CYTOTOXIC EFFECT OF ASPARAGINASE PRODUCE FROM E.COLI AND CONJUGATED WITH ZNO NANOPARTICLES ON CANCER CELL LINES

IF 1.1 Q3 AGRICULTURE, MULTIDISCIPLINARY
Zahraa H. H H. A. Rasheed Researcher Lecturer, Dept. Biotech, Sci, Col.¸
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Abstract

This study was aimed to examine the anticancer activity of fabricated ZnONPs- L-ASNase conjugate against cancer and normal cell lines. Total of 127 bacterial isolates were taken from clinicalandenvironmentalsamples then identified as E.coli.In this work, 88 isolates were identified as E.coli.L-asparaginase produced from E.coli were screened¸clinical Isolates of E.coli from urine sample have the potential to produce asparaginase that is responsible for cytotoxicity¸the optimal culture conditions for the development of the enzyme L-asparaginase were determined to be 37ºC and pH8. Nitrogen sourceconcentrations at 0.9gm/ml were discovered to maximize enzyme production. L-asparaginase then purified by two steps that includeion exchange column and gel filtration. Purification and recovery percentage for L-ASNase was 6.21%, 10.34% respectively. Effective conjugation was approved by UV-visible spectroscopy. ZnO nanoparticles exhibit absorbance peaks approximately 200-300 nm. XRD analysis confirmed the crystallite size of the ZnO nanoparticles was observed to be 18.4 nm. The activity of L-ASNase in the ZnONPs-L-ASNasewas detected by a direct nesslerization method and the findings showed a substantial increase L-ASNase specific activity within the conjugate of ZnONPs-L-ASNase in comparison to its free state. The ZnONPs-L-ASNase conjugate showed the greatest and most substantial cytotoxic action against A375 with survival rate at 400 µg /mL about 45.8± 2.3. The IC50 value of 44.69 µg/ mL of ZnONPs- L-ASNase was calculated for A375 cells. In comparison, all substances exhibited weak to moderate cytotoxicity when tested against the normal cell line WRL-68. The ZnONPs-L-ASNase combination therapy resulted in a higher cytotoxic effect. This action could be attributed to the synergetic effects of both L-ASNase and the conjugated molecules ZnONPs.
大肠杆菌产生的天冬酰胺酶与 ZNO 纳米粒子共轭对癌细胞株的细胞毒作用
这项研究的目的是检测制备的 ZnONPs- L-ASNase 共轭物对癌症细胞系和正常细胞系的抗癌活性。从尿液样本中分离出的临床大肠杆菌有可能产生天冬酰胺酶,这种酶具有细胞毒性,而培养天冬酰胺酶的最佳条件是 37ºC 和 pH8。氮源浓度为 0.9 克/毫升,以最大限度地提高酶的产量。然后通过离子交换柱和凝胶过滤两个步骤纯化 L-天冬酰胺酶。L-ASNase 的纯化率和回收率分别为 6.21%和 10.34%。紫外-可见光谱分析证实了该共轭物的有效性。氧化锌纳米颗粒显示出约 200-300 纳米的吸光峰。XRD 分析证实,氧化锌纳米粒子的晶粒大小为 18.4 纳米。通过直接奈斯勒法检测了 ZnONPs-L-ASNase 中 L-ASNase 的活性,结果表明与游离态相比,ZnONPs-L-ASNase 共轭物中 L-ASNase 的特异性活性大幅提高。ZnONPs-L-ASNase 共轭物对 A375 的细胞毒性作用最大,400 µg /mL 时的存活率约为 45.8±2.3。计算得出 ZnONPs-L-ASNase 对 A375 细胞的 IC50 值为 44.69 µg/ mL。相比之下,在对正常细胞株 WRL-68 进行测试时,所有物质都表现出弱至中等的细胞毒性。ZnONPs-L-ASNase 联合疗法的细胞毒性效果更高。这种作用可归因于 L-ASNase 和共轭分子 ZnONPs 的协同效应。
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来源期刊
IRAQI JOURNAL OF AGRICULTURAL SCIENCES
IRAQI JOURNAL OF AGRICULTURAL SCIENCES AGRICULTURE, MULTIDISCIPLINARY-
CiteScore
2.30
自引率
50.00%
发文量
140
审稿时长
6 weeks
期刊介绍: IRAQI JOURNAL OF AGRICULTURAL SCIENCES (IJAS)is the first agric. scientific and refereed journal established in Iraq. The first volume was published in 1966. IJAS is registered in the number 137 in 1988 of the Baghdad National Library. Years ago, it was published with one issue a year. For the time being, it is published bimonthly (6 issues for a volume). IJAS Deal with: Field Crops. Plant Breeding. Agricultural Economics. Agricultural Extension. Agricultural Mechanization. Basic sciences. Hort. Sciences. Animal Husbandry. Food Technology, Plant Pathology. Plant Entomology. Poultry Sciences. Soil Sciences. Water Resources. Veterinary. Biology.
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