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      KCI등재 SCIE SCOPUS

      Recent progresses in marine microbial-derived antiviral natural products

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      https://www.riss.kr/link?id=A107151775

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      다국어 초록 (Multilingual Abstract)

      Viruses have always been a class of pathogenicmicroorganisms that threaten the health and safety of humanlife worldwide. However, for a long time, the treatment ofviral infections has been slow to develop, and only a fewantiviral drugs have been using...

      Viruses have always been a class of pathogenicmicroorganisms that threaten the health and safety of humanlife worldwide. However, for a long time, the treatment ofviral infections has been slow to develop, and only a fewantiviral drugs have been using clinically. Compared withthese from terrestrial environments, marine-derived microorganismscan produce active substances with more novelstructures and unique functions. From 2015 to 2019, 89antiviral compounds of 8 structural classes have been isolatedfrom marine microorganisms, of which 35 exhibit anti-H1N1 activity. This review surveys systematically marinemicrobial-derived natural products with antiviral activityand illustrates the impact of these compounds on antiviraldrug discovery research.

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      참고문헌 (Reference)

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      3 Pankaj Miniyar, "Unequivocal Role of Pyrazine Ring in Medicinally Important Compounds: A Review" Bentham Science Publishers Ltd. 13 (13): 1607-1625, 2013

      4 Yang Zhao, "Truncateols O-V, further isoprenylated cyclohexanols from the sponge-associated fungus Truncatella angustata with antiviral activities" Elsevier BV 155 : 61-68, 2018

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      9 Xun Cao, "Talaromyolides A–D and talaromytin: polycyclic meroterpenoids from the fungus Talaromyces sp. CX11" American Chemical Society (ACS) 21 (21): 6539-6542, 2019

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      2 Jun-Feng Wang, "Vaccinols J–S, ten new salicyloid derivatives from the marine mangrove-derived endophytic fungus Pestalotiopsis vaccinii" Elsevier BV 120 : 164-170, 2017

      3 Pankaj Miniyar, "Unequivocal Role of Pyrazine Ring in Medicinally Important Compounds: A Review" Bentham Science Publishers Ltd. 13 (13): 1607-1625, 2013

      4 Yang Zhao, "Truncateols O-V, further isoprenylated cyclohexanols from the sponge-associated fungus Truncatella angustata with antiviral activities" Elsevier BV 155 : 61-68, 2018

      5 Yang Zhao, "Truncateols A–N, new isoprenylated cyclohexanols from the sponge-associated fungus Truncatella angustata with anti-H1N1 virus activities" Elsevier BV 71 (71): 2708-2718, 2015

      6 Xiaoyan Pang, "Three new highly oxygenated sterols and one new dihydroisocoumarin from the marine sponge-derived fungus Cladosporium sp . SCSIO41007" Elsevier BV 129 : 41-46, 2018

      7 Punyasloke Bhadury, "The current status of natural products from marine fungi and their potential as anti-infective agents" Oxford University Press (OUP) 33 (33): 325-337, 2006

      8 Rainer Schobert, "Tetramic and tetronic acids: An update on new derivatives and biological aspects" Elsevier BV 16 (16): 4203-4221, 2008

      9 Xun Cao, "Talaromyolides A–D and talaromytin: polycyclic meroterpenoids from the fungus Talaromyces sp. CX11" American Chemical Society (ACS) 21 (21): 6539-6542, 2019

      10 G. Seghal Kiran, "Synthetic biology approaches: Towards sustainable exploitation of marine bioactive molecules" Elsevier BV 112 : 1278-1288, 2018

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      14 Chun Qin, "Sesquiterpenoids and xanthones derivatives produced by sponge-derived fungus Stachybotry sp. HH1 ZSDS1F1-2" Springer Science and Business Media LLC 68 (68): 121-125, 2015

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      17 Jiao Li, "Raistrickindole A, an anti-HCV oxazinoindole alkaloid from Penicillium raistrickii IMB17-034" American Chemical Society (ACS) 82 (82): 1391-1395, 2019

      18 Dolezal M, "Pyrazine derivatives: a patent review" 22 : 1033-1051, 2012

      19 Hui-Hui Kang, "Potential Antiviral Xanthones from a Coastal Saline Soil Fungus Aspergillus iizukae" MDPI AG 16 (16): 449-457, 2018

      20 Soheil Moghadamtousi, "Potential Antiviral Agents from Marine Fungi: An Overview" MDPI AG 13 (13): 4520-4538, 2015

      21 Haishan Liu, "Phenolic polyketides from the marine alga-derived Streptomyces sp. OUCMDZ-3434" Elsevier BV 73 (73): 5451-5455, 2017

      22 Yan-Lai Jia, "Pestalotiolide A, a New Antiviral Phthalide Derivative from a Soft Coral-derived Fungus Pestalotiopsis sp." 한국생약학회 21 (21): 227-230, 2015

      23 Hongbo Huang, "Octyl substituted butenolides from marine- derived Streptomyces koyangensis" Informa UK Limited 5 : 1-6, 2019

      24 Sui-Qun Yang, "New citrinin analogues produced by coculture of the marine algal-derived endophytic fungal strains Aspergillus sydowii EN-534 and Penicillium citrinum EN-535" Elsevier BV 25 : 191-195, 2018

      25 Guihong Yu, "Neosartoryadins A and B, fumiquinazoline alkaloids from a mangrovederived fungus Neosartorya udagawae HDN13-313" American Chemical Society (ACS) 18 (18): 244-247, 2016

      26 Xueqing Chen, "Neoechinulin B and its analogues as potential entry inhibitors of influenza viruses, targeting viral hemagglutinin" Elsevier BV 93 : 182-195, 2015

