Department of Analytical Chemistry, Faculty of Natural Sciences, Comenius University, Ilkovicova 6, 842 15 Bratislava, Slovakia.
Department of Chemical Biology, Faculty of Science, Palacky University Olomouc, Slechtitelu 27, 783 71 Olomouc, Czech Republic.
Int J Mol Sci. 2022 Jun 2;23(11):6253. doi: 10.3390/ijms23116253.
Climate change and increasing contamination of the environment, due to anthropogenic activities, are accompanied with a growing negative impact on human life. Nowadays, humanity is threatened by the increasing incidence of difficult-to-treat cancer and various infectious diseases caused by resistant pathogens, but, on the other hand, ensuring sufficient safe food for balanced human nutrition is threatened by a growing infestation of agriculturally important plants, by various pathogens or by the deteriorating condition of agricultural land. One way to deal with all these undesirable facts is to try to develop technologies and sophisticated materials that could help overcome these negative effects/gloomy prospects. One possibility is to try to use nanotechnology and, within this broad field, to focus also on the study of two-dimensional carbon-based nanomaterials, which have excellent prospects to be used in various economic sectors. In this brief up-to-date overview, attention is paid to recent applications of graphene-based nanomaterials, i.e., graphene, graphene quantum dots, graphene oxide, graphene oxide quantum dots, and reduced graphene oxide. These materials and their various modifications and combinations with other compounds are discussed, regarding their biomedical and agro-ecological applications, i.e., as materials investigated for their antineoplastic and anti-invasive effects, for their effects against various plant pathogens, and as carriers of bioactive agents (drugs, pesticides, fertilizers) as well as materials suitable to be used in theranostics. The negative effects of graphene-based nanomaterials on living organisms, including their mode of action, are analyzed as well.
气候变化和人为活动导致的环境日益污染,给人类生活带来了越来越大的负面影响。如今,人类受到癌症发病率不断上升和各种耐药病原体引起的传染病的威胁,但另一方面,确保人类营养均衡的充足安全食品也受到农业重要植物不断受到各种病原体侵害或农业土地状况恶化的威胁。应对所有这些不良事实的一种方法是尝试开发技术和复杂材料,以帮助克服这些负面影响/黯淡前景。一种可能性是尝试利用纳米技术,并在这个广泛的领域中,也专注于研究二维碳基纳米材料,它们具有在各个经济领域中应用的极好前景。在这个简要的最新综述中,关注了基于石墨烯的纳米材料的最新应用,即石墨烯、石墨烯量子点、氧化石墨烯、氧化石墨烯量子点和还原氧化石墨烯。讨论了这些材料及其与其他化合物的各种改性和组合,以及它们在生物医学和农业生态方面的应用,例如作为研究抗癌和抗侵袭作用的材料、作为针对各种植物病原体的作用的材料、以及作为生物活性剂(药物、农药、肥料)的载体以及适合用于治疗学的材料。还分析了基于石墨烯的纳米材料对生物体的负面影响,包括其作用模式。