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首页> 外文期刊>Molecular Nutrition and Food Research >Limited stability in cell culture medium and hydrogen peroxide formation affect the growth inhibitory properties of delphinidin and its degradation product gallic acid
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Limited stability in cell culture medium and hydrogen peroxide formation affect the growth inhibitory properties of delphinidin and its degradation product gallic acid

机译:细胞培养基中有限的稳定性和过氧化氢的形成会影响飞燕草素及其降解产物没食子酸的生长抑制特性

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摘要

In the present study we investigated the stability of anthocyanidins under cell culture conditions and addressed the question whether degradation products might contribute to the cellular effects assigned to the parent compounds. Substantial degradation was found already after 30 min, measured by HPLC/DAD. However, the decrease of detectable anthocyanidins exceeded by far the formation of the respective phenolic acids. From the formed phenolic acids only gallic acid (GA) exhibited growth inhibitory properties. However, also GA was found to be degraded rapidly. Furthermore, the incubation with delphinidin (DEL) or GA resulted in a substantial formation of hydrogen peroxide. The suppression of hydrogen peroxide accumulation by catalase modified significantly the growth inhibitory effects of DEL and GA, indicating that hydrogen peroxide formation might generate experimental artefacts. In summary, the results show that the phenolic acids formed by the degradation of cyanidin (CY), pelargonidin (PG), peonidin (PN) and malvidin (MV) do not contribute to the growth inhibitory effect of the parent compound. The degradation of DEL generates a phenolic acid with substantial growth inhibitory properties (GA). However, taken into account the small proportion of generated GA and its lacking stability, the contribution of GA to the growth inhibitory properties of DEL might be limited.
机译:在本研究中,我们研究了花色素苷在细胞培养条件下的稳定性,并解决了降解产物是否可能对归属于母体化合物的细胞效应产生影响的问题。通过HPLC / DAD测量,在30分钟后已经发现大量降解。然而,可检测到的花青素的减少远远超过了相应酚酸的形成。从形成的酚酸中,仅没食子酸(GA)表现出生长抑制特性。然而,还发现GA迅速降解。此外,与delphinidin(DEL)或GA的孵育导致过氧化氢的大量形成。过氧化氢酶对过氧化氢积累的抑制显着修饰了DEL和GA的生长抑制作用,表明过氧化氢的形成可能会产生实验伪像。总之,结果表明,由花青素(CY),pelargonidin(PG),peonidin(PN)和malvidin(MV)降解形成的酚酸无助于母体化合物的生长抑制作用。 DEL的降解产生具有实质性生长抑制特性(GA)的酚酸。但是,考虑到生成的GA的比例很小且缺乏稳定性,GA对DEL的生长抑制特性的贡献可能会受到限制。

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