Nahire Rahul, Haldar Manas K, Paul Shirshendu, Ambre Avinash H, Meghnani Varsha, Layek Buddhadev, Katti Kalpana S, Gange Kara N, Singh Jagdish, Sarkar Kausik, Mallik Sanku
Department of Pharmaceutical Sciences, North Dakota State University, Fargo, ND 58108, United States.
Department of Mechanical Engineering, University of Delaware, Newark, DE 19716, United States.
Biomaterials. 2014 Aug;35(24):6482-97. doi: 10.1016/j.biomaterials.2014.04.026. Epub 2014 May 5.
Although liposomes are widely used as carriers of drugs and imaging agents, they suffer from a lack of stability and the slow release of the encapsulated contents at the targeted site. Polymersomes (vesicles of amphiphilic polymers) are considerably more stable compared to liposomes; however, they also demonstrate a slow release for the encapsulated contents, limiting their efficacy as a drug-delivery tool. As a solution, we prepared and characterized echogenic polymersomes, which are programmed to release the encapsulated drugs rapidly when incubated with cytosolic concentrations of glutathione. These vesicles encapsulated air bubbles inside and efficiently reflected diagnostic-frequency ultrasound. Folate-targeted polymersomes showed an enhanced uptake by breast and pancreatic-cancer cells in a monolayer as well as in three-dimensional spheroid cultures. Polymersomes encapsulated with the anticancer drugs gemcitabine and doxorubicin showed significant cytotoxicity to these cells. With further improvements, these vesicles hold the promise to serve as multifunctional nanocarriers, offering a triggered release as well as diagnostic ultrasound imaging.
尽管脂质体被广泛用作药物和成像剂的载体,但它们存在稳定性不足以及在靶向部位包封内容物释放缓慢的问题。聚合物囊泡(两亲性聚合物的囊泡)与脂质体相比稳定性要高得多;然而,它们对包封内容物的释放也很缓慢,限制了其作为药物递送工具的功效。作为一种解决方案,我们制备并表征了可回声的聚合物囊泡,当与胞质浓度的谷胱甘肽一起孵育时,这些聚合物囊泡被设计为能快速释放包封的药物。这些囊泡内部包裹着气泡,并能有效地反射诊断频率的超声波。叶酸靶向的聚合物囊泡在单层以及三维球体培养中显示出对乳腺癌和胰腺癌细胞的摄取增强。包封有抗癌药物吉西他滨和阿霉素的聚合物囊泡对这些细胞显示出显著的细胞毒性。随着进一步改进,这些囊泡有望成为多功能纳米载体,实现触发释放以及诊断超声成像。