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首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Electrochemical assessement of the therapeutic agent of dietary nitrite in streptozotocin induced diabetic rats based on Ni-Cu/nanotitania sensor
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Electrochemical assessement of the therapeutic agent of dietary nitrite in streptozotocin induced diabetic rats based on Ni-Cu/nanotitania sensor

机译:基于Ni-Cu /纳米炎传感器的链脲佐菌素诱导糖尿病大鼠膳食亚硝酸盐治疗剂的电化学评估

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摘要

Nitrite compounds are very important in many industrials that may cause some significant problems, but in more or less cases it has useful effect. Therefore, the present study was carried out to shed the light on the effect of nitrite on streptozotocin (STZ) inducing diabetic rats. In this study, thirty-two male Wister rats were distributed into four groups (n= 8 per group): Group (1) control group; Group (2) normal rats received NaNO2 30 mg/kg body weight; Group (3) diabetic group rats received 45 mg/kg STZ intraperitoneal (IP); Group (4) diabetic rats treated daily with NaNO2 for three months. Serum from each group was collected from rat's blood samples to measure aminotransferase (AST), alanine aminotransferase (ALT), Urea, and Creatinine. A self-assembled nanostructure titania (TiO2) based surface similar to honey cells was synthesized by a simple, fast, low-cost procedure using the 2D electrochemical cell at sequence potential from 5 V to 30 V for 2 h followed by annealed method at 350 degrees C and 750 degrees C for 3 h. A linear sweep voltammetry electrochemical method was used to deposit the Ni-Cu nanoparticles on titania surface providing a highly sensing platform of Ni-Cu/nanotitania array. Both the degree of sensing (46 mu A mM(-1)) for the electrode were calculated through low detection range from 0.00 to 0.35 mM of glucose via cyclic voltammetry and amperometery techniques. By increasing the glucose concentration through the detection range from 0.4 to 2.5 mM the sensitivity increased to 248 mu A mM(-1). This significant change indicates that the sensitivity of the electrode is suitable for diabetes measurements, We reported for the first electrochemical sensor fabricated from Ni-Cu/nanotitania to detect glucose level in real urine samples and we used this level as a marker for the effect of nitrite present in the drinking water. The results showed that the presence of low concentration of sodium nitrite can enhance the liver and kidney functions in diabetic rats and also lead to the decrease of the glucose concentration in urine. Additionally, Ni-Cu/nanotitania sensor also has stability, profitable good reproducibility and applicability that guarantee its value in the medical applications as in the environmental applications that has been proven previously.
机译:在许多工业中,亚硝酸盐化合物非常重要,可能导致一些显着的问题,但在或多或少的情况下,它具有有用的效果。因此,对本研究进行了对亚硝酸盐对链脲佐菌素(STZ)诱导糖尿病大鼠作用的影响。在本研究中,将三十二个雄性频钳大鼠分为四组(每组N = 8):组(1)对照组;组(2)正常大鼠纳米2 30mg / kg体重;组(3)糖尿病群大鼠45 mg / kg STZ腹膜内(IP);组(4)糖尿病大鼠每日治疗,纳米2持续三个月。从大鼠的血液样品中收集来自每组的血清,以测量氨基转移酶(AST),丙氨酸氨基转移酶(ALT),尿素和肌酐。通过使用2D电化学电池在序列电位的简单,快速的低成本程序中使用与晶粒电池的简单,快速,低成本的方法相似的自组装纳米结构的表面,其在序列电位为5 V至30V,然后在350℃下进行退火方法度C和750℃3小时。使用线性扫描伏安法电化学方法将Ni-Cu纳米颗粒沉积在二氧化钛表面上提供高度传感平台的Ni-Cu /纳米炎阵列。通过循环伏安法和电流技术的0.00至0.35mm葡萄糖的低检测范围计算电极的感测程度(46μmmm(-1))。通过将葡萄糖浓度增加到通过检测范围从0.4至2.5mm增加到248μmmm(-1)的灵敏度。这种显着的变化表明,电极的敏感性适用于糖尿病测量,我们报道了由Ni-Cu /纳米炎的第一电化学传感器检测真实尿液样本中的葡萄糖水平,我们将该水平作为标记用于效果亚硝酸盐存在于饮用水中。结果表明,低浓度的亚硝酸钠的存在可以增强糖尿病大鼠中的肝肾功能,并导致尿液中葡萄糖浓度的降低。此外,Ni-Cu /纳米塔尼亚传感器还具有稳定性,有利可图的良好再现性和适用性,可确保其在医疗应用中的价值,如之前已被证明的环境应用程序。

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