1.Dehydrodiisoeugenol resists H1N1 virus infection via TFEB/autophagy-lysosome pathway.
Zhe LIU ; Jun-Liang LI ; Yi-Xiang ZHOU ; Xia LIU ; Yan-Li YU ; Zheng LUO ; Yao WANG ; Xin JIA
China Journal of Chinese Materia Medica 2025;50(6):1650-1658
The present study delves into the cellular mechanisms underlying the antiviral effects of dehydrodiisoeugenol(DEH) by focusing on the transcription factor EB(TFEB)/autophagy-lysosome pathway. The cell counting kit-8(CCK-8) was utilized to assess the impact of DEH on the viability of human non-small cell lung cancer cells(A549). The inhibitory effect of DEH on the replication of influenza A virus(H1N1) was determined by real-time quantitative polymerase chain reaction(RT-qPCR). Western blot was employed to evaluate the influence of DEH on the expression level of the H1N1 virus nucleoprotein(NP). The effect of DEH on the fluorescence intensity of NP was examined by the immunofluorescence assay. A mouse model of H1N1 virus infection was established via nasal inhalation to evaluate the therapeutic efficacy of 30 mg·kg~(-1) DEH on H1N1 virus infection. RNA sequencing(RNA-seq) was performed for the transcriptional profiling of mouse embryonic fibroblasts(MEFs) in response to DEH. The fluorescent protein-tagged microtubule-associated protein 1 light chain 3(LC3) was used to assess the autophagy induced by DEH. Western blot was employed to determine the effect of DEH on the autophagy flux of LC3Ⅱ/LC3Ⅰ under viral infection conditions. Lastly, the role of TFEB expression in the inhibition of DEH against H1N1 infection was evaluated in immortalized bone marrow-derived macrophage(iBMDM), both wild-type and TFEB knockout. The results revealed that the half-maximal inhibitory concentration(IC_(50)) of DEH for A549 cells was(87.17±0.247)μmol·L~(-1), and DEH inhibited H1N1 virus replication in a dose-dependent manner in vitro. Compared with the H1N1 virus-infected mouse model, the treatment with DEH significantly improved the body weights and survival time of mice. DEH induced LC3 aggregation, and the absence of TFEB expression in iBMDM markedly limited the ability of DEH to counteract H1N1 virus replication. In conclusion, DEH exerts its inhibitory activity against H1N1 infection by activating the TFEB/autophagy-lysosome pathway.
Influenza A Virus, H1N1 Subtype/genetics*
;
Animals
;
Autophagy/drug effects*
;
Humans
;
Mice
;
Basic Helix-Loop-Helix Leucine Zipper Transcription Factors/genetics*
;
Influenza, Human/metabolism*
;
Lysosomes/metabolism*
;
Orthomyxoviridae Infections/genetics*
;
Eugenol/pharmacology*
;
Antiviral Agents/pharmacology*
;
Virus Replication/drug effects*
;
A549 Cells
;
Male
2.Inhibition of cap-dependent endonuclease in influenza virus with ADC189: a pre-clinical analysis and phase I trial.
Jing WEI ; Yaping DENG ; Xiaoyun ZHU ; Xin XIAO ; Yang YANG ; Chunlei TANG ; Jian CHEN
Frontiers of Medicine 2025;19(2):347-358
ADC189 is a novel drug of cap-dependent endonuclease inhibitor. In our study, its antiviral efficacy was evaluated in vitro and in vivo, and compared with baloxavir marboxil and oseltamivir. A first-in-human phase I study in healthy volunteers included single ascending dose (SAD) and food effect (FE) parts. In the preclinical study, ADC189 showed potent antiviral activity against various types of influenza viruses, including H1N1, H3N2, influenza B virus, and highly pathogenic avian influenza, comparable to baloxavir marboxil. Additionally, ADC189 exhibited much better antiviral efficacy than oseltamivir in H1N1 infected mice. In the phase I study, ADC189 was rapidly metabolized to ADC189-I07, and its exposure increased proportionally with the dose. The terminal elimination half-life (T1/2) ranged from 76.69 to 98.28 hours. Of note, food had no effect on the concentration, clearance, and exposure of ADC189. It was well tolerated, with few treatment-emergent adverse events (TEAEs) reported and no serious adverse events (SAEs). ADC189 demonstrated excellent antiviral efficacy both in vitro and in vivo. It was safe, well-tolerated, and had favorable pharmacokinetic characteristics in healthy volunteers, supporting its potential for single oral dosing in clinical practice.
