ACTA VIROLOGICA病毒学学报

ACTA VIROLOGICA(英文缩写 ACTA VIROL),ISSN 0001-723X,eISSN 1336-2305,中文译名:病毒学学报 是一本学术期刊。本页汇总该期刊的最新影响因子、分区信息以及最新收录于 PubMed 的文献,帮助您快速了解期刊全貌。

2026 年数据 · 影响因子
1.100
JCR 分区
Q4
CAS 分区
B4
近一年发文量
0
本站 PubMed 收录统计

发文量统计区间:2025-09-27 至 2026-09-27,按本站收录文献的发表日期统计。

ISSN: 0001-723X · eISSN: 1336-2305 · 缩写: ACTA VIROL ·中文: 病毒学学报

期刊介绍

选择期刊介绍栏目

期刊简介

Acta Virologica 是一本面向病毒学基础与临床研究的国际期刊,主要发表病毒分子生物学、病毒与宿主相互作用、病毒诊断及抗病毒研究等方面的论文。读者群包括病毒学研究人员、传染病学医师、公共卫生工作者及生物医学研究生。该刊关注从分子机制到流行病学的多层次病毒学问题,为中东欧及全球病毒学研究者提供交流平台。

研究方向

主要方向涵盖病毒基因组与复制、病毒致病机制、免疫应答、疫苗与抗病毒药物、病毒检测方法及流行病学调查。论文类型包括原始研究、短篇通讯和综述,侧重实验病毒学与临床病毒学的结合,也接受与公共卫生相关的病毒监测和暴发分析。

期刊特色

研究取向偏重实验数据和机制探讨,强调结果的可重复性与临床相关性。论文通常篇幅适中,图表清晰,适合病毒学实验室、疾控机构和医学院校的研究人员投稿。对初步探索性工作或区域性病毒监测报告也保持一定接受度。

投稿难度

投稿难度中等偏下,但并非仅凭分区可判断。建议研究设计完整、数据扎实,并突出病毒学意义或区域特色。英文写作需清晰规范,讨论部分应结合已有文献说明创新点。若被拒稿,可根据审稿意见补充实验或调整分析后改投。

历年影响因子趋势

JCR 数据年份影响因子JCR 分区
20211.827Q4
20221.700Q4
20231.100Q4
20240.800Q4
20251.100Q4

ACTA VIROLOGICA 最新收录文献

  1. JCR分区: Q4 CAS分区: B4 影响因子: 1.1

    1. A novel deltacryptic virus identified in Allium cepa from Brazil.

    作者:
    José Ailton Cruz, Adriano Márcio Freire, Júlio Carlos Polimeni, Rosana Blawid
    日期:
    2023-01-01

    This work describes a novel partitivirus genome assembled from RNA-seq data generated from onion tissue from fields in Brazil. A new partitivirus genome composed of three dsRNAs, which was closely related to arhar cryptic virus 1, was assembled from Allium cepa samples from Brazil. The genomic sequences were also identified from available transcriptomic datasets of onion samples from China, Czech Republic, India, South Korea and USA. According to the species demarcation in the Partitiviridae family, the new virus was classified into the genus Deltapartitivirus with the suggested name of allium deltapartitivirus. This is the first report of the occurrence of a cryptic virus in plants of the genus Allium, and therefore, this work contributes to the understanding of the genetic diversity of partitiviruses that infect the genus Allium. Keywords: Allium sp.; high-throughput sequencing; partitiviruses.

