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壳聚糖纳米粒介导的 miR-155 的体内递送调节鱼类(斑马鱼)抗病毒免疫反应

Chitosan nanoparticles-based in vivo delivery of miR-155 modulates the Viral haemorrhagic septicaemia virus-induced antiviral immune responses in zebrafish (Danio rerio).

机构信息

College of Veterinary Medicine and Research Institute of Veterinary Medicine, Chungnam National University, Yuseong-gu, Daejeon 34134, Republic of Korea; Department of Microbiology and Immunology, University of Otago, 9054, Dunedin, New Zealand.

College of Veterinary Medicine and Research Institute of Veterinary Medicine, Chungnam National University, Yuseong-gu, Daejeon 34134, Republic of Korea.

出版信息

Fish Shellfish Immunol. 2024 Jan;144:109234. doi: 10.1016/j.fsi.2023.109234. Epub 2023 Nov 19.

Abstract

Viral haemorrhagic septicaemia virus (VHSV) is one of the highly pathogenic virus, which causes viral haemorrhagic septicaemia disease in both marine and freshwater fish. Micro RNA-155 (miRNA-155) is a multifunctional small non-coding RNA and it involves regulation of immune responses during viral infection. In this study, dre-miR-155 mimics were encapsulated into chitosan nanoparticles (CNPs). Resulted encapsulated product (miR-155-CNPs) was investigated for its immunomodulation role in zebrafish during experimentally challenged VHSV infection. Successful encapsulation of dre-miR-155 mimics into CNPs was confirmed through average nanoparticle (NPs) size (341.45 ± 10.00 nm), increased encapsulation efficiency percentage (98.80%), bound dre-miR-155 with chitosan, sustained release in vitro (up to 40%), and the integrity of RNA. Overexpressed miR-155 was observed in gills, muscle, and kidney tissues (5.42, 19.62, and 140.72-folds, respectively) after intraperitoneal delivery of miR-155-CNPs into zebrafish upon VHSV infection (miR-155-CNPs + VHSV). The miR-155-CNPs + VHSV infected fish had the highest cumulative survival (85%), which was associated with low viral copy numbers. The miR-155-overexpressing fish showed significantly decreased expression of ifnγ, irf2bpl, irf9, socs1a, il10, and caspase3, compared to that of the miR-155 inhibitor + VHSV infected fish group. In contrast, il1β, tnfα, il6, cd8a, and p53 expressions were upregulated in miR-155-overexpressed zebrafish compared to that of the control. The overall findings indicate the successful delivery of dre-miR-155 through miR-155-CNPs that enabled restriction of VHSV infection in zebrafish presumably by modulating immune gene expression.

摘要

病毒性出血性败血症病毒(VHSV)是一种高致病性病毒,可引起海水和淡水鱼类的病毒性出血性败血症疾病。微小 RNA-155(miRNA-155)是一种多功能的小非编码 RNA,它涉及病毒感染期间免疫反应的调节。在这项研究中,dre-miR-155 模拟物被包裹在壳聚糖纳米粒子(CNP)中。研究了包裹产物(miR-155-CNP)在实验性 VHSV 感染期间对斑马鱼的免疫调节作用。通过平均纳米粒子(NP)尺寸(341.45±10.00nm)、增加的封装效率百分比(98.80%)、壳聚糖结合的 dre-miR-155、体外持续释放(高达 40%)以及 RNA 的完整性,证实了 dre-miR-155 模拟物成功地封装在 CNP 中。在 VHSV 感染后,通过腹腔内递送 miR-155-CNP 进入斑马鱼,在鳃、肌肉和肾脏组织中观察到过表达的 miR-155(分别为 5.42、19.62 和 140.72 倍)(miR-155-CNP+VHSV)。miR-155-CNP+VHSV 感染的鱼类具有最高的累积存活率(85%),这与低病毒拷贝数有关。与 miR-155 抑制剂+VHSV 感染鱼类组相比,过表达 miR-155 的鱼类中 ifnγ、irf2bpl、irf9、socsa、il10 和 caspase3 的表达显著降低。相反,与对照相比,过表达 miR-155 的斑马鱼中 il1β、tnfα、il6、cd8a 和 p53 的表达上调。总体研究结果表明,通过 miR-155-CNP 成功递送 dre-miR-155,可能通过调节免疫基因表达来限制斑马鱼中的 VHSV 感染。

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