• 제목/요약/키워드: virus inhibition

검색결과 263건 처리시간 0.021초

Vp28 of Shrimp White Spot Syndrome Virus Is Involved in the Attachment and Penetration into Shrimp Cells

  • Yi, Guohua;Wang, Zhimin;Qi, Yipeng;Yao, Lunguang;Qian, Juan;Hu, Longbo
    • BMB Reports
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    • 제37권6호
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    • pp.726-734
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    • 2004
  • White spot disease (WSD) is caused by the white spot syndrome virus (WSSV), which results in devastating losses to the shrimp farming industry around the world. However, the mechanism of virus entry and spread into the shrimp cells is unknown. A binding assay in vitro demonstrated VP28-EGFP (envelope protein VP28 fused with enhanced green fluorescence protein) binding to shrimp cells. This provides direct evidence that VP28-EGFP can bind to shrimp cells at pH 6.0 within 0.5 h. However, the protein was observed to enter the cytoplasm 3 h post-adsorption. Meanwhile, the plaque inhibition test showed that the polyclonal antibody against VP28 (a major envelope protein of WSSV) could neutralize the WSSV and block an infection with the virus. The result of competition ELISA further confirmed that the envelope protein VP28 could compete with WSSV to bind to shrimp cells. Overall, VP28 of the WSSV can bind to shrimp cells as an attachment protein, and can help the virus enter the cytoplasm.

Nitric oxide induced by Indian ginseng root extract inhibits Infectious Bursal Disease virus in chicken embryo fibroblasts in vitro

  • Ganguly, Bhaskar;Umapathi, Vijaypillai;Rastogi, Sunil Kumar
    • Journal of Animal Science and Technology
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    • 제60권1호
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    • pp.2.1-2.5
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    • 2018
  • Infectious Bursal Disease is a severe viral disease of chicken responsible for serious economic losses to poultry farmers. The causative agent, Infectious Bursal Disease virus, is inhibited by nitric oxide. Root extract of the Indian ginseng, Withania somnifera, inhibits Infectious Bursal Disease virus in vitro. Also, Withania somnifera root extract is known to induce nitric oxide production in vitro. Therefore, the present study was undertaken to determine if the inhibitory activity of Withania somnifera against Infectious Bursal Disease virus was based on the production of nitric oxide. We show that besides other mechanisms, the inhibition of Infectious Bursal Disease virus by Withania somnifera involves the production of nitric oxide. Our results also highlight the paradoxical role of nitric oxide in the pathogenesis of Infectious Bursal Disease.

감기바이러스(인플루엔자) 감염에 대한 마늘의 방어효과 (Effects of Garlic Extract for Protecting the Infection of Influenza Virus)

  • 김건희;영정승차;박무현;하상도
    • 한국식품영양과학회지
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    • 제29권1호
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    • pp.128-133
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    • 2000
  • This study was designed to verify the efficacy of garlic extracts for protecting the infecton of influenza and Japanese B encephalitis virus. Influenza virus (AO/PR8 strain) and Japanese B encephalitis virus (JaGAr O1 strain) were used to attack mouse through nasal route and each vaccines were injected subcutaneously. 0.002 and 0.2 mL/day of garlic extracts were orally administered to mice. The blood and serum samples were taken from the mice to measure LD50, Defense Index (DI), virus-neutralizing antibody for comparing virus influence inhibiting activities. Defense indices of the male and female mice were not significantly different at every experiment. Vaccination effectively inhibited the influence of influenza virus and 0.002 mL/day garlic extract (0.55$\pm$0.05) resulted in significantly higher DI than the control (0$\pm$0.05) (p<0.05). Although 0.002 mL/day garlic extract (0.55$\pm$0.05) resulted in significantly lower DI than the vaccination (1.10$\pm$0.05), 0.2 mL/day garlic extract (2.05$\pm$0.05) resulted in 10 times higher DI than the vaccination (1.10$\pm$0.05). Garlic extract did not affect DI in Japanese B encephalitis virus influence of the vaccinated mouse, but significantly reduced DI of the non-vaccinated mouse (p<0.05). Garlic extracts did not affect the production of the neutralizing antibody against influenza by vaccination. However, neutralizing antibody production of Japanese B encephalitis was accelerated by vaccination. Consequently, the current study proved the efficacy of garlic on inhibition of influenza virus. Finally, it is very hard to show the higher preventing effect on flu through ingestion of garlic as a food than vaccination.

