Formulation of selective hydrophobic deep eutectic oil-in-water nanoemulsion as green fungicides for mitigating anthracnose fungus Colletotrichum gloeosporioides

บทความในวารสาร


ผู้เขียน/บรรณาธิการ


กลุ่มสาขาการวิจัยเชิงกลยุทธ์


รายละเอียดสำหรับงานพิมพ์

รายชื่อผู้แต่งM.J. Gidado, Ahmad Anas Nagoor Gunny, Subash C.B. Gopinath, Chalermchai Wongs-Aree , Muaz Mohd Zaini Makhtar, Hafiza Shukor

ผู้เผยแพร่Elsevier

ปีที่เผยแพร่ (ค.ศ.)2023

วารสารProcess Biochemistry (1359-5113)

Volume number135

หน้าแรก40

หน้าสุดท้าย49

จำนวนหน้า10

นอก1359-5113

eISSN1873-3298

URLhttps://www.sciencedirect.com/science/article/abs/pii/S1359511323003471?via%3Dihub


ดูบนเว็บไซต์ของสำนักพิมพ์


บทคัดย่อ

Hydrophobic deep eutectic nanoemulsions derived from fatty acids and terpenes (referred to as HyDEN) were introduced as potential nano-coating to effectively combat anthracnose during the postharvest preservation of fruits. Anthracnose primarily caused by the Colletotrichum gloeosporioides species is known for causing substantial damage to fruits. Synthetic fungicides have proven to be effective but come with environmental, health, and safety concerns. In this study, hydrophobic deep eutectic solvents (HDESs) were evaluated for their physical properties to identify the most suitable HDES for the formulation of HyDEN. Menthol-Thymol (MT) at 1:1 and 2:1 ratio met the criteria and was chosen for the formulation of HyDEN. HyDEN (MT-N 1:1) displayed a higher zeta potential value and smaller mean droplet diameter and then tested for its antifungal properties against Cgloeosporioides compared with selected antifungal agents. HyDEN (MT-N 1:1) exhibited strong antifungal activity against Cgloeosporioides and was attributed to its potent mode of action, binding affinity, and rapid onset compared to HDES and fungicide (Globus 5.5). This study also investigated how HyDEN (MT-N 1:1) affects mycelial growthcell membrane permeability, and cellular leakage of Cgloeosporioides, highlighting its superior disruption of cell membranes compared to HDES and Globus 5.5. This research presents an eco-friendly alternative to the use of toxic chemicals and showcases an innovative and sustainable approach to controlling anthracnose in postharvest fruit preservation.


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