Viegas Cláudia, Patrício Ana B, Prata João, Fonseca Leonor, Macedo Ana S, Duarte Sofia O D, Fonte Pedro
Faculty of Medicine and Biomedical Sciences (FMCB), University of Algarve, Gambelas Campus, 8005-139 Faro, Portugal.
Center for Marine Sciences (CCMar), University of Algarve, Gambelas Campus, 8005-139 Faro, Portugal.
Pharmaceutics. 2023 Sep 21;15(9):2363. doi: 10.3390/pharmaceutics15092363.
Pancreatic cancer represents one of the most lethal cancer types worldwide, with a 5-year survival rate of less than 5%. Due to the inability to diagnose it promptly and the lack of efficacy of existing treatments, research and development of innovative therapies and new diagnostics are crucial to increase the survival rate and decrease mortality. Nanomedicine has been gaining importance as an innovative approach for drug delivery and diagnosis, opening new horizons through the implementation of smart nanocarrier systems, which can deliver drugs to the specific tissue or organ at an optimal concentration, enhancing treatment efficacy and reducing systemic toxicity. Varied materials such as lipids, polymers, and inorganic materials have been used to obtain nanoparticles and develop innovative drug delivery systems for pancreatic cancer treatment. In this review, it is discussed the main scientific advances in pancreatic cancer treatment by nano-based drug delivery systems. The advantages and disadvantages of such delivery systems in pancreatic cancer treatment are also addressed. More importantly, the different types of nanocarriers and therapeutic strategies developed so far are scrutinized.
胰腺癌是全球最致命的癌症类型之一,5年生存率低于5%。由于无法及时诊断且现有治疗方法疗效不佳,研发创新疗法和新的诊断方法对于提高生存率和降低死亡率至关重要。纳米医学作为一种创新的药物递送和诊断方法正变得越来越重要,通过实施智能纳米载体系统开辟了新的前景,该系统可以将药物以最佳浓度递送至特定组织或器官,提高治疗效果并降低全身毒性。脂质、聚合物和无机材料等多种材料已被用于制备纳米颗粒并开发用于胰腺癌治疗的创新药物递送系统。在这篇综述中,讨论了基于纳米的药物递送系统在胰腺癌治疗方面的主要科学进展。还阐述了此类递送系统在胰腺癌治疗中的优缺点。更重要的是,对迄今为止开发的不同类型的纳米载体和治疗策略进行了审查。