Department of Biotechnology, Noida Institute of Engineering and Technology, Greater Noida, UP, India.
Department of Biotechnology, Parul Institute of Applied Sciences and Centre of Research for Development, Parul University, Vadodara, 391760, India.
Endocr Metab Immune Disord Drug Targets. 2023;23(10):1291-1302. doi: 10.2174/1871530323666230315145332.
Breast cancer is avertible yet one of the most widespread carcinomas globally. Though periodic screening and monitoring have resulted in reduced incidences, the malignancy claims increased death rates across the globe. Due to the non-specific and aggressive nature of available conventional cancer therapeutics, there is a crucial need for better treatment paradigms. Recent advancements in nanotechnology have aided in this by utilizing nanocarriers in targeted drug delivery approaches. Optimized nanoparticles have been used to enhance the circulation time and target the efficacy of conventional therapeutic drugs. Passive targeting comprises surface modulation to avoid drug elimination via a standard body defense system. Active targeting includes chemical interaction with various genes, receptors, and antigens overexpressed during cancer progression. Therefore, the present review recapitulates drug delivery approaches and nanoparticle-based targeting that can potentially overcome the limitations of conventional drug therapies.
乳腺癌是可以预防的,但也是全球最普遍的癌症之一。尽管定期筛查和监测已经降低了发病率,但这种恶性肿瘤在全球范围内导致的死亡率却有所上升。由于现有的常规癌症疗法具有非特异性和侵袭性,因此迫切需要更好的治疗模式。最近纳米技术的进展通过在靶向药物递送方法中利用纳米载体来辅助实现这一目标。优化后的纳米颗粒已被用于提高常规治疗药物的循环时间和靶向效果。被动靶向包括表面修饰,以避免药物通过标准的身体防御系统被清除。主动靶向包括与癌症进展过程中过度表达的各种基因、受体和抗原进行化学相互作用。因此,本综述总结了药物递送方法和基于纳米颗粒的靶向方法,这些方法有可能克服传统药物治疗的局限性。