Barman Snigdha Roy, Nain Amit, Jain Saumey, Punjabi Nirmal, Mukherji Soumyo, Satija Jitendra
School of Biosciences and Technology, VIT Vellore, Tamil Nadu 632014, India.
J Mater Chem B. 2018 Apr 28;6(16):2368-2384. doi: 10.1039/c7tb03344c. Epub 2018 Apr 12.
Advances in nanoparticle research, particularly in the domain of surface-engineered, function-oriented nanoparticles, have had a profound effect in many areas of scientific research and aided in bringing unprecedented developments forward, particularly in the biomedical field. Surface modifiers/capping agents have a direct bearing on the major properties of metal nanoparticles (MNPs), ranging from their physico-chemical properties to their stability and functional applications. Among the different classes of capping agents, dendrimers have gained traction as effective multifunctional capping agents for MNPs due to their unique structural qualities, dendritic effect and polydentate nature. Dendrimer-coated metal nanoparticles (DC-MNPs) are typically produced by both (i) a one-pot strategy, where metal ions are reduced in the presence of dendrimer molecules and (ii) a multi-pot strategy, where a sequence of reactions involving the reduction of metal ions, activation, conjugation and purification steps are involved. These DC-MNPs have shown remarkable ability to stabilize MNPs by means of electrostatic interactions, coordination chemistry or covalent attachment, due to them entailing a large number of sites at which further molecular moieties can be conjugated. This review article is an attempt to consolidate the on-going work, particularly over the last five years, in the field of the synthesis of dendrimer-coated MNPs and their potential applications in bioimaging, drug delivery and biochemical sensors.
纳米颗粒研究的进展,特别是在表面工程化、功能导向型纳米颗粒领域,在许多科研领域都产生了深远影响,并助力实现了前所未有的发展,尤其是在生物医学领域。表面改性剂/封端剂对金属纳米颗粒(MNP)的主要性质有着直接影响,涵盖从其物理化学性质到稳定性及功能应用等方面。在不同种类的封端剂中,树枝状大分子因其独特的结构特性、树枝状效应和多齿性质,作为MNP的有效多功能封端剂而受到关注。树枝状大分子包覆的金属纳米颗粒(DC-MNP)通常通过两种方法制备:(i)一锅法,即在树枝状大分子分子存在下还原金属离子;(ii)多步法,即涉及金属离子还原、活化、共轭和纯化步骤的一系列反应。这些DC-MNP通过静电相互作用、配位化学或共价连接展现出显著的稳定MNP的能力,因为它们具有大量可共轭其他分子部分的位点。这篇综述文章旨在整合在树枝状大分子包覆的MNP合成领域正在进行的工作,特别是过去五年的工作,以及它们在生物成像、药物递送和生化传感器方面的潜在应用。