Ghazi Rizwana, Ibrahim Talib K, Nasir Jamal Abdul, Gai Shili, Ali Ghafar, Boukhris Imed, Rehman Ziaur
Department of Chemistry, Quaid-i-Azam University Islamabad 45320 Pakistan
Department of Petroleum Engineering, College of Engineering, Knowledge University Erbil Iraq.
RSC Adv. 2025 Apr 14;15(15):11587-11616. doi: 10.1039/d5ra00728c. eCollection 2025 Apr 9.
Iron-oxide nanoparticles (IONPs) have garnered substantial attention in both research and technological domains due to their exceptional chemical and physical properties. These nanoparticles have mitigated the adverse effects of conventional treatment procedures by facilitating advanced theranostic approaches in integration with biomedicine. These IONPs have been extensively utilized in MRI (as contrast agents in diagnosis), drug delivery (as drug carriers), and hyperthermia (treatment), demonstrating promising results with potential for further enhancement. This study elucidates the operational principles of these NPs during diagnosis, drug delivery, and treatment, and emphasizes their precision and efficacy in transporting therapeutic agents to targeted sites without drug loss. It also analyses various challenges associated with the application of these IONPs in this field, such as biocompatibility, agglomeration, and toxicity. Furthermore, diverse strategies have been delineated to address these challenges. Overall, this review provides a comprehensive overview of the applications of IONPs in the field of biomedicine and treatment, along with the associated challenges. It offers significant assistance to researchers, professionals, and clinicians in the field of biomedicine.
氧化铁纳米颗粒(IONPs)因其卓越的化学和物理性质在研究和技术领域都备受关注。这些纳米颗粒通过促进与生物医学相结合的先进诊疗方法,减轻了传统治疗程序的不利影响。这些IONPs已广泛应用于磁共振成像(作为诊断中的造影剂)、药物递送(作为药物载体)和热疗(治疗),显示出有前景的结果且有进一步提升的潜力。本研究阐明了这些纳米颗粒在诊断、药物递送和治疗过程中的操作原理,并强调了它们在将治疗剂精准有效地输送到靶位点而无药物损失方面的能力。它还分析了与这些IONPs在该领域应用相关的各种挑战,如生物相容性、团聚和毒性。此外,还描述了应对这些挑战的不同策略。总体而言,本综述全面概述了IONPs在生物医学和治疗领域的应用以及相关挑战。它为生物医学领域的研究人员、专业人员和临床医生提供了重要帮助。