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用于治疗药物滥用者神经艾滋病的多功能纳米疗法。

Multifunctional Nanotherapeutics for the Treatment of neuroAIDS in Drug Abusers.

机构信息

Institute of NeuroImmune Pharmacology, Center for Personalized Nanomedicine, Department of Immunology and Nano-Medicine, Herbert Wertheim College of Medicine, Florida International University, Miami, FL, 33199, USA.

Department of Psychiatry, The McKnight Brain Institute, University of Florida, Gainesville, FL, 33610, USA.

出版信息

Sci Rep. 2018 Aug 28;8(1):12991. doi: 10.1038/s41598-018-31285-w.

Abstract

HIV and substance abuse plays an important role in infection and disease progression. Further, the presence of persistent viral CNS reservoirs makes the complete eradication difficult. Thus, neutralizing the drug of abuse effect on HIV-1 infectivity and elimination of latently infected cells is a priority. The development of a multi-component [antiretroviral drugs (ARV), latency reactivating agents (LRA) and drug abuse antagonist (AT)] sustained release nanoformulation targeting the CNS can overcome the issues of HIV-1 cure and will help in improving the drug adherence. The novel magneto-liposomal nanoformulation (NF) was developed to load different types of drugs (LRAs, ARVs, and Meth AT) and evaluated for in-vitro and in-vivo BBB transmigration and antiviral efficacy in primary CNS cells. We established the HIV-1 latency model using human astrocyte cells (HA) and optimized the dose of LRA for latency reversal, Meth AT in in-vitro cell culture system. Further, PEGylated magneto-liposomal NF was developed, characterized for size, shape, drug loading and BBB transport in-vitro. Results showed that drug released in a sustained manner up to 10 days and able to reduce the HIV-1 infectivity up to ~40-50% (>200 pg/mL to <100 pg/mL) continuously using single NF treatment ± Meth treatment in-vitro. The magnetic treatment (0.8 T) was able to transport (15.8% ± 5.5%) NF effectively without inducing any toxic effects due to NF presence in the brain. Thus, our approach and result showed a way to eradicate HIV-1 reservoirs from the CNS and possibility to improve the therapeutic adherence to drugs in drug abusing (Meth) population. In conclusion, the developed NF can provide a better approach for the HIV-1 cure and a foundation for future HIV-1 purging strategies from the CNS using nanotechnology platform.

摘要

HIV 和物质滥用在感染和疾病进展中起着重要作用。此外,持续存在的中枢神经系统病毒库使得完全清除变得困难。因此,中和药物滥用对 HIV-1 感染性的影响和消除潜伏感染的细胞是当务之急。开发针对中枢神经系统的多组分[抗逆转录病毒药物 (ARV)、潜伏激活剂 (LRA) 和药物滥用拮抗剂 (AT)] 缓释纳米制剂可以克服 HIV-1 治愈的问题,并有助于提高药物依从性。新型磁脂质体纳米制剂 (NF) 被开发用于加载不同类型的药物 (LRA、ARV 和 Meth AT),并评估其在体外和体内 BBB 迁移和对原代中枢神经系统细胞的抗病毒功效。我们使用人星形胶质细胞 (HA) 建立了 HIV-1 潜伏模型,并优化了 LRA 用于潜伏逆转的剂量,在体外细胞培养系统中使用 Meth AT。进一步开发了聚乙二醇化磁脂质体 NF,对其大小、形状、载药量和体外 BBB 转运进行了表征。结果表明,药物以持续的方式释放,持续 10 天,并且能够通过单次 NF 治疗(±Meth 治疗)在体外将 HIV-1 感染性降低约 40-50%(>200 pg/mL 至 <100 pg/mL)。磁处理 (0.8 T) 能够有效地转运 (15.8%±5.5%) NF,而不会因 NF 存在于大脑中而引起任何毒性作用。因此,我们的方法和结果为从中枢神经系统中根除 HIV-1 储库以及改善滥用药物(Meth)人群对药物的治疗依从性提供了一种可能性。总之,开发的 NF 可为 HIV-1 治愈提供更好的方法,并为未来使用纳米技术平台从中枢神经系统中清除 HIV-1 提供基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0cad/6113246/4e16f6a14ba7/41598_2018_31285_Fig1_HTML.jpg

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