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刺槐豆提取物纳米颗粒的联合给药可提高多奈哌齐在痴呆模型中的口服生物利用度和神经治疗效果。

Co-administration of Ceratonia siliqua extract nanoparticles promotes the oral bioavailability and neurotherapeutic efficacy of donepezil in a dementia model.

作者信息

Shaker Sylvia E, Fayed Dalia B, Shawky Heba, Farrag Ebtehal K

机构信息

Therapeutic Chemistry Department, Pharmaceutical Industries and Drug Research Institute, National Research Centre, Dokki 12622, Cairo, Egypt.

出版信息

J Pharm Pharmacol. 2025 Jan 6;77(1):153-169. doi: 10.1093/jpp/rgae094.

Abstract

BACKGROUND

This study aimed to assess the herb-drug interactions between crude/silver nanoparticle (SNP)-loaded carob extract (Car, NCar, respectively) and donepezil-HCl (DPZ) and their impact on neurotherapeutic outcomes in a dementia model.

METHODS

Carob pods were subjected to ethanol extraction, and their phytoconstituents were chromatographically analysed. SNP-loaded extract was synthesized and characterized, and dementia-like symptoms were induced in Wistar rats by repeated dosing with 175 mg/kg AlCl3 for 60 days, after which the animals were treated with Car, NCar, DPZ, and combinations of Car/NCar-DPZ for 30 days. The effect of carob formulations on DPZ bioavailability was in-silico profiled and the herb-drug interactions were mathematically assessed as combination indices.

RESULTS

Different formulations significantly improved cognitive/spatial memory functions, restored dysregulated brain redox and cholinergic functions, and markedly inhibited cholinesterase, as reflected by the reduction/absence of amyloid plaques and neurofibrillary tangles. In silico profiling of the major phytoconstituents revealed their non-P-glycoprotein substrate nature and CYP3A4, 2C19, and 2C9 inhibition, which might have improved the oral bioavailability of DPZ. The combination index calculations revealed strong synergy between DPZ and both carob formulations, with the strongest effect exhibited by the DPZ/NCar combination.

CONCLUSION

The co-administration of carob extract/SNPs represents a promising approach for enhancing the neurotherapeutic efficacy of DPZ.

摘要

背景

本研究旨在评估粗制/负载银纳米颗粒(SNP)的角豆提取物(分别为Car、NCar)与盐酸多奈哌齐(DPZ)之间的草药-药物相互作用及其对痴呆模型神经治疗结果的影响。

方法

对角豆荚进行乙醇提取,并对其植物成分进行色谱分析。合成并表征负载SNP的提取物,通过对Wistar大鼠重复给予175mg/kg氯化铝60天来诱导类似痴呆的症状,之后用Car、NCar、DPZ以及Car/NCar-DPZ组合对动物进行30天治疗。对角豆制剂对DPZ生物利用度的影响进行计算机模拟分析,并将草药-药物相互作用作为组合指数进行数学评估。

结果

不同制剂显著改善了认知/空间记忆功能,恢复了失调的脑氧化还原和胆碱能功能,并显著抑制了胆碱酯酶,这表现为淀粉样斑块和神经原纤维缠结减少/消失。对主要植物成分的计算机模拟分析显示它们具有非P-糖蛋白底物性质以及对CYP3A4、2C19和2C9的抑制作用,这可能提高了DPZ的口服生物利用度。组合指数计算显示DPZ与两种角豆制剂之间有很强的协同作用,其中DPZ/NCar组合表现出最强的效果。

结论

角豆提取物/SNPs联合给药是提高DPZ神经治疗疗效的一种有前景的方法。

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