{
   "sha": "1a07962f8472f03e5159e01b742cf39295db17f5",
   "source_x": "PMC",
   "title": "Antiviral Activity Against Infectious Bronchitis Virus and Bioactive Components of Hypericum perforatum L.",
   "doi": "http://dx.doi.org/10.3389/fphar.2019.01272",
   "pmcid": "PMC6830131",
   "pubmed_id": "31736754",
   "license": "CC BY",
   "abstract": "Hypericum perforatum L., also known as Saint John\u2019s Wort, has been well studied for its chemical composition and pharmacological activity. In this study, the antiviral activities of H. perforatum on infectious bronchitis virus (IBV) were evaluated in vitro and in vivo for the first time. The results of in vitro experiments confirmed that the antiviral component of H. perforatum was ethyl acetate extraction section (HPE), and results showed that treatment with HPE significantly reduced the relative messenger ribonucleic acid (mRNA) expression and virus titer of IBV, and reduced positive green immunofluorescence signal of IBV in chicken embryo kidney (CEK) cells. HPE treatment at doses of 480\u2013120 mg/kg for 5 days, reduced IBV induced injury in the trachea and kidney, moreover, reduced the mRNA expression level of IBV in the trachea and kidney in vivo. The mRNA expression levels of IL-6, tumor necrosis factor alpha (TNF-\u03b1), and nuclear factor kappa beta (NF-\u03baB) significantly decreased, but melanoma differentiation-associated protein 5 (MDA5), mitochondrial antiviral signaling gene, interferon alpha (IFN-\u03b1), and interferon beta (IFN-\u03b2) mRNA levels significantly increased in vitro and in vivo. Our findings demonstrated that HPE had significant anti-IBV effects in vitro and in vivo, respectively. In addition, it is possible owing to up-regulate mRNA expression of type I interferon through the MDA5 signaling pathway and down-regulate mRNA expression of IL-6 and TNF-\u03b1 via the NF-\u03baB signaling pathway. Moreover, the mainly active compositions of HPE analyzed by high-performance liquid chromatography/electrospray ionization\u2013mass spectroscopy (ESI-MS) are hyperoside, quercitrin, quercetin, pseudohypericin, and hypericin, and a combination of these compounds could mediate the antiviral activities. This might accelerate our understanding of the antiviral effect of H. perforatum and provide new insights into the development of effective therapeutic strategies.",
   "publish_time": "2019 Oct 29",
   "authors": [
      "['Chen, Huijie', 'Muhammad, Ishfaq', 'Zhang, Yue', 'Ren, Yudong', 'Zhang, Ruili', 'Huang, Xiaodan', 'Diao, Lei', 'Liu, Haixin', 'Li, Xunliang', 'Sun, Xiaoqi', 'Abbas, Ghulam', 'Li, Guangxing']"
   ],
   "journal": "Front Pharmacol",
   "has_full_text": "True",
   "id": "1a07962f8472f03e5159e01b742cf39295db17f5",
   "fhir_link": "Commercial/1a07962f8472f03e5159e01b742cf39295db17f5"
}