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누에 전염성 연화병의 발병 억제제에 의한 방제 (Inhibitory Effect of Guanidine Hydrochloride on the Infectious Flacherie Virus of the Silkworm, Bombyx mori)

  • 강석권;김근영;이재창;조용섭
    • 한국잠사곤충학회지
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    • 제25권2호
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    • pp.37-43
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    • 1984
  • 누에병 중에 피해가 막대한 전염성 연화병을 방제하기 위하여 바이러스 증식을 특이적으로 억제하는 guanidine 유도체중에서 그 억제효과가 큰 guanidine hydrochloride(GH)를 도입하여 전염성 연화병 바이러스의 증식억제효과에 관하여 조사하였다. 1. 누에에 대한 GH의 약해시험 결과에서는 GH농도 0.01% 수준 이하에서는 약해가 전혀 없었다. 2. FV 감염잠 혼입에 따른 피해조사에서는 화용비율은 무처리(대조) 89.2% (100)에 대하여 1% 감염잠혼입구 70.7%(79), 5% 감염잠 혼입구 38.4%(43)이었으며 1만두수견양은 대조구 21.3kg(100)에 대하여 1% 혼입구 16.7kg(77), 5% 혼입구 8.8kg(41)으로서 전자와 같은 경향으로 나타났다. 3. FV에 대한 GH의 발병억제효과는 GH 0.01% 농도에서 대조구에 비하여 약 10배의 억제효과가 있었다. 4. GH의 투여회수와 발병억제효과에서는 FV접종후 계속 투여하는 것이 가장 효과적이었다. 5. FV 접종후 GH투여시간에 대한 발병억제 효과는 접종과 동시에 투여는 것이 가장 효과적이었다. 6. FV의 GH에 의한 시험관내 불활화조사에서는 GH가 시험관내에서 FV를 불활화시키는 작용이 인정되지 않았다.

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In Vitro Screening for Compounds Derived from Traditional Chinese Medicines with Antiviral Activities Against Porcine Reproductive and Respiratory Syndrome Virus

  • Cheng, Jia;Sun, Na;Zhao, Xin;Niu, Li;Song, Meiqin;Sun, Yaogui;Jiang, Junbing;Guo, Jianhua;Bai, Yuansheng;He, Junping;Li, Hongquan
    • Journal of Microbiology and Biotechnology
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    • 제23권8호
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    • pp.1076-1083
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    • 2013
  • Seventeen compounds derived from traditional Chinese medicines (TCMs) were tested for their antiviral activity against porcine reproductive and respiratory syndrome virus (PRRSV) in vitro. Visualization with the cytopathologic effect (CPE) assay and the 3-(4, 5-dimethyithiazol-2-yl)-2,5-diphenyltetrazolium bromide test were used to determine the 50% cytotoxic concentration ($CC_{50}$) and 50% effective concentration ($EC_{50}$) in cultured Marc-145 cells. Among the tested compounds, chlorogenic acid and scutellarin showed potential anti-PRRSV activity. The $EC_{50}$ values were $270.8{\pm}14.6{\mu}g/ml$ and $28.21{\pm}26.0{\mu}g/ml$ and the selectivity indexes were >5.54 and 35.5, respectively. The time-of-addition and virucidal assay indicated that the anti-PRRSV activity of the two compounds could be due to their inhibiting the early stage of virus replication and/or inactivating the virus directly. The inhibition of the virus attachment was not observed in the adsorption inhibition assay. The inhibition ratios of chlorogenic acid and scutellarin were, respectively, 90.8% and 61.1% at the maximum non-cytotoxic concentrations. The results have provided a basis for further exploration of their antiviral properties and mechanisms in vivo. We believe that the chlorogenic acid and scutellarin have a great potential to be developed as new anti-PRRSV drugs for clinical application.

