含姜黄素纳米颗粒防治热带水果真菌病害的制备及其应用前景

Le Dang Quang, Nguyen Tuan Anh, Tran Quang De, Nguyen Thi Thu Trang, Vu Xuan Minh, Nguyen Cuong Quoc, Vo T. Kieu Anh, Bui Van Cuong, Tran Dai Lam, Tran Thanh Men, Do Tan Khang, Nguyen Trong Tuan
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摘要

炭疽病菌在各种热带作物的栽培期和采收后都会引起炭疽病。目前用于治疗炭疽病的合成杀菌剂有时会对农民产生毒性,在食品中残留,并对环境产生影响。本研究以含有姜黄素的姜黄提取物为有效成分,配制成纳米乳剂防治红辣椒和番茄果实中的炭疽病。以Tween-80和PEG 400为乳化剂,包封制备了含25%姜黄提取物的纳米颗粒。在姜黄提取物的三种主要姜黄素中,BDMC含量最高。姜黄纳米颗粒的平均粒径为203 nm,多分散性指数(PI)为0.322,zeta电位为-92.7 mV。在体外抗真菌生物实验中,该纳米制剂对炭疽菌和圆形炭疽菌的菌丝生长有明显的抑制作用,且呈剂量依赖性。红辣椒炭疽病也被姜黄纳米颗粒持续抑制,但番茄炭疽病在体内对该配方的10mg /mL具有抗性。研究结果证实了姜黄纳米颗粒对红辣椒采后保鲜中炭疽病的防治效果,并建议开发创新的纳米配方作为绿色杀菌剂。
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Preparation and potential of nanoparticles containing curcuminoids to control fungal diseases in tropical fruits
Colletotrichum species cause anthracnose in various tropical crops in both cultivation and postharvest periods. The current synthetic fungicides to treat anthracnose sometime show toxic effects for farmers, residues on foods, and environmental impacts. In this work, turmeric extract containing curcuminoids was used as an active ingredient and formulated into a nanoemulsion to control anthracnose in red pepper and tomato fruits. The nanoparticles containing turmeric extract (25 %) were successfully prepared by encapsulation using Tween-80 and PEG 400 as emulsifiers. Out of the three main curcuminoids in the turmeric extract, BDMC was determined as the most abundant constituent via HPLC analysis. Turmeric nanoparticles showed an average particle size of 203 nm, polydispersity index (PI) of 0.322, and zeta potential of -92.7 mV.  In the in vitro antifungal bioassay, this nanoformulation significantly inhibited the mycelial growth of Colletotrichum gloeosporioides and Colletotrichum orbiculare in a dose-dependent manner. Red pepper anthracnose was also consistently suppressed by turmeric nanoparticles but the tomato anthracnose was resistant to this formulation at 10 mg/mL in vivo. The study results proved the effectiveness of turmeric nanoparticles to control red pepper anthracnose in postharvest preservation and suggested developing the innovative nanoformulation as a green fungicide.
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