Janus nanoparticles: an efficient intelligent modern nanostructure for eradicating cancer.

IF 3.4 2区 医学 Q2 PHARMACOLOGY & PHARMACY Drug Metabolism Reviews Pub Date : 2021-11-01 Epub Date: 2021-02-09 DOI:10.1080/03602532.2021.1878530
Farshid Gheisari, Mostafa Shafiee, Milad Abbasi, Ali Jangjou, Peyman Izadpanah, Ahmad Vaez, Ali Mohammad Amani
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引用次数: 10

Abstract

In the modern age, the struggle to generate appropriate bio-based materials and nano-scaled colloidal particulates for developed application domains, has already resulted in remarkable attempts in the advancement of regulated size and shape, anisotropy, and characteristics of nanostructures. The bottom-up development strategies of components are among the most important science areas throughout nanotechnology, in which the designed building blocks are often utilized to generate novel structures by random self-assembly. In biomedical applications, Janus nanoparticles (JNPs) are necessary. This is due to their effective stimulus-responsive properties, tunable structure, biocompatibility, containing two surfaces with various hydrophobic characteristics and distinct functional groups. Featuring two parts with differing hydrophobicity has been the most critical aspect of the Janus amphiphilic particles. Development of JNPs has been afforded, using imaging agents (e.g. gold (AU) for photoacoustic imaging processing (PAI), silver for surface-enhanced Raman scattering (SERS), and Fe3O4 and MnO2 to magnetic resonance imaging (MRI)). It is also to be mentioned that a number of other properties become salient - properties such as integration imaging factors into JNPs (like quantum dots, fluorescent dyes), multiple imaging methods for screening and diagnosis application can indeed be accomplished. Janus nanostructures have been promising platforms for bioengineering as therapeutic carriers, drug delivery vehicles, and biosensor equipment; they may also be employed for the transport of bioactive hydrophilic and hydrophobic materials. The main production approaches and major advancement of JNPs in the biomedical sector and cancer therapy will be described in this paper.

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Janus纳米粒子:用于根除癌症的高效智能现代纳米结构。
在现代,为开发应用领域而产生适当的生物基材料和纳米尺度胶体颗粒的努力,已经在纳米结构的调节尺寸和形状、各向异性和特性方面取得了显著的进展。组件的自底向上开发策略是纳米技术中最重要的科学领域之一,其中设计的构建模块经常被用来通过随机自组装产生新的结构。在生物医学应用中,Janus纳米颗粒(JNPs)是必不可少的。这是由于它们有效的刺激响应特性、可调节的结构、生物相容性、含有两种具有不同疏水特性和不同官能团的表面。具有不同疏水性的两个部分一直是双面粒子最关键的方面。利用成像剂(例如金(AU)用于光声成像处理(PAI),银用于表面增强拉曼散射(SERS), Fe3O4和MnO2用于磁共振成像(MRI))开发JNPs。值得一提的是,许多其他特性也变得突出——诸如将成像因子集成到JNPs(如量子点、荧光染料)中的特性,以及用于筛选和诊断应用的多种成像方法确实可以实现。Janus纳米结构在生物工程中作为治疗载体、药物输送载体和生物传感器设备已经成为很有前途的平台;它们也可用于运输具有生物活性的亲水和疏水材料。本文将介绍JNPs在生物医学领域和癌症治疗中的主要生产方法和主要进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Drug Metabolism Reviews
Drug Metabolism Reviews 医学-药学
CiteScore
11.10
自引率
1.70%
发文量
21
审稿时长
1 months
期刊介绍: Drug Metabolism Reviews consistently provides critically needed reviews of an impressive array of drug metabolism research-covering established, new, and potential drugs; environmentally toxic chemicals; absorption; metabolism and excretion; and enzymology of all living species. Additionally, the journal offers new hypotheses of interest to diverse groups of medical professionals including pharmacologists, toxicologists, chemists, microbiologists, pharmacokineticists, immunologists, mass spectroscopists, as well as enzymologists working in xenobiotic biotransformation.
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