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近进展阿适体武装多模态治疗癌症的成像和靶向治疗纳米系统。

Recent advances in aptamer-armed multimodal theranostic nanosystems for imaging and targeted therapy of cancer.

机构信息

Research Center for Pharmaceutical Nanotechnology, Biomedicine Institute, Tabriz University of Medical Sciences, Tabriz, Iran.

Research Center for Pharmaceutical Nanotechnology, Biomedicine Institute, Tabriz University of Medical Sciences, Tabriz, Iran; Department of Pharmaceutics, Faculty of Pharmacy, Tabriz University of Medical Sciences, Tabriz, Iran.

出版信息

Eur J Pharm Sci. 2018 May 30;117:301-312. doi: 10.1016/j.ejps.2018.02.027. Epub 2018 Feb 27.

Abstract

The side effects of chemotherapeutics during the course of cancer treatment limit their clinical outcomes. The most important mission of the modern cancer therapy modalities is the delivery of anticancer drugs specifically to the target cells/tissue in order to avoid/reduce any inadvertent non-specific impacts on the healthy normal cells. Nanocarriers decorated with a designated targeting ligand such as aptamers (Aps) and antibodies (Abs) are able to deliver cargo molecules to the target cells/tissue without affecting other neighboring cells, resulting in an improved treatment of cancer. For targeted therapy of cancer, different ligands (e.g., protein, peptide, Abs, Aps and small molecules) have widely been used in the development of different targeting drug delivery systems (DDSs). Of these homing agents, nucleic acid Aps show unique targeting potential with high binding affinity to a variety of biological targets (e.g., genes, peptides, proteins, and even cells and organs). Aps have widely been used as the targeting agent, in large part due to their unique 3D structure, simplicity in synthesis and functionalization, high chemical flexibility, low immunogenicity and toxicity, and cell/tissue penetration capability in some cases. Here, in this review, we provide important insights on Ap-decorated multimodal nanosystems (NSs) and discuss their applications in targeted therapy and imaging of cancer.

摘要

在癌症治疗过程中,化疗的副作用限制了其临床效果。现代癌症治疗方法的最重要任务是将抗癌药物特异性递送到靶细胞/组织,以避免/减少对健康正常细胞的任何意外非特异性影响。用指定的靶向配体(如适体(Aps)和抗体(Abs))修饰的纳米载体能够将货物分子递送到靶细胞/组织而不影响其他邻近细胞,从而改善癌症的治疗效果。对于癌症的靶向治疗,不同的配体(例如,蛋白质,肽,Abs,Aps 和小分子)已广泛用于开发不同的靶向药物递送系统(DDS)。在这些归巢剂中,核酸 Aps 由于与多种生物靶标(例如基因,肽,蛋白质,甚至细胞和器官)具有高结合亲和力,因此显示出独特的靶向潜力。Aps 已被广泛用作靶向剂,在很大程度上是由于其独特的 3D 结构,合成和功能化的简单性,化学灵活性高,免疫原性和毒性低,以及在某些情况下具有穿透细胞/组织的能力。在本文中,我们提供了有关 Ap 修饰的多模式纳米系统(NS)的重要见解,并讨论了它们在癌症的靶向治疗和成像中的应用。

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