CD44E/s双靶向DNA适体纳米探针在肝癌治疗中的应用

Q1 Pharmacology, Toxicology and Pharmaceutics
Cario Wing-Sze Lo, Cecilia Ka Wing Chan, Jianqing Yu, Mian He, Chung Hang Jonathan Choi, James Yun Wong Lau, Nathalie Wong
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引用次数: 3

摘要

背景:肝细胞癌(HCC)是肝癌的主要亚型,具有极高的死亡率。对全身治疗的抵抗是大多数HCC患者临床预后不良的主要原因。CD44是一种跨膜细胞表面糖蛋白,其变体在人类癌症中表现出差异过表达。适体又称化学抗体,通过结构识别,具有高亲和力和特异性的靶向细胞表面分子。因此,适体介导的药物传递在指导治疗提高疗效方面具有很高的潜力。方法:采用连接特异性引物qPCR检测CD44E和CD44s变体在原发性肝癌肿瘤、邻近肝硬化/纤维化肝脏和正常肝脏中的表达,研究其与HCC的相关性。CD44E/s双靶向适配体是通过整合loss-gain cell-SELEX和下一代测序发现的。所选择的适体具有结合亲和力和特异性、生物稳定性、体内和体外细胞毒性、体内归巢和生物分布以及体外将5-FU输送到靶细胞的能力。结果:CD44E和CD44s亚型在HCC肿瘤中均表现出显著上调,CD44E/s活性促进细胞增殖和迁移。损益细胞selex揭示了CD44E/s双靶向适配体,称为CD44-Apt1。流式细胞术证实CD44- apt1与细胞表面CD44阳性细胞强结合,而与CD44阴性细胞不强结合。CD44- apt1与CD44E和CD44s具有较强的亲和力,KD低至1 nM,但与CD44的透明质酸结合域无亲和关系。cd44阳性细胞用荧光标记的CD44-Apt1染色,共聚焦成像显示了深刻的细胞质定位,表明有效的细胞穿透能力。cd44阴性细胞未见明显染色。当CD44-Apt1与抑制剂5-FU结合时,可以有效地引导5-FU进入HCC细胞,显著提高药物毒性数千倍以上。体外细胞处理和动物体内生物分布均表明CD44-Apt1是无毒的。在肝癌异种移植模型中,CD44- apt1以CD44表达依赖的方式有效地归巢到肿瘤异种移植物中。结论:新发现的能结合CD44E和CD44s的适体CD44-Apt1作为纳米探针具有很高的抗癌治疗潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Development of CD44E/s dual-targeting DNA aptamer as nanoprobe to deliver treatment in hepatocellular carcinoma.

Development of CD44E/s dual-targeting DNA aptamer as nanoprobe to deliver treatment in hepatocellular carcinoma.

Development of CD44E/s dual-targeting DNA aptamer as nanoprobe to deliver treatment in hepatocellular carcinoma.

Development of CD44E/s dual-targeting DNA aptamer as nanoprobe to deliver treatment in hepatocellular carcinoma.

Background: Hepatocellular carcinoma (HCC) is the predominant subtype of liver cancer with an extraordinary high mortality. Resistance to systemic therapy is a major cause of inferior clinical outcome in most patients with HCC. CD44 is a transmembrane cell-surface glycoprotein that is characterized by its variants displaying differential overexpression in human cancers. Aptamers, also known as chemical antibodies, can target cell-surface molecules with high affinity and specificity via structural recognition. Aptamer-mediated drug delivery hence is of high potentials in guiding therapy to improve efficacy. Methods: Variants CD44E and CD44s were studied for HCC relevance by investigating their expressions in primary HCC tumors, adjacent cirrhotic/fibrotic livers and normal livers using junction specific primers in qPCR assay. CD44E/s dual-targeted aptamers were uncovered by integrating loss-gain cell-SELEX and next generation sequencing. Selected aptamers were characterized for binding affinity and specificity, biostability, in vivo and in vitro cytotoxicity, in vivo homing and biodistribution, and ability to deliver 5-FU into targeted cells in vitro. Results: Both CD44E and CD44s isoforms showed significant upregulations in HCC tumors with CD44E/s activities promoting cell proliferation and migration. Loss-gain cell-SELEX uncover a CD44E/s dual-targeting aptamer, termed CD44-Apt1. Strong binding of CD44-Apt1 to cell-surface CD44 positive cells but not CD44-negative cells was demonstrated by flow-cytometry. CD44-Apt1 displayed strong affinity to CD44E and CD44s with KD as low as 1 nM but not the hyaluronic acid binding domain of CD44. Confocal imaging of CD44-positive cells stained with fluorescent-labeled CD44-Apt1 showed profound cytoplasmic localization, suggesting efficient cell-penetrating ability. Meanwhile, no apparent staining was observed in CD44-negative cells. CD44-Apt1 when conjugated with inhibitor 5-FU showed efficient guidance of 5-FU into HCC cells that significantly enhanced drug toxicity by more than thousands-fold. Both in vitro cell treatment and in vivo animal biodistribution indicated that CD44-Apt1 is non-toxic. In HCC xenograft model, CD44-Apt1 efficiently homed to tumor xenografts in a CD44 expression-dependent manner. Conclusion: Novel discovery of aptamer CD44-Apt1 that can bind both CD44E and CD44s illustrates high potential as nanoprobe to deliver anti-cancer therapeutics.

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来源期刊
Nanotheranostics
Nanotheranostics Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (miscellaneous)
CiteScore
10.40
自引率
0.00%
发文量
37
审稿时长
12 weeks
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