Humans
;
Antiviral Agents/therapeutic use*
;
Animals
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Male
;
Adult
;
Mice
;
Female
;
Endonucleases/antagonists & inhibitors*
;
Influenza, Human/drug therapy*
;
Young Adult
;
Dibenzothiepins/pharmacology*
;
Oseltamivir/pharmacology*
;
Middle Aged
;
Triazines/pharmacology*
;
Thiepins/pharmacology*
;
Influenza B virus/drug effects*
;
Influenza A Virus, H1N1 Subtype/drug effects*
;
Pyridines/pharmacology*
;
Morpholines
;
Pyridones
3.Houttuynia cordata polysaccharide alleviated intestinal injury and modulated intestinal microbiota in H1N1 virus infected mice.
Mei-Yu CHEN ; Hong LI ; Xiao-Xiao LU ; Li-Jun LING ; Hong-Bo WENG ; Wei SUN ; Dao-Feng CHEN ; Yun-Yi ZHANG
Chinese Journal of Natural Medicines (English Ed.) 2019;17(3):187-197
Houttuynia cordata polysaccharide (HCP) is extracted from Houttuynia cordata, a key traditional Chinese medicine. The study was to investigate the effects of HCP on intestinal barrier and microbiota in H1N1 virus infected mice. Mice were infected with H1N1 virus and orally administrated HCP at a dosage of 40 mg(kg(d. H1N1 infection caused pulmonary and intestinal injury and gut microbiota imbalance. HCP significantly suppressed the expression of hypoxia inducible factor-1α and decreased mucosubstances in goblet cells, but restored the level of zonula occludens-1 in intestine. HCP also reversed the composition change of intestinal microbiota caused by H1N1 infection, with significantly reduced relative abundances of Vibrio and Bacillus, the pathogenic bacterial genera. Furthermore, HCP rebalanced the gut microbiota and restored the intestinal homeostasis to some degree. The inhibition of inflammation was associated with the reduced level of Toll-like receptors and interleukin-1β in intestine, as well as the increased production of interleukin-10. Oral administration of HCP alleviated lung injury and intestinal dysfunction caused by H1N1 infection. HCP may gain systemic treatment by local acting on intestine and microbiota. This study proved the high-value application of HCP.
Animals
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Cytokines
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metabolism
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Drugs, Chinese Herbal
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chemistry
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pharmacology
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therapeutic use
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Gastrointestinal Microbiome
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drug effects
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Houttuynia
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chemistry
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Hypoxia-Inducible Factor 1, alpha Subunit
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metabolism
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Inflammation
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drug therapy
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pathology
;
Influenza A Virus, H1N1 Subtype
;
pathogenicity
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Intestinal Mucosa
;
drug effects
;
metabolism
;
microbiology
;
pathology
;
Lung
;
drug effects
;
metabolism
;
pathology
;
Male
;
Mice, Inbred BALB C
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Orthomyxoviridae Infections
;
drug therapy
;
pathology
;
physiopathology
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Plant Extracts
;
chemistry
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Polysaccharides
;
chemistry
;
pharmacology
;
therapeutic use
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Toll-Like Receptors
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metabolism
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Zonula Occludens-1 Protein
;
metabolism
4.Effect and mechanism of Mahuang Tang against influenza A/H1N1 virus .
