Synthesis of silver nanoparticles using Quillaja saponaria Molina bark extract and its antivenom activities

IF 0.7 4区 生物学 Q4 BIOLOGY Indian journal of experimental biology Pub Date : 2023-09-29 DOI:10.56042/ijeb.v61i10.1653
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Abstract

Snakebite is an issue of concern, especially in India which accounts for half of the global deaths due to venomous snakebites every year. Saponins are glycosides of triterpenes and steroids known for their antivenom properties. The soap bark tree or Quillaya, Quillaja saponaria Molina represents the major resource of saponins for commercial applications. Here, we investigated the antivenom property of silver nanoparticle mediated saponins (AgNP-SP) from the Q. saponaria bark extract. AgNP-SP was prepared conducive to optimal temperature, pH of extract and concentration of AgNO3. UV-VIS, FT-IR, XRD, TEM and SEM interpretations were devised to characterize AgNP-SP. AgNP-SP was tested for its efficacy to neutralize venom lethality and increase in myotoxicity biomarkers (LDH) in animal models. AgNP-SP was synthesized optimally at a concentration of 50 mg/mL, extract (pH 6.8) and temperature (80°C) with AgNO3 (1 mM). The colour change and synthesis of AgNP-SP was examined by UV–Vis analysis at 430 nm. TEM studies showed the size for AgNP-SP to be 74.4 nm. FT-IR analysis showed peaks of AgNP-SP at 3422 cm−1 and 2926 (O–H stretching), 2358 cm−1 (O=C=O stretching), 1616 cm−1 (C=C stretching), 1097 cm−1 (C–F stretching), 813 cm−1 (C–CL stretching) and 651 cm−1 (C–Br stretching). The EDAX established the purity of the AgNP-SP. The biosynthesized AgNP-SP could significantly neutralize Vipera russelli venom (VRV) mediated elevation of biomarkers lactate dehydrogenase (LDH), serum glutamate pyruvate transaminase (SGPT) serum glutamic-oxaloacetic transaminase (SGOT), serum creatinine and serum uric acid. The present study, thus promulgates the therapeutic potential of silver nanoparticle mediated saponins (AgNP-SP) in ameliorating the biochemical and pharmacological effect of haemotoxic snake venom in animal models.
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皂角树皮提取物合成纳米银及其抗蛇毒血清活性研究
蛇咬伤是一个令人担忧的问题,特别是在印度,每年因毒蛇咬伤而死亡的人数占全球的一半。皂苷是三萜和类固醇的糖苷,以其抗蛇毒血清的特性而闻名。皂皮树或奎拉亚,奎拉亚皂角是商业应用中皂苷的主要来源。本文研究了皂角树皮提取物中银纳米颗粒介导的皂苷(AgNP-SP)的抗蛇毒血清特性。制备AgNP-SP的最佳温度、浸提液的pH和AgNO3的浓度。采用UV-VIS、FT-IR、XRD、TEM和SEM对AgNP-SP进行了表征。在动物模型中测试了AgNP-SP中和毒液致死和增加肌毒性生物标志物(LDH)的功效。AgNP-SP的最佳合成条件为:提取液浓度为50 mg/mL,提取液pH为6.8,温度为80℃,AgNO3浓度为1 mM。用紫外-可见光谱分析了AgNP-SP的颜色变化和合成情况。TEM研究表明,AgNP-SP的尺寸为74.4 nm。FT-IR分析显示,AgNP-SP峰位于3422 cm−1和2926 (O - h拉伸)、2358 cm−1 (O=C=O拉伸)、1616 cm−1 (C=C拉伸)、1097 cm−1 (C - f拉伸)、813 cm−1 (C - cl拉伸)和651 cm−1 (C - br拉伸)。EDAX法确定了AgNP-SP的纯度。生物合成AgNP-SP能显著中和蝮蛇毒(VRV)介导的乳酸脱氢酶(LDH)、血清谷氨酸丙酮转氨酶(SGPT)、血清谷草转氨酶(SGOT)、血清肌酐和血清尿酸升高。因此,本研究揭示了银纳米颗粒介导的皂苷(AgNP-SP)在改善蛇毒血液毒性动物模型的生化和药理作用方面的治疗潜力。
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来源期刊
CiteScore
1.57
自引率
33.30%
发文量
84
审稿时长
6 months
期刊介绍: This journal, started in 1963, publishes full papers, notes and reviews in cell biology, molecular biology, genetic engineering, endocrinology, reproductive biology, immunology, developmental biology, comparative physiology, radiation biology, chronobiology, microbiology, pharmacology, toxicology and other biological fields including instrumentation and methodology. The papers having experimental design involving alteration and/or manipulation in biological system(s) providing insight into their functioning are considered for publication. Studies involving higher animals, human beings and of clinical nature are not encouraged for publication in the journal.
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