School of Chemistry and Chemical Engineering , Harbin Institute of Technology , No. 92 West Dazhi Street , Nan Gang District, Harbin , Heilongjiang 150001 , P. R. China.
ACS Appl Mater Interfaces. 2020 Feb 12;12(6):6827-6839. doi: 10.1021/acsami.9b18443. Epub 2020 Jan 29.
The development and application of nano-drug carriers might provide an excellent opportunity for cancer therapy. However, it is still an important challenge to realize the regulation and control of drug loading by analyzing the assembly process of carrier-loaded drugs. Herein, we show a "self-contained bioactive nanocarrier" system, which is prepared from ursolic acid, one of the very promising biologically active natural products with self-assembly properties. The study decrypts the assembly process of drug-carrier interaction and achieves the regulation of drug loading by controlling the interaction force. This nanocarrier highlights the unique advantages of active natural products in therapeutic efficacy and health benefits. In antitumor experiments, the carrier and drug demonstrated synergistic therapeutic efficacy. Furthermore, the nanocarrier is biosafe and capable of reducing the risk of liver damage induced by chemotherapeutics through the upregulation of key antioxidant pathways. Taken together, this "self-contained bioactive nanocarrier" system makes up for the drawback that conventional nanocarriers have no therapeutic efficacy and health benefits and eliminates the trouble of the toxic side effects associated with chemotherapy agents and the additional toxicity caused by long-term use of nanocarriers.
纳米药物载体的发展和应用可能为癌症治疗提供极好的机会。然而,通过分析载药载体的组装过程来实现药物装载的调控仍然是一个重要的挑战。在此,我们展示了一种“自包含的生物活性纳米载体”系统,它是由熊果酸制备而成,熊果酸是具有自组装特性的极有前途的生物活性天然产物之一。该研究解密了药物-载体相互作用的组装过程,并通过控制相互作用力实现了药物装载的调控。这种纳米载体突出了活性天然产物在治疗效果和健康益处方面的独特优势。在抗肿瘤实验中,载体和药物表现出协同治疗效果。此外,该纳米载体生物安全性好,通过上调关键抗氧化途径,能够降低化疗药物引起的肝损伤风险。总之,这种“自包含的生物活性纳米载体”系统弥补了传统纳米载体没有治疗效果和健康益处的缺陷,消除了化疗药物相关的毒性副作用的麻烦以及长期使用纳米载体引起的额外毒性。