The Characteristic and Antibacterial Activity of Nanosilver Biosynthetic using Sweet Orange

D. Ermawati, D. Putro, Nindita Clourisa Amaris Susanto
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Abstract

Sweet orange contains citric acid and ascorbic acid that act as a silver ion bioreducer to form nanosilver (AgNPs). Silver ion green synthesis using sweet orange peel resulted in smaller particle sizes than C. lemon and C. limeta. Therofore, this study aims to determine the characteristic of nanosilver biosynthetic using sweet orange bioreductor and antibacterial activity. Silver nitrate solution of 1.0 mM was mixed with sweet orange juice - peel infusion in ratio of 3.0: 0.0; 1.5: 1.5; and 0.0: 3.0 mL. The process was conducted using a water bath at 60 ˚C for 45 minutes. The formation of AgNPs is indicated by a color change from colorless to yellowish-brown using UV/Vis spectrophotometer and PSA. The stability test of AgNPs is determined for 30 days storage at room temprature and their antibacterial activity against S. aureus and S. epidermidis. The results showed that sweet orange juice accelerated the color change at the SPR range of AgNPs at 438-459 nm, but it is less stable. The mix solution of sweet orange juice and sweet orange peel infusion of 1.5: 1.5 mL are stable and promising as an antibacterial agent. Futhermore, the AgNPs produced had a particle size of 41±10 nm and a spherical shape.
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甜橙生物合成纳米银的特性及抗菌活性研究
甜橙含有柠檬酸和抗坏血酸,它们作为银离子生物还原剂形成纳米银(AgNPs)。用甜橙皮合成银离子绿比柠檬和酸橙合成的银离子绿粒径小。因此,本研究旨在确定利用甜橙生物还原剂生物合成纳米银的特性及其抗菌活性。将1.0 mM硝酸银溶液与甜橙汁-果皮注射液按3.0:0.0的比例混合;1.5: 1.5;0.0: 3.0 mL。60℃水浴45分钟。通过紫外/可见分光光度计和PSA检测,AgNPs的形成由无色变为黄褐色。测定AgNPs在室温下保存30 d的稳定性及对金黄色葡萄球菌和表皮葡萄球菌的抑菌活性。结果表明,甜橙汁在438 ~ 459 nm的AgNPs SPR范围内加速了颜色的变化,但稳定性较差;甜橙汁与甜橙皮的混合溶液输注量为1.5:1.5 mL,具有稳定的抗菌剂作用。制备的AgNPs粒径为41±10 nm,呈球形。
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