Références sur l'acide Domoique et sur les Pseudo-nitzschia

Cette base de données consultable contient plus de 2 500 articles scientifiques traitant de la recherche sur l'acide domoïque, une neurotoxine, et sur sa production par les diatomées marines du genre Pseudo-nitzschia et Nitzschia. La base de données est mise à jour à mesure que de nouveaux articles sont publiés.

Les références contenues sur ce site sont présentées dans la langue des documents auxquelles elles renvoient.

Recherche

Mise à jours récentes

Flores-Holguín, N., J.S. Salas-Leiva, E.J. Núñez-Vázquez, D. Tovar-Ramírez, and D. Glossman-Mitnik. 2023. Exploring marine toxins: comparative analysis of chemical reactivity properties and potential for drug discovery. Front. Chem. 11: 1286804. [includes domoic acid]

Lien 1

Thukral, Monica. 2023. The molecular and chemical ecology of phytoplankton blooms in coastal California. University of California, San Diego. Thesis. [includes Pseudo-nitzschia]

Wang, Y., Y. Zhang, J. Wang, W. Liu, H. Wang, M. Song, H. Zhang, and X. Wang. 2024. In situ monitoring of toxic effects of algal toxin on cells by a novel microfluidic flow cytometry instrument. Ecotoxicol. Environ. Safety 270: 115894.  [discusses domoic acid]

Wang, Z., S. Xie, W. Zhang, H. Chen, Q. Ding, J. Xu, Q. Yu, and L. Zhang. 2024. Mechanochemical synthesis ionic covalent organic frameworks/cotton composites for pipette tip solid-phase extraction of domoic acid in seafood. Talanta 269: 125485.

Lien 1

Fu, X., J. Qin, C. Ding, Y. Wei, and J. Sun. 2024. Effect of increased pCO2 and temperature on the phytoplankton community in the coastal of Yellow Sea. Sci. Total Environ. 918: 170520. [includes Pseudo-nitzschia delicatissima]

Accoroni, S., M. Cangini, R. Angeletti, C. Losasso, S. Bacchiocchi, A. Costa, A. Di Taranto, L. Escalera, G. Fedrizzi, A. Garzia, F. Longo, A. Macaluso, N. Melchiorre, A. Milandri, S. Milandri, M. Montresor, F. Neri, A. Piersanti, S. Rubini, C. Suraci, F. Susini, M.R. Vadrucci, A.G. Mudadu, B. Vivaldi, B. Soro, C. Totti, and A. Zingone. 2024. Marine phycotoxin levels in shellfish - 14 years of data gathered along the Italian coast. Harmful Algae 131: 102560. [includes Pseudo-nitzschia australis, P. cf. delicatissima, P. cf. fraudulenta, P. cf. pseudodelicatissima, P. galaxiae, P. multiseries, P. multistriata, P. pungens, P. subpacifica; domoic acid]

Lien 1

Beltrán-Solís, K., E. García-Mendoza, S. Sánchez-Serrano, and L.M. López. 2023. Domoic acid affects brain morphology and causes behavioral alterations in two fish species. Sci. Rep. 13: 21729.

Lien 1

Xu, J.H., Y.P. Wu, S.-Y. Xie, H. Chen, Q.-Q. Ding, W.-M. Zhang, and L. Zhang. 2023. A solid phase extraction column based on SiO2@ZIF-8 for efficient analysis of domoic acid toxins in the seawater environment: experiments and DFT calculations on adsorption behaviour. Anal. Meth.15: 6590-6602.

Lien 1

Alrefaey, Ahmed Ibrahim Ibrahim. 2024. Development of molecular analytical methods for in situ detection of marine organisms using microfluidic biological sensor technologies. PhD Thesis, University of Southampton, 308 p. [discusses Pseudo-nitzschia multiseries]

Lien 1

Prigent, Léa. 2023. Spatio-temporal dynamics of Pseudo-nitzschia australis bloom in the Iroise Sea: a multi-disciplinary study combining gene expression, environment and hydrodynamics. PhD Thesis, l'Université de Bretagne Occidentale. École Doctorale N° 598, Sciences de la Mer et du Littoral, 348 p.

Lien 1

Zheng, G., H. Che, H. Wu, L. Cheng, Y. Deng, M. Guo, J. Peng, L. Liu, and Z. Tan. 2024. Risk characteristics of shellfish toxins in Mytilus unguiculatus around the Zhoushan Islands, East China Sea. Mar. Pollut. Bull. 199: 115955. [includes domoic acid]

Lien 1

Hopiavuori, A.R. and S.M.K. McKinnie. 2023. Algal kainoid synthases exhibit substrate-dependent hydroxylation and cyclization activities. ACS Chem. Biol. 18: 2457-2463. [discusses domoic acid biosynthesis]

Lien 1

Yao, Y., N. Luo, Y. Zong, M. Jia, Y. Rao, H. Huang, and H. Jiang. 2024. Recombinase polymerase amplification combined with lateral flow dipstick assay for the rapid and sensitive detection of Pseudo-nitzschia multiseries. Int. J. Mol. Sci. 25: 1350.

