Koohi Moftakhari Esfahani Maedeh, Alavi Seyed Ebrahim, Cabot Peter J, Islam Nazrul, Izake Emad L
School of Chemistry and Physics, Faculty of Science, Queensland University of Technology (QUT), 2 George Street, Brisbane, QLD 4000, Australia.
Centre for Materials Science, Queensland University of Technology (QUT), 2 George Street, Brisbane, QLD 4000, Australia.
Pharmaceutics. 2022 Jul 29;14(8):1579. doi: 10.3390/pharmaceutics14081579.
This review focuses on the biomedical application of mesoporous silica nanoparticles (MSNs), mainly focusing on the therapeutic application of MSNs for cancer treatment and specifically on overcoming the challenges of currently available anthelmintics (e.g., low water solubility) as repurposed drugs for cancer treatment. MSNs, due to their promising features, such as tunable pore size and volume, ability to control the drug release, and ability to convert the crystalline state of drugs to an amorphous state, are appropriate carriers for drug delivery with the improved solubility of hydrophobic drugs. The biomedical applications of MSNs can be further improved by the development of MSN-based multimodal anticancer therapeutics (e.g., photosensitizer-, photothermal-, and chemotherapeutics-modified MSNs) and chemical modifications, such as poly ethyleneglycol (PEG)ylation. In this review, various applications of MSNs (photodynamic and sonodynamic therapies, chemotherapy, radiation therapy, gene therapy, immunotherapy) and, in particular, as the carrier of anthelmintics for cancer therapy have been discussed. Additionally, the issues related to the safety of these nanoparticles have been deeply discussed. According to the findings of this literature review, the applications of MSN nanosystems for cancer therapy are a promising approach to improving the efficacy of the diagnostic and chemotherapeutic agents. Moreover, the MSN systems seem to be an efficient strategy to further help to decrease treatment costs by reducing the drug dose.
本综述聚焦于介孔二氧化硅纳米颗粒(MSNs)的生物医学应用,主要关注MSNs在癌症治疗中的治疗应用,特别是作为癌症治疗的重新利用药物,克服目前可用驱虫药(如低水溶性)的挑战。由于MSNs具有诸如可调孔径和体积、控制药物释放的能力以及将药物的结晶状态转变为无定形状态等有前景的特性,它们是用于药物递送的合适载体,可提高疏水性药物的溶解度。通过开发基于MSN的多模态抗癌疗法(如光敏剂、光热和化疗修饰的MSNs)以及化学修饰(如聚乙二醇(PEG)化),MSNs的生物医学应用可以得到进一步改善。在本综述中,讨论了MSNs的各种应用(光动力和超声动力疗法、化疗、放射疗法、基因疗法、免疫疗法),特别是作为癌症治疗中驱虫药的载体。此外,还深入讨论了与这些纳米颗粒安全性相关的问题。根据本文献综述的结果,MSN纳米系统在癌症治疗中的应用是提高诊断和化疗药物疗效的一种有前景的方法。此外,MSN系统似乎是一种有效的策略,通过减少药物剂量进一步帮助降低治疗成本。