Maximiano Mariana Rocha, Rios Thuanny Borba, Campos Marcelo Lattarulo, Prado Guilherme Souza, Dias Simoni Campos, Franco Octávio Luiz
S-Inova Biotech, Pós-Graduação em Biotecnologia, Universidade Católica Dom Bosco, Campo Grande, Brazil.
Centro de Análises Proteômicas e Bioquímicas, Programa de Pós-Graduação em Ciências Genômicas e Biotecnologia, Universidade Católica de Brasília, Brasília, Brazil.
Front Mol Biosci. 2022 Aug 23;9:890654. doi: 10.3389/fmolb.2022.890654. eCollection 2022.
Antimicrobial peptides are small molecules, up to 10 kDa, present in all kingdoms of life, including in plants. Several studies report that these molecules have a broad spectrum of activity, including antibacterial, antifungal, antiviral, and insecticidal activity. Thus, they can be employed in agriculture as alternative tools for phytopathogen and pest control. However, the application of peptides in agriculture can present challenges, such as loss of activity due to degradation of these molecules, off-target effects, and others. In this context, nanotechnology can offer versatile structures, including metallic nanoparticles, liposomes, polymeric nanoparticles, nanofibers, and others, which might act both in protection and in release of AMPs. Several polymers and biomaterials can be employed for the development of nanostructures, such as inorganic metals, natural or synthetic lipids, synthetic and hybrid polymers, and others. This review addresses the versatility of NanoAMPs (Nanoparticles in association with antimicrobial peptides), and their potential applications in agribusiness, as an alternative for the control of phytopathogens in crops.
抗菌肽是分子量高达10 kDa的小分子,存在于包括植物在内的所有生物界。多项研究报告称,这些分子具有广泛的活性谱,包括抗菌、抗真菌、抗病毒和杀虫活性。因此,它们可在农业中用作植物病原体和害虫防治的替代工具。然而,肽在农业中的应用可能会带来挑战,例如这些分子降解导致的活性丧失、脱靶效应等。在这种背景下,纳米技术可以提供多种结构,包括金属纳米颗粒、脂质体、聚合物纳米颗粒、纳米纤维等,它们可能在抗菌肽的保护和释放方面发挥作用。几种聚合物和生物材料可用于开发纳米结构,如无机金属、天然或合成脂质、合成和杂化聚合物等。本综述阐述了纳米抗菌肽(与抗菌肽结合的纳米颗粒)的多功能性及其在农业综合企业中的潜在应用,作为控制作物中植物病原体的一种替代方法。