Department of Pharmaceutical Sciences, GNanoBio, School of Pharmaceutical Science of Ribeirao Preto, University of Sao Paulo, Ribeirao Preto, Sao Paulo, Brazil.
Living Out in vitro testing, Supera Innovation and Technology Park, Ribeirao Preto, Sao Paulo, Brazil.
J Pharm Pharmacol. 2023 Jun 5;75(6):806-818. doi: 10.1093/jpp/rgad030.
Cancer incidence worldwide is alarming and among the cancers that affect women ovarian cancer is the most fatal. Many side effects are associated with conventional therapies and none of them are completely effective, so the development of new treatments is necessary. Brazilian red propolis extract is a natural product with complex composition and great potential for cancer treatment. However, its clinical application is harmed due to unfavourable physicochemical characteristics. To enable its application encapsulation in nanoparticles can be used.
The aims of this work were to develop polymeric nanoparticles with Brazilian red propolis extract and compare their action with the free extract against ovarian cancer cells.
Box Behnken design was used and nanoparticles were characterised using the techniques dynamic light scattering, nanoparticle tracking analysis, transmission electron microscopy, differential scanning calorimetry and encapsulation efficiency. Activity against OVCAR-3 was also tested on 2D and 3D models.
Nanoparticles' sizes were ~200 nm with monomodal size distribution, negative zeta potential, spherical shape and with extract molecularly dispersed. Encapsulation efficiency was above 97% for the biomarkers chosen. Nanoparticles had greater efficacy in comparison with free propolis in OVCAR-3.
So far, the nanoparticles here described have the potential to be a chemotherapy treatment in the future.
全球癌症发病率令人震惊,在影响女性的癌症中,卵巢癌的死亡率最高。常规疗法会伴随许多副作用,而且没有一种方法是完全有效的,因此有必要开发新的治疗方法。巴西红蜂胶提取物是一种具有复杂成分且具有很大癌症治疗潜力的天然产物。然而,由于其不理想的理化特性,其临床应用受到了阻碍。为了实现其应用,可以使用纳米胶囊技术将其封装。
本研究旨在开发具有巴西红蜂胶提取物的聚合物纳米粒子,并将其与游离提取物对卵巢癌细胞的作用进行比较。
采用 Box Behnken 设计,并使用动态光散射、纳米粒子跟踪分析、透射电子显微镜、差示扫描量热法和包封效率等技术对纳米粒子进行了表征。还在 2D 和 3D 模型上测试了对 OVCAR-3 的活性。
纳米粒子的粒径约为 200nm,具有单模态粒径分布、负 zeta 电位、球形形状且提取物分子均匀分散。所选生物标志物的包封效率均高于 97%。与游离蜂胶相比,纳米粒子对 OVCAR-3 的疗效更大。
到目前为止,本文所描述的纳米粒子具有成为未来化疗治疗方法的潜力。