  2. JCR分区: Q4 CAS分区: B4 影响因子: 1.1

    2. Kinetics of interferon-λ and receptor expression in response to in vitro respiratory viral infection.

    作者:
    Alexey A Lozhkov, Nikita D Yolshin, Irina L Baranovskaya, Marina A Plotnikova, Maria V Sergeeva, Natalia E Gyulikhandanova, Sergey A Klotchenko, Andrey V Vasin
    日期:
    2023-01-01

    The major protective immune response against viruses is the production of type I and III interferons (IFNs). IFNs induce the expression of hundreds of IFN-stimulated genes (ISGs) that block viral replication and further viral spread. In this report, we analyzed the expression of IFNs and some ISGs (MxA, PKR, OAS-1, IFIT-1, RIG-1, MDA5, SOCS-1) in alveolar epithelial cells (A549) in response to infection with influenza A viruses (A/California/07/09 (H1N1pdm); A/Texas/50/12 (H3N2)); influenza B virus (B/Phuket/3073/13); adenovirus type 5 and 6; or respiratory syncytial virus (strain A2). Influenza B virus had the ability to most rapidly induce IFNs and ISGs as well as to stimulate excessive IFN-α, IFN-β and IFN-λ secretion. It seems curious that IAV H1N1pdm did not induce IFN-λ secretion, but enhanced type I IFN and interleukin (IL)-6 production. We emphasized the importance of the negative regulation of virus-triggered signaling and cellular IFN response. We showed a decrease in IFNLR1 mRNA in the case of IBV infection. The attenuation of SOCS-1 expression in IAV H1N1pdm can be considered as the inability of the system to restore the immune status. Presumably, the lack of negative feedback loop regulation of proinflammatory immune response may be a factor contributing to the particular pathogenicity of several strains of influenza. Keywords: lambda interferons; MxA; influenza; respiratory syncytial virus; A549 cells.

  3. JCR分区: Q4 CAS分区: B4 影响因子: 1.1

    3. High resolution melting curve analysis for rapid detection of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) variants.

    3. 用于快速检测严重急性呼吸综合征冠状病毒2型(SARS-CoV-2)变体的高分辨率熔解曲线分析
    作者:
    Seyed Jalal Kiani, Mehdi Ramshini, Farah Bokharaei-Salim, Tahereh Donyavi, Babak Eshrati, Majid Khoshmirsafa, Saied Ghorbani, Ahmad Tavakoli, Seyed Hamidreza Monavari, Zohreh Yousefi Ghalejoogh, Mohammad Abbasi-Kolli
    日期:
    2023-01-01

    Since the emergence of the original Wuhan SARS-CoV-2 strain, several new variants of the virus have emerged. Alpha, Beta, Gamma, Delta and the most recent Omicron variants have been introduced during this pandemic. Several methods including, but not restricted to, allele-specific PCR, ligation with rolling circle amplification and real-time PCR with allele-specific probes are able to detect mutations as low as a single nucleotide polymorphism. High-resolution melting curve analysis is ano-ther technique to assess any mutations in a nucleic acid chain. Confirmed samples with SARS-CoV-2 infection were subjected to variant identification using a de novo-designed HRM assay. In order to select for mutations with the highest effect on Tm of the amplicon, deletion mutations of NSP6 (Del 3675-3677), and S1 (Del 144) were chosen for HRM analysis. HRM analysis for the amplicon of the primer set-1 (NSP6) resulted in Tm differences of -0.39°C, +0.4°C, and -0.6°C between Alpha, Delta, and Omicron variants, respectively, in comparison to the original Wuhan strain. Moreover, HRM analysis of the amplification performed by primer set-2 (S1) led to Tm differences of +0.32°C, -0.26°C, and +0.24°C between Alpha, Delta, and Omicron variants, respectively, in comparison to original Wuhan strain. The test was able to specify each sample to its variant group with more than 90 percent of confidence. The results obtained in this study demonstrate that using a single closed-tube strategy with a HRM-equipped machine, screening new variants of the virus is possible in a fast and reliable way. Keywords: high resolution melting; SARS coronavirus 2; mutation; variant; genotyping.