Wen-Yang WEI ; Hai-Tong WAN ; Li YU ; Yi-Yu LU ; Yu HE
China Journal of Chinese Materia Medica 2018;43(3):563-570
To study the effect and underlying mechanism of Mahuang Tang against influenza A virus , the influenza virus-infected Madin-Darby canine kidney(MDCK) cells were used as the carrier in this study to detect the median tissue culture-infective dose(TCID₅₀) of influenza A virus strains(A/PR8/34) on MDCK cells with cytopathic effect(CPE) assay. Blocking influenza virus invading host cells and anti-influenza virus biosynthesis were used as two different administration methods, and then the methyl thiazolyl tetrazolium(MTT) assay was utilized to determine the antiviral effective rate(ER), median efficacious concentration(EC₅₀) and therapeutic index(TI) of Mahuang Tang. The quantitative Real-time polymerase chain reaction(RT-PCR) was used to measure virus load and the mRNA expression levels of TLR4, TLR7, MyD88 and TRAF6 in MDCK cells at 24, 48 h after the treatment. The experiment results indicated that TCID₅₀ of A/PR8/34 for MDCK cells was 1×10-4.32/mL. The EC₅₀ values of two different treatment methods were 4.92,1.59 g·L⁻¹ respectively, the TI values were 12.53, 38.78 respectively, and when the concentration of Mahuang Tang was 5.00 g·L⁻¹, ER values were 50.21%, 98.41% respectively, showing that Mahuang Tang can block influenza virus into the host cells and significantly inhibit their biosynthesis. Meanwhile, as compared with the virus group, the virus load was significantly inhibited in Mahuang Tang groups, and Mahuang Tang high and middle doses had the significant effect on decreasing the mRNA expression of TLR4, TLR7,MyD88 and TRAF6 at 24, 48 h after the treatment. It can be demonstrated that the mechanisms of Mahuang Tang against influenza A virus are related to the inhibition of influenza virus replication and the mRNA expression of correlative genes in TLR4 and TLR7 signaling pathways.
Animals
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Antiviral Agents
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pharmacology
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Dogs
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Drugs, Chinese Herbal
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pharmacology
;
Influenza A Virus, H1N1 Subtype
;
drug effects
;
physiology
;
Madin Darby Canine Kidney Cells
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Orthomyxoviridae Infections
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Toll-Like Receptor 4
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metabolism
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Toll-Like Receptor 7
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metabolism
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Virus Replication
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drug effects
5.Qiangzhi decoction protects mice from influenza A pneumonia through inhibition of inflammatory cytokine storm.
Hai-yan ZHU ; Hai HUANG ; Xun-long SHI ; Wei ZHOU ; Pei ZHOU ; Qian-lin YAN ; Hong-guang ZHU ; Dian-wen JU
Chinese journal of integrative medicine 2015;21(5):376-383
OBJECTIVETo investigate the preventive effects of Qiangzhi Decoction (, QZD) on influenza A pneumonia through inhibition of inflammatory cytokine storm in vivo and in vitro.
METHODSOne hundred ICR mice were randomly divided into the virus control, the Tamiflu control and the QZD high-, medium-, and low-dose groups. Mice were infected intranasally with influenza virus (H1N1) at 10 median lethal dose (LD50). QZD and Tamiflu were administered intragastrically twice daily from day 0 to day 7 after infection. The virus control group was treated with distilled water alone under the same condition. The number of surviving mice was recorded daily for 14 days after viral infection. The histological damage and viral replication and the expression of inflammatory cytokines were monitored. Additionally, the suppression capacity on the secretion of regulated on activation normal T cells expressed and secreted (RANTES) and tumor necrosis factor-α (TNF-α) in epithelial and macrophage cell-lines were evaluated.
RESULTSCompared with the virus control group, the survival rate of the QZD groups significantly improved in a dose-dependent manner (P<0.05), the viral titers in lung tissue was inhibited (P<0.05), and the production of inflammatory cytokines interferon-γ (IFN-γ), interleukin-6 (IL-6), TNF-α, and intercellular adhesion molecule-1 (ICAM-1) were suppressed (P<0.05). Meanwhile, the secretion of RANTETS and TNF-α by epithelial and macrophage cell-lines was inhibited with the treatment of QZD respectively in vitro (p<0.05) CONCLUSIONS: The preventive effects of QZD on influenza virus infection might be due to its unique cytokine inhibition mechanism. QZD may have significant therapeutic potential in combination with antiviral drugs.
