Nanodiamonds: A Cutting-Edge Approach to Enhancing Biomedical Therapies and Diagnostics in Biosensing

IF 7 2区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Chemical record Pub Date : 2024-03-26 DOI:10.1002/tcr.202400006
Ali Hyder, Akbar Ali, Jamil A. Buledi, Ayaz Ali Memon, Muzaffar Iqbal, Talib Hussain Bangalni, Amber R. Solangi, Khalid Hussain Thebo, Javeed Akhtar
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Abstract

Nanodiamonds (NDs) have garnered attention in the field of nanomedicine due to their unique properties. This review offers a comprehensive overview of NDs synthesis methods, properties, and their uses in biomedical applications. Various synthesis techniques, such as detonation, high-pressure, high-temperature, and chemical vapor deposition, offer distinct advantages in tailoring NDs′ size, shape, and surface properties. Surface modification methods further enhance NDs′ biocompatibility and enable the attachment of bioactive molecules, expanding their applicability in biological systems. NDs serve as promising nanocarriers for drug delivery, showcasing biocompatibility and the ability to encapsulate therapeutic agents for targeted delivery. Additionally, NDs demonstrate potential in cancer treatment through hyperthermic therapy and vaccine enhancement for improved immune responses. Functionalization of NDs facilitates their utilization in biosensors for sensitive biomolecule detection, aiding in precise diagnostics and rapid detection of infectious diseases. This review underscores the multifaceted role of NDs in advancing biomedical applications. By synthesizing NDs through various methods and modifying their surfaces, researchers can tailor their properties for specific biomedical needs. The ability of NDs to serve as efficient drug delivery vehicles holds promise for targeted therapy, while their applications in hyperthermic therapy and vaccine enhancement offer innovative approaches to cancer treatment and immunization. Furthermore, the integration of NDs into biosensors enhances diagnostic capabilities, enabling rapid and sensitive detection of biomolecules and infectious diseases. Overall, the diverse functionalities of NDs underscore their potential as valuable tools in nanomedicine, paving the way for advancements in healthcare and biotechnology.

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纳米金刚石:生物传感中增强生物医学治疗和诊断的前沿方法。
纳米金刚石(NDs)因其独特的性质在纳米医学领域备受关注。本综述全面概述了 NDs 的合成方法、特性及其在生物医学中的应用。引爆、高压、高温和化学气相沉积等各种合成技术在定制 NDs 的尺寸、形状和表面特性方面具有明显的优势。表面改性方法进一步增强了 NDs 的生物相容性,并使生物活性分子得以附着,从而扩大了其在生物系统中的应用范围。NDs 具有良好的生物相容性和封装治疗药物的能力,可作为药物输送的纳米载体,实现定向输送。此外,NDs 还具有通过热疗治疗癌症和增强疫苗以改善免疫反应的潜力。NDs 的功能化有助于将其用于生物传感器,进行灵敏的生物分子检测,帮助精确诊断和快速检测传染病。本综述强调了 NDs 在推动生物医学应用方面的多方面作用。通过各种方法合成 NDs 并对其表面进行改性,研究人员可以根据特定的生物医学需求定制 NDs 的特性。NDs 可作为高效的药物输送载体,为靶向治疗带来了希望,而其在热疗和疫苗强化方面的应用则为癌症治疗和免疫提供了创新方法。此外,将 NDs 集成到生物传感器中可增强诊断能力,实现对生物分子和传染病的快速、灵敏检测。总之,NDs 的多种功能凸显了其作为纳米医学宝贵工具的潜力,为医疗保健和生物技术的进步铺平了道路。
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来源期刊
Chemical record
Chemical record 化学-化学综合
CiteScore
11.00
自引率
3.00%
发文量
188
审稿时长
>12 weeks
期刊介绍: The Chemical Record (TCR) is a "highlights" journal publishing timely and critical overviews of new developments at the cutting edge of chemistry of interest to a wide audience of chemists (2013 journal impact factor: 5.577). The scope of published reviews includes all areas related to physical chemistry, analytical chemistry, inorganic chemistry, organic chemistry, polymer chemistry, materials chemistry, bioorganic chemistry, biochemistry, biotechnology and medicinal chemistry as well as interdisciplinary fields. TCR provides carefully selected highlight papers by leading researchers that introduce the author''s own experimental and theoretical results in a framework designed to establish perspectives with earlier and contemporary work and provide a critical review of the present state of the subject. The articles are intended to present concise evaluations of current trends in chemistry research to help chemists gain useful insights into fields outside their specialization and provide experts with summaries of recent key developments.
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