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Preparation of Chitosan–Hexaconazole Nanoparticles as Fungicide Nanodelivery System for Combating Ganoderma Disease in Oil Palm

机译:壳聚糖-己康唑纳米颗粒的制备作为抗油棕剂灵芝疾病的杀菌剂纳米传递系统

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Fungicide is used to control fungal disease by destroying and inhibiting the fungus or fungal spores that cause the disease. However, failure to deliver fungicide to the disease region leads to ineffectiveness in the disease control. Hence, in the present study, nanotechnology has enabled the fungicide active agents (hexaconazole) to be encapsulated into chitosan nanoparticles with the aim of developing a fungicide nanodelivery system that can transport them more effectively to the target cells (Ganoderma fungus). A pathogenic fungus, Ganoderma boninense (G. boninense), is destructive to oil palm whereby it can cause significant loss to oil palm plantations located in the Southeast Asian countries, especially Malaysia and Indonesia. In regard to this matter, a series of chitosan nanoparticles loaded with the fungicide, hexaconazole, was prepared using various concentrations of crosslinking agent sodium tripolyphosphate (TPP). The resulting particle size revealed that the increase of the TPP concentration produced smaller particles. In addition, the in vitro fungicide released at pH 5.5 demonstrated that the fungicide from the nanoparticles was released in a sustainable manner with a prolonged release time up to 86 h. On another note, the in vitro antifungal studies established that smaller particle size leads to lower half maximum effective concentration (EC50) value, which indicates higher antifungal activity against G. boninense.
机译:杀菌剂用于通过破坏和抑制引起疾病的真菌或真菌孢子来控制真菌疾病。然而,未能将杀真菌剂递送至疾病区域导致疾病控制无效。因此,在本研究中,纳米技术使杀菌剂活性剂(六康唑)能够被包封在壳聚糖纳米粒子中,目的是开发一种杀菌剂纳米传递系统,该系统可以将其更有效地转运至靶细胞(灵芝真菌)。致病真菌灵芝Boninense(G. boninense)对油棕具有破坏性,从而可能给位于东南亚国家(尤其是马来西亚和印度尼西亚)的油棕种植园造成重大损失。关于此问题,使用各种浓度的交联剂三聚磷酸钠(TPP)制备了一系列负载有杀菌剂六康唑的壳聚糖纳米颗粒。所得的粒度表明,TPP浓度的增加产生较小的颗粒。另外,在pH 5.5释放的体外杀菌剂表明,纳米颗粒中的杀菌剂以可持续的方式释放,延长的释放时间长达86小时。另一个注意事项是,体外抗真菌研究表明,较小的颗粒尺寸导致较低的一半最大有效浓度(EC50)值,这表明对博尼氏乳杆菌的抗真菌活性较高。

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