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导向-受体与化学靶向策略在核酸递送中的应用。

Directing the Way-Receptor and Chemical Targeting Strategies for Nucleic Acid Delivery.

机构信息

Pharmaceutical Biotechnology, Center for System-Based Drug Research, Ludwig-Maximilians-Universität, 81377, Munich, Germany.

Center for Nanoscience (CeNS), Ludwig-Maximilians-Universität, 81377, Munich, Germany.

出版信息

Pharm Res. 2023 Jan;40(1):47-76. doi: 10.1007/s11095-022-03385-w. Epub 2022 Sep 15.

Abstract

Nucleic acid therapeutics have shown great potential for the treatment of numerous diseases, such as genetic disorders, cancer and infections. Moreover, they have been successfully used as vaccines during the COVID-19 pandemic. In order to unfold full therapeutical potential, these nano agents have to overcome several barriers. Therefore, directed transport to specific tissues and cell types remains a central challenge to receive carrier systems with enhanced efficiency and desired biodistribution profiles. Active targeting strategies include receptor-targeting, mediating cellular uptake based on ligand-receptor interactions, and chemical targeting, enabling cell-specific delivery as a consequence of chemically and structurally modified carriers. With a focus on synthetic delivery systems including polyplexes, lipid-based systems such as lipoplexes and lipid nanoparticles, and direct conjugates optimized for various types of nucleic acids (DNA, mRNA, siRNA, miRNA, oligonucleotides), we highlight recent achievements, exemplified by several nucleic acid drugs on the market, and discuss challenges for targeted delivery to different organs such as brain, eye, liver, lung, spleen and muscle in vivo.

摘要

核酸疗法在治疗多种疾病方面显示出巨大的潜力,如遗传疾病、癌症和感染。此外,在 COVID-19 大流行期间,它们已被成功用作疫苗。为了充分发挥治疗潜力,这些纳米载体必须克服多种障碍。因此,靶向特定组织和细胞类型的定向运输仍然是一个核心挑战,需要具有增强的效率和所需的生物分布特征的载体系统。主动靶向策略包括受体靶向、基于配体-受体相互作用介导的细胞摄取,以及化学靶向,使化学和结构修饰载体能够实现细胞特异性递送。我们重点介绍了包括多聚物、脂质体系统(如脂质体和脂质纳米颗粒)和针对各种类型核酸(DNA、mRNA、siRNA、miRNA、寡核苷酸)优化的直接缀合物在内的合成递药系统,强调了最近的成就,并举例说明了市场上的几种核酸药物,并讨论了针对不同器官(如脑、眼、肝、肺、脾和肌肉)的靶向递送的挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/914e/9911516/623188cf96a4/11095_2022_3385_Fig1_HTML.jpg

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