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Synthesis of magnetic iron oxide nanoparticles using pulp and seed aqueous extract of Citrullus colocynth and evaluation of their antimicrobial activity

机译:粉浆和种子水提取物的磁性氧化铁纳米粒子的合成枸杞子萃取物及其抗菌活性评价

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Objectives Citrullus colocynth (CTC) is a wild medicinal plant with proven antimicrobial activity. The aim of this study is to investigate the use of its aqueous extract in producing magnetic iron oxide nanoparticles (MNPs) with improved antimicrobial activity. The cold and hot aqueous extract of seed and pulp parts of CTC, respectively, were used to produce MNPs. The particles were characterized by transmission electron microscope, energy dispersion x-ray, FTIR and their surface charge were measured. The antimicrobial activity of the produced particles was assessed against two Gram positive (Bacillus subtillis and Staphylococcus aureus) and two Gram negative (Escherichia coli and Pseudomonas aeruginosa) bacteria and well as against Candida albicans. Results MNPs synthesized using cold seed extract (S-MNP) and pulp extract (P-MNP) were spherical in shape. The size distribution was more uniform in the S-MNP (6-15 nm) compared to the P-MNP (12-45 nm). Both particles showed comparable anti-microbial potential against the tested microorganisms. At a concentration range of 0.48-1000 mu g/mL, S-MNP inhibited bacterial growth by 16.0-99.0% and 10.0-91.0%; while P-MNP inhibition was 11.0-100.0% and 11.0-99.0% for Gram positive and negative bacteria; respectively. Candida albicans was the least affected microorganism with maximum inhibition of 63-88% after treatment with S-MNP and P-MNP (1 mg/mL), respectively. Conclusions The aqueous extract of CTC can be used for synthesis of MNPs with antimicrobial activity. The described procedures are simple and can be modified for large scale green synthesis of MNPs.
机译:目的柑橘类Colocynth(CTC)是一种野生药用植物,具有经过验证的抗微生物活性。本研究的目的是研究其含水提取物在生产磁性氧化铁纳米颗粒(MNP)中的使用,具有改善的抗微生物活性。分别用于产生MNP的CTC的种子和纸浆部分的冷和热水提取物。通过透射电子显微镜,能量分散X射线,FTIR及其表面电荷表征颗粒。产生的颗粒的抗微生物活性针对两克阳性(芽孢杆菌小氧锆和金黄色葡萄球菌)和两克阴性(大肠杆菌和假单胞菌铜绿假单胞菌)细菌来评估,并与念珠菌蛋白糖尿病。结果使用冷籽提取物(S-MNP)合成的MNP和纸浆提取物(P-MNP)是球形的。与P-MNP(12-45nm)相比,S-MNP(6-15nm)中的尺寸分布更均匀。两种颗粒对测试的微生物进行了相当的抗微生物电位。浓度范围为0.48-1000μmg/ ml,s-mnp抑制细菌生长16.0-99.0%和10.0-91.0%;革兰氏阳性和阴性细菌的P-MNP抑制为11.0-100.0%和11.0-99.0%;分别。念珠菌白醛汉族人的微生物是至少受到S-MNP和P-MNP(1mg / mL)处理后的最大抑制63-88%。结论CTC的水性提取物可用于合成具有抗微生物活性的MNP。所描述的程序简单,可以修改MNP的大规模绿色合成。

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