Animals ; Cell Line ; Cell Survival ; drug effects ; Chemokine CCL5 ; metabolism ; Chemokines ; metabolism ; Cytokines ; metabolism ; Dogs ; Drugs, Chinese Herbal ; pharmacology ; therapeutic use ; Enzyme-Linked Immunosorbent Assay ; Hemagglutination, Viral ; drug effects ; Humans ; Inflammation ; pathology ; Influenza A Virus, H1N1 Subtype ; drug effects ; physiology ; Influenza A Virus, H1N2 Subtype ; drug effects ; Lung ; drug effects ; pathology ; Madin Darby Canine Kidney Cells ; Mice, Inbred ICR ; Orthomyxoviridae Infections ; complications ; pathology ; prevention & control ; Pneumonia ; complications ; pathology ; prevention & control ; Protective Agents ; pharmacology ; therapeutic use ; Survival Rate ; Tumor Necrosis Factor-alpha ; pharmacology
6.Effect of Yunnan herb Laggera pterodonta against influenza A (H1N1) virus in vitro.
Xiao-ling XIA ; Qiang-ming SUN ; Xiao-dan WANG ; Yu-jiao ZHAO ; Zi-feng YANG ; Qing-hui HUANG ; Zhi-hong JIANG ; Xin-hua WANG ; Rong-ping ZHANG
China Journal of Chinese Materia Medica 2015;40(18):3687-3692
Laggera pterodonta is commonly used for treating influenza in Southwest China, especially in Yunnnan province. The main clinical effects of L. pterodonta include anti-influenza, anti-microbial, anti-inflammatory. To investigate the anti-influenza A (H1N1) virus effect of L. pterodonta, neutralization inhibition and proliferation inhibition tests were performed. MDCK culture method was used to observe the cytopathic effect (CPE) of extracts from L. pterodonta in inhibiting influenza A (H1N1) virus and haemagglutination titre of H1N1 virus in vitro. The culture medium were collected at 24 h, 48 h, 72 h, 96 h, and detected by Real time RT-PCR, in order to compare the effect of different extracts from L. pterodonta on in vitro proliferation of H1N1, virus. The result of neutralization inhibition test showed that hemagglutination titer of ethyl acetate extract were 8 times lower at 72 h; in proliferation inhibition test, hemagglutination titer of ethyl acetate extracts reduced by 2 and 4 times. According to the results of Real time RT-PCR test, the H1N1 inhibition ratio of ethyl acetate extract was 72.5%, while the proliferation inhibition ratio of ethyl acetate extract was 25.3%; as for petroleum ether extracts, the H1N1 inhibition ratio was 60.2%, while the proliferation inhibition ratio was 81.4%. In conclusion, both ethyl acetate extract and petroleum ether extract of L. pterodonta have significant neutralization and direct proliferation inhibition effects on influenza A virus.
Asteraceae
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chemistry
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China
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ethnology
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Drugs, Chinese Herbal
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isolation & purification
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pharmacology
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Humans
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Influenza A Virus, H1N1 Subtype
;
drug effects
;
physiology
;
Influenza, Human
;
drug therapy
;
virology
;
Medicine, Chinese Traditional
7.Effect of Yinghua Pinggan granule against influenza A/H1N1 virus in vivo.
Xue-qian PENG ; Yu HE ; Hui-fen ZHOU ; Yu-yan ZHANG ; Jie-hong YANG ; Jun-kui CHEN ; Yi-yu LU ; Hai-tong WAN
China Journal of Chinese Materia Medica 2015;40(19):3845-3850
To study the effect of Yinghua Pinggan granule (YHPG) against influenza A/H1N1 virus in vivo and on the immunologic function of infected mice. The intranasal influenza virus infection was adopted in ICR mouse to establish the influenza virus pneumonia model. At the 3rd and 7th day after the infection, the lung index and pathologic changes in lung tissues of mice were detected. Realtime PCR and flow cytometry were employed to observe the virus load in lung tissues and the levels of CD4+, CD8+, and CD4+/CD8+ in peripheral blood. The result showed that at the 3rd and 7th day after the infection, YHPG (15, 30 g x kg(-1)) can significant decrease in the lung index and virus load in lung tissues of mice infected with influenza virus, alleviate the pathologic changes in lung tissues, significantly increase the levels of CD4+ and CD4+/CD8+ ratio and reduce the levels of CD8+ in whole blood. This indicated that YHPG can inhibit the influenza virus replication, alleviate pulmonary damage and adjust the weak immunologic function of infected mice, with a certain therapeutic effect on mice infected by H1N1 virus in vivo.
