Santiago-Aliste Alberto, Sánchez-Hernández Eva, Langa-Lomba Natalia, González-García Vicente, Casanova-Gascón José, Martín-Gil Jesús, Martín-Ramos Pablo
Department of Agricultural and Forestry Engineering, ETSIIAA, University of Valladolid, Avenida de Madrid 44, 34004 Palencia, Spain.
Instituto Universitario de Investigación en Ciencias Ambientales de Aragón (IUCA), EPS, University of Zaragoza, Carretera de Cuarte s/n, 22071 Huesca, Spain.
Materials (Basel). 2022 Dec 15;15(24):8981. doi: 10.3390/ma15248981.
In this study, a graphitic carbon nitride and chitosan oligomers (g-C3N4−COS) nanocarrier assembly, which was obtained by cross-linking with methacrylic anhydride (MA), was synthesized and characterized. Its characterization was carried out using infrared spectroscopy, elemental and thermal analyses, and transmission electron microscopy. The new nanocarriers (NCs), with an average particle size of 85 nm in diameter and a 0.25 dispersity index, showed photocatalytic activity (associated with the g-C3N4 moiety), susceptibility to enzymatic degradation (due to the presence of the COS moiety), and high encapsulation and moderate-high release efficiencies (>95% and >74%, respectively). As a proof of concept, the visible-light-driven photocatalytic activity of the NCs was tested for rhodamine B degradation and the reduction of uranium(VI) to uranium(IV). Regarding the potential of the nanocarriers for the encapsulation and delivery of bioactive products for crop protection, NCs loaded with Rubia tinctorum extracts were investigated in vitro against three Vitis vinifera phytopathogens (viz. Neofusicoccum parvum, Diplodia seriata, and Xylophilus ampelinus), obtaining minimum inhibitory concentration values of 750, 250, and 187.5 µg·mL−1, respectively. Their antifungal activity was further tested in vivo as a pruning wound protection product in young ‘Tempranillo’ grapevine plants that were artificially infected with the two aforementioned species of the family Botryosphaeriaceae, finding a significant reduction of the necrosis lengths in the inner woody tissues. Therefore, g-C3N4-MA-COS NCs may be put forward as a multifunctional platform for environmental and agrochemical delivery applications.
在本研究中,合成并表征了一种通过与甲基丙烯酸酐(MA)交联获得的石墨相氮化碳和壳聚糖低聚物(g-C3N4−COS)纳米载体组装体。使用红外光谱、元素分析和热分析以及透射电子显微镜对其进行了表征。新的纳米载体(NCs)平均粒径为85 nm,分散指数为0.25,具有光催化活性(与g-C3N4部分相关)、酶促降解敏感性(由于COS部分的存在)以及高包封率和中高释放效率(分别>95%和>74%)。作为概念验证,测试了NCs的可见光驱动光催化活性对罗丹明B的降解以及将铀(VI)还原为铀(IV)的能力。关于纳米载体用于封装和递送用于作物保护的生物活性产品的潜力,研究了负载茜草提取物的NCs对三种葡萄致病病原体(即细小新壳梭孢、葡萄座腔菌和木质部小蠹)的体外抑菌活性,分别获得最低抑菌浓度值为750、250和187.5 µg·mL−1。作为一种修剪伤口保护产品,在人工感染上述两种葡萄座腔菌科物种的年轻‘丹魄’葡萄植株中对其体内抗真菌活性进行了进一步测试,发现木质部内部组织的坏死长度显著减少。因此,g-C3N4-MA-COS NCs可作为一种用于环境和农用化学品递送应用的多功能平台。