School of Nano Sciences, Central University of Gujarat, Gandhinagar 382030, India.
School of Life Sciences, Central University of Gujarat, Gandhinagar 382030, India.
J Agric Food Chem. 2023 Aug 16;71(32):12225-12236. doi: 10.1021/acs.jafc.3c03608. Epub 2023 Aug 1.
Cordycepin gets rapidly metabolized in the body into inactive form due to its structural similarity to adenosine, thus inhibiting its development as a medicinal agent. This study was aimed to improve the solubility and stability of cordycepin, a potential drug with known antiproliferative activity, by encapsulating it in bovine serum albumin: β-cyclodextrin nanoparticles. Cordycepin-loaded nanoparticles (CLNPs) were synthesized using the antisolvent method and characterized thoroughly using various techniques. Our dynamic light scattering measurement showed a particle size and zeta potential of 160 ± 2.75 nm and -20.21 ± 2.1 mV, respectively, for CLNPs. Transmission electron microscopy studies revealed that particles were spherical in morphology. These CLNPs showed sustained release of cordycepin with encapsulation and loading efficiency of 81.62 ± 1.5 and 27.02 ± 2.0%, respectively, based on high-performance liquid chromatography and UV-vis studies. Based on differential scanning calorimetry and zeta potential studies, CLNPs improve cordycepin stability and solubility. Our molecular simulations and binding energy calculation also showed favorable protein interaction between cordycepin, bovine serum albumin, and β-cyclodextrin, further supporting the notion of improved stability. In vitro cytotoxicity, apoptosis, and cellular uptake studies on breast cancer cells showed that the synthesized nanoparticles had greater cytotoxicity as compared to free cordycepin.
由于虫草素与腺苷结构相似,在体内会迅速代谢为无活性形式,从而抑制其作为药物的发展。本研究旨在通过将具有已知抗增殖活性的潜在药物虫草素包封在牛血清白蛋白:β-环糊精纳米粒中,来提高其溶解度和稳定性。虫草素载药纳米粒(CLNPs)采用抗溶剂法合成,并采用多种技术进行了全面表征。我们的动态光散射测量结果显示,CLNPs 的粒径和 zeta 电位分别为 160 ± 2.75nm 和 -20.21 ± 2.1mV。透射电子显微镜研究表明,这些粒子呈球形形态。这些 CLNPs 表现出虫草素的持续释放,基于高效液相色谱和紫外-可见研究,包封和载药效率分别为 81.62 ± 1.5%和 27.02 ± 2.0%。基于差示扫描量热法和 zeta 电位研究,CLNPs 提高了虫草素的稳定性和溶解度。我们的分子模拟和结合能计算也表明,虫草素、牛血清白蛋白和β-环糊精之间存在有利的蛋白相互作用,进一步支持了稳定性提高的观点。在乳腺癌细胞的体外细胞毒性、细胞凋亡和细胞摄取研究中,与游离虫草素相比,合成的纳米粒具有更强的细胞毒性。