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载 CK2 抑制剂的环糊精纳米粒的制备及表征用于药物传递。

Preparation and characterization of CK2 inhibitor-loaded cyclodextrin nanoparticles for drug delivery.

机构信息

Université de Lyon, Université Lyon 1, CSAp, Institut de Chimie et Biochimie Moléculaires et Supramoléculaires, Bâtiment Raulin, 43 Bd du 11 novembre 1918, 69622 Villeurbanne Cedex, France.

出版信息

Int J Pharm. 2013 Jan 30;441(1-2):491-8. doi: 10.1016/j.ijpharm.2012.11.004. Epub 2012 Nov 13.

Abstract

Casein Kinase 2 (CK2) is a ubiquitous kinase protein currently targeted for the treatment of some cancers. Recently, the series of indeno[1,2-b]indoles has revealed great interest as potent and selective CK(2) ATP-competitive inhibitors. Among them, 1-amino-5-isopropyl-5,6,7,8-tetrahydroindeno[1,2-b]indole-9,10-dione (CM1) was selected for an encapsulation study in order to improve its biodisponibility. Its complexation was evaluated at the molecular scale, with a series of fluorinated or hydrocarbonated amphiphilic cyclodextrins (CDs). Then the encapsulation of CM1 within CD nanoparticles at the supramolecular level was achieved. Nanoparticles formed between CM1 and hexakis[6-deoxy-6-(3-perfluorohexylpropanethio)-2,3-di-O-methyl]-α-cyclodextrin, a fluorinated amphiphilic α-cyclodextrin, gave the best results in terms of encapsulation rate, stability and drug release. These nanospheres showed an encapsulation efficiency of 65% and a sustained release of the entrapped drug over 3h. Based on these results, encapsulation within fluorinated amphiphilic CD nanoparticles could be considered as a potential drug delivery system for indenoindole-type CK2 inhibitors, allowing better biodisponibility and offering perspectives for tumor targeting development.

摘要

酪蛋白激酶 2(CK2)是一种普遍存在的激酶蛋白,目前被用作治疗某些癌症的靶标。最近,一系列茚并[1,2-b]吲哚类化合物因其作为强效和选择性 CK(2)ATP 竞争性抑制剂而备受关注。其中,1-氨基-5-异丙基-5,6,7,8-四氢茚并[1,2-b]吲哚-9,10-二酮(CM1)被选为包封研究的候选药物,以提高其生物利用度。在分子尺度上评估了其与一系列氟化或烃化的两亲性环糊精(CD)的络合作用。然后在超分子水平上将 CM1 包封在 CD 纳米颗粒中。CM1 与六(6-去氧-6-(3-全氟己基丙硫基)-2,3-二-O-甲基)-α-环糊精形成的纳米颗粒在包封率、稳定性和药物释放方面表现出最佳效果。这些纳米球的包封效率为 65%,包封药物的释放可持续 3 小时以上。基于这些结果,将茚并吲哚型 CK2 抑制剂包封在氟化两亲性 CD 纳米颗粒中可被视为一种有潜力的药物传递系统,能够提高生物利用度,并为肿瘤靶向发展提供前景。

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