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巨吞饮作用是抗原呈递细胞摄取变应原特异性病毒样纳米颗粒的主要机制。

Macropinocytosis Is the Principal Uptake Mechanism of Antigen-Presenting Cells for Allergen-Specific Virus-like Nanoparticles.

作者信息

Kraus Armin, Kratzer Bernhard, Sehgal Al Nasar Ahmed, Trapin Doris, Khan Matarr, Boucheron Nicole, Pickl Winfried F

机构信息

Institute of Immunology, Center for Pathophysiology, Infectiology and Immunology, Medical University of Vienna, 1090 Vienna, Austria.

Karl Landsteiner University of Health Sciences, 3500 Krems, Austria.

出版信息

Vaccines (Basel). 2024 Jul 18;12(7):797. doi: 10.3390/vaccines12070797.

Abstract

Virus-like nanoparticles (VNP) are regarded as efficient vaccination platforms and have proven to be useful for the non-anaphylactogenic delivery of allergen-specific immunotherapy in preclinical models previously. Herein, we sought to determine the mode of VNP uptake by antigen presenting cells (APC). Accordingly, we screened a collection of substances known to inhibit different uptake pathways by APC. The human leukemia monocytic cell line THP-1 and the murine dendritic cell line DC 2.4 were examined for the uptake of fluorescently labelled VNP in the presence or absence of inhibitors. The inhibitory effect of candidate substances that blocked VNP uptake in APC lines was subsequently evaluated in studies with primary APC present in splenocyte and lung cell homogenates in vitro and upon intratracheal application of VNP in vivo. The uptake of allergen-specific VNP in vitro and in vivo was mainly observed by macrophages and CD103 dendritic cells and was sensitive to inhibitors that block macropinocytosis, such as hyperosmolarity induced by sucrose or the polyphenol compound Rottlerin at low micromolar concentrations but not by other inhibitors. Also, T-cell proliferation induced by allergen-specific VNP was significantly reduced by both substances. In contrast, substances that stimulate macropinocytosis, such as Heparin and phorbol myristate acetate (PMA), increased VNP-uptake and may, thus, help modulate allergen-specific T-cell responses. We have identified macropinocytosis as the principal uptake mechanism of APC for allergen-specific VNP in vitro and in vivo, paving the way for further improvement of VNP-based therapies, especially those that can be used for tolerance induction in allergy, in the future.

摘要

病毒样纳米颗粒(VNP)被视为高效的疫苗接种平台,并且先前已在临床前模型中证明其可用于变应原特异性免疫疗法的非过敏性递送。在此,我们试图确定抗原呈递细胞(APC)摄取VNP的方式。因此,我们筛选了一系列已知可抑制APC不同摄取途径的物质。在有或没有抑制剂存在的情况下,检测了人白血病单核细胞系THP-1和小鼠树突状细胞系DC 2.4对荧光标记的VNP的摄取。随后,在体外脾细胞和肺细胞匀浆中存在原代APC的研究以及体内气管内应用VNP后,评估了阻断APC系中VNP摄取的候选物质的抑制作用。体外和体内变应原特异性VNP的摄取主要由巨噬细胞和CD103树突状细胞观察到,并且对阻断巨胞饮作用的抑制剂敏感,例如蔗糖诱导的高渗或低微摩尔浓度的多酚化合物rottlerin,但对其他抑制剂不敏感。此外,这两种物质均显著降低了变应原特异性VNP诱导的T细胞增殖。相比之下,刺激巨胞饮作用的物质,如肝素和佛波酯肉豆蔻酸酯(PMA),增加了VNP的摄取,因此可能有助于调节变应原特异性T细胞反应。我们已确定巨胞饮作用是体外和体内APC摄取变应原特异性VNP的主要摄取机制,为未来进一步改进基于VNP的疗法,尤其是那些可用于诱导过敏耐受性的疗法铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d692/11281386/47af14d5d196/vaccines-12-00797-g001.jpg

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