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Broad antiviral activity in tissues of crustaceans.

机译:在甲壳类动物组织中具有广泛的抗病毒活性。

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Innate antiviral substances occur in vertebrates and may function as host defenses. Virus infections are common among invertebrates, but little is known about the ability of invertebrates to control viral infections. Pre-existing antiviral substances may be particularly important, since invertebrates lack the antiviral defense conferred by specific immunity. In our study, we found that tissue extracts of blue crab (Callinectes sapidus), shrimp (Penaeus setiferus), and crayfish (Procambarus clarkii) contained antiviral activities that inhibit a variety of DNA and RNA viruses, i.e. Sindbis virus (SB), vaccinia virus (VAC), vesicular stomatitis virus (VS), mengo virus (MENGO), banzi virus (BANZI) and poliomyelitis (POLIO). The concentration of inhibitory activity was relatively high, ranging from 102 to 216 U/g tissue for Sindbis virus, using the various tissue extracts. The other viruses were somewhat less sensitive to the inhibitor. The main antiviral activity in the inhibitor preparation from blue crab resided in an approximately 440 kDa fraction. It was inactivated significantly by lipid extraction, but not by proteinase K or glycosidases. The antiviral mechanism of the inhibitor from the blue crab was inhibition of virus attachment to eukaryotic cells, as evidenced by inhibitory activity at 4 degrees C. These studies are among the first to show the existence of broadly active antiviral activities in aquatic crustaceans. These antiviral substances may function as innate host defenses in these species that lack specific antibody immunity and, therefore, merit further study.
机译:先天性抗病毒物质存在于脊椎动物中,并可能充当宿主防御。病毒感染在无脊椎动物中很常见,但对无脊椎动物控制病毒感染的能力知之甚少。预先存在的抗病毒物质可能特别重要,因为无脊椎动物缺乏特异性免疫所赋予的抗病毒防御能力。在我们的研究中,我们发现蓝蟹(Callinectes sapidus),虾(Penaeus setiferus)和小龙虾(Procambarus clarkii)的组织提取物具有抑制多种DNA和RNA病毒(如辛德比斯病毒(SB),牛痘)的抗病毒活性。病毒(VAC),水疱性口炎病毒(VS),芒果病毒(MENGO),板子病毒(BANZI)和小儿麻痹症(POLIO)。使用各种组织提取物,对辛德比斯病毒的抑制活性浓度相对较高,范围从102到216 U / g组织。其他病毒对抑制剂的敏感性较低。蓝蟹抑制剂制剂中的主要抗病毒活性约为440 kDa。它可以通过脂质提取显着失活,但不能被蛋白酶K或糖苷酶灭活。蓝蟹抑制剂的抗病毒机制是抑制病毒附着在真核细胞上,这在4摄氏度时具有抑制活性。这些研究是首次显示出在水生甲壳类动物中存在广泛活性的抗病毒活性的研究之一。这些抗病毒物质可能在缺乏特异性抗体免疫力的这些物种中充当先天宿主防御,因此值得进一步研究。

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