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Chemical modification of chitosan: synthesis and biological activity of new heterocyclic chitosan derivatives

机译:壳聚糖的化学修饰:新型杂环壳聚糖衍生物的合成及生物活性

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BACKGROUND: Numerous works have been published on the chemical modification of chitosan; this polymer is still being modified, leading to various derivatives with improved properties. In the present study, heterocyclic aldehydes including furan-2-carbaldehyde, 5-methylfuran-2-carbaldehyde, 3-pyridine carboxyaldehyde, benzo[d][1,3]dioxole-5-carbaldehyde and 4-oxo-4H-chromene-3-carbaldehyde were reacted with chitosan by a reductive alkylation reaction to produce for the first time five new N-heterocyclic chitosan derivatives to improve the biological activity of chitosan against the most important economic plant pests including fungi and insects, in particular the cotton leafworm Spodoptera littoralis. RESULTS: The chemical structures of the synthesized compounds were confirmed by H-1 NMR spectroscopy and the degree of substitution ranged from 0.30 to 0.43. The fungicidal assessment was investigated in vitro using a mycelia radial growth inhibition technique against soil-borne pathogenic fungi Fusarium oxysporum and Pythium debaryanum and the rice leaf blast Pyricularia grisea. The results showed that N-[(5-methylfuran-2-yl)methyl] chitosan was the most active against P. grisea with an EC50 value of 0.919mg mL(-1) while N-(benzo[d][1,3]dioxol5-ylmethyl) chitosan and N-(methyl-4H-chromen-4-one) chitosan exhibited the most potent fungicidal activity against P. debaryanum and F. oxysporum. An insecticidal bioassay against the larvae of S. littoralis showed that N-(methyl-4H-chromen-4-one) chitosan exhibited a significant growth inhibition and antifeedant activity among the synthesized compounds. CONCLUSION: The chemical modification of chitosan molecule with a heterocyclic moiety led to an enhancement in the biological activity against the plant pathogenic fungi F. oxysporum, P. debaryanum and P. grisea and the cotton leafworm insect S. littoralis. (C) 2007 Society of Chemical Industry.
机译:背景:关于壳聚糖的化学修饰已经发表了许多著作。该聚合物仍在改性中,导致各种衍生物具有改善的性能。在本研究中,杂环醛包括呋喃-2-甲醛,5-甲基呋喃-2-甲醛,3-吡啶羧醛,苯并[d] [1,3]二恶唑-5-甲醛和4-氧代-4H-色烯- 3-甲醛通过还原烷基化反应与壳聚糖反应,首次生产出五种新的N-杂环壳聚糖衍生物,以提高壳聚糖对最重要的经济植物害虫,包括真菌和昆虫,尤其是棉叶斜纹夜蛾的生物活性。沿海地区。结果:合成的化合物的化学结构通过H-1 NMR光谱证实,取代度为0.30至0.43。使用菌丝体径向生长抑制技术对土壤传播的病原真菌尖孢镰刀菌(Fusarium oxysporum)和腐霉腐霉(Pythium debaryanum)和稻瘟病稻瘟病菌(Pyricularia grisea)进行了杀真菌评估。结果表明,N-[(5-甲基呋喃-2-基)甲基]壳聚糖对稻瘟病菌活性最高,EC50值为0.919mg mL(-1),而N-(苯并[d] [1, 3]二氧戊环5-基甲基)壳聚糖和N-(甲基-4H-铬-4--4-酮)壳聚糖表现出对去腐霉和尖孢镰刀菌最有效的杀真菌活性。对沿海链球菌幼虫的杀虫生物测定表明,在合成的化合物中,N-(甲基-4H-铬-4--4-酮)壳聚糖表现出显着的生长抑制和拒食活性。结论:具有杂环部分的壳聚糖分子的化学修饰导致对植物病原真菌F. oxysporum,P。debaryanum和P. grisea和棉叶虫昆虫S. littoralis的生物活性增强。 (C)2007年化学工业协会。

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