基于 MOF 的肺癌治疗平台的前景、进展和生物应用。

IF 5.7 3区 医学 Q1 MATERIALS SCIENCE, BIOMATERIALS
Yijun Deng, Manli Guo, Luyi Zhou, Yong Huang, Shreya Srivastava, Abhinav Kumar and Jian-Qiang Liu
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引用次数: 0

摘要

当今社会,肺癌的死亡率很高,对人类健康构成威胁。传统的肺癌诊断技术往往需要使用大量仪器,容易出现假阳性,不适合用于广泛的早期筛查。治疗肺癌的传统方法主要包括手术、化疗和放疗。然而,这些广谱治疗方法存在靶向不精确、副作用大等缺点,限制了其广泛应用。金属有机框架(MOFs)因其可调的电子特性和结构以及潜在的应用,在肺癌的诊断和治疗中备受关注。这些多孔纳米材料是通过金属中心和有机配体的复杂组装形成的,从而形成了用途广泛的框架。与传统的诊断和治疗方法相比,MOFs 可以提高肺癌诊断中肺癌生物标志物检测的灵敏度。在治疗方面,它们可以大大减少副作用,提高疗效。因此,本视角概述了作为肺癌生物标志物的强效生物传感器的 MOFs 领域所取得的进展。它还深入探讨了将 MOFs 用作药物递送载体的最新研究。此外,它还探讨了 MOFs 在各种治疗方法中的应用,包括化学动力疗法、光动力疗法、光热疗法和免疫疗法。此外,本综述还全面分析了 MOFs 作为生物传感器在肺癌诊断领域的潜在应用,并将不同的治疗方法结合起来,以提高治疗效果。它还简要概述了现有的障碍,旨在为未来肺癌诊断和治疗的进步铺平道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Prospects, advances and biological applications of MOF-based platform for the treatment of lung cancer

Prospects, advances and biological applications of MOF-based platform for the treatment of lung cancer

Prospects, advances and biological applications of MOF-based platform for the treatment of lung cancer

Nowadays in our society, lung cancer is exhibiting a high mortality rate and threat to human health. Conventional diagnostic techniques used in the field of lung cancer often necessitate the use of extensive instrumentation, exhibit a tendency for false positives, and are not suitable for widespread early screening purposes. Conventional approaches to treat lung cancer primarily involve surgery, chemotherapy, and radiotherapy. However, these broad-spectrum treatments suffer from drawbacks such as imprecise targeting and significant side effects, which restrict their widespread use. Metal–organic frameworks (MOFs) have attracted significant attention in the diagnosis and treatment of lung cancer owing to their tunable electronic properties and structures and potential applications. These porous nanomaterials are formed through the intricate assembly of metal centers and organic ligands, resulting in highly versatile frameworks. Compared to traditional diagnostic and therapeutic modalities, MOFs can improve the sensitivity of lung cancer biomarker detection in the diagnosis of lung cancer. In terms of treatment, they can significantly reduce side effects and improve therapeutic efficacy. Hence, this perspective provides an overview concerning the advancements made in the field of MOFs as potent biosensors for lung cancer biomarkers. It also delves into the latest research dealing with the use of MOFs as carriers for drug delivery. Additionally, it explores the applications of MOFs in various therapeutic approaches, including chemodynamic therapy, photodynamic therapy, photothermal therapy, and immunotherapy. Furthermore, this review comprehensively analyses potential applications of MOFs as biosensors in the field of lung cancer diagnosis and combines different therapeutic approaches aiming for enhanced therapeutic efficacy. It also presents a concise overview of the existing obstacles, aiming to pave the way for future advancements in lung cancer diagnosis and treatment.

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来源期刊
Biomaterials Science
Biomaterials Science MATERIALS SCIENCE, BIOMATERIALS-
CiteScore
11.50
自引率
4.50%
发文量
556
期刊介绍: Biomaterials Science is an international high impact journal exploring the science of biomaterials and their translation towards clinical use. Its scope encompasses new concepts in biomaterials design, studies into the interaction of biomaterials with the body, and the use of materials to answer fundamental biological questions.
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