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The role of reduced iron powder in the fermentative production of tetanus toxin

机译:还原铁粉在破伤风毒素发酵生产中的作用

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摘要

When tetanus toxin is made by fermentation with Clostridium tetani, the traditional source of iron is an insoluble preparation called reduced iron powder. This material removes oxygen from the system by forming FeO2 (rust). When inoculated in a newly developed medium lacking animal and dairy products and containing glucose, soy-peptone, and inorganic salts, growth and toxin production were poor without reduced iron powder. The optimum concentration of reduced iron powder for toxin production was found to be 0.5 g/l. Growth was further increased by higher concentrations, but toxin production decreased. Inorganic iron sources failed to replace reduced iron powder for growth or toxin formation. The iron source that came closest was ferrous ammonium sulfate. The organic iron sources ferric citrate and ferrous gluconate were more active than the inorganic compounds but could not replace reduced iron powder. Insoluble iron sources, such as iron wire, iron foil, and activated charcoal, were surprisingly active. Combinations of activated charcoal with soluble iron sources such as ferrous sulfate, ferric citrate, and ferrous gluconate showed increased activity, and the ferrous gluconate combination almost replaced reduced iron powder. It thus appears that the traditional iron source, reduced iron powder, plays a double role in supporting tetanus toxin formation, i.e., releasing soluble sources of iron and providing an insoluble surface.
机译:用破伤风梭菌发酵生产破伤风毒素时,铁的传统来源是一种不溶性制剂,称为还原铁粉。该材料通过形成FeO2 (铁锈)从系统中除去氧气。当在缺乏动物和奶制品且含有葡萄糖,大豆蛋白p和无机盐的新开发培养基中接种时,如果铁粉不减少,生长和毒素产生就会很差。发现用于产生毒素的还原铁粉的最佳浓度为0.5g / l。更高的浓度进一步增加了生长,但毒素产生减少了。无机铁源无法替代还原的铁粉来生长或形成毒素。最接近的铁源是硫酸亚铁铵。有机铁源柠檬酸铁和葡萄糖酸亚铁比无机化合物更具活性,但不能代替还原铁粉。不溶性铁源,例如铁丝,铁箔和活性炭,令人惊讶地具有活性。活性炭与可溶性铁源(例如硫酸亚铁,柠檬酸铁和葡萄糖酸亚铁)的组合显示出增强的活性,而葡萄糖酸亚铁的组合几乎替代了还原的铁粉。因此看来,传统的铁源,还原的铁粉,在支持破伤风毒素的形成方面具有双重作用,即释放可溶性铁源并提供不溶性表面。

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  • 来源
    《Applied Microbiology and Biotechnology》 |2006年第1期|55-59|共5页
  • 作者单位

    Charles A. Dana Research Institute for Scientists Emeriti (R.I.S.E.) Drew UniversityDepartment of Biology Massachusetts Institute of Technology;

    Celltrion Inc.;

    Aeras Global TB Vaccine Foundation;

    Acambis Inc.Department of Biology Massachusetts Institute of Technology;

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