2016
DOI: 10.1016/j.phytol.2016.03.004
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Bioactive azaphilones from the fungus Penicillium multicolor CM01

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Cited by 28 publications
(18 citation statements)
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References 27 publications
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“…Extrolites : All species examined in ser. Sclerotiorum produce sclerotiorins, rotiorin, penazaphilones, penicilazaphilones ( Curtin and Reilly, 1940 , Maccurin and Reilly, 1940 , Birkinshaw, 1952 , Jackman et al., 1958 , Arai et al., 1995 , Matsuzaki et al., 1995a , Matsuzaki et al., 1995b , Pairet et al., 1995 , Nam et al., 2000 , Lucas et al., 2007 , Arunpanichlert et al., 2010 , Hemtasin et al., 2016 , Zhou et al., 2016 , Wang et al., 2018 , Jia et al., 2019 , Tang et al., 2019a , Wu et al., 2019 ), penicilisorin, (+)-4,6-dimetylocta-2,4-dienoic acid and 5,6-dihydro-3,5,6-trimethylpyran-2-one ( Arunpanichlert et al. 2010 ), pencolide ( Birkinshaw et al., 1963 , Lucas et al., 2007 ), carotenes ( Mase et al.…”
Section: Resultsmentioning
confidence: 99%
“…Extrolites : All species examined in ser. Sclerotiorum produce sclerotiorins, rotiorin, penazaphilones, penicilazaphilones ( Curtin and Reilly, 1940 , Maccurin and Reilly, 1940 , Birkinshaw, 1952 , Jackman et al., 1958 , Arai et al., 1995 , Matsuzaki et al., 1995a , Matsuzaki et al., 1995b , Pairet et al., 1995 , Nam et al., 2000 , Lucas et al., 2007 , Arunpanichlert et al., 2010 , Hemtasin et al., 2016 , Zhou et al., 2016 , Wang et al., 2018 , Jia et al., 2019 , Tang et al., 2019a , Wu et al., 2019 ), penicilisorin, (+)-4,6-dimetylocta-2,4-dienoic acid and 5,6-dihydro-3,5,6-trimethylpyran-2-one ( Arunpanichlert et al. 2010 ), pencolide ( Birkinshaw et al., 1963 , Lucas et al., 2007 ), carotenes ( Mase et al.…”
Section: Resultsmentioning
confidence: 99%
“…This is a Monascus -like pigment with the replacement of C-6 hydrogen with chlorine. Production of sclerotiorin as well as its derivates by other Penicillium species is also reported (Hemtasin et al, 2016). Those Penicillium species do not co-produce citrinin or any other known mycotoxins and non-pathogenic to humans, which are potential strains for production of food pigments (Mapari et al, 2008; Dufossé et al, 2014; Gomes and Takahashi, 2016).…”
Section: Production Of Monascus-like Pigmentsmentioning
confidence: 94%
“…BS4 37 Antimicrobial (Staphylococcus aureus: 5.0 mg mL À1 ) Colletotrichone C (56) Colletotrichum sp. BS4 37 Antimicrobial (Escherichia coli: 5.0 mg mL À1 ) Coniellin A (57) Coniella fragariae 9 Anti-tumor (MDA-MB-231: 21.5 mM, inhibit NF-kB activation: 4.4 mM) Coniellin B (58) Coniella fragariae 9 Anti-tumor (MDA-MB-231: 19.6 mM) Coniellin C (59) Coniella fragariae 9 Anti-tumor (MDA-MB-231: 21.0 mM) Coniellin D (60) Coniella fragariae 9 Anti-tumor (MDA-MB-231: 18.6 mM, inhibit NF-kB activation: 37.8 mM) Coniellin E (61) Coniella fragariae 9 Anti-tumor (MDA-MB-231: 79.3 mM, inhibit NF-kB activation: 29.4 mM) Coniellin F (62) Coniella fragariae 9 Anti-tumor (inhibit NF-kB activation: 70.7 mM) Coniellin G (63) Coniella fragariae 9 Anti-tumor (MDA-MB-231: 21.6 mM, inhibit NF-kB activation: 11.3 mM) Coniellins H-I (64)(65) Coniella fragariae 35 5 0 ,6 0 -Dihydroxyacetosellin (66) Epicoccum nigrum strain 749 38 Monakaocinol 67Monascus kaoliang 39 Monascuspirolide A (68) Monascus purpureus BCRC 38110 42 Anti-inammatory (inhibit NO production: 17.5 mM) Monascuspirolide B (69) Monascus purpureus BCRC 38110 42 Anti-inammatory (inhibit NO production: 23.5 mM) Thielavialides A-E (70)(71)(72)(73)(74) Thielavia sp. PA0001 40…”
Section: Species Activitymentioning
confidence: 99%
“…Signicantly, 157 showed AChE inhibitory activity with a minimum inhibition requirement of 0.03 nM, while 158 exhibited notable antimalarial activity and cytotoxicity. 70 The mangrove endophytic fungus Penicillium sp. 303, produced a novel azaphilone 159, which exhibited weak cytotoxicity toward a series of human cancer lines.…”
Section: Sclerotiorin-like Azaphilonesmentioning
confidence: 99%