Laboratory of GlycoNanotechnology, Biofunctional Nanomaterials Unit, CIC biomaGUNE, Paseo Miramón 182, 20009, San Sebastián, Spain.
Laboratory of GlycoNanotechnology, Biofunctional Nanomaterials Unit, CIC biomaGUNE, Paseo Miramón 182, 20009, San Sebastián, Spain ; Networking Research Center on Bioengineering, Biomaterials and Nanomedicine (CIBER-BBN), Paseo Miramón 182, 20009, San Sebastián, Spain.
Beilstein J Org Chem. 2014 Jun 12;10:1339-46. doi: 10.3762/bjoc.10.136. eCollection 2014.
The therapeutic approach for the treatment of HIV infection is based on the highly active antiretroviral therapy (HAART), a cocktail of antiretroviral drugs. Notwithstanding HAART has shown different drawbacks like toxic side effects and the emergence of viral multidrug resistance. Nanotechnology offers new tools to improve HIV drug treatment and prevention. In this scenario, gold nanoparticles are an interesting chemical tool to design and prepare smart and efficient drug-delivery systems. Here we describe the preparation and antiviral activity of carbohydrate-coated gold nanoparticles loaded with anti-HIV prodrug candidates. The nucleoside reverse transcriptase inhibitors abacavir and lamivudine have been converted to the corresponding thiol-ending ester derivatives and then conjugated to ~3 nm glucose-coated gold nanoparticles by means of "thiol-for-thiol" ligand place exchange reactions. The drugs-containing glyconanoparticles were characterized and the pH-mediated release of the drug from the nanoparticle has been determined. The antiviral activity was tested by evaluating the replication of NL4-3 HIV in TZM-bl infected cells. The proof-of-principle presented in this work aims to introduce gold glyconanoparticles as a new multifunctional drug-delivery system in the therapy against HIV.
治疗 HIV 感染的方法基于高效抗逆转录病毒疗法(HAART),即鸡尾酒疗法,是多种抗逆转录病毒药物的组合。尽管 HAART 已经显示出不同的缺点,如毒性副作用和病毒多药耐药性的出现。纳米技术为改善 HIV 药物治疗和预防提供了新的工具。在这种情况下,金纳米粒子是设计和制备智能高效药物输送系统的有趣化学工具。在这里,我们描述了负载抗 HIV 前药候选物的碳水化合物涂层金纳米粒子的制备和抗病毒活性。核苷逆转录酶抑制剂阿巴卡韦和拉米夫定已转化为相应的含硫醇端酯衍生物,然后通过“硫醇换硫醇”配体交换反应与~3nm 葡萄糖涂层金纳米粒子结合。对载药糖纳米粒子进行了表征,并测定了纳米粒子中药物在 pH 介导下的释放。通过评估 NL4-3 HIV 在感染 TZM-bl 细胞中的复制来测试抗病毒活性。这项工作提出的原理验证旨在将金糖纳米粒子引入 HIV 治疗的新型多功能药物输送系统。