      27 Gang Li, "Natural products containing ‘decalin’ motif in microorganisms" Royal Society of Chemistry (RSC) 31 (31): 1175-1201, 2014

      28 Xue-Mei Hou, "Marine natural products as potential anti-tubercular agents" Elsevier BV 165 : 273-292, 2019

      29 Muhammad Tahir Khan, "Marine natural compounds as potents inhibitors against the main protease of SARS-CoV-2—a molecular dynamic study" Informa UK Limited 1-11, 2020

      30 Jarred Yasuhara-Bell, "Marine compounds and their antiviral activities" Elsevier BV 86 (86): 231-240, 2010

      31 Sunil K. Deshmukh, "Marine Fungi: A Source of Potential Anticancer Compounds" Frontiers Media SA 8 : 2536-, 2018

      32 Idam Hermawan, "Kabirimine, a New Cyclic Imine from an Okinawan Dinoflagellate" MDPI AG 17 (17): 353-, 2019

      33 Rowley DC, "Halovirs A–E, new antiviral agents from a marine-Derived fungus of the genus Scytalidium" Elsevier BV 11 (11): 4263-4274, 2003

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      35 Lukuan Hou, "Generation of methylated violapyrones with improved anti-influenza A virus activity by heterologous expression of a type III PKS gene in a marine Streptomyces strain" Elsevier BV 28 (28): 2865-2868, 2018

      36 Atsushi Numata, "Fumiquinazolines, novel metabolites of a fungus isolated from a saltfish" Elsevier BV 33 (33): 1621-1624, 1992

      37 Siwen Niu, "Eutypellazines A–M, thiodiketopiperazine-type alkaloids from deep sea derived fungus Eutypella sp. MCCC 3A00281" Royal Society of Chemistry (RSC) 7 (7): 33580-33590, 2017

      38 Sun Y-L, "Cytotoxic and antiviral tetramic acid derivatives from the deep-sea-derived fungus Trichobotrys effuse DFFSCS021" 71 : 9328-9332, 2015

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      41 Fan-Dong Kong, "Chrodrimanins K–N and related meroterpenoids from the fungus Penicillium sp. SCS-KFD09 isolated from a marine worm, Sipunculus nudus" American Chemical Society (ACS) 80 (80): 1039-1047, 2017

      42 Jiao Li, "Broad-Spectrum Antiviral Natural Products from the Marine-Derived Penicillium sp. IMB17-046" MDPI AG 24 (24): 2821-2831, 2019

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      44 Yong-Qi Tian, "Asteltoxins with Antiviral Activities from the Marine Sponge-Derived Fungus Aspergillus sp. SCSIO XWS02F40" MDPI AG 21 (21): 34-43, 2016

      45 Xuan Ma, "Antiviral peptides from marine gorgonian-derived fungus Aspergillus sp. SCSIO 41501" Elsevier BV 58 (58): 1151-1155, 2017

      46 Zhang P, "Antiviral and anti-inflammatory meroterpenoids : stachybonoids A–F from the crinoid-derived fungus Stachybotrys chartarum 952" 7 : 49910-49916, 2017

      47 Avilala Janardhan, "Antiviral and Larvicidal Properties of Novel Bioactive Compounds Produced from Marine Actinomycetes" Pleiades Publishing Ltd 44 (44): 424-428, 2018

      48 Dawrin Pech-Puch, "Antiviral and Antiproliferative Potential of Marine Organisms From the Yucatan Peninsula, Mexico" Frontiers Media SA 7 : 2020

      49 Manickavelu Manimaran, "Antiviral activity of 9(10H)-Acridanone extracted from marine Streptomyces fradiae strain VITMK2 in Litopenaeus vannamei infected with white spot syndrome virus" Elsevier BV 488 : 66-73, 2018

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      51 Muhammad Saleem, "Antimicrobial natural products: an update on future antibioticdrug candidates" Royal Society of Chemistry (RSC) 27 (27): 238-254, 2010

      52 Zhonghui Huang, "Anti-HSV-1, antioxidant and antifouling phenolic compounds from the deep-sea-derived fungus Aspergillus versicolor SCSIO 41502" Elsevier BV 27 (27): 787-791, 2017

      53 Qian Che, "Anthranosides A–C, anthranilate derivatives from a spongederived Streptomyces sp" American Chemical Society (ACS) 20 (20): 5466-5469, 2018

      54 Yanzheng Jin, "An anti-HBV anthraquinone from aciduric fungus Penicillium sp. OUCMDZ-4736 under low pH stress" Springer Science and Business Media LLC 22 (22): 39-45, 2018

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      56 Hongbo Huang, "Abyssomicin monomers and dimers from the marine-derived Streptomyces koyangensis SCSIO 5802" American Chemical Society (ACS) 81 (81): 1892-1898, 2018

      57 Brian León, "Abyssomicin 2 Reactivates Latent HIV-1 by a PKC- and HDAC-Independent Mechanism" American Chemical Society (ACS) 17 (17): 262-265, 2014

      58 Hai-Xia Liao, "A new hexahydrobenzopyran derivative from the gorgonian-derived Fungus Eutypella sp" Informa UK Limited 31 (31): 1640-1646, 2017

      59 Mei-Lin Yu, "A new antiviral pregnane from a gorgonian-derived Cladosporium sp. fungus" Informa UK Limited 32 (32): 1260-1266, 2018

      60 Yan-Lai Jia, "(+)- and (–)-Pestaloxazine A, a pair of antiviral enantiomeric alkaloid dimers with a symmetric spiro[oxazinane-piperazinedione]skeleton from Pestalotiopsis sp" American Chemical Society (ACS) 17 (17): 4216-4219, 2015

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