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采用近红外抗病毒光免疫疗法(NIR-AVPIT)靶向清除流感病毒及受感染细胞。

Targeted Elimination of Influenza Virus and Infected Cells with Near-Infrared Antiviral Photoimmunotherapy (NIR-AVPIT).

作者信息

Mizukoshi Terumi, Tateishi Koichiro, Tokusanai Mizuki, Yoshinaka Yoshiyuki, Yamamoto Aisaku, Yamamoto Naoki, Yamamoto Norio

机构信息

Medical Corporation Koujunkai, Kawasaki 211-0063, Japan.

Department of Microbiology, Tokai University School of Medicine, Isehara 259-1193, Japan.

出版信息

Pharmaceutics. 2025 Jan 28;17(2):173. doi: 10.3390/pharmaceutics17020173.

Abstract

: Seasonal influenza causes significant morbidity and mortality each year. Since viruses can easily acquire drug-resistant mutations, it is necessary to develop new antiviral strategies with different targets. Near-infrared photoimmunotherapy (NIR-PIT) is a type of anti-cancer therapy that has recently attracted considerable attention, with favorable outcomes reported for several cancers. In this study, we investigated whether this approach could be used as a novel anti-influenza therapy to destroy influenza virus and infected cells. : To evaluate the efficacy of near-infrared antiviral photoimmunotherapy (NIR-AVPIT), we prepared an anti-hemagglutinin (HA) monoclonal antibody without neutralizing activity against influenza A virus (FluV) labeled with IR-700 and reacted it with FluV and infected cells, as well as HA-expressing HEK293 cells. : NIR-AVPIT strongly inactivated FluV virions, suppressed cytopathic effects, and achieved more than a 4-log reduction in viral RNA amplification. Treatment of FluV-infected cells with the antibody-IR700 complex and NIR in the early stages of infection significantly inhibited viral propagation, and double treatment with time apart exerted a greater inhibitory effect. NIR-AVPIT rapidly induced morphological changes in HA-expressing HEK293 cells and inhibited the proliferation of these cells. : These results suggest that NIR-AVPIT targeting HA antigens could inactivate FluV and eliminate infected cells in vitro. This strategy is a promising approach to treat various viral infections, including influenza.

摘要

季节性流感每年都会导致大量发病和死亡。由于病毒很容易获得耐药性突变,因此有必要开发针对不同靶点的新抗病毒策略。近红外光免疫疗法(NIR-PIT)是一种抗癌疗法,最近受到了广泛关注,已有几种癌症报告了良好的治疗效果。在本研究中,我们调查了这种方法是否可以用作一种新型抗流感疗法来破坏流感病毒和受感染细胞。

为了评估近红外抗病毒光免疫疗法(NIR-AVPIT)的疗效,我们制备了一种对甲型流感病毒(FluV)无中和活性的抗血凝素(HA)单克隆抗体,并用IR-700进行标记,使其与FluV、受感染细胞以及表达HA的HEK293细胞发生反应。

NIR-AVPIT能强烈灭活FluV病毒粒子,抑制细胞病变效应,并使病毒RNA扩增降低超过4个对数。在感染早期用抗体-IR700复合物和近红外光处理FluV感染的细胞可显著抑制病毒传播,且间隔一定时间进行双重处理具有更大的抑制作用。NIR-AVPIT能迅速诱导表达HA的HEK293细胞发生形态变化,并抑制这些细胞的增殖。

这些结果表明,靶向HA抗原的NIR-AVPIT在体外可灭活FluV并清除受感染细胞。这种策略是治疗包括流感在内的各种病毒感染的一种有前景的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cef3/11859895/9897106a4aa1/pharmaceutics-17-00173-g001.jpg

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