cyclopentane has been researched along with naphthoquinones in 14 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 1 (7.14) | 29.6817 |
2010's | 11 (78.57) | 24.3611 |
2020's | 2 (14.29) | 2.80 |
Authors | Studies |
---|---|
Taber, DF; Tian, W | 1 |
Jorgensen, WL; Thomas, LL; Tirado-Rives, J | 1 |
Hasitapan, K; Kongkathip, B; Kongkathip, N; Pradidphol, N | 1 |
Panichayupakaranant, P; Sakunphueak, A | 1 |
Khamthong, N; Phongpaichit, S; Preedanon, S; Rukachaisirikul, V; Sakayaroj, J; Trisuwan, K | 1 |
Chen, CJ; Chen, HJ; Gao, K; Liu, Q; Shi, X; Zhang, L | 1 |
Bhattacharya, S; Dewanjee, S; Gangopadhyay, M | 1 |
Chi, J; Dong, Q; Hao, H; Lei, C; Shen, Y; Wang, H; Ye, H | 1 |
Lin, H; Xiao, LJ; Xie, JH; Yu, HM; Zhou, MJ; Zhou, QL | 1 |
Alfieri, M; De Tommasi, N; Leone, A; Malafronte, N; Vaccaro, MC | 1 |
Anh, HLT; Dau, NV; Hang, DTT; Huyen, LT; Kiem, PV; Nhiem, NX; Quang, TH; Tai, BH; Yen, PH | 1 |
Cao, C; Fan, S; Guan, MX; Jin, H; Li, H; Li, Y; Meng, F; Sun, Y; Tan, M; Zhao, L; Zhou, Q; Zhu, L | 1 |
Dávila-Lara, A; Mithöfer, A; Rahman-Soad, A; Reichelt, M | 1 |
Ahmad, M; Assimopoulou, AN; Declerck, S; Koletti, AE; Molin, EM; Paun, O; Reichelt, M; Rödel, P; Rodić, N; Schneider, C; Varela Alonso, A | 1 |
14 other study(ies) available for cyclopentane and naphthoquinones
Article | Year |
---|---|
Synthesis of (-)-hamigeran B.
Topics: Cyclopentanes; Hydrogenation; Ketones; Naphthoquinones; Rhodium; Stereoisomerism | 2008 |
Quantum mechanical/molecular mechanical modeling finds Diels-Alder reactions are accelerated less on the surface of water than in water.
Topics: Acrylonitrile; Butanones; Cyclopentanes; Models, Chemical; Molecular Dynamics Simulation; Naphthoquinones; Quantum Theory; Surface Properties; Thermodynamics; Vacuum; Water | 2010 |
Synthesis and anticancer evaluation of naphthoquinone esters with 2'-cyclopentyl and 2'-cyclohexyl substituents.
Topics: Antineoplastic Agents; Cell Line, Tumor; Cyclohexanes; Cyclopentanes; Esters; Humans; Inhibitory Concentration 50; Naphthoquinones | 2010 |
Increased production of naphthoquinones in Impatiens balsamina root cultures by elicitation with methyl jasmonate.
Topics: Acetates; Cyclopentanes; Dose-Response Relationship, Drug; Impatiens; Naphthoquinones; Oxylipins; Plant Roots | 2010 |
Anthraquinone, cyclopentanone, and naphthoquinone derivatives from the sea fan-derived fungi Fusarium spp. PSU-F14 and PSU-F135.
Topics: Animals; Anthozoa; Anthraquinones; Anti-Bacterial Agents; Antifungal Agents; Antimalarials; Antineoplastic Agents; Chlorocebus aethiops; Cyclopentanes; Drug Screening Assays, Antitumor; Fusarium; Humans; KB Cells; Microbial Sensitivity Tests; Molecular Structure; Mycobacterium tuberculosis; Naphthoquinones; Nuclear Magnetic Resonance, Biomolecular; Oceans and Seas; Plasmodium falciparum; Vero Cells | 2010 |
Chemical constituents from Aphanamixis grandifolia.
Topics: Antineoplastic Agents, Phytogenic; Cell Survival; Circular Dichroism; Crystallography, X-Ray; Cyclopentanes; Humans; Magnetic Resonance Spectroscopy; Meliaceae; Models, Molecular; Naphthoquinones; Neoplasms; Triterpenes | 2010 |
Enhanced plumbagin production in elicited Plumbago indica hairy root cultures.
Topics: Acetates; Biomass; Bioreactors; Cell Culture Techniques; Cells, Cultured; Chitosan; Culture Media; Cyclopentanes; Fungi; Naphthoquinones; Oxylipins; Plant Roots; Plumbaginaceae | 2011 |
Effects of exogenous methyl jasmonate on the biosynthesis of shikonin derivatives in callus tissues of Arnebia euchroma.
Topics: Acetates; Boraginaceae; Cell Culture Techniques; Cyclopentanes; Naphthoquinones; Oxylipins; Plant Proteins; Plant Roots | 2014 |
Enantioselective Approach to (-)-Hamigeran B and (-)-4-Bromohamigeran B via Catalytic Asymmetric Hydrogenation of Racemic Ketone To Assemble the Chiral Core Framework.
Topics: Biological Products; Catalysis; Cyclopentanes; Hydrogenation; Iridium; Ketones; Kinetics; Molecular Structure; Naphthoquinones; Stereoisomerism | 2016 |
Increasing the synthesis of bioactive abietane diterpenes in Salvia sclarea hairy roots by elicited transcriptional reprogramming.
Topics: Abietanes; Acetates; Amino Acids; Biomass; Cyclopentanes; Gene Expression Profiling; Gene Expression Regulation, Plant; Indenes; Naphthoquinones; Oxylipins; Plant Roots; RNA, Messenger; Salvia; Transcription, Genetic | 2017 |
Naphtoquinones and Sesquiterpene Cyclopentenones from the Sponge Smenospongia cerebriformis with Their Cytotoxic Activity.
Topics: Animals; Cell Line, Tumor; Circular Dichroism; Cyclopentanes; Humans; Magnetic Resonance Spectroscopy; Naphthoquinones; Porifera | 2017 |
Inhibiting neddylation modification alters mitochondrial morphology and reprograms energy metabolism in cancer cells.
Topics: Animals; Apoptosis; Cell Line, Tumor; Cell Proliferation; Cell Survival; Cyclopentanes; Energy Metabolism; Female; GTP Phosphohydrolases; HEK293 Cells; Humans; Metformin; Mice; Mitochondria; Mitochondrial Dynamics; Mitochondrial Membrane Transport Proteins; Naphthoquinones; Neoplasms; Oxidative Phosphorylation; Proteolysis; Pyrimidines; Ubiquitin-Activating Enzymes; Ubiquitination; Xenograft Model Antitumor Assays | 2019 |
Carnivorous Nepenthes x ventrata plants use a naphthoquinone as phytoanticipin against herbivory.
Topics: Abscisic Acid; Animals; Carnivorous Plant; Cyclopentanes; Diet; Herbivory; Larva; Naphthoquinones; Oxylipins; Phytochemicals; Plant Growth Regulators; Plant Leaves; Protease Inhibitors; Salicylic Acid; Sarraceniaceae; Spodoptera | 2021 |
Dynamics of alkannin/shikonin biosynthesis in response to jasmonate and salicylic acid in Lithospermum officinale.
Topics: Acetates; Cyclopentanes; Lithospermum; Mevalonic Acid; Naphthoquinones; Oxylipins; Pharmaceutical Preparations; Plant Growth Regulators; Salicylic Acid | 2022 |