일본뇌염 바이러스 Nakayama-NIH주와 국내에서 분리된 일본 뇌염 바이러스주의 유전적 차이 및 항원성 차이의 조사 (Antigenic and Genetic Differences between the Prototype Nakayama-NIH Strain and Korean Strains of Japanese Encephalitis Virus)

  • 조해월;남재환;이유진;김은정;이호동;윤경식;고현철
    • 대한바이러스학회지
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    • 제26권2호
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    • pp.191-204
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    • 1996
  • The characterization of the 5 Korean isolates (K96P10, K94P05, K91P55, K87P39, and K82P01) of Japanese encephalitis virus (JEV) was compared with JE virus prototype Nakayama-NIH (NKY-NIH) using prM/M and envelope gene sequences of the JEV genome and phylogenetic analysis. The antigenic analysis of these viruses were done by the cross-hamagglutination inhibition (HI) test using polyclonal antibodies against Korean isolates and NKY-NIH. The sequence homology of the Korean isolates and NKY-NIH ranged between 87.4 % - 95.6 % at the nucleotide level and between 98.2 % - 97.2 % at the amino acid level over the E nucleotides compared. Alignment of E protein amino acid sequences revealed that residue positions E89, E129, E221, E244, E327, E366, E459, and E477 characterized the Korean strains. According to phylogenetic analysis bases on the E nucleotide, there are at least 2 genetic types of JEV existing in Korea and Korean strains were distinct from NKY-NIH. However, the cross HI test results of all the Korean isolates were serologically no different from NKY-NIH strain.

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Chikungunya Virus-Encoded nsP2, E2 and E1 Strongly Antagonize the Interferon-β Signaling Pathway

  • Bae, Sojung;Lee, Jeong Yoon;Myoung, Jinjong
    • Journal of Microbiology and Biotechnology
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    • 제29권11호
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    • pp.1852-1859
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    • 2019
  • Chikungunya virus (CHIKV) is a single-stranded positive-sense RNA virus, belonging to the genus Alphavirus of the Togaviridae family. It causes multiple symptoms, including headache, fever, severe joint and muscle pain, and arthralgia. Since CHIKV was first isolated in Tanzania in 1952, there have been multiple outbreaks of chikungunya fever. However, its pathogenesis and mechanisms of viral immune evasion have been poorly understood. In addition, the exact roles of individual CHIKV genes on the host innate immune response remain largely unknown. To investigate if CHIKV-encoded genes modulate the type I interferon (IFN) response, each and every CHIKV gene was screened for its effects on the induction of the IFN-β promoter. Here we report that CHIKV nsP2, E2 and E1 strongly suppressed activation of the IFN-β promoter induced by the MDA5/RIG-I receptor signaling pathway, suggesting that nsP2, E2, and E1 are the major antagonists against induction of IFN-β. Delineation of underlying mechanisms of CHIKV-mediated inhibition of the IFN-β pathway may help develop virus-specific therapeutics and vaccines.

Antiherpetic Activities of Flavonoids against Herpes Simplex Virus Type 1 (HSV-1) and Type 2 (HSV-2) In Vitro

