Pharmacological and Diagnostic Research Centre, Faculty of Pharmacy, Al-Ahliyya Amman University, Amman, Jordan.
Department of Cosmetic Science, Pharmacological and Diagnostic Research Centre, Faculty of Allied Medical Sciences, Al-Ahliyya Amman University, Amman, Jordan.
Sci Prog. 2024 Oct-Dec;107(4):368504241274967. doi: 10.1177/00368504241274967.
The incidence of cancer is increasing and evolving as a major source of mortality. Nanotechnology has garnered considerable scientific interest in recent decades and can offer a promising solution to the challenges encountered with traditional chemotherapy. Nanoparticle utilization holds promise in combating cancer and other diseases, offering exciting prospects for drug delivery systems and medicinal applications. Metallic nanoparticles exhibit remarkable physical and chemical properties, such as their minute size, chemical composition, structure, and extensive surface area, rendering them versatile and cost-effective. Research has demonstrated their significant and beneficial impact on cancer treatment, characterized by enhanced targeting abilities, gene activity suppression, and improved drug delivery efficiency. By incorporating targeting ligands, functionalized metal nanoparticles ensure precise energy deposition within tumors, thereby augmenting treatment accuracy. Moreover, beyond their therapeutic efficacy, metal nanoparticles serve as valuable tools for cancer cell visualization, contributing to diagnostic techniques. Utilizing metal nanoparticles in therapeutic systems allows for simultaneous cancer diagnosis and treatment, while also facilitating controlled drug release, thus revolutionizing cancer care. This narrative review investigates the advancements of metal nanoparticles in cancer treatment, types and mechanisms in targeting cancer cells, application in clinical scenarios, and potential toxicity in medicine.
癌症的发病率不断上升,已成为主要的死亡原因。纳米技术在近几十年引起了相当多的科学关注,为传统化疗所遇到的挑战提供了一个有前途的解决方案。纳米颗粒的利用有望对抗癌症和其他疾病,为药物输送系统和药物应用提供了令人兴奋的前景。金属纳米颗粒具有显著的物理和化学性质,如微小的尺寸、化学成分、结构和广泛的表面积,使其具有多功能性和成本效益。研究表明,它们对癌症治疗有显著而有益的影响,表现为增强的靶向能力、基因活性抑制和提高的药物输送效率。通过结合靶向配体,功能化的金属纳米颗粒可确保在肿瘤内精确地能量沉积,从而提高治疗的准确性。此外,除了治疗效果外,金属纳米颗粒还可用作癌症细胞可视化的有价值工具,有助于诊断技术。在治疗系统中使用金属纳米颗粒可实现癌症的同时诊断和治疗,同时还促进了药物的控制释放,从而彻底改变了癌症治疗。本综述探讨了金属纳米颗粒在癌症治疗中的进展、靶向癌细胞的类型和机制、在临床中的应用以及在医学中的潜在毒性。