OBJECTIVE: This study aimed to identify key targets of Saikosaponin A (SSA) in treating osteosarcoma (OS) using network pharmacology and transcriptomics, and to develop a temperature-sensitive hydrogel nanocomplex delivering SSA in combination with the PD-1 inhibitor pembrolizumab to enhance anti-tumor effects. METHODS: Through network pharmacology and transcriptomic analysis, 23 co-regulated genes were identified, leading to the construction of a prognostic risk model containing four core genes. Molecular dynamics simulations were employed to explore the binding interaction between SSA and the key target FASN. The Gel@PLGA@SSA@FA was synthesized and characterized. Its cytotoxicity and therapeutic effects were evaluated in OS cell lines, both alone and in combination with pembrolizumab. RESULTS: FASN was validated as a poor prognostic marker in OS, and molecular simulations confirmed that SSA can effectively bind to FASN. Gel@PLGA@SSA@FA significantly downregulated FASN and CD279 mRNA expression, especially when combined with pembrolizumab. In vitro release studies demonstrated sustained drug release under tumor-mimicking conditions. Functional assays revealed that the combination treatment markedly suppressed OS cell proliferation and migration, induced apoptosis, and exhibited low toxicity toward normal cells. CONCLUSION: The combination of Gel@PLGA@SSA@FA with pembrolizumab shows strong synergistic anti-tumor effects, offering a promising and biocompatible strategy for enhanced OS therapy.
Thermo-responsive nano-hydrogel-based delivery of Saikosaponin a to enhance anti-PD-1 therapy in osteosarcoma.
利用热响应纳米水凝胶递送柴胡皂苷A增强抗PD-1疗法在骨肉瘤中的疗效
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作者:Chen Yan-Qiang, Yang Dan, Li Kang, Liu Jing-Sheng, Feng Hai-Jun, Zhou Jian-Wei
| 期刊: | Nanomedicine | 影响因子: | 3.900 |
| 时间: | 2025 | 起止号: | 2025 Jul;20(14):1677-1691 |
| doi: | 10.1080/17435889.2025.2526322 | 研究方向: | 肿瘤 |
| 疾病类型: | 骨肉瘤 | ||
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