基于纳米的治疗癌症方法:综述。

Q2 Pharmacology, Toxicology and Pharmaceutics
Sonia Singh, Vandana Chauhan, Piyali Barik
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引用次数: 0

摘要

癌症是一种全球流行的、可能致命的疾病。异常细胞的增殖和不受控制的细胞生长是癌症的特征。癌症肿瘤表现出独特的微环境,其特点是淋巴引流系统不足和血液供应异常。目前有各种治疗癌症的药物和诊断系统,但它们都存在固有的局限性和不良后果。因此,实现有效的癌症检测和治疗仍然具有挑战性。Theranostics 纳米粒子在纳米给药系统中越来越受欢迎。这些纳米粒子可以诊断和治疗肿瘤,是该领域一种前景广阔的方法。它们的设计尺寸小,可以有效地将药物输送到目标区域。此外,这些纳米粒子还能从根本上改变对包括心血管疾病和传染病在内的多种疾病的识别和治疗。这种纳米粒子具有双重功能,既是治疗剂,又是诊断工具。它们可以运输药物、核酸或治疗蛋白质等药用物质,还包括造影剂或荧光染料等可用于成像的物质,从而实现无创诊断和监测治疗效果。这些技术可用于诊断目的,使用磁共振成像、计算机断层扫描、正电子发射断层扫描和荧光成像等成像模式来识别、定位和确定疾病的程度。在治疗过程中,这些纳米粒子可将治疗化合物准确地输送到特定位置。这将提高治疗效果,减少不良反应,改善患者预后。它们为疾病诊断和治疗提供了诊断和治疗功能,是一种潜在的纳米医学方法。Theranostics 纳米粒子具有独特的特性和适应性,可促进个性化和精确的医疗,从而改变医疗保健行业。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nano-Based Theranostics Approach in the Management of Cancer: Review.

Cancer is a prevalent and potentially fatal disease worldwide. The proliferation of abnormal cells and uncontrolled cellular growth characterizes cancer. Cancerous tumors exhibit distinct microenvironments characterized by a deficient lymphatic drainage system and aberrant blood supply. Various medications and diagnostic systems exist for cancer treatment, but they all have inherent limitations and undesirable consequences. Consequently, the achievement of effective cancer detection and treatment remains challenging. Theranostics nanoparticles are becoming increasingly popular in nano drug delivery systems. These nanoparticles can diagnose and treat tumors, making them a promising approach in the field. They are designed to be small in size, allowing them to be effective in delivering drugs to targeted areas. Furthermore, these nanoparticles can fundamentally transform the identification and management of several ailments, including cardiovascular disorders and infectious diseases. Such nanoparticles possess dual capabilities, functioning as therapeutic agents and diagnostic tools. They can transport medicinal substances, such as medications, nucleic acids, or therapeutic proteins, and include substances that can be used for imaging, such as contrast agents or fluorescent dyes, to enable non-invasive diagnostics and monitoring of the effectiveness of the treatment. These techniques can be employed for diagnostic purposes to identify, locate, and determine the extent of disorders using imaging modalities such as magnetic resonance imaging, computed tomography, positron emission tomography, and fluorescence imaging. These nanoparticles can deliver therapeutic compounds to specific locations accurately during therapy. This leads to improved effectiveness of the treatment, decreased adverse effects, and better patient outcomes. They offer a potential nanomedicine approach by providing diagnostic and therapeutic capabilities for disease diagnosis and treatment. Theranostics nanoparticles have distinct characteristics and adaptability, which can transform the healthcare sector by facilitating personalized and precise medical treatments.

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来源期刊
Pharmaceutical nanotechnology
Pharmaceutical nanotechnology Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
4.20
自引率
0.00%
发文量
46
期刊介绍: Pharmaceutical Nanotechnology publishes original manuscripts, full-length/mini reviews, thematic issues, rapid technical notes and commentaries that provide insights into the synthesis, characterisation and pharmaceutical (or diagnostic) application of materials at the nanoscale. The nanoscale is defined as a size range of below 1 µm. Scientific findings related to micro and macro systems with functionality residing within features defined at the nanoscale are also within the scope of the journal. Manuscripts detailing the synthesis, exhaustive characterisation, biological evaluation, clinical testing and/ or toxicological assessment of nanomaterials are of particular interest to the journal’s readership. Articles should be self contained, centred around a well founded hypothesis and should aim to showcase the pharmaceutical/ diagnostic implications of the nanotechnology approach. Manuscripts should aim, wherever possible, to demonstrate the in vivo impact of any nanotechnological intervention. As reducing a material to the nanoscale is capable of fundamentally altering the material’s properties, the journal’s readership is particularly interested in new characterisation techniques and the advanced properties that originate from this size reduction. Both bottom up and top down approaches to the realisation of nanomaterials lie within the scope of the journal.
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