  • Lyu Su-Yun;Rhim Jee-Young;Park Won-Bong
    • Archives of Pharmacal Research
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    • 제28권11호
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    • pp.1293-1301
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    • 2005
  • Flavonoids, a group of low molecular weight phenylbenzopyrones, have various pharmacological properties including antioxidant, anticancer, bactericidal, and anti-inflammatory. We carried out anti-herpetic assays on 18 flavonoids in five classes and a virus-induced cytopathic effect (CPE) inhibitory assay, plaque reduction assay, and yield reduction assay were performed. When flavonoids were applied at various concentrations to Vero cells infected by HSV-1 and 2, most of the f1avonoids showed inhibitory effects on virus-induced CPE. Among the flavonoids, EC, ECG (flavanols), genistein (isoflavone), naringenin (flavanone), and quercetin (flavonol) showed a high level of CPE inhibitory activity. The antiviral activity of flavonoids were also examined by a plaque reduction assay. EC, ECG, galangin, and kaempferol showed a strong antiviral activity, and catechin, EGC, EGCG, naringenin, chrysin, baicalin, fisetin, myricetin, quercetin, and genistein showed moderate inhibitory effects against HSV-1. In these experiments, flavanols and flavonols appeared to be more active than flavones. Furthermore, treatment of Vero cells with ECG and galangin (which previously showed strong antiviral activities) before virus adsorption led to a slight enhancement of inhibition as determined by a yield reduction assay, indicating that an intracellular effect may also be involved.

Morin Hydrate Inhibits Influenza Virus entry into Host Cells and Has Anti-inflammatory Effect in Influenza-infected Mice

  • Eun-Hye Hong;Jae-Hyoung Song;Seong-Ryeol Kim;Jaewon Cho;Birang Jeong;Heejung Yang;Jae-Hyeon Jeong;Jae-Hee Ahn;Hyunjin Jeong;Seong-Eun Kim;Sun-Young Chang;Hyun-Jeong Ko
    • IMMUNE NETWORK
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    • 제20권4호
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    • pp.32.1-32.15
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    • 2020
  • Influenza virus is the major cause of seasonal and pandemic flu. Currently, oseltamivir, a potent and selective inhibitor of neuraminidase of influenza A and B viruses, is the drug of choice for treating patients with influenza virus infection. However, recent emergence of oseltamivir-resistant influenza viruses has limited its efficacy. Morin hydrate (3,5,7,2',4'-pentahydroxyflavone) is a flavonoid isolated from Morus alba L. It has antioxidant, anti-inflammatory, neuroprotective, and anticancer effects partly by the inhibition of the NF-κB signaling pathway. However, its effects on influenza virus have not been studied. We evaluated the antiviral activity of morin hydrate against influenza A/Puerto Rico/8/1934 (A/PR/8; H1N1) and oseltamivir-resistant A/PR/8 influenza viruses in vitro. To determine its mode of action, we carried out time course experiments, and time of addition, hemolysis inhibition, and hemagglutination assays. The effects of the co-administration of morin hydrate and oseltamivir were assessed using the murine model of A/PR/8 infection. We found that morin hydrate reduced hemagglutination by A/PR/8 in vitro. It alleviated the symptoms of A/PR/8-infection, and reduced the levels of pro-inflammatory cytokines and chemokines, such as TNF-α and CCL2, in infected mice. Co-administration of morin hydrate and oseltamivir phosphate reduced the virus titers and attenuated pulmonary inflammation. Our results suggest that morin hydrate exhibits antiviral activity by inhibiting the entry of the virus.

Inhibition of Epstein-Barr Virus by the Triterpenoid Betulin Diphosphate and Uvaol

  • Muhammad, Amjad;Carlson, Robert M.;Krasutsky, Pavel;Karim, M.Reza-Ul
    • Journal of Microbiology and Biotechnology
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    • 제14권5호
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    • pp.1086-1088
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    • 2004
  • Betulin, a pentacyclic triterpenoid isolated from the bark of Betula papyrifera. Laboratory synthesized structural analogs were tested for antiviral activities against Epstein-Barr Virus (EBV) by immunofluorescent antiviral assay. Among the several analogs tested, betulin 3,28-diphosphate and uvaol exhibited significant antiviral activities against EBV. The $EC_{50}$ of betulin 3,28-diphosphate and uvaol was found to be $0.6\mu{M}$ and $0.7\mu{M}$ respectively.