Wenhui Fu, Zhequan Fu, Dai Shi, Tingting Yang, Pengcheng Ma, Hongxing Su, Fangchao Tong, Hui Tan, Qingyu Lin, Dengfeng Cheng
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引用次数: 0
Abstract
Patients with epilepsy often face significant challenges, with one-third of them being resistant to available antiseizure medications, leading to drug-resistant epilepsy (DRE). The P2X7 receptor (P2X7R), a mechanistic and inflammatory biomarker, exhibits increased expression during epileptogenesis. P2X7R antagonists effectively reduce the severity of seizure and neuronal death, highlighting this receptor as a potential therapeutic target. Precise detection of P2X7R is essential for guiding the treatments. Herein, we prepared the P2X7R-targeting probe [18F]F-PTTP and evaluated its efficacy in positron emission tomography (PET) imaging of epileptic rats. [18F]F-PTTP was synthesized via the cleavage of the trifluoromethylsulfonyl group with a radiochemical yield of 10-17% (end of synthesis, EOS), molar activity of 56.12 ± 6.06 GBq/μmol (EOS), and radiochemical purity exceeding 99%. [18F]F-PTTP PET imaging was performed on epileptic rats induced via intrahippocampal kainic acid (KA) injection across three disease progression stages: acute (1 day), latent (1 week), and chronic (1 month). PET results revealed specific [18F]F-PTTP binding to the epileptic brain, particularly in the right hippocampus (KA-injected site), with the highest standardized uptake value ratio observed at 1 week (1.34 ± 0.11). Autoradiography and histological analyses confirmed P2X7R overexpression in the epileptic brain, associated with microglia and astrocyte activation. Our findings suggest that [18F]F-PTTP PET imaging is a promising tool for visualizing P2X7R expression during epileptogenesis, which may facilitate neuroinflammation assessment, P2X7R-targeted therapy, and treatment monitoring in epilepsy.
期刊介绍:
Molecular Pharmaceutics publishes the results of original research that contributes significantly to the molecular mechanistic understanding of drug delivery and drug delivery systems. The journal encourages contributions describing research at the interface of drug discovery and drug development.
Scientific areas within the scope of the journal include physical and pharmaceutical chemistry, biochemistry and biophysics, molecular and cellular biology, and polymer and materials science as they relate to drug and drug delivery system efficacy. Mechanistic Drug Delivery and Drug Targeting research on modulating activity and efficacy of a drug or drug product is within the scope of Molecular Pharmaceutics. Theoretical and experimental peer-reviewed research articles, communications, reviews, and perspectives are welcomed.