Assessment of the Mutagenic and Cytotoxic Ability of Azanza Garckeana (F.Hoffm), Using Allium Cepa (L) Assay

Waja Samuel, M.M. Malgwi, S.Y Simon
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Abstract

The study on the assessment of the mutagenic and cytotoxic ability of Azanza garckeana leaf and fruit extracts on the root tip of Allium cepa was evaluated; aqueous leaf and fruit extract of A. garckeana were collected and dried, and pounded into powder. For the root growth inhibition and cytological analysis, four concentrations of each extract, viz: 5g,10g, 15g, and 20g, including positive and negative control, were considered, and the result was determined for each extract using a graph to indicate the maximum and minimum EC50 (Effective concentration). The EC ranged from 10 g/ml with a root length of 3 cm for A. garckeana leaf extracts, 10g/ml with a root length of 2.5 cm for A. garckeana fruits extracts, A range of chromosomal aberrations such as polyploidy, dissolution, vagrant metaphase, binucleate, laggard, nuclear lesion, fragmentation, chromosome gap, anaphase bridge, micronuclei, unequal separation, were observed in all the plant’s extracts. Statistically, the chromosomal aberrations observed in the root tip cells of A. cepa treated with the leaf extracts of A. garckeana shows that 10g is statistically significantly different from 5g (P = 0.026) and negative control, 15g is significantly different from 5g (P = 0.000) and 10g (P = 0.026). However, as the concentration increased to 20g, there was a significant difference in the percentage of aberrations from 5g (P =0.0000) to 10g (P = 0.005), but not significantly different from 15g (P =0.0553). Whereas fruit extract shows that 10g is higher than 5g but has no statistical significance (P =0.101). 15g is significantly different from 5g (P =0.101) but not significantly different from 10g (P =0.055), 20g (P =0.331), and positive control (P =0.845). As the concentrations of the plant extracts increased to 10%, 15%, and 20%, there was a progressive increase in the percentage of aberrant cells and a decrease in the number of dividing cells, suggesting that low concentrations of A. garckeana extracts should be used in traditional medicine production.
利用葱a (L)法评价Azanza Garckeana (F.Hoffm)的致突变性和细胞毒性
研究了大蒜根尖上的刺蒺藜叶提取物和果实提取物的致突变性和细胞毒性;收集黄芪叶、果水提取物,干燥后捣碎成粉。对于根生长抑制和细胞学分析,考虑了每种提取物的四种浓度,即5g,10g, 15g和20g,包括阳性和阴性对照,并使用图表确定每种提取物的结果,以指示最大和最小EC50(有效浓度)。黄芪叶提取物的EC值为10g/ml,根长为3 cm;黄芪果提取物的EC值为10g/ml,根长为2.5 cm。黄芪叶提取物的EC值为10g/ml,根长为2.5 cm。结果表明,黄芪叶提取物的EC值为10g/ml,根长为2.5 cm。从统计学上看,加竹叶提取物处理后的A. cepa根尖细胞染色体畸变,10g组与5g组(P = 0.026)和阴性对照差异有统计学意义,15g组与5g组(P = 0.000)和10g组(P = 0.026)差异有统计学意义。然而,当浓度增加到20g时,像差百分比从5g (P =0.0000)到10g (P = 0.005)有显著差异,但与15g相比差异不显著(P =0.0553)。果提取物10g高于5g,但差异无统计学意义(P =0.101)。15g与5g差异显著(P =0.101),与10g (P =0.055)、20g (P =0.331)、阳性对照(P =0.845)差异不显著。当植物提取物浓度分别增加到10%、15%和20%时,变异细胞的比例逐渐增加,分裂细胞的数量逐渐减少,提示在中药生产中应采用低浓度的栀子花提取物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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