THP-1单核细胞源性巨噬细胞中中性脂基纳米颗粒的细胞毒性评估、炎症特性和细胞摄取。

Q1 Engineering
Nanobiomedicine Pub Date : 2017-12-21 eCollection Date: 2017-01-01 DOI:10.1177/1849543517746259
Eric Berger, Dalibor Breznan, Sandra Stals, Viraj J Jasinghe, David Gonçalves, Denis Girard, Sylvie Faucher, Renaud Vincent, Alain R Thierry, Carole Lavigne
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引用次数: 15

摘要

目前用于预防或治疗人类免疫缺陷病毒1型(HIV-1)感染的抗逆转录病毒药物不能消除艾滋病毒建立库的组织或细胞内的病毒。因此,迫切需要开发靶向递送系统来提高这些病毒庇护点的药物浓度。巨噬细胞是HIV感染的关键角色,对HIV的细胞储存库起着重要作用,因为病毒可以在这些细胞中存活很长时间。在目前的工作中,我们利用人类单核/巨噬细胞系THP-1研究了基于脂质的Neutraplex纳米系统在人巨噬细胞中传递抗hiv治疗药物的潜力。制备了中性复合纳米粒子以及阳离子和阴离子中性复合纳米脂质体(中性/小干扰RNA),并通过动态光散射对其进行了表征。在celltir - blue还原和乳酸脱氢酶释放试验中,neutrplex纳米颗粒显示出较低的细胞毒性,并且没有发现促炎作用。此外,共聚焦研究表明,neutrplex纳米颗粒和纳米脂质体可以迅速内化到THP-1巨噬细胞中,并且它们可以逃离内核体/溶酶体的后期腔室,从而在细胞质中递送小干扰rna。此外,与随机小干扰RNA序列相比,Neutraplex纳米颗粒递送靶向CXCR4共受体的小干扰RNA,在体外TZM-bl感染性实验中抑制了HIV复制。这项研究表明,Neutraplex纳米系统具有进一步发展的潜力,可以作为一种递送策略,有效和安全地增强治疗分子进入人类单核细胞源性巨噬细胞的运输,以靶向细胞库中的HIV-1。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cytotoxicity assessment, inflammatory properties, and cellular uptake of Neutraplex lipid-based nanoparticles in THP-1 monocyte-derived macrophages.

Cytotoxicity assessment, inflammatory properties, and cellular uptake of Neutraplex lipid-based nanoparticles in THP-1 monocyte-derived macrophages.

Cytotoxicity assessment, inflammatory properties, and cellular uptake of Neutraplex lipid-based nanoparticles in THP-1 monocyte-derived macrophages.

Cytotoxicity assessment, inflammatory properties, and cellular uptake of Neutraplex lipid-based nanoparticles in THP-1 monocyte-derived macrophages.
Current antiretroviral drugs used to prevent or treat human immunodeficiency virus type 1 (HIV-1) infection are not able to eliminate the virus within tissues or cells where HIV establishes reservoirs. Hence, there is an urgent need to develop targeted delivery systems to enhance drug concentrations in these viral sanctuary sites. Macrophages are key players in HIV infection and contribute significantly to the cellular reservoirs of HIV because the virus can survive for prolonged periods in these cells. In the present work, we investigated the potential of the lipid-based Neutraplex nanosystem to deliver anti-HIV therapeutics in human macrophages using the human monocyte/macrophage cell line THP-1. Neutraplex nanoparticles as well as cationic and anionic Neutraplex nanolipoplexes (Neutraplex/small interfering RNA) were prepared and characterized by dynamic light scattering. Neutraplex nanoparticles showed low cytotoxicity in CellTiter-Blue reduction and lactate dehydrogenase release assays and were not found to have pro-inflammatory effects. In addition, confocal studies showed that the Neutraplex nanoparticles and nanolipoplexes are rapidly internalized into THP-1 macrophages and that they can escape the late endosome/lysosome compartment allowing the delivery of small interfering RNAs in the cytoplasm. Furthermore, HIV replication was inhibited in the in vitro TZM-bl infectivity assay when small interfering RNAs targeting CXCR4 co-receptor was delivered by Neutraplex nanoparticles compared to a random small interfering RNA sequence. This study demonstrates that the Neutraplex nanosystem has potential for further development as a delivery strategy to efficiently and safely enhance the transport of therapeutic molecules into human monocyte-derived macrophages in the aim of targeting HIV-1 in this cellular reservoir.
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来源期刊
Nanobiomedicine
Nanobiomedicine Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
6.80
自引率
0.00%
发文量
1
审稿时长
14 weeks
期刊介绍: Nanobiomedicine is an international, peer-reviewed, open access scientific journal that publishes research in nanotechnology as it interfaces with fundamental studies in biology, as well as its application to the fields of medicine. Nanobiomedicine covers all key aspects of this research field, including, but not limited to, bioengineering, biophysics, physical and biological chemistry, and physiology, as well as nanotechnological applications in diagnostics, therapeutic application, preventive medicine, drug delivery, and monitoring of human disease. Additionally, theoretical and modeling studies covering the nanobiomedicine fields will be considered. All submitted articles considered suitable for Nanobiomedicine are subjected to rigorous peer review to ensure the highest levels of quality. The review process is carried out as quickly as possible to minimize any delays in the online publication of articles. Submissions are encouraged on all topics related to nanobiomedicine, and its clinical applications including but not limited to: Nanoscale-structured biomaterials, Nanoscale bio-devices, Nanoscale imaging, Nanoscale drug delivery, Nanobiotechnology, Nanorobotics, Nanotoxicology, Nanoparticles, Nanocarriers, Nanofluidics, Nanosensors (nanowires, nanophotonics), Nanosurgery (dermatology, gastroenterology, ophthalmology, etc), Nanocarriers commercialization of nanobiomedical technologies, Market trends in the nanobiomedicine space, Ethics and regulatory aspects of nanobiomedicine approval, New perspectives of nanobiomedicine in clinical diagnostics, BioMEMS, Nano-coatings, Plasmonics, Nanoscale visualization.
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