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Increased degradation rate of nitrososureas in media containing carbonate

机译:在含碳酸盐的培养基中提高亚硝基脲的降解率

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The stability of two nitrosoureas, tauromustine and lomustine, has been investigated in different media and buffers. All media tested, except Leibovitz's L-15 medium, significantly increased the degradation rate of the investigated nitrosoureas at pH 7.4. Sodium bicarbonate seems to be the cause of the observed increase of the degradation rate, since it provides the main buffering capacity of all the media except for Leibovitz's L-15 medium, which is based on phosphate buffer. Other ingredients in the media, such as amino acids, vitamins, and inorganic salts, or the ionic strength of a buffer, did not have any major effect on the degradation rate of the nitrosoureas. These results suggest that media containing carbonated buffer should be avoided when the anti-tumor effect of nitrosoureas is to be investigated in different cell cultures.
机译:在不同的培养基和缓冲液中,已经研究了两种亚硝基脲(tauromustine和lomustine)的稳定性。除Leibovitz的L-15培养基外,所有测试的培养基均显着提高了在pH 7.4下研究的亚硝基脲的降解速率。碳酸氢钠似乎是观察到的降解速率增加的原因,因为它提供了除莱博维茨的L-15培养基(基于磷酸盐缓冲液)以外的所有培养基的主要缓冲能力。培养基中的其他成分,例如氨基酸,维生素和无机盐,或缓冲液的离子强度,对亚硝基脲的降解速率没有任何重大影响。这些结果表明,在不同细胞培养物中研究亚硝基脲的抗肿瘤作用时,应避免使用含碳酸缓冲液的培养基。

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