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甜菊糖苷对大肠杆菌菌株存活及质粒DNA的生物学效应。

Biological effects of stevioside on the survival of Escherichia coli strains and plasmid DNA.

作者信息

Nunes A P M, De Mattos J C P, Ferreira-Machado S C, Nunes R M, Asad N R, Dantas F J S, Bezerra R J A C, Caldeira-de-Araujo A

机构信息

Departamento de Biofísica e Biometria, Universidade do Estado do Rio de Janeiro, Instituto de Biologia Roberto Alcantara Gomes, Avenida 28 de Setembro #87, Rio de Janeiro, RJ 20551-030, Brazil.

出版信息

Mol Cell Biochem. 2006 Dec;293(1-2):187-92. doi: 10.1007/s11010-006-9241-4. Epub 2006 Jun 28.

Abstract

Stevioside is widely used daily in many countries as a non-caloric sugar substitute. Its sweetening power is higher than that of sucrose by approximately 250-300 times, being extensively employed as a household sweetener, or added to beverages and food products. The purpose of this study was to ascertain stevioside genotoxic and cytotoxic potentiality in different biological systems, as its use continues to increase. Agarose gel electrophoresis and bacterial transformation were employed to observe the occurrence of DNA lesions. In addition to these assays, Escherichia coli strains were incubated with stevioside so that their survival fractions could be obtained. Results show absence of genotoxic activity through electrophoresis and bacterial transformation assays and drop of survival fraction of E. coli strains deficient in rec A and nth genes, suggesting that stevioside (i) is cytotoxic; (ii) could need metabolization to present deleterious effects on cells; (iii) is capable of generating lesions in DNA and pathways as base excision repair, recombination and SOS system would be important to recover these lesions.

摘要

甜菊糖苷在许多国家每天都被广泛用作无热量甜味剂。它的甜度比蔗糖高约250 - 300倍,被广泛用作家庭甜味剂,或添加到饮料和食品中。随着甜菊糖苷的使用持续增加,本研究的目的是确定其在不同生物系统中的遗传毒性和细胞毒性潜力。采用琼脂糖凝胶电泳和细菌转化来观察DNA损伤的发生。除了这些检测外,还将大肠杆菌菌株与甜菊糖苷一起培养,以获得它们的存活分数。结果表明,通过电泳和细菌转化检测未发现遗传毒性活性,而rec A和nth基因缺陷的大肠杆菌菌株的存活分数下降,这表明甜菊糖苷(i)具有细胞毒性;(ii)可能需要代谢才能对细胞产生有害影响;(iii)能够在DNA中产生损伤,碱基切除修复、重组和SOS系统等途径对于修复这些损伤很重要。

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