3D host cell and pathogen-based bioassay development for testing anti-tuberculosis (TB) drug response and modeling immunodeficiency.

Q2 Biochemistry, Genetics and Molecular Biology Biomolecular Concepts Pub Date : 2021-09-02 DOI:10.1515/bmc-2021-0013
Shilpaa Mukundan, Rachana Bhatt, John Lucas, Matthew Tereyek, Theresa L Chang, Selvakumar Subbian, Biju Parekkadan
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引用次数: 1

Abstract

Tuberculosis (TB) is a global health threat that affects 10 million people worldwide. Human Immunodeficiency Virus (HIV) remains one of the major contributors to the reactivation of asymptomatic latent tuberculosis (LTBI). Over the recent years, there has been a significant focus in developing in-vitro 3D models mimicking early events of Mycobacterium tuberculosis (Mtb) pathogenesis, especially formation of the granuloma. However, these models are low throughput and require extracellular matrix. In this article, we report the generation of a matrix-free 3D model, using THP-1 human monocyte/macrophage cells and mCherry-expressing Mycobacterium bovis BCG (Bacilli Camille Guérin), henceforth referred as 3D spheroids, to study the host cell-bacterial interactions. Using mCherry-intensity-based tracking, we monitored the kinetics of BCG growth in the 3D spheroids. We also demonstrate the application of the 3D spheroids for testing anti-TB compounds such as isoniazid (INH), rifampicin (RIF), as well as a host-directed drug, everolimus (EVR) as single and combinational treatments. We further established a dual infection 3D spheroid model by coinfecting THP-1 macrophages with BCG mCherry and pseudotype HIV. In this HIV-TB co-infection model, we found an increase in BCG mCherry growth within the 3D spheroids infected with HIV pseudotype. The degree of disruption of the granuloma was proportional to the virus titers used for co-infection. In summary, this 3D spheroid assay is an useful tool to screen anti-TB response of potential candidate drugs and can be adopted to model HIV-TB interactions.

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3D宿主细胞和基于病原体的生物测定开发用于检测抗结核(TB)药物反应和模拟免疫缺陷。
结核病是一种全球健康威胁,影响着全世界1000万人。人类免疫缺陷病毒(HIV)仍然是无症状潜伏性结核病(LTBI)重新激活的主要贡献者之一。近年来,有一个重要的重点是开发体外3D模型模拟结核分枝杆菌(Mtb)发病机制的早期事件,特别是肉芽肿的形成。然而,这些模型是低通量和需要细胞外基质。在本文中,我们报道了使用THP-1人类单核细胞/巨噬细胞和表达mccherry的牛分枝杆菌BCG (Bacilli Camille gusamurin)生成无基质3D模型(以下简称3D球体)来研究宿主细胞-细菌相互作用。利用基于mcherry强度的跟踪,我们监测了BCG在三维球体中的生长动力学。我们还展示了3D球体用于测试抗结核化合物的应用,如异烟肼(INH)、利福平(RIF),以及一种宿主导向药物依维莫司(EVR)作为单一和联合治疗。我们进一步将THP-1巨噬细胞与BCG mCherry和伪HIV联合感染,建立了双重感染的三维球体模型。在这个HIV- tb联合感染模型中,我们发现在感染HIV假型的三维球体内BCG mCherry生长增加。肉芽肿的破坏程度与用于合并感染的病毒滴度成正比。总之,这种三维球体试验是筛选潜在候选药物抗结核反应的有用工具,可用于模拟HIV-TB相互作用。
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来源期刊
Biomolecular Concepts
Biomolecular Concepts Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (all)
CiteScore
5.30
自引率
0.00%
发文量
27
审稿时长
12 weeks
期刊介绍: BioMolecular Concepts is a peer-reviewed open access journal fostering the integration of different fields of biomolecular research. The journal aims to provide expert summaries from prominent researchers, and conclusive extensions of research data leading to new and original, testable hypotheses. Aspects of research that can promote related fields, and lead to novel insight into biological mechanisms or potential medical applications are of special interest. Original research articles reporting new data of broad significance are also welcome. Topics: -cellular and molecular biology- genetics and epigenetics- biochemistry- structural biology- neurosciences- developmental biology- molecular medicine- pharmacology- microbiology- plant biology and biotechnology.
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