GELLAN GUM- AND PECTIN-MAGNETIC GRAPHENE OXIDE NANOCARRIERS LOADED WITH CINNAMALDEHYDE FOR MOSQUITO LARVAE CONTROL

S. T. S. Wong, A. Kamari, Siti Najiah Mohd Yusoff, Mohd Zobir Hussein, Hidayatulfathi Othman, S. Mustafar, Adulsman Sukkaew, Is Fatimah
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Abstract

Magnetic nanoparticles have evolved over the last few decades as nanocarriers in drug delivery systems for hydrophobic drugs. Here, novel gellan gum magnetic graphene oxide (GG-GO-Fe3O4) and pectin magnetic graphene oxide (PEC-GO-Fe3O4) nanocomposites were prepared to carry cinnamaldehyde to control Aedes aegypti larvae. Fourier transform infrared (FTIR) spectroscopy, field emission scanning electron microscopy (FESEM) and scanning transmission electron microscopy (STEM) were employed to investigate the physicochemical characteristics of the nanocomposites. Entrapment efficiencies and loading capacities of nanocomposites on cinnamaldehyde were examined using ultraviolet-visible analysis. The successful cinnamaldehyde loading was confirmed by C-C and C-O stretches in the FTIR spectra. Results of in vitro release study showed the capabilities of GG-GO-Fe3O4 as a drug carrier system, extending the cinnamaldehyde release period for 36 h, and the release profiles for both nanocomposites fit the Korsmeyer-Peppas kinetic model with correlation coefficient (R2) values of over 0.9809. The cinnamaldehyde-loaded GG-GO-Fe3O4 nanocomposites induced 68% mortality after 72 h of exposure, with LC50 values ranging from 2.0488 and 15.9121 mg/L. The conjugation of GO-Fe3O4 with biopolymers improved the water solubility of cinnamaldehyde by 36.41 to 62.83 times vs. free cinnamaldehyde in water (1.42 mg/mL). Overall, these results are beneficial for researchers dealing with mosquito control and prevention.
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载入肉桂醛的结冷胶和果胶磁性氧化石墨烯纳米载体用于控制蚊子幼虫
过去几十年来,磁性纳米颗粒已发展成为疏水性药物给药系统中的纳米载体。本文制备了新型结冷胶磁性氧化石墨烯(GG-GO-Fe3O4)和果胶磁性氧化石墨烯(PEC-GO-Fe3O4)纳米复合材料,用于携带肉桂醛控制埃及伊蚊幼虫。采用傅立叶变换红外光谱(FTIR)、场发射扫描电子显微镜(FESEM)和扫描透射电子显微镜(STEM)研究了纳米复合材料的理化特性。利用紫外可见光分析法检测了纳米复合材料对肉桂醛的吸附效率和负载能力。傅立叶变换红外光谱中的 C-C 和 C-O 伸展证实了肉桂醛的成功负载。体外释放研究结果表明,GG-GO-Fe3O4 具有作为药物载体系统的能力,可将肉桂醛的释放期延长至 36 小时,两种纳米复合材料的释放曲线均符合 Korsmeyer-Peppas 动力学模型,相关系数 (R2) 超过 0.9809。肉桂醛负载的 GG-GO-Fe3O4 纳米复合材料在暴露 72 小时后可诱导 68% 的生物死亡,半数致死浓度为 2.0488 至 15.9121 毫克/升。GO-Fe3O4 与生物聚合物共轭后,肉桂醛的水溶性比游离肉桂醛在水中(1.42 毫克/毫升)提高了 36.41 至 62.83 倍。总之,这些结果对从事蚊虫控制和预防的研究人员大有裨益。
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