perylene has been researched along with perylenequinone in 18 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 0 (0.00) | 29.6817 |
2010's | 9 (50.00) | 24.3611 |
2020's | 9 (50.00) | 2.80 |
Authors | Studies |
---|---|
Kozlowski, MC; Morgan, BJ; Mulrooney, CA | 1 |
Kozlowski, MC; Morgan, BJ; Mulrooney, CA; O'Brien, EM | 1 |
Kozlowski, MC; Li, X; Morgan, BJ; Mulrooney, CA | 1 |
Breuning, M; Bringmann, G; Gulder, T; Gulder, TA | 1 |
Chung, KR; Daub, ME; Herrero, S | 1 |
Chae, MS; Choi, JK; Chung, HJ; Jo, IS; Kim, BT; Kim, DH; Kim, JK; Kim, JM; So, KK; Yang, MS | 1 |
Bolton, MD; de Jonge, R; Ebert, MK; Holthusen, J; Secor, GA; Smith, DJ; Spanner, RE; Thomma, BPHJ | 1 |
Chen, JP; Chen, S; Duan, YM; Hu, ZQ; Wang, KP; Zhang, Q; Zheng, WJ; Zong, Q | 1 |
Cao, F; Shao, CL; Shi, T; Wang, CY; Wang, KL; Yang, LJ; Zhao, DL | 1 |
Dai, H; Guo, L; Kong, F; Li, J; Ma, Q; Xie, Q; Zhang, F; Zhao, Y; Zhou, L | 1 |
Al Subeh, ZY; El-Elimat, T; Flores-Bocanegra, L; McFarland, SA; Monro, S; Oberlies, NH; Pearce, CJ; Raja, HA | 1 |
Chen, S; Dou, M; Guo, B; Yan, S; Yu, Y; Yue, Y; Zhao, N | 1 |
Feng, X; Li, YT; Liu, S; Lv, JJ; Pan, X; Tian, LW; Tian, X; Wu, Y; Yang, C; Zhou, Z | 1 |
Chen, Y; Liu, Z; Xu, C; Yan, R; Yang, H; Zhang, Z; Zhu, D | 1 |
Li, XP; Min, CY; Shen, WH; Wang, JW; Xu, R; Zhang, X | 1 |
Boffo, EF; Geris, R; Pinho, MA; Simpson, TJ | 1 |
Chang, CH; Chang, LK; Cheng, YC; Chi, WC; Hsiao, G; Huang, SJ; Lee, TH; Lee, YC; Lu, YS; Wang, TC | 1 |
Cong, RP; Huang, QY; Li, XP; Shen, WH; Wang, JW; Zheng, LP; Zhou, LL | 1 |
3 review(s) available for perylene and perylenequinone
Article | Year |
---|---|
Atroposelective total synthesis of axially chiral biaryl natural products.
Topics: Anti-Bacterial Agents; Biological Products; Cyclooctanes; Cyclopentanes; Heterocyclic Compounds; Hydrolyzable Tannins; Lactams; Perylene; Quinones; Stereoisomerism | 2011 |
Reactive oxygen species in plant pathogenesis: the role of perylenequinone photosensitizers.
Topics: Apoptosis; Host-Pathogen Interactions; Necrosis; Oxidation-Reduction; Perylene; Photosensitizing Agents; Plant Diseases; Plants; Quinones; Reactive Oxygen Species | 2013 |
Naturally Occurring Partially Reduced Perylenequinones from Fungi.
Topics: Animals; Fungi; Perylene; Photosensitizing Agents; Pigments, Biological; Quinones | 2022 |
15 other study(ies) available for perylene and perylenequinone
Article | Year |
---|---|
Perylenequinone natural products: evolution of the total synthesis of cercosporin.
Topics: Biological Products; Catalysis; Molecular Conformation; Palladium; Perylene; Quinones; Stereoisomerism; Structure-Activity Relationship | 2010 |
Perylenequinone natural products: total syntheses of the diastereomers (+)-phleichrome and (+)-calphostin D by assembly of centrochiral and axial chiral fragments.
Topics: Biological Products; Catalysis; Models, Molecular; Naphthalenes; Oxidation-Reduction; Perylene; Quinones; Stereoisomerism; Structure-Activity Relationship | 2010 |
Perylenequinone natural products: enantioselective synthesis of the oxidized pentacyclic core.
