Dual drug-loaded cubosome nanoparticles for hepatocellular carcinoma: a design of experiment approach for optimization and in vitro evaluation

IF 3.4 Q2 PHARMACOLOGY & PHARMACY Future Journal of Pharmaceutical Sciences Pub Date : 2024-03-11 DOI:10.1186/s43094-024-00607-3
Poorvika Badiger, V. S. Mannur, Rahul Koli
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Abstract

Background

Liver cancer, a formidable and complex disease, poses a significant global health threat, stemming from various causes, including chronic infections like hepatitis B and C, cirrhosis, and lifestyle factors. In liver cancer treatment, targeted delivery revolutionizes precision therapy, minimizing side effects by directing drugs specifically to cancer cells. This study aims to develop and statistically optimize cubosomal formulations containing piperine and quercetin with the goal of augmenting their activity against hepatocellular carcinoma.

Results

Employing a central-composite design, we utilized Design-Expert® software to guide the experiment. The key formulation variables were the concentration of glyceryl monooleate (GMO) and Poloxamer-407, while the dependent responses were particle size (PS) and entrapment efficiency (EE%). The optimized cubosomal formulation was validated through the utilization of high-resolution transmission electron microscopy (HR-TEM), in vitro release studies, and an in vitro cell proliferation assay conducted on the HepG2 cell line. High-performance liquid chromatography was employed for the determination of piperine and quercetin in the optimized cubosomal nanoparticle. The optimized formulation had a composition of 2.5 (w/w%) GMO and 0.5 (w/w%) Poloxamer 407. The predicted values for PS and EE% were 102.34 and 75.11%, respectively. The cytotoxicity of the optimized cubosomal formulation exhibited enhanced efficacy on the HepG2 cancer cell line, even at lower concentrations, when compared to the standard. Notably, it demonstrated a superior cytotoxic effect on the liver cancer cell line.

Conclusion

The findings of the study indicated that cubosomes exhibit promise as an effective carrier for delivering piperine and quercetin, addressing hepatocellular carcinoma effectively.

Graphical abstract

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治疗肝细胞癌的双重药物负载立方体纳米颗粒:优化和体外评估的实验设计方法
肝癌是一种可怕而复杂的疾病,对全球健康构成重大威胁,其病因多种多样,包括乙型和丙型肝炎等慢性感染、肝硬化以及生活方式因素。在肝癌治疗中,靶向给药彻底改变了精准治疗,通过将药物特异性地导向癌细胞,将副作用降至最低。本研究旨在开发并从统计学角度优化含有胡椒碱和槲皮素的立方体制剂,目的是增强它们对肝细胞癌的活性。我们采用中心复合设计,利用 Design-Expert® 软件指导实验。关键的配方变量是单油酸甘油酯(GMO)和 Poloxamer-407 的浓度,而因变量则是粒度(PS)和包被效率(EE%)。通过利用高分辨率透射电子显微镜(HR-TEM)、体外释放研究和在 HepG2 细胞系上进行的体外细胞增殖试验,对优化的立方体配方进行了验证。采用高效液相色谱法测定了优化后的立方体纳米颗粒中胡椒碱和槲皮素的含量。优化配方的成分为 2.5 (w/w%) GMO 和 0.5 (w/w%) Poloxamer 407。PS 和 EE% 的预测值分别为 102.34% 和 75.11%。与标准制剂相比,优化的立方体制剂对 HepG2 癌细胞系的细胞毒性更强,即使浓度较低。值得注意的是,它对肝癌细胞株的细胞毒性效果更佳。研究结果表明,立方体有望成为输送胡椒碱和槲皮素的有效载体,从而有效治疗肝癌。
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来源期刊
自引率
0.00%
发文量
44
审稿时长
23 weeks
期刊介绍: Future Journal of Pharmaceutical Sciences (FJPS) is the official journal of the Future University in Egypt. It is a peer-reviewed, open access journal which publishes original research articles, review articles and case studies on all aspects of pharmaceutical sciences and technologies, pharmacy practice and related clinical aspects, and pharmacy education. The journal publishes articles covering developments in drug absorption and metabolism, pharmacokinetics and dynamics, drug delivery systems, drug targeting and nano-technology. It also covers development of new systems, methods and techniques in pharmacy education and practice. The scope of the journal also extends to cover advancements in toxicology, cell and molecular biology, biomedical research, clinical and pharmaceutical microbiology, pharmaceutical biotechnology, medicinal chemistry, phytochemistry and nutraceuticals.
期刊最新文献
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