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靶向细胞核的声敏聚合物囊泡用于递送癌症干性抑制剂至胰腺癌细胞。

Nucleus-Targeted, Echogenic Polymersomes for Delivering a Cancer Stemness Inhibitor to Pancreatic Cancer Cells.

机构信息

Department of Mechanical and Aerospace Engineering , The George Washington University , Washington, D.C. 20052 , United States.

出版信息

Biomacromolecules. 2018 Oct 8;19(10):4122-4132. doi: 10.1021/acs.biomac.8b01133. Epub 2018 Sep 13.

Abstract

Chemotherapeutic agents for treating cancers show considerable side effects, toxicity, and drug resistance. To mitigate the problems, we designed nucleus-targeted, echogenic, stimuli-responsive polymeric vesicles (polymersomes) to transport and subsequently release the encapsulated anticancer drugs within the nuclei of pancreatic cancer cells. We synthesized an alkyne-dexamethasone derivative and conjugated it to N-polyethylene glycol (PEG)-polylactic acid (PLA) copolymer employing the Cu catalyzed "Click" reaction. We prepared polymersomes from the dexamethasone-PEG-PLA conjugate along with a synthesized stimuli-responsive polymer PEG-S-S-PLA. The dexamethasone group dilates the nuclear pore complexes and transports the vesicles to the nuclei. We designed the polymersomes to release the encapsulated drugs in the presence of a high concentration of reducing agents in the nuclei of pancreatic cancer cells. We observed that the nucleus-targeted, stimuli-responsive polymersomes released 70% of encapsulated contents in the nucleus-mimicking environment in 80 min. We encapsulated the cancer stemness inhibitor BBI608 in the vesicles and observed that the BBI608 encapsulated polymersomes reduced the viability of the BxPC3 cells to 43% in three-dimensional spheroid cultures. The polymersomes were prepared following a special protocol so that they scatter ultrasound, allowing imaging by a medical ultrasound scanner. Therefore, these echogenic, targeted, stimuli-responsive, and drug-encapsulated polymersomes have the potential for trackable, targeted carrier of chemotherapeutic drugs to cancer cell nuclei.

摘要

化疗药物在治疗癌症方面表现出相当大的副作用、毒性和耐药性。为了解决这些问题,我们设计了核靶向、声敏、刺激响应的聚合物囊泡(聚合物囊泡),以在胰腺癌细胞的核内运输和随后释放包裹的抗癌药物。我们合成了炔基地塞米松衍生物,并通过 Cu 催化的“点击”反应将其连接到 N-聚乙二醇(PEG)-聚乳酸(PLA)共聚物上。我们从地塞米松-PEG-PLA 缀合物以及合成的刺激响应聚合物 PEG-S-S-PLA 制备聚合物囊泡。地塞米松基团扩张核孔复合物,并将囊泡运输到细胞核中。我们设计了聚合物囊泡,使其在胰腺癌细胞核中存在高浓度还原剂的情况下释放包裹的药物。我们观察到,在模拟细胞核的环境中,核靶向、刺激响应的聚合物囊泡在 80 分钟内释放了 70%的包裹内容物。我们将癌症干细胞抑制剂 BBI608 封装在囊泡中,并观察到 BBI608 封装的聚合物囊泡使 BxPC3 细胞在三维球体培养中的活力降低到 43%。这些聚合物囊泡是按照特殊的方案制备的,因此它们能散射超声波,从而可以用医疗超声扫描仪进行成像。因此,这些声敏、靶向、刺激响应和载药聚合物囊泡有可能成为可追踪的、靶向的化疗药物向癌细胞核的载体。

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