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提升纳米颗粒在癌症检测和精准治疗方面的潜力。

Advancing the potential of nanoparticles for cancer detection and precision therapeutics.

作者信息

Kiani Muhammad Naeem, Khaliq Hamza, Abubakar Muhammad, Rafique Merium, Jalilov Fazliddin, Ashraf Ghulam Abbas, Ayari-Akkari Amel, Akremi Ali

机构信息

Guangdong Key Laboratory of Biomedical Measurements and Ultrasound Imaging, School of Biomedical Engineering, Medical School, Shenzhen University, Shenzhen, China.

College of Environment, Hohai University, Nanjing, 210098, China.

出版信息

Med Oncol. 2025 Jun 4;42(7):239. doi: 10.1007/s12032-025-02782-6.

Abstract

Cancer poses a significant challenge with high death rate marked by heterogeneity, complexity, and resistance to available treatments, hence requiring creative approaches to improve early detection and precision medicines. Nanoparticles (NPs) exhibit distinctive physicochemical characteristics, including a high surface area-to-volume ratio, adjustable size and shape, and multifunctionality. This review paper critically explored the recent advancements in various NPs, such as graphene-based materials (to overcome cancer resistance and for diagnostic and therapeutics applications), metal organic frameworks (precised and targeted release of drug, e.g., glutathione-sensitive disulfide bonds for intracellular delivery), carbon dots, rhodamine 6G, polymer-based nanoformulation (CAP/ZnO NPs for lung cancer therapy), gold NPs (as radiosensitizing action), nanocarrier systems (including epigenetic control systems), aptamers, mesoporous polydopamine-based nanodrug, polymeric NPs, pH-responsive polymeric nanostructures (particularly in acidic tumor environment), multifunctional NPs, and carbon coated ferrite nanodots for targeted delivery to cancer cells. We, particularly, investigated their dual abilities in precise drug delivery of several payloads, like small molecules, proteins, and nucleic acids, in addition to their capabilities for real-time monitoring of therapeutic response in malignant cells. Moreover, this review underscores how the integration of Artificial Intelligence and machine learning algorithms with such NPs-based architectures is improving diagnostic precision and facilitating personalized cancer therapy approaches, navigating obstacles, including bioavailability and multidrug resistance. By evaluating critical recent breakthroughs about the role of nanotechnology in precision cancer therapy, this review paper highlights the pioneering capabilities of such intelligent nanomedicines in impacting cancer development, consequently advancing patient outcomes.

摘要

癌症是一项重大挑战,其死亡率高,具有异质性、复杂性且对现有治疗方法存在耐药性,因此需要创新方法来改善早期检测和精准医疗。纳米颗粒(NPs)具有独特的物理化学特性,包括高的表面积与体积比、可调节的尺寸和形状以及多功能性。本文综述批判性地探讨了各种纳米颗粒的最新进展,例如基于石墨烯的材料(用于克服癌症耐药性以及诊断和治疗应用)、金属有机框架(药物的精确和靶向释放,例如用于细胞内递送的谷胱甘肽敏感二硫键)、碳点、罗丹明6G、基于聚合物的纳米制剂(用于肺癌治疗的CAP/ZnO NPs)、金纳米颗粒(作为放射增敏作用)、纳米载体系统(包括表观遗传控制系统)、适体、介孔聚多巴胺基纳米药物、聚合物纳米颗粒、pH响应性聚合物纳米结构(特别是在酸性肿瘤环境中)、多功能纳米颗粒以及用于靶向递送至癌细胞的碳包覆铁氧体纳米点。我们特别研究了它们在精确递送多种负载(如小分子、蛋白质和核酸)方面的双重能力,以及它们对恶性细胞治疗反应进行实时监测的能力。此外,本综述强调了人工智能和机器学习算法与这种基于纳米颗粒的架构的整合如何提高诊断精度并促进个性化癌症治疗方法,克服包括生物利用度和多药耐药性在内的障碍。通过评估纳米技术在精准癌症治疗中作用的近期关键突破,本文综述突出了此类智能纳米药物在影响癌症发展方面的开创性能力,从而改善患者预后。

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