Refractories, Ceramics and Building Materials Department, National Research Centre, 33El Bohouth St (former EL Tahrir St), Dokki, Giza P.O. 12622, Egypt.
Department of Chemical Engineering, Loughborough University, Loughborough LE113TU, Leicestershire, UK.
Molecules. 2021 Feb 18;26(4):1077. doi: 10.3390/molecules26041077.
Designing of nanomaterials has now become a top-priority research goal with a view to developing specific applications in the biomedical fields. In fact, the recent trends in the literature show that there is a lack of in-depth reviews that specifically highlight the current knowledge based on the design and production of nanomaterials. Considerations of size, shape, surface charge and microstructures are important factors in this regard as they affect the performance of nanoparticles (NPs). These parameters are also found to be dependent on their synthesis methods. The characterisation techniques that have been used for the investigation of these nanomaterials are relatively different in their concepts, sample preparation methods and obtained results. Consequently, this review article aims to carry out an in-depth discussion on the recent trends on nanomaterials for biomedical engineering, with a particular emphasis on the choices of the nanomaterials, preparation methods/instruments and characterisations techniques used for designing of nanomaterials. Key applications of these nanomaterials, such as tissue regeneration, medication delivery and wound healing, are also discussed briefly. Covering this knowledge gap will result in a better understanding of the role of nanomaterial design and subsequent larger-scale applications in terms of both its potential and difficulties.
设计纳米材料现已成为首要的研究目标,以期在生物医学领域开发出特定的应用。事实上,文献中的最新趋势表明,缺乏深入的综述,专门根据纳米材料的设计和生产来突出当前的知识。在这方面,大小、形状、表面电荷和微观结构等因素是重要的考虑因素,因为它们会影响纳米颗粒(NPs)的性能。这些参数也被发现与其合成方法有关。用于研究这些纳米材料的表征技术在概念、样品制备方法和获得的结果方面存在较大差异。因此,本文旨在对生物医学工程用纳米材料的最新趋势进行深入探讨,特别强调纳米材料的选择、制备方法/仪器和用于设计纳米材料的表征技术。还简要讨论了这些纳米材料的关键应用,如组织再生、药物输送和伤口愈合。填补这一知识空白将有助于更好地理解纳米材料设计的作用及其随后在潜在应用和困难方面的更大规模应用。