Lien 1

Lim, Y.K, K.-W. Lee, S.H. Hong, J.G. Park, and S.H. Baek. 2024. Differential impact of planktonic and periphytic diatoms on aggregation and sinking of microplastics in a simulated marine environment. Mar. Pollut. Bull. 199: 115961. [includes Pseudo-nitzschia pungens]

Li, Z., J. Wang, H. Yue, M. Du, Y. Jin, and J. Fan. 2023. Marine toxin domoic acid alters nitrogen cycling in sediments. Nat. Commun. 14 : 7873.

Lien 1

Rosales, S.A., P.A. Díaz, P. Muñoz, and G. Álvarez. 2024. Modeling the dynamics of harmful algal bloom events in two bays from the northern Chilean upwelling system. Harmful Algae 132: 102583. [discusses Pseudo-nitzschia australis]

von Dassow, P.M. Mikhno, I. Percopo, V.R. Orellana, V. Aguilera, G. Álvarez, M. Araya, S. Cornejo-Guzmán, T. Llona, J.I. Mardones, L. Norambuena, V. Salas-Rojas, W.H.C.F. Kooistra, M. Montresor, and D. Sarno. 2023. Diversity and toxicity of the planktonic diatom genus Pseudo-nitzschia from coastal and offshore waters of the Southeast Pacific, including Pseudo-nitzschia dampieri sp. nov. Harmful Algae 130: 102520. [discusses Pseudo-nitzschia australis, P. bucculenta, P. cf. chiniana, P. cf. decipiens, P. fraudulenta, P. hasleana, P. multistriata, P. plurisecta, P. cf. sabit, P. dampieri sp. nov.; domoic acid]

Lien 1

García-Corona, J.L., H. Hegaret, M. Lassudrie, A. Derrien, A. Terre-Terrillon, T. Delaire, and C. Fabioux. 2024. Comparative study of domoic acid accumulation, isomer content and associated digestive subcellular processes in five marine invertebrate species. Aquat. Toxicol. 266: 106793.

Lien 1

Ochi, N. and T. Suzuki. 2024. Determination of lipophilic marine biotoxins (azaspiracids, brevetoxins, and okadaic acid group) and domoic acid in mussels by solid-phase extraction and reversed-phase liquid chromatography with tandem mass spectrometry. J. Chromatogr A 1720: 464795.

Lien 1

Cevasco, M., A. Lawson, Z. Padgett, and E. Renshaw. 2024. Detecting the diatom HAB genus Pseudo-nitzschia in the public shellfish harvesting area of Huntington Beach State Park using a nanopore sequencing approach. J. South Carolina Water Resources 9: 84-91.

Lien 1

Ruggiero, M.V., M. Buffoli, K.K.E. Wolf, D. D’Alelio, V. Di Tuccio, E. Lombardi, F. Manfellotto, L. Vitale, F. Margiotta, D. Sarno, U. John, M.I. Ferrante, and M. Montresor. 2024. Multiannual patterns of genetic structure and mating type ratios highlight the complex bloom dynamics of a marine planktonic diatom. Sci. Rep. 14: 6028. [discusses Pseudo-nitzschia multistriata]

Lien 1    Lien 2

Niu, B., J. Pang, N. Lundholm, C. Liang, S.T. Teng, Q. Zheng, X. Guo, and Y. Li. 2024. A Pseudo-nitzschia metabarcoding approach with a calibrated ITS1 reference sequence database applied in the Taiwan Strait. Harmful Algae 133: 102602.

Lien 1

Huang, S.. X. Wang, B. Zhang, L. Xia, Y. Chen, and G. Li. 2024. Room-temperature fabrication of fluorinated covalent organic polymer @ attapulgite composite for in-syringe membrane solid-phase extraction and analysis of domoic acid in aquatic products. J. Chromatogr. A 1721: 464849.

Lien 1

Norambuena-Subiabre, L., P. Carbonell, P. Salgado, C. Zamora, and O. Espinoza-González. 2024. Sources and profiles of toxins in shellfish from the south-central coast of Chile (36°‒ 43° S). Harmful Algae 133: 102608. [includes domoic acid, Pseudo-nitzschia]

Lien 1

Tang, J., X. He, J. Chen, W. Cao, T. Han, Q. Xu, and C. Sun. 2024. Occurrence and distribution of phycotoxins in the Antarctic Ocean. Mar. Pollut. Bull. 201: 116250. [includes domoic acid]

Lien 1