  4. JCR分区: Q4 CAS分区: B4 影响因子: 1.1

    4. Attenuation of equine herpesvirus 1 through deletion of gE gene and its pathological evaluation in murine model.

    作者:
    Bidhan Chandra Bera, Taruna Anand, Selvaraj Pavulraj, Venkataramireddy Balena, Stephanie Pradhan, Raj Kumar Singh, Bhupendra Nath Tripathi, Nitin Virmani
    日期:
    2023-01-01

    Equine herpesvirus 1 (EHV1) infection is a global health problem in equines and the virus is responsible for abortions, respiratory disease and myeloencephalitis in horses. Disease management requires proper biosecurity and immunoprophylactic measures. Vaccines strengthening both arms of immunity are essential for proper control and there has been a continuous focus in this area for generation of better vaccines. Here we report construction of bacterial artificial chromosome (BAC) clone of EHV-1 strain Tohana for mutagenesis of the virus and generation of gE gene deletion mutant EHV1. The BAC clone was generated by inserting the mini-F plasmid replacing ORF71 of EHV1 and transforming into E. coli for generation of EHV1-BAC. The infectious virus was regenerated from EHV-1 BAC DNA in RK13 cells. To check utility of EHV1-BAC, we have generated mutant EHV1 by deleting the virulence-associated gE gene. The mutant virus (vToHΔgE) showed significantly reduced plaque size without affecting replication efficiency. Pathological evaluation of lesions in BALB/c mice infected with vToHΔgE revealed reduction in clinical signs and pathology in comparison to the wild-type virus. Generation of infectious BAC of EHV1 and its usage in construction of attenuated viruses shows potential of the technology for development of indigenous modified live vaccine for EHV1. Keywords: quine herpesvirus 1; bacterial artificial chromosome (BAC); mutation; glycoprotein E; vaccine.

  5. JCR分区: Q4 CAS分区: B4 影响因子: 1.1

    5. Instrument-free, visual and direct detection of porcine reproductive and respiratory syndrome viruses in resource-limited settings.

    作者:
    Diem Hong Tran, Ngan Anh Ngoc, Hau Thi Tran, Trang Nguyen Minh, Thi Bich Ngoc, Van Tam Nguyen, Van Phan Le, Huong Thi Thu
    日期:
    2023-01-01

    Porcine reproductive and respiratory syndrome (PRRS) caused by PRRS virus (PRRSV) is one of the most complicated and dangerous diseases in pigs with high mortality since it modulates the immune system of the lungs and has been closely associated with secondary infection of other lethal bacteria and viruses. The gold standard of molecular diagnosis for PRRSV, reverse transcription (RT)-PCR, is time-consuming, expensive and requires transportation of samples to a specialized laboratory. In this study, a direct colorimetric RT-loop-mediated isothermal amplification (RT-LAMP) method was developed to specifically and rapidly detect PRRSV. The RT-LAMP outcomes can be visualized by the naked eye after 45 min of incubation at 65˚C without any cross-reactivity recorded with the bacteria and other viruses tested. In particular, the mobile, non-instrumented, commercial pocket hand warmers were demonstrated to su-ccessfully provide constant temperature for consistent nucleic acid amplification throughout the RT-LAMP reactions. The limit of detection of the assay was defined as the genomic RNA concentration extracted from a known viral titer of 10-2.5 TCID50/ml. The direct use of clinical serum samples required a simple dilution to maintain the performance of the colorimetric RT-LAMP assay. Therefore, the direct colorimetric RT-LAMP assay developed is well-qualified for producing a ready-to-use kit for PRRSV diagnosis in the field. Keywords: porcine reproductive and respiratory syndrome; rapid testing; RT-LAMP; colorimetric; direct detection; instrument-free.

  6. JCR分区: Q4 CAS分区: B4 影响因子: 1.1

    6. Structural and functional characterization of SARS-CoV-2 nucleocapsid protein mutations identified in Turkey by using in silico approaches.

