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树状高分子作为用于癌症治疗中核酸和药物传递的纳米载体。

Dendrimers as Nanocarriers for Nucleic Acid and Drug Delivery in Cancer Therapy.

机构信息

Center for Pharmaceutical Biotechnology and Nanomedicine, Northeastern University, Boston, MA 02115, USA.

CAPES Foundation, Ministry of Education of Brazil, Brasilia 70040-020, Brazil.

出版信息

Molecules. 2017 Aug 23;22(9):1401. doi: 10.3390/molecules22091401.

Abstract

Dendrimers are highly branched polymers with easily modifiable surfaces. This makes them promising structures for functionalization and also for conjugation with drugs and DNA/RNA. Their architecture, which can be controlled by different synthesis processes, allows the control of characteristics such as shape, size, charge, and solubility. Dendrimers have the ability to increase the solubility and bioavailability of hydrophobic drugs. The drugs can be entrapped in the intramolecular cavity of the dendrimers or conjugated to their functional groups at their surface. Nucleic acids usually form complexes with the positively charged surface of most cationic dendrimers and this approach has been extensively employed. The presence of functional groups in the dendrimer's exterior also permits the addition of other moieties that can actively target certain diseases and improve delivery, for instance, with folate and antibodies, now widely used as tumor targeting strategies. Dendrimers have been investigated extensively in the medical field, and cancer treatment is one of the greatest areas where they have been most used. This review will consider the main types of dendrimer currently being explored and how they can be utilized as drug and gene carriers and functionalized to improve the delivery of cancer therapy.

摘要

树状聚合物是具有易于修饰表面的高度支化聚合物。这使得它们成为功能化以及与药物和 DNA/RNA 缀合的有前途的结构。其结构可以通过不同的合成工艺来控制,从而可以控制形状、大小、电荷和溶解度等特性。树状聚合物能够提高疏水性药物的溶解度和生物利用度。药物可以被包埋在树状聚合物的分子腔内,或者与它们表面的官能团缀合。大多数阳离子树状聚合物的表面带正电荷,因此通常与核酸形成复合物,这种方法已被广泛应用。树状聚合物外部的官能团的存在也允许添加其他可以主动靶向某些疾病并改善药物传递的部分,例如叶酸和抗体,它们现在被广泛用作肿瘤靶向策略。树状聚合物在医学领域得到了广泛的研究,癌症治疗是它们应用最广泛的领域之一。这篇综述将考虑目前正在探索的主要类型的树状聚合物,以及它们如何用作药物和基因载体,并进行功能化以改善癌症治疗的传递。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1505/6151467/5462607977ba/molecules-22-01401-g001.jpg

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