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Modification of an effector strain for replacement therapy of dental caries to enable clinical safety trials

机译:修饰效应株以替代龋齿以进行临床安全性试验

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Aims: To construct a genetically modified strain of Streptococcus mutans for dental caries prevention. The strain has significantly reduced cariogenicity owing to a deletion of the entire open reading frame for lactate dehydrogenase, and has excellent colonization potential through the production of a natural antibiotic called mutacin 1140. For use in human clinical trials, additional mutations were introduced to enable rapid elimination of the strain in case of adverse side effects and to increase genetic stability. Methods: Deletion mutations were introduced into the dal gene for D-alanine biosynthesis and the comE gene for genetic transformation. The resulting strain, A2JM, was tested for dependence on exogenous D-alanine and its ability to be eradicated from colonized rats. The strain was also tested for its ability to exchange DNA with another strain of S. mutans in in vitro and in vivo models. Conclusions: A2JM was completely dependent on exogenous D-alanine, but could colonize the oral cavity of rats in low numbers in the absence of dietary D-alanine. Results indicated that A2JM can scavenge D-alanine from other plaque bacteria. Lowering of the total oral bacterial load through daily application of chlorhexidine enabled virtually complete eradication of A2JM. The introduction of the comE gene did not significantly decrease the transformability of A2JM in in vitro or in vivo models. The addition of a deletion in the comE gene does, nonetheless, provide additional safety as it has a very low reversion frequency. Significance and Impact of the Study: Based on the safety and efficacy profiles established in vitro and in animal models, A2JM appears suitable for safe use in human clinical trials.
机译:目的:构建基因改造的变形链球菌菌株以预防龋齿。由于删除了乳酸脱氢酶的整个开放阅读框,该菌株显着降低了致癌性,并且通过生产称为诱变剂1140的天然抗生素具有极好的定殖潜力。为在人类临床试验中使用,引入了其他突变以使其能够快速发生。消除菌株的不利副作用,以增加遗传稳定性。方法:将缺失突变体引入到dal基因中以进行D-丙氨酸的生物合成,并引入comE基因进行遗传转化。测试了所得的菌株A2JM对外源D-丙氨酸的依赖性及其从定植的大鼠中消除的能力。还在体外和体内模型中测试了该菌株与另一变形链球菌菌株交换DNA的能力。结论:A2JM完全依赖于外源性D-丙氨酸,但在缺乏饮食D-丙氨酸的情况下可以少量地定殖在大鼠的口腔中。结果表明,A2JM可以清除其他菌斑细菌中的D-丙氨酸。通过每天使用洗必泰降低口腔细菌的总负荷,实际上可以完全根除A2JM。在体外或体内模型中,comE基因的导入并没有显着降低A2JM的可转化性。但是,在comE基因中添加缺失确实提供了额外的安全性,因为它具有非常低的回复频率。研究的意义和影响:根据在体外和动物模型中建立的安全性和有效性概况,A2JM似乎适合在人类临床试验中安全使用。

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