共晶
化学
下调和上调
细胞凋亡
替莫唑胺
活性氧
细胞毒性
体外
程序性细胞死亡
药理学
胶质瘤
细胞内
线粒体
细胞生物学
药品
生物利用度
细胞生长
生物物理学
癌症研究
膜电位
生物化学
体内
FKBP公司
溶解度
作用机理
胶质母细胞瘤
细胞
内源性凋亡
U87型
细胞培养
流出
诺司卡平
作者
Ling Chen,Xiaoqin Ma,Hai-Li Wu,Shun Zhang,Jie-Feng Chen,Ning Lin,Qing Chen
标识
DOI:10.1021/acs.cgd.5c01202
摘要
Glioblastoma is a highly aggressive brain tumor with a poor prognosis and limited treatment options. Resveratrol (RES) and temozolomide (TMZ) both showed significant antitumor activity in GBM therapy. However, they are limited by poor solubility and stability, respectively. This study reports the first successful development of a resveratrol–temozolomide (RES–TMZ) cocrystal. The cocrystal significantly improved the solubility of RES and stability of TMZ, while it exhibited enhanced oral bioavailability in rats. In vitro cytotoxicity assays revealed that the RES–TMZ cocrystal showed superior inhibitory effects on U87 glioma cell proliferation and induced a higher apoptosis rate compared to that of monotherapy or physical mixtures. Mechanistic studies further demonstrated that the cocrystal exerts its effects through the mitochondrial-dependent apoptotic pathway, characterized by the upregulation of the proapoptotic protein Bax, downregulation of the antiapoptotic protein Bcl-2, activation of the caspase-3 pathway, and collapse of mitochondrial membrane potential coupled with a burst of intracellular reactive oxygen species. This work establishes pharmaceutical cocrystallization as a viable strategy to develop improved combination therapies for glioblastoma by overcoming drug limitations while potentiating therapeutic effects.
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