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细胞色素C与透明质酸的智能释放纳米制剂诱导癌细胞凋亡。

Smart Release Nano-formulation of Cytochrome C and Hyaluronic Acid Induces Apoptosis in Cancer Cells.

作者信息

Figueroa C M, Suárez B N, Molina A M, Fernández J C, Torres Z, Griebenow K

机构信息

Department of Chemistry, University of Puerto Rico, Río Piedras Campus, San Juan, PR 00931, Puerto Rico.

出版信息

J Nanomed Nanotechnol. 2017 Feb;8(1). doi: 10.4172/2157-7439.1000427. Epub 2017 Feb 24.

Abstract

Herein we tested a nanosized cancer-cell targeted delivery system based on cytochrome c (Cyt c) and hyaluronic acid. Cyt c was chosen since it is a non-toxic protein but causes apoptosis when delivered to the cytoplasm of target cells. Hyaluronic acid was employed to create the nanosized delivery system with passive targeting capability in order to exploit the enhanced permeation and retention (EPR) effect and active targeting capability of hyaluronic acid. In addition, our goal was to incorporate a smart release strategy to only promote protein release upon reaching its target. Nanoparticles were formed by a simple yet precise nanoprecipitation process based on desolvation. They were physically characterized to select precipitation conditions leading to adequate size, shape, protein bioactivity, and protein loading to produce a feasible targeted cancer treatment. We synthesized nanoparticles of around 500 nm diameter with a 60% protein loading and more than 80% of protein bioactivity. cumulative release of 92% of Cyt c was observed after 8 h under conditions mimicking the reductive intracellular environment, while under non-denaturing conditions only 20% was released. The nanoparticles displayed a selective cytotoxic effect on cancer cells. After 6 h of incubation with the nanoparticles, hyaluronic acid receptor over expressing A549 human lung adenocarcinoma cells showed a viability of ca. 20% at 0.16 mg/ml of Cyt c concentration. Only a negligible effect was observed on viability of COS-7 African green monkey kidney fibroblast, a normal cell line notoverexpressing the hyaluronic acid receptor. Confocal microscopy confirmed that the drug delivery system indeed delivered Cyt c to the cytoplasm of the target cells. We conclude that we were able to create a smart stimuli-responsive targeted drug delivery system with significant potential in cancer therapy.

摘要

在此,我们测试了一种基于细胞色素c(Cyt c)和透明质酸的纳米级癌细胞靶向递送系统。选择Cyt c是因为它是一种无毒蛋白质,但当递送至靶细胞的细胞质时会引发细胞凋亡。使用透明质酸来创建具有被动靶向能力的纳米级递送系统,以利用透明质酸的增强渗透和滞留(EPR)效应以及主动靶向能力。此外,我们的目标是纳入一种智能释放策略,使其仅在到达靶标时促进蛋白质释放。纳米颗粒通过基于去溶剂化的简单而精确的纳米沉淀过程形成。对它们进行了物理表征,以选择导致合适尺寸、形状、蛋白质生物活性和蛋白质负载量的沉淀条件,从而产生可行的靶向癌症治疗方法。我们合成了直径约500 nm、蛋白质负载量为60%且蛋白质生物活性超过80%的纳米颗粒。在模拟细胞内还原环境的条件下,8小时后观察到Cyt c的累积释放率为92%,而在非变性条件下仅释放20%。纳米颗粒对癌细胞显示出选择性细胞毒性作用。在用纳米颗粒孵育6小时后,在Cyt c浓度为0.16 mg/ml时,过表达透明质酸受体的A549人肺腺癌细胞的存活率约为20%。对于COS-7非洲绿猴肾成纤维细胞(一种未过表达透明质酸受体的正常细胞系)的活力,仅观察到可忽略不计的影响。共聚焦显微镜证实该药物递送系统确实将Cyt c递送至靶细胞的细胞质中。我们得出结论,我们能够创建一种具有智能刺激响应性的靶向药物递送系统,在癌症治疗中具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/680f/5505692/e993d7b88dfb/nihms866482f1.jpg

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