Magnetite-based Janus nanoparticles, their synthesis and biomedical applications.

IF 6.9 2区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
Mozhdeh Madadi, Sepideh Khoee
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引用次数: 1

Abstract

The advent of Janus nanoparticles has been a great breakthrough in the emerging field of nanomaterials. Janus nanoparticles refer to a single structure with two distinct chemical functions on either side. Owing to their asymmetric structures, they can be utilized in a variety of applications where monomorphic particles are insufficient. In the last decade, a wide variety of materials have been employed to fabricate Janus nanoparticles, and due to the great advantages of magnetite (Iron-oxide) NPs, they have been considered as one of the best candidates. With the main benefit of magnetic controlling, magnetite Janus nanoparticles fulfill great promises, especially in biomedical areas such as bioimaging, cancer therapies, theranostics, and biosensing. The intrinsic characteristics of magnetite Janus nanoparticles (MJNPs) even hold great potential in magnetite Janus forms of micro-/nanomotors. Despite the great interest and potential in magnetic Janus NPs, the need for a comprehensive review on MJNPs with a concentration on magnetite NPs has been overlooked. Herein, we present recent advancements in the magnetite-based Janus nanoparticles in the flourishing field of biomedicine. First, the synthesis and fabrication methods of Janus nanoparticles are discussed. Then we will delve into their intriguing biomedical applications, with a separate section for magnetite Janus micro-/nanomotors in biomedicine. And finally, the challenges and future outlook are provided. This article is categorized under: Therapeutic Approaches and Drug Discovery > Emerging Technologies Nanotechnology Approaches to Biology > Nanoscale Systems in Biology Diagnostic Tools > Diagnostic Nanodevices Diagnostic Tools > In Vitro Nanoparticle-Based Sensing.

Abstract Image

基于磁铁矿的Janus纳米颗粒,它们的合成和生物医学应用。
Janus纳米粒子的出现是纳米材料新兴领域的一个重大突破。Janus纳米颗粒指的是一种单一结构,其两侧具有两种不同的化学功能。由于它们的不对称结构,它们可以在单态粒子不足的各种应用中使用。在过去的十年里,各种各样的材料被用来制造Janus纳米颗粒,由于磁铁矿(氧化铁)NPs的巨大优势,它们被认为是最好的候选者之一。由于具有磁性控制的主要优点,Janus纳米颗粒在生物医学领域(如生物成像、癌症治疗、治疗学和生物传感)具有很大的前景。磁性Janus纳米颗粒(MJNPs)的固有特性甚至在磁性Janus形式的微/纳米马达中具有很大的潜力。尽管人们对磁性Janus NPs有着极大的兴趣和潜力,但对以磁铁矿NPs为重点的MJNPs进行全面综述的必要性一直被忽视。在此,我们介绍了磁铁矿基Janus纳米颗粒在蓬勃发展的生物医学领域的最新进展。首先,讨论了Janus纳米粒子的合成和制备方法。然后,我们将深入研究其有趣的生物医学应用,与磁铁矿Janus微/纳米马达在生物医学中的单独部分。最后,提出了挑战和未来展望。本文分类如下:治疗方法和药物发现>新兴技术纳米技术生物学方法>生物学诊断工具中的纳米级系统>诊断纳米器件诊断工具>体外纳米颗粒传感。
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来源期刊
Wiley interdisciplinary reviews. Nanomedicine and nanobiotechnology
Wiley interdisciplinary reviews. Nanomedicine and nanobiotechnology NANOSCIENCE & NANOTECHNOLOGY-MEDICINE, RESEARCH & EXPERIMENTAL
CiteScore
16.60
自引率
2.30%
发文量
93
期刊介绍: Nanotechnology stands as one of the pivotal scientific domains of the twenty-first century, recognized universally for its transformative potential. Within the biomedical realm, nanotechnology finds crucial applications in nanobiotechnology and nanomedicine, highlighted as one of seven emerging research areas under the NIH Roadmap for Medical Research. The advancement of this field hinges upon collaborative efforts across diverse disciplines, including clinicians, biomedical engineers, materials scientists, applied physicists, and toxicologists. Recognizing the imperative for a high-caliber interdisciplinary review platform, WIREs Nanomedicine and Nanobiotechnology emerges to fulfill this critical need. Our topical coverage spans a wide spectrum, encompassing areas such as toxicology and regulatory issues, implantable materials and surgical technologies, diagnostic tools, nanotechnology approaches to biology, therapeutic approaches and drug discovery, and biology-inspired nanomaterials. Join us in exploring the frontiers of nanotechnology and its profound impact on biomedical research and healthcare.
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