亚胺树形大分子用于白血病细胞;配方制作及评价。Int。J.纳米尺寸。, 2016;7 (4): 336-348, DOI: 10.7508/ijnd.2016.04.009。聚乙二醇化聚丙烯亚胺(PPI)树突状支架用于抗白血病药物伊马替尼的递送。目前的研究发展并出现了使用聚乙二醇化的PPI树突支架来递送这种药物。本实验合成了伊马替尼,并将其装载在聚乙二醇化的PPI树突支架上。需要FT-IR, NMR, SEM,药物释放,DSC和溶血毒性等参数。其他参数,如聚乙二醇化和非聚乙二醇化体系的药物包裹量比较确定。经聚乙二醇修饰后,药物的溶血能力增强,溶血毒性降低,药物释放率降低。由此,发现伊马替尼的长期递送适合于该系统。通过以控制速率长时间递送药物,我们期望这种方法将改善白血病患者药物治疗的管理。
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Imatinib loaded pegylated Poly Propylene Imine dendrimer for delivery to leukemic cells; fabrication of formulation and evaluation
* Corresponding Author Email: rkcognosy@gmail.com How to cite this article Karthikeyan R, Kumar P, Koushik O S. Imatinib loaded pegylated poly propylene imine dendrimer for delivery to leukemic cells; fabrication of formulation and evaluation. Int. J. Nano Dimens., 2016; 7 (4): 336-348, DOI: 10.7508/ijnd.2016.04.009. Abstract PEGylated polypropyleneimine (PPI) dendritic scaffold was used for the delivery of an anti-leukemic drug, Imatinib. The current study evolves and emerges the use PEGylated PPI dendritic scaffold for the delivery of this drug. In this Imatinib was synthesized and loaded with PEGylated PPI dendritic scaffold. Parameters such as FT-IR, NMR, SEM, drug release, DSC and hemolytictoxicity are required. Other parameters such as drug entrapment of both PEGylated and non-PEGylated systems were comparatively determined. Drugloading capacity was found to be increased with the PEGylation and reduces the haemolytic toxicity as well as drug release rate. By this, prolonged delivery of Imatinib was found to be suitable with this system. By delivering the drug for a prolonged period of time at a controlled rate, we expect that this approach will improve the management of drug therapy in leukemic patients.
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来源期刊
international journal of nano dimension
international journal of nano dimension NANOSCIENCE & NANOTECHNOLOGY-
CiteScore
2.80
自引率
20.00%
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