Topics: Biological Products; Catalysis; Cyclization; Naphthalenes; Oxidation-Reduction; Palladium; Perylene; Quinones; Stereoisomerism; Structure-Activity Relationship | 2010 |
Improved production of phleichrome from the phytopathogenic fungus Cladosporium phlei using synthetic inducers and photodynamic ROS production by phleichrome.
Topics: Cladosporium; Culture Media; Diketopiperazines; Dipeptides; Mycelium; Naphthalenes; Perylene; Quinones; Reactive Oxygen Species; Superoxides | 2015 |
Gene cluster conservation identifies melanin and perylenequinone biosynthesis pathways in multiple plant pathogenic fungi.
Topics: Ascomycota; Biosynthetic Pathways; Cladosporium; Genes, Fungal; Melanins; Multigene Family; Mycotoxins; Perylene; Phylogeny; Plants; Polyketide Synthases; Quinones | 2019 |
Perylenequinone-based "turn on" fluorescent probe for hydrogen sulfide with high sensitivity in living cells.
Topics: Fluorescence; Fluorescent Dyes; HeLa Cells; Humans; Hydrogen Sulfide; Limit of Detection; Microscopy, Confocal; Optical Imaging; Perylene; Quinones; Spectrometry, Fluorescence | 2019 |
Alternatone A, an Unusual Perylenequinone-Related Compound from a Soft-Coral-Derived Strain of the Fungus
Topics: Alternaria; Animals; Anthozoa; Anti-Bacterial Agents; Antibiotics, Antineoplastic; Cell Line, Tumor; Drug Screening Assays, Antitumor; Humans; Microbial Sensitivity Tests; Models, Molecular; Molecular Structure; Perylene; Quinones; X-Ray Diffraction | 2019 |
Altertoxins with Quorum Sensing Inhibitory Activities from The Marine-Derived Fungus
Topics: Anti-Bacterial Agents; China; Cladosporium; Microbial Sensitivity Tests; Naphthalenes; Perylene; Quinones; Quorum Sensing | 2020 |
Enhanced Production and Anticancer Properties of Photoactivated Perylenequinones.
Topics: Antineoplastic Agents; Cell Line, Tumor; Culture Media; Drug Screening Assays, Antitumor; Fermentation; Humans; Light; Molecular Structure; Perylene; Quinones; Spectrum Analysis; Stereoisomerism | 2020 |
Nitric oxide regulates perylenequinones biosynthesis in Shiraia bambusicola S4201 induced by hydrogen peroxide.
Topics: Ascomycota; Hydrogen Peroxide; Nitric Oxide; Perylene; Phenol; Quinones | 2021 |
Axial Chiral Binaphthoquinone and Perylenequinones from the Stromata of
Topics: Hypocreales; Naphthoquinones; Perylene; Quinones; SARS-CoV-2; Virus Internalization | 2021 |
L-Arginine enhanced perylenequinone production in the endophytic fungus Shiraia sp. Slf14(w) via NO signaling pathway.
Topics: Acetyl Coenzyme A; Arginine; Ascomycota; Cyclic GMP; Nitric Oxide; Nitroprusside; Perylene; Quinones; Signal Transduction | 2022 |
Contrasting regulation of live Bacillus cereus No.1 and its volatiles on Shiraia perylenequinone production.
Topics: Ascomycota; Bacillus cereus; Fruiting Bodies, Fungal; Mycelium; Perylene; Quinones | 2022 |
Anti-Epstein-Barr Viral Agents from the Medicinal Herb-Derived Fungus
Topics: Alternaria; Anti-Inflammatory Agents; Antiviral Agents; Atriplex; Epstein-Barr Virus Infections; Herpesvirus 4, Human; Humans; Molecular Structure; Perylene; Plants, Medicinal; Quinones; Tenuazonic Acid | 2022 |
Bamboo polysaccharides elicit hypocrellin A biosynthesis of a bambusicolous fungus Shiraia sp. S9.
Topics: Fungi; Hydrogen Peroxide; Perylene; Phenol; Polysaccharides; Quinones | 2023 |