用二苯基苦基苯肼(DPPH)自由基酶标仪法,对拟青霉属5个种的20个菌株培养液提取物的自由基清除活性进行了比较研究,发现不同种拟青霉的甲醇提取液的自由基清除活性差异很大,在浓度为5.0 mg.mL-1,37℃保温10 m in时,自由基清除活性最高为7...用二苯基苦基苯肼(DPPH)自由基酶标仪法,对拟青霉属5个种的20个菌株培养液提取物的自由基清除活性进行了比较研究,发现不同种拟青霉的甲醇提取液的自由基清除活性差异很大,在浓度为5.0 mg.mL-1,37℃保温10 m in时,自由基清除活性最高为71.9%,最低为15.9%;同种不同菌株之间的活性也有较大的差异。自由基清除活性均与反应时间和样品浓度成正相关关系。二苯基苦基苯肼自由基薄层实验结果表明,该属菌株培养液提取物中自由基清除剂都不是单一成分,且组成也不完全相同。展开更多
The antioxidant of seeds was carried out using extracts from methanol and Silver Nanoparticles from the spice. The SEM shows the shapes, dispersion and agglomeration of the sample, while the EDX confirms the SEM and t...The antioxidant of seeds was carried out using extracts from methanol and Silver Nanoparticles from the spice. The SEM shows the shapes, dispersion and agglomeration of the sample, while the EDX confirms the SEM and the presence of some compounds. The FT-IR reveals the AgNP<sub>s</sub> capping and reducing the particular biomolecule from the functional group for identification. Compounds found in the FT-IR seeds of Capsicum annum are Ag L (Silver iodide), C K (Cyanogen chloride), P K (Phenol). Monodora myristica are Mo L (Molybdenum), Ag L (Silver iodide), C K (Cyanogen chloride), P K (Phenol), Mg K (Magnesium). Piper guineense are Ag L (Silver iodide), Ci K (Potassium chloride), C K (Cyanogen chloride), P K (Phenol). The seeds show that the AgNP<sub>S</sub> of CA and MM has a better antioxidant activity than the methanol of CA and MM, while the PG methanol has a better activity than the AgNP<sub>S</sub> PG. The control (Catechin and Galic acid) has a slight overall better DPPH activity than the AgNP<sub>S</sub>. It is important to note that there is a concentration dependency in CA, MM AgNP<sub>S,</sub> PG methanol respectively. Notably, at CA methanol, the conc. at 125 was higher than the conc. at 250. Hence, there is need to create a great part in using plant samples for making tabulated or capsulated drugs for treatment of diseases and using plant silver nanoparticles to develop a healthy food/drug preservative package material “smart packaging” that will enhance shelf-life.展开更多
文摘用二苯基苦基苯肼(DPPH)自由基酶标仪法,对拟青霉属5个种的20个菌株培养液提取物的自由基清除活性进行了比较研究,发现不同种拟青霉的甲醇提取液的自由基清除活性差异很大,在浓度为5.0 mg.mL-1,37℃保温10 m in时,自由基清除活性最高为71.9%,最低为15.9%;同种不同菌株之间的活性也有较大的差异。自由基清除活性均与反应时间和样品浓度成正相关关系。二苯基苦基苯肼自由基薄层实验结果表明,该属菌株培养液提取物中自由基清除剂都不是单一成分,且组成也不完全相同。
文摘The antioxidant of seeds was carried out using extracts from methanol and Silver Nanoparticles from the spice. The SEM shows the shapes, dispersion and agglomeration of the sample, while the EDX confirms the SEM and the presence of some compounds. The FT-IR reveals the AgNP<sub>s</sub> capping and reducing the particular biomolecule from the functional group for identification. Compounds found in the FT-IR seeds of Capsicum annum are Ag L (Silver iodide), C K (Cyanogen chloride), P K (Phenol). Monodora myristica are Mo L (Molybdenum), Ag L (Silver iodide), C K (Cyanogen chloride), P K (Phenol), Mg K (Magnesium). Piper guineense are Ag L (Silver iodide), Ci K (Potassium chloride), C K (Cyanogen chloride), P K (Phenol). The seeds show that the AgNP<sub>S</sub> of CA and MM has a better antioxidant activity than the methanol of CA and MM, while the PG methanol has a better activity than the AgNP<sub>S</sub> PG. The control (Catechin and Galic acid) has a slight overall better DPPH activity than the AgNP<sub>S</sub>. It is important to note that there is a concentration dependency in CA, MM AgNP<sub>S,</sub> PG methanol respectively. Notably, at CA methanol, the conc. at 125 was higher than the conc. at 250. Hence, there is need to create a great part in using plant samples for making tabulated or capsulated drugs for treatment of diseases and using plant silver nanoparticles to develop a healthy food/drug preservative package material “smart packaging” that will enhance shelf-life.