Department of Nanobiotechnology, Faculty of Biological Sciences, Tarbiat Modares University, Tehran, Iran.
Department of Biochemistry, Faculty of Biological Sciences, Tarbiat Modares University, Tehran, Iran.
J Adv Res. 2022 Jul;39:61-71. doi: 10.1016/j.jare.2021.11.006. Epub 2021 Nov 20.
Plasmonic nanomaterials asnoble metal-based materials have unique optical characteristic upon exposure to incident light with an appropriate wavelength. Today, generated plasmon by nanoparticles has receivedincreasingattention in nanomedicine; from diagnosis, tissue and tumor imaging to therapeutic and biomedical engineering.
Due to rapid growing of knowledge in the inorganic nanomaterial field, this paper aims to be a comprehensive and authoritative, critical, and broad interest to the scientific community. Here, we introduce basic physicochemical properties of plasmonic nanoparticles and their applications in biomedical and tissue engineering The first part of each division explain the basic physico-chemical properties of each nanomaterial with a graphical abstract. In the second part, concepts by describing classic examples taken from the biomedical and biomedical engineering literature are illustrated. The selected case studies are intended to give an overview of the different systems and mechanisms utilized in nanomedicine.
In this communication, we have tried to introduce the needed concepts of plasmonic nanomaterials and their implication in a particular part of biomedical over the last 20 years. Moreover, in each part with insist on limitations, a perspective is presented which can guide a researcher how they can develop or modify new scaffolds for biomedical engineering.
等离子体纳米材料作为基于贵金属的材料,在暴露于适当波长的入射光时具有独特的光学特性。如今,纳米颗粒产生的等离子体在纳米医学中受到越来越多的关注;从诊断、组织和肿瘤成像到治疗和生物医学工程。
由于无机纳米材料领域知识的快速增长,本文旨在成为科学界全面、权威、批判性和广泛关注的文献。在这里,我们介绍了等离子体纳米粒子的基本物理化学性质及其在生物医学和组织工程中的应用。每个部分的第一部分都用图形摘要解释了每种纳米材料的基本物理化学性质。在第二部分中,通过描述来自生物医学和生物医学工程文献中的经典示例来阐述概念。选择的案例研究旨在概述纳米医学中使用的不同系统和机制。
在本通讯中,我们试图介绍过去 20 年来等离子体纳米材料及其在生物医学特定领域的应用所需的概念。此外,在每一部分中,我们都坚持局限性,并提出了一个观点,指导研究人员如何为生物医学工程开发或修改新的支架。