a Department of Pharmaceutics, Faculty of Pharmacy , Universiti Teknologi MARA (UiTM) , Selangor , Malaysia.
b University College of Medicine and Dentistry (UCMD), The University of Lahore , Lahore , Pakistan.
Artif Cells Nanomed Biotechnol. 2018;46(sup2):1015-1024. doi: 10.1080/21691401.2018.1478420. Epub 2018 Jun 6.
Development and formulation of an efficient and safe therapeutic regimen for cancer theranostics are dynamically challenging. The use of mono-therapeutic cancer regimen is generally restricted to optimal clinical applications, on account of drug resistance and cancer heterogeneity. Combinatorial treatments can employ multi-therapeutics for synergistic anticancer efficacy whilst reducing the potency of individual moieties and diminishing the incidence of associated adverse effects. The combo-delivery of nanotherapeutics can optimize anti-tumor efficacy while reversing the incidence of drug resistance, aiming to homogenize pharmacological profile of drugs, enhance circulatory time, permit targeted drug accumulation, achieve multi-target dynamic approach, optimize target-specific drug binding and ensure sustained drug release at the target site. Numerous nanomedicines/nanotherapeutics have been developed by having dynamic physicochemical, pharmaceutical and pharmacological implications. These innovative delivery approaches have displayed specialized treatment effects, alone or in combination with conventional anticancer approaches (photodynamic therapy, radiotherapy and gene therapy), while reversing drug resistance and potential off-target effects. The current review presents a comprehensive overview of nanocarrier aided multi-drug therapies alongside recent advancements, future prospects, and the pivotal requirements for interdisciplinary research.
开发和制定高效和安全的癌症治疗方案是极具挑战性的。由于药物耐药性和癌症异质性,单一疗法通常仅限于最佳临床应用。联合治疗可以使用多种疗法来协同抗癌,同时降低单个药物的效力,并减少相关不良反应的发生率。纳米治疗药物的联合递送可以优化抗肿瘤疗效,同时逆转耐药性的发生,旨在使药物的药代动力学特征均匀化,增强循环时间,允许靶向药物积累,实现多靶点动态方法,优化靶向药物结合,并确保在靶部位持续释放药物。许多纳米药物/纳米治疗药物已经通过具有动态物理化学、药物和药理学意义的方法得到了开发。这些创新的递药方法已经显示出了特殊的治疗效果,单独或与传统抗癌方法(光动力疗法、放射疗法和基因疗法)联合使用,同时逆转了耐药性和潜在的脱靶效应。本综述全面介绍了纳米载体辅助多药物治疗的最新进展、未来展望,以及跨学科研究的关键要求。