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合成及缓释吡啶甲酰基壳寡糖铜配合物的抗真菌活性。

Synthesis and antifungal activity of slow-release pyridinylcarbonyl chitooligosaccharide copper complexes.

机构信息

CAS and Shandong Province Key Laboratory of Experimental Marine Biology, Center for Ocean Mega-Science, Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, China; Laboratory for Marine Drugs and Bioproducts, Pilot National Laboratory for Marine Science and Technology (Qingdao), No. 1 Wenhai Road, Qingdao 266237, China.

CAS and Shandong Province Key Laboratory of Experimental Marine Biology, Center for Ocean Mega-Science, Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, China; Laboratory for Marine Drugs and Bioproducts, Pilot National Laboratory for Marine Science and Technology (Qingdao), No. 1 Wenhai Road, Qingdao 266237, China.

出版信息

Carbohydr Polym. 2022 Sep 1;291:119663. doi: 10.1016/j.carbpol.2022.119663. Epub 2022 May 26.

Abstract

Copper fungicides are fungicides have a wide application, but their toxicity to plant growth and the damage they cause to the environment cannot be ignored. As such, the novel, low toxicity biogenic copper fungicide has strong industrial application prospects. Herein, pyridinylcarbonyl chitooligosaccharide ligands (pCOSx) and their copper complexes (pCOSx-Cu) were synthesized. The results showed that a p-π-π conjugated system was formed in pCOSx, resulting in the formation of a slowly dissociated coordination bond between the nitrogen atom of pyridyl and Cu in pCOSx-Cu. The cumulative release rate of Cu is positively correlated with the electron donating ability of pyridyl. Compared with the commercial copper fungicide thiodiazole‑copper, pCOSx-Cu exhibited better antifungal activity, lower phytotoxicity and better biocompatibility. This work demonstrated that it was feasible to construct a conjugated system in a chitooligosaccharide copper complex to improve slow-release performance, which laid a foundation for the in-depth study of green copper fungicides. CHEMICAL COMPOUNDS: Chitooligosaccharide (PubChem CID: 3086191); Nicotinoyl chloride hydrochloride (PubChem CID: 88438); Isonicotinoyl chloride hydrochloride (PubChem CID: 12262826); 2-chloronicotinoyl chloride (PubChem CID: 2774541); Trimethylchlorosilane (PubChem CID: 6397); Tetrabutylammonium fluoride (PubChem CID: 2724141); Copper (II) acetate monohydrate (PubChem CID: 165397).

摘要

铜杀菌剂具有广泛的应用,但它们对植物生长的毒性和对环境的破坏不容忽视。因此,新型低毒生物源铜杀菌剂具有很强的工业应用前景。在此,合成了吡啶甲酰壳寡糖配体(pCOSx)及其铜配合物(pCOSx-Cu)。结果表明,pCOSx 中形成了 p-π-π 共轭体系,导致吡啶氮原子与 pCOSx-Cu 中 Cu 形成缓慢解离的配位键。Cu 的累积释放率与吡啶的供电子能力呈正相关。与商业铜杀菌剂噻二唑铜相比,pCOSx-Cu 表现出更好的抗真菌活性、更低的植物毒性和更好的生物相容性。这项工作证明了在壳寡糖铜配合物中构建共轭体系以提高缓释性能是可行的,为深入研究绿色铜杀菌剂奠定了基础。化学物质:壳寡糖(PubChem CID:3086191);烟酰氯盐酸盐(PubChem CID:88438);异烟酰氯盐酸盐(PubChem CID:12262826);2-氯烟酰氯(PubChem CID:2774541);三甲基氯硅烷(PubChem CID:6397);四丁基氟化铵(PubChem CID:2724141);醋酸铜一水合物(PubChem CID:165397)。

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