Animals
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Antiviral Agents
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administration & dosage
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Humans
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Influenza A Virus, H1N1 Subtype
;
drug effects
;
genetics
;
physiology
;
Influenza, Human
;
drug therapy
;
pathology
;
virology
;
Lung
;
pathology
;
virology
;
Male
;
Mice
;
Mice, Inbred ICR
;
Virus Replication
;
drug effects
8.Antiviral effects of the combination of glycyrrhizin and ribavirin against influenza A H1N1 virus infection in vivo.
Xiu-xiu CHEN ; Hong-xia ZHOU ; Wen-bao QI ; Zhang-yong NING ; Yong-jiang MA ; Yao-lan LI ; Guo-cai WANG ; Jian-xin CHEN
Acta Pharmaceutica Sinica 2015;50(8):966-972
Ribavirin is a broad-spectrum antiviral agent and glycyrrhizin has activities of anti-inflammation, immunoregulation and anti-viral infections. To enhance antiviral efficacy and weaken side-effects of ribavirin, antiviral effects of the combination of glycyrrhizin and ribavirin were studied in the present study. Firstly, a mouse model of viral pneumonia was established by inoculation of influenza H1N1 virus. Protective effects of glycyrrhizin and ribavirin used alone or in combination against H1N1 virus infection in mice were evaluated based on the survival rate, lung index and virus titer in lungs of mice. Results showed that the combination of glycyrrhizin and ribavirin significantly inhibited the lung consolidation with a 36% inhibition ratio on the lung swell of infected mice. The combination of the two drugs exhibited synergetic effects on survival of infected mice. The combination of 50 mg · kg(-1) · d(-1) glycyrrhizin and 40 mg · kg(-1) · d(-1) ribavirin resulted a 100% protection for infected mice with a synergetic value of 36, which was significantly higher than the control group and each drug alone. This combination also resulted a significant drop of lung virus titer (P < 0.01), as well as inhibition on the production of proinflammatory cytokines IL-6 (P < 0.01), TNF-α (P < 0.01) and IL-1β (P < 0.05) induced by virus infection compared to the control. The treatment of ribavirin plus glycyrrhizin was more effective in influenza A infection in mice than either compound used alone, which suggested a potential clinical value of the combination of the two agents.
Animals
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Antiviral Agents
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pharmacology
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Disease Models, Animal
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Drug Synergism
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Drug Therapy, Combination
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Glycyrrhizic Acid
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pharmacology
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Inflammation
;
immunology
;
Influenza A Virus, H1N1 Subtype
;
drug effects
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Interleukin-1beta
;
immunology
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Interleukin-6
;
immunology
;
Lung
;
immunology
;
virology
;
Mice
;
Orthomyxoviridae Infections
;
drug therapy
;
Pneumonia, Viral
;
drug therapy
;
Ribavirin
;
pharmacology
;
Tumor Necrosis Factor-alpha
;
immunology
9.HPLC specific chromatogram spectrum-effect relationship for Shuanghuanglian on MDCK cell injury induced by influenza A virus (H1N1).
