Shaban Mina, Hasanzadeh Mohammad
Pharmaceutical Analysis Research Center, Tabriz University of Medical Sciences Tabriz Iran
Food and Drug Safety Research Center, Tabriz University of Medical Sciences Tabriz Iran.
RSC Adv. 2020 Oct 8;10(61):37116-37133. doi: 10.1039/d0ra04388e. eCollection 2020 Oct 7.
Dendritic fibrous nanosilica (DFNS), with multi-component and hierarchically complex structures, has recently been receiving significant attention in various fields of nano-biomedicine. DFNS is an emerging class of mesoporous nanoparticles that has attracted great interest due to unique structures such as open three-dimensional dendritic superstructures with large pore channels and highly accessible internal surface areas. This overview aims to study the application of DFNS towards biomedical investigations. This review is divided into four main sections. Sections 1-3 are related to the synthesis and characterization of DFNS. The biomedical potential of DFNS, such as cell therapy, gene therapy, immune therapy, drug delivery, imaging, photothermal therapy, bioanalysis, biocatalysis, and tissue engineering, is discussed based on advantages and limitations. Finally, the perspectives and challenges in terms of controlled synthesis and potential nano-biomedical applications towards future studies are discussed.
树枝状纤维纳米二氧化硅(DFNS)具有多组分和层次复杂的结构,近年来在纳米生物医学的各个领域受到了广泛关注。DFNS是一类新兴的介孔纳米颗粒,因其独特的结构,如具有大孔通道和高可及内表面积的开放三维树枝状超结构,而备受关注。本综述旨在研究DFNS在生物医学研究中的应用。本综述分为四个主要部分。第1 - 3节与DFNS的合成和表征有关。基于其优点和局限性,讨论了DFNS在细胞治疗、基因治疗、免疫治疗、药物递送、成像、光热治疗、生物分析、生物催化和组织工程等生物医学领域的潜力。最后,讨论了未来研究在可控合成和潜在纳米生物医学应用方面的前景和挑战。