Nanotechnology Advances in the Detection and Treatment of Cancer: An Overview.

Q1 Pharmacology, Toxicology and Pharmaceutics
Sareh Mosleh-Shirazi, Milad Abbasi, Mohammad Reza Moaddeli, Ahmad Vaez, Mostafa Shafiee, Seyed Reza Kasaee, Ali Mohammad Amani, Saeid Hatam
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引用次数: 23

Abstract

Over the last few years, progress has been made across the nanomedicine landscape, in particular, the invention of contemporary nanostructures for cancer diagnosis and overcoming complexities in the clinical treatment of cancerous tissues. Thanks to their small diameter and large surface-to-volume proportions, nanomaterials have special physicochemical properties that empower them to bind, absorb and transport high-efficiency substances, such as small molecular drugs, DNA, proteins, RNAs, and probes. They also have excellent durability, high carrier potential, the ability to integrate both hydrophobic and hydrophilic compounds, and compatibility with various transport routes, making them especially appealing over a wide range of oncology fields. This is also due to their configurable scale, structure, and surface properties. This review paper discusses how nanostructures can function as therapeutic vectors to enhance the therapeutic value of molecules; how nanomaterials can be used as medicinal products in gene therapy, photodynamics, and thermal treatment; and finally, the application of nanomaterials in the form of molecular imaging agents to diagnose and map tumor growth.

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纳米技术在癌症检测和治疗中的进展:综述。
在过去的几年中,纳米医学领域取得了进展,特别是用于癌症诊断的当代纳米结构的发明和克服癌组织临床治疗中的复杂性。由于纳米材料的直径小,表面体积比大,它们具有特殊的物理化学性质,使它们能够结合、吸收和运输高效物质,如小分子药物、DNA、蛋白质、rna和探针。它们还具有优异的耐久性,高载体潜力,整合疏水和亲水化合物的能力,以及与各种运输途径的兼容性,使它们在广泛的肿瘤领域特别具有吸引力。这也是由于它们的可配置规模、结构和表面特性。本文综述了纳米结构如何作为治疗载体来提高分子的治疗价值;纳米材料如何在基因治疗、光动力学和热治疗中用作医药产品;最后,纳米材料以分子显像剂的形式在肿瘤生长诊断和制图中的应用。
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
Nanotheranostics
Nanotheranostics Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (miscellaneous)
CiteScore
10.40
自引率
0.00%
发文量
37
审稿时长
12 weeks
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