    作者:
    Betul Akcesme, Burcin Erkal, Zehra Yaren Donmez
    日期:
    2023-01-01

    Missense mutations in the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) virus may cause changes in the structure of proteins. The nucleocapsid (N) protein is an important target for drugs and vaccines. The main purpose of this study is to detect missense mutations in the SARS-CoV-2 N protein and to reveal the effects of these mutations on protein structure by using in silico approaches. 161 missense mutations of the N protein were determined in 2286 SARS-CoV-2 genomes derived from the GISAID EpiCoV database in the Turkish population. Identified 161 missense mutations were analyzed by using sequence and structure-based methods to predict effects of mutation on function and structure of SARS-CoV-2 N protein. These analyzes revealed that some mutations showed deleterious effects and change of stability and flexibility of nucleocapsid protein. D3L, S194L, S235F, and P13L (Omicron variant) mutations were further analyzed in our study due to their importance in the literature and in our results. Even though, our findings are essential for research of SARS-CoV-2 virus, in vitro and in vivo validations are necessary. Keywords: nucleocapsid protein; SARS-CoV-2; missense mutations; protein stability; protein flexibility.

  7. JCR分区: Q4 CAS分区: B4 影响因子: 1.1

    7. Notoginsenoside R1 inhibits hepatitis B virus replication by modulating SIRT1 activity.

    7. 三七皂苷R1通过调节SIRT1活性抑制乙型肝炎病毒复制
    作者:
    Wujing Zhang, Jingjing Cui, Lichun Li, Lijuan Chai, Qingling Hou, Huaqi Yu
    日期:
    2023-01-01

    The hepatitis B virus (HBV) infection remains highly prevalent globally. The present study aimed to explore the possible therapeutic effect of notoginsenoside R1, which has attracted considerable attention due to its diverse pharmacological effects, on HBV infection. The HBV-containing hepatocellular carcinoma cell lines, HepG2 and MHCC97H, were used in this study. We first treated the two cell lines with different concentrations of notoginsenoside R1 and subsequently measured the relative levels of HBV DNA, HBV surface antigen, HBV core antigen, and sirtuin 1 (SIRT1) using reverse transcription-quantitative polymerase chain reaction and western blotting. Finally, an HBV hemodynamic replication model was created to test the effect of notoginsenoside R1 on HBV replication. Notoginsenoside R1 inhibited the replication of HBV. This inhibitory effect was mediated through the downregulation of SIRT1 activity. Additionally, the inhibition of SIRT1 activity by silencing its expression or treatment with the SIRT1 inhibitor, selisistat, suppressed HBV replication. Furthermore, our animal experiments demonstrated that notoginsenoside R1 was effective at suppressing HBV replication in vivo. Thus, notoginsenoside R1 suppresses HBV replication by downregulating SIRT1 activity in vitro and in vivo. Keywords: notoginsenoside R1; hepatitis B virus; SIRT1.

  8. JCR分区: Q4 CAS分区: B4 影响因子: 1.1

    8. Effects of LEF-11 acetylation modification on the regulation of baculovirus infection.

    作者:
    Jiannan Wu, Shuli Shen, Xu Gao, Meng Miao, Yanping Quan, Wei Yu
    日期:
    2023-01-01

    Late expression factor 11 (LEF-11) is an essential protein in the regulation of Bombyx mori nucleopolyhedrovirus (BmNPV) DNA replication and late gene expression. Our recent quantitative analysis of protein acetylome revealed for the first time that LEF-11 can be acetylated at one lysine residue (K83) during viral infection, but the underlying mechanism is unclear. The acetylation level for K83 was down-regulated after 36 h post-infection by approximately 30%. To clarify the regulatory function of this modification, overlap PCR was used for site-specific mutagenesis for acetylated (K83Q) or deacetylated (K83R) mimic mutants of LEF-11. The results of viral titration and quantitative polymerase chain reaction showed that after K83 acetylation, budding virion production and the viral genome replication level were significantly upregulated. Meanwhile, the results of yeast two-hybrid (Y2H) system confirmed that K83 deacetylation modification inhibited the interaction between LEF-11 and immediate early gene 1 (IE-1). In conclusion, the acetylation of LEF-11 at K83 might enhance the interaction with IE-1 in the host cell nucleus to promote viral DNA replication, and might be one of the antiviral strategies of the silkworm host. The host inhibits virus proliferation by deacetylating LEF-11. Keywords: BmNPV; LEF-11; acetylation; virus replication; protein interaction.

