Advances in Gold nanoparticles: Synthesis, Functionalization Strategies and Theranostic Applications in Cancer

IF 3 4区 医学 Q2 PHARMACOLOGY & PHARMACY
Mansi Damani, Mrunal Jadhav, Rashmi Joshi, Bheeshma Pratap Singh, Munira Momin, Raghumani S Ningthoujam, Tabassum Khan
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Abstract

Cancer is among the leading causes of mortality and morbidity in the world. Metallic nanoparticles, especially gold nanoparticles have emerged to be attractive systems to circumvent the associated adverse effects. By the virtue of their unique properties of tunable size, shape, composition, optical properties, biocompatibility, minimal toxicity, multivalency, fluorescence-luminescence property and surface plasmon resonance; gold nanoparticles have the potential to be used as drug delivery systems. It is vital to ensure that the drug reaches the target site of action for selective kill of cancer cells without harm to healthy cells. These nanoparticles can be easily functionalised with a wide array of ligands- peptides, oligonucleotides, polymers, carbohydrates for active targeting to ensure site specific delivery and reduced systemic effects. Gold nanoparticles have been investigated as carriers for gene delivery, drug delivery with or without photothermal therapy, in diagnosis based on radiation or spectroscopy. They have emerged as attractive theranostic approach in the overall management of cancer with superior benefit to risk features. In this review, we have discussed synthesis of different gold nanoparticles (nanorods, spherical nanoparticles, hollow gold nanoparticles), their functionalization strategies and their applications in biomedical domain. Various research studies and clinical trials on application of gold nanoparticles in diagnosis and therapeutics are highlighted.
金纳米粒子的研究进展:癌症中的合成、功能化策略和治疗应用
癌症是全球死亡和发病的主要原因之一。金属纳米粒子,尤其是金纳米粒子,已成为规避相关不良影响的极具吸引力的系统。金纳米粒子具有可调尺寸、形状、成分、光学特性、生物相容性、最小毒性、多价性、荧光-发光特性和表面等离子体共振等独特特性,因此有潜力用作药物输送系统。确保药物到达作用靶点,选择性地杀死癌细胞而不伤害健康细胞至关重要。这些纳米粒子可以很容易地与各种配体(肽、寡核苷酸、聚合物、碳水化合物)进行功能化,以实现主动靶向,确保特定部位给药,减少全身效应。金纳米粒子已被研究用作基因递送、药物递送(带或不带光热疗法)、基于辐射或光谱诊断的载体。在癌症的整体治疗中,金纳米粒子已成为一种极具吸引力的治疗方法,其收益优于风险特征。在这篇综述中,我们讨论了不同金纳米粒子(纳米棒、球形纳米粒子、空心金纳米粒子)的合成、功能化策略及其在生物医学领域的应用。重点介绍了有关金纳米粒子在诊断和治疗中应用的各种研究和临床试验。
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来源期刊
CiteScore
5.50
自引率
18.50%
发文量
27
审稿时长
>12 weeks
期刊介绍: Therapeutic uses of a variety of drug carrier systems have significant impact on the treatment and potential cure of many chronic diseases, including cancer, diabetes mellitus, psoriasis, parkinsons, Alzheimer, rheumatoid arthritis, HIV infection, infectious diseases, asthma, and drug addiction. Scientific efforts in these areas are multidisciplinary, involving the physical, biological, medical, pharmaceutical, biological materials, and engineering fields. Articles concerning this field appear in a wide variety of journals. With the vast increase in the number of articles and the tendency to fragment science, it becomes increasingly difficult to keep abreast of the literature and to sort out and evaluate the importance and reliability of the data, especially when proprietary considerations are involved. Abstracts and noncritical articles often do not provide a sufficiently reliable basis for proper assessment of a given field without the additional perusal of the original literature. This journal bridges this gap by publishing authoritative, objective, comprehensive multidisciplinary critical review papers with emphasis on formulation and delivery systems. Both invited and contributed articles are subject to peer review.
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