Background/Objectives: Curcumin is a promising therapy for glioblastoma but is limited by poor water solubility, rapid metabolism, and low blood-brain barrier penetration. This study aimed to evaluate curcumin and six curcumin derivatives with improved activity against a glioblastoma cell line and favorable absorption, distribution, metabolism, excretion, and toxicity (ADMET) properties. Methods: Twenty-one curcumin derivatives were assessed and subjected to in vitro MTT cytotoxicity assays in SF268 glioblastoma and Vero cells. On the basis of the cytotoxicity results, six derivatives with the most favorable characteristics were selected for additional mechanistic studies, which included microtubule depolymerization, mitochondrial membrane potential (ÎΨm), and BAX activation assays. ADMET properties were determined in silico. Results: Compounds 2-4, 6, and 11 demonstrated better activity (IC(50): 0.59-3.97 µg/mL and SI: 3-20) than curcumin (IC(50): 6.3 µg/mL; SI: 2.5). Lead derivatives destabilized microtubules, induced ÎΨm collapse, and activated BAX. In silico ADMET prediction analysis revealed that compounds 4 and 6 were the most promising for oral administration from a biopharmaceutical and pharmacokinetic point of view. Conclusions: Strategic modifications were made to one or both hydroxyl groups of the aromatic rings of curcumin to increase its physicochemical stability and activity against glioblastoma cell line SF268. Compound 4, bearing fully protected aromatic domains, was identified as a prime candidate for in vivo validation and formulation development.
Insights into the Structural Patterns in Human Glioblastoma Cell Line SF268 Activity and ADMET Prediction of Curcumin Derivatives.
对人类胶质母细胞瘤细胞系SF268的结构模式的深入了解、姜黄素衍生物的活性及ADMET预测
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作者:Coronado Lorena, Lakey-Beitia Johant, Pecchio Marisin, Ng Michelle G, Correa Ricardo, Samudio-RÃos Gerardo, Cruz-Mora Jessica, Fuentes Arelys L, Rao K S Jagannatha, Spadafora Carmenza
| 期刊: | Pharmaceutics | 影响因子: | 5.500 |
| 时间: | 2025 | 起止号: | 2025 Jul 25; 17(8):968 |
| doi: | 10.3390/pharmaceutics17080968 | 种属: | Human |
| 研究方向: | 细胞生物学 | ||
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