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通过多草药配方生物合成银纳米颗粒:机制中和及其对印度环蛇毒液中乙酰胆碱酯酶的毒理学影响

Biogenic synthesis of AgNPs via polyherbal formulation: Mechanistic neutralization and toxicological impact on acetylcholinesterase from Bungarus sindanus venom.

作者信息

Afshin Noshaba, Mushtaq Nadia, Ahmed Mushtaq, Sher Naila, Alhag Sadeq K, Khalil Fatma Mohamed Ameen, Al-Shuraym Laila A, Hameed Hajra, Badshah Farhad, Hussain Riaz

机构信息

Department of Botany, University of Science and Technology Bannu-KPK, Pakistan.

Department of Biotechnology, University of Science and Technology Bannu-KPK, Pakistan.

出版信息

Microsc Res Tech. 2025 Feb;88(2):356-368. doi: 10.1002/jemt.24701. Epub 2024 Oct 4.

DOI:10.1002/jemt.24701
PMID:39367638
Abstract

This study aims to examine the biogenic production, characterization, and anti-acetylcholinesterase (AAChE) properties of polyherbal formulation PHF-extract-synthesized silver nanoparticles (PHF-AgNPs). The Elapidae snake Bungarus sindanus has extremely dangerous venom for humans and contains a high amount of AChE (acetylcholinesterase). Inhibiting AChE leads to acetylcholine buildup, affecting neurotransmission. The study tested silver nanoparticles as AChE inhibitors using kinetics. Their production was confirmed through ultraviolet (UV) spectrometry at 425 nm (SPR peak of 1.94), and stabilizing functional groups were identified via Fourier transform infrared spectroscopy (FT-IR). The average length of 20 nm was confirmed by analyzing the scanning electron microscopy (SEM) data. Energy-dispersive X-ray spectroscopy (EDX) identified silver as the primary component of PHF-AgNPs (26%). Statistical analysis showed that the activity of AChE in krait venom decreased by up to 45% and 37% at a given dose of ACh (0.5 mM) by PHF and AgNPs, respectively. Utilizing the Lineweaver-Burk plot for kinetic analysis, a competitive type of inhibition is found. RESEARCH HIGHLIGHTS: Successfully synthesized PHF-extract-induced silver nanoparticles (PHF-AgNPs) demonstrated through UV spectrometry and characterized as crystalline with an average size of 45 nm by X-ray diffraction. PHF-AgNPs effectively inhibited acetylcholinesterase (AChE), an enzyme critical in neurotransmission, reducing its activity in krait venom by up to 45% at certain concentrations. Kinetic analysis revealed that the inhibition mechanism of AChE by PHF-AgNPs is competitive, offering potential for therapeutic applications in neurologically related conditions.

摘要

本研究旨在检测多草药配方PHF提取物合成的银纳米颗粒(PHF-AgNPs)的生物合成、表征及其抗乙酰胆碱酯酶(AAChE)特性。眼镜蛇科的印度环蛇对人类具有极其危险的毒液,且含有大量的乙酰胆碱酯酶(AChE)。抑制AChE会导致乙酰胆碱蓄积,影响神经传递。该研究使用动力学方法测试了银纳米颗粒作为AChE抑制剂的效果。通过紫外(UV)光谱在425nm处(SPR峰为1.94)确认了其生成,并通过傅里叶变换红外光谱(FT-IR)鉴定了稳定的官能团。通过分析扫描电子显微镜(SEM)数据确认平均长度为20nm。能量色散X射线光谱(EDX)确定银是PHF-AgNPs的主要成分(26%)。统计分析表明,在给定剂量的乙酰胆碱(0.5mM)下,PHF和AgNPs分别使金环蛇毒液中AChE的活性降低了45%和37%。利用Lineweaver-Burk图进行动力学分析,发现为竞争性抑制类型。研究亮点:通过紫外光谱成功合成了PHF提取物诱导的银纳米颗粒(PHF-AgNPs),并通过X射线衍射表征为平均尺寸为45nm的晶体。PHF-AgNPs有效抑制了神经传递中关键的酶乙酰胆碱酯酶(AChE),在一定浓度下使其在金环蛇毒液中的活性降低了45%。动力学分析表明,PHF-AgNPs对AChE的抑制机制是竞争性的,在神经相关疾病的治疗应用中具有潜力。

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