Microwave-Mediated Synthesis and Characterization of Ca(OH)2 Nanoparticles Destined for Geraniol Encapsulation

被引:2
|
作者
Tryfon, Panagiota [1 ]
Kamou, Nathalie N. [2 ]
Mourdikoudis, Stefanos [3 ,4 ,5 ]
Vourlias, George [6 ]
Menkissoglu-Spiroudi, Urania [2 ]
Dendrinou-Samara, Catherine [1 ]
机构
[1] Aristotle Univ Thessaloniki, Dept Chem, Lab Inorgan Chem, Thessaloniki 54124, Greece
[2] Aristotle Univ Thessaloniki, Fac Agr Forestry & Nat Environm, Sch Agr, Pesticide Sci Lab, Thessaloniki 54124, Greece
[3] UCL, Dept Phys & Astron, Biophys Grp, London WC1E 6BT, England
[4] UCL Healthcare Biomagnet & Nanomat Labs, 21 Albemarle St, London W1S 4BS, England
[5] Flemish Inst Technol Res VITO, Separat & Convers Technol, Boeretang 200, B-2400 Mol, Belgium
[6] Aristotle Univ Thessaloniki, Phys Dept, Lab Adv Mat & Devices, Thessaloniki 54124, Greece
关键词
calcium hydroxide nanoparticles; inorganic nanoparticles; nano-delivery systems; antifungal efficacy; Botrytis cinerea; pH-responsive delivery; BOTRYTIS-CINEREA; CALCIUM; CONDUCTIVITY; OLEYLAMINE; FUNGICIDES;
D O I
10.3390/inorganics11120470
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Nanotechnology presents promising opportunities for enhancing pest management strategies, particularly in protecting active ingredients to prolong their shelf life and effectiveness. Among different approaches, the combination of inorganic nanoparticles with active ingredients such as the main constituents of natural essential oils in one nanoarchitecture is challenging. In this study, hydrophobic calcium hydroxide nanoparticles coated with oleylamime [Ca(OH)(2)@OAm NPs] were synthesized using microwave-assisted synthesis. These primary NPs were physicochemically characterized and subsequently utilized to prepare nanocapsules (NCs) either alone (Ca NCs) and/or in combination with geraniol at different ratios of Ca(OH)(2)@OAm NPs and geraniol, i.e. 1:1 (CaGer1 NCs), 1:2 (CaGer2 NCs), and 1:3 (CaGer3 NCs), respectively. Among the formulations, the CaGer2 NCs demonstrated higher encapsulation efficiency (EE) and loading capacity (LC) of 95% and 20%, correspondingly. They exhibited a hydrodynamic size of 306 nm, a zeta-potential of -35 mV, and a monodisperse distribution. Release kinetics of geraniol from CaGer2 NCs indicated a pH-dependent slow release over 96 h at both 25 degrees C and 35 degrees C. In vitro antifungal assay against B. cinerea revealed a concentration-dependent activity, and the EC50 values for Ca(OH)(2)@OAm NPs, Ca NCs, and CaGer2 NCs were estimated to be 654 mu g/mL, 395 mu g/mL, and 507 mu g/mL, respectively. These results underscore the potential of Ca-based nanoformulations to control plant pathogens, suggesting that while Ca NCs showcase potent antifungal attributes, the different architectures/structures play a critical role in the antifungal effectiveness of the nanoformulations that have to be explored further.
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页数:15
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