  9. JCR分区: Q4 CAS分区: B4 影响因子: 1.1

    9. Mouse intestinal villi as a model system for studies of norovirus infection.

    作者:
    Jordan José Seir, Mora Camilo José, Renault Pierre, Guerrero Carlos Arturo
    日期:
    2023-01-01

    Noroviruses (NoV) are enteric caliciviruses that have been detected in multiple species of mammals, including humans. Establishing an efficient in vitro cell culture system for human norovirus (HuNoV) remains a challenge; however, its replication has been reported in 3D cultured Caco-2 cells and a clone of Caco-2 cells (C2BBe1), human enteroids and human B cells. Isolated mouse intestinal villi, with large diversity of intestinal epithelial cells, are a primary cellular model that has been shown to be permissive for the infection and replication of enteric viruses such as rotaviruses. We hypothesized that they could allow the infection and replication of the human noroviruses. In this report, we indicate that the isolated villi model of the mouse intestine is effective for the infection study and replication of the human noroviruses from faeces and environmental matrices (water, vegetables and air). For successful infection, the virus needs to be activated with trypsin. The virus has an average replicative cycle of 10 h, although viral particles with infectious capacity are found already at 2 hours post infection (2 h.p.i.). The model is efficient in obtaining abundant biological material and is ideal for studying the biological activity of the human noroviruses in the same cell model or for generating antibodies. Keywords: human norovirus; intestinal epithelial cells; intestinal villus isolation; norovirus isolated from water; norovirus isolated from plants; norovirus isolated from air.

  10. JCR分区: Q4 CAS分区: B4 影响因子: 1.1

    10. High-throughput RNA sequencing analysis of Mallotus japonicus revealed novel polerovirus and amalgavirus.

    作者:
    Dongjin Choi, Megha Rai, Amit Rai, Chaerim Shin, Mami Yamazaki, Yoonsoo Hahn
    日期:
    2023-01-01

    High-throughput RNA sequencing (RNA-seq) analysis of samples from Mallotus japonicus, a traditional medicinal plant, yielded two novel RNA viruses tentatively named Mallotus japonicus virus A (MjVA) and Mallotus japonicus virus B (MjVB). The MjVA and MjVB genomes encode proteins showing amino acid sequence similarities to those of poleroviruses (the genus Polerovirus, the family Solemoviridae) and amalgaviruses (the genus Amalgavirus, the family Amalgaviridae), respectively. The MjVA genome contains seven highly overlapping open reading frames, which are translated to seven proteins through various translational mechanisms, including -1 programmed ribosomal frameshifting (PRF) at the slippery motif GGGAAAC, non-AUG translational initiation, and stop codon readthrough. The MjVB genome encodes two proteins; one of which is translated by +1 PRF mechanism at the slippery motif UUUCGN. The abundance analysis of virus-derived RNA fragments revealed that MjVA is highly concentrated in plant parts with well-developed phloem tissues as previously demonstrated in other poleroviruses, which are transmitted by phloem feeders, such as aphids. MjVB, an amalgavirus generally transmitted by seeds, is distributed in all samples at low concentrations. Thus, this study demonstrates the effectiveness and usefulness of RNA-seq analysis of plant samples for the identification of novel RNA viruses and analysis of their tissue distribution. Keywords: Polerovirus; Amalgavirus; Mallotus japonicus; RNA virus; viral genome; programmed ribosomal frameshifting.

在 ACTA VIROLOGICA 中搜索更多文献

支持中英文检索 · 智能翻译 · 影响因子 · PDF 下载 · AI 文献阅读

指标接近的期刊