Ting LIU ; Hai-dan WANG ; Liu-qing DI ; An KANG ; Xiao-li ZHAO ; Xuan-xuan ZHU ; Jun-song LI
China Journal of Chinese Materia Medica 2015;40(21):4194-4199
To establish HPLC specific chromatogram and its correlation with the protection effect of Shuanghuanglian on MDCK (Madin-Darby canine kidney) cell injury induced by influenza A virus( H1N1). Nine recipes of Shuanghuanglian based on the official prescription were prepared according to orthogonal test for HPLC analysis and MDCK cells protection experiment separately (cytopathic effect (CPE) method was used for observing the virus infectivity and MTT staining results were used as the determining indexes for drug concentration selection and analyzing cell viability). The results suggested that all the other Shuang-Huang-Lian recipes except recipe1 demonstrate protecting effect on MDCK cell injury induced by influenza A virus (P < 0.01, P < 0.001). Stepwise regression analysis was used for analyzing the relationships between HPLC fingerprint and the protecting effect of Shuanghuanglian on influenza A virus induced MDCK cell injury. Peak 2, 3, 6, 8 and 12 were found to be strongly related with anti-influenza A virus efficacy. Stepwise regression analysis of recipes data and efficacy data showed that Lonicerae Japonicae Flos and Forsythiae Fructus were positively associated with the protecting effect of cells injury. From HPLC fingerprints, we found that peak 2, 3, 12 were from Lonicerae Japonicae Flos and peak 6, 8 were from Forsythiae Fructus. Four peaks were identified through comparing the retention time between the standard and Shuanghuanglian recipes, and they were chlorogenicacid, cryptochlorogenic acid, forsythoside B and 3,4-dicaffeoylquinic acid respectively. Caffeic acid derivatives in Lonicerae Japonicae Flos and Forsythiae Fructus were found to be greatly correlated with anti-influenza A virus efficacy and maybe the substance basis of Shuanghuanglian.
Animals
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Antiviral Agents
;
analysis
;
pharmacology
;
Chromatography, High Pressure Liquid
;
methods
;
Dogs
;
Drugs, Chinese Herbal
;
analysis
;
pharmacology
;
Forsythia
;
chemistry
;
Influenza A Virus, H1N1 Subtype
;
drug effects
;
physiology
;
Lonicera
;
chemistry
;
Madin Darby Canine Kidney Cells
;
Scutellaria baicalensis
;
chemistry
10.Characteristics of complete genome of pandemic A/H1N1/2009 influenza virus isolated in Fujian Province, China.
Jian-Feng XIE ; Xiao-Na SHEN ; Mei-Ai WANG ; Shi-Qin YANG ; Meng HUANG ; Yan-Hua ZHANG ; Wen-Qiong XIU ; Yu-Wei WENG ; Yan-Sheng YAN ; Kui-Cheng ZHENG
Chinese Journal of Virology 2014;30(1):37-43
This study aims to investigate the characteristics of genomic variation of pandemic A/H1N1/2009 influenza virus isolated in Fujian Province, China. Complete genome sequence analysis was performed on 14 strains of pandemic A/H1N1/2009 influenza virus isolated from Fujian during 2009-2012. All virus strains were typical low-pathogenic influenza viruses, with resistance to amantadine and sensitivity to neuraminidase inhibitors. Eight genome fragments of all strains were closely related to those of A/California/07/2009 (H1N1) vaccine strain, with > or = 98.2% homology. Compared with the vaccine strain, the influenza strains from Fujian had relatively large variation, and variation was identified at 11 amino acid sites of the HA gene of A/Fujiangulou/SWL1155/2012 strain, including 4 sites (H138R, L161I, S185T, and S203T) involved inthree antigen determinants (Ca, Sa, and Sb). In conclusion, the influenza vaccine has a satisfactory protective effect on Fujian population, but the influenza strains from Fujian in 2012 has antigenic drift compared with the vaccine strain, more attention should therefore be paid to the surveillance of mutations of pandemic A/H1N1/2009 influenza virus.
Antiviral Agents
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pharmacology
;
China
;
epidemiology
;
Drug Resistance, Viral
;
genetics
;
Genome, Viral
;
genetics
;
Genomics
;
Humans
;
Influenza A Virus, H1N1 Subtype
;
drug effects
;
genetics
;
immunology
;
physiology
;
Influenza, Human
;
epidemiology
;
prevention & control
;
Pandemics
;
prevention & control
;
Viral Vaccines
;
immunology

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