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15-酮基-13,14-二氢前列地尔的化学不稳定性:检测可靠性低的原因

Chemical instability of 15-keto-13,14-dihydro-PGE2: the reason for low assay reliability.

作者信息

Granström E, Hamberg M, Hansson G, Kindahl H

出版信息

Prostaglandins. 1980 Jun;19(6):933-57. doi: 10.1016/0090-6980(80)90127-6.

Abstract

The spontaneous degradation of 15-keto-13,14-dihydro-PGE2 was studied under various conditions. In aqueous media, dehydration rapidly occurred, particularly at high or very low pH. The acid catalyzed dehydration product was identified as 15-keto-13,14-dihydro-PGA2. This compound was also formed at alkaline pH, however, at higher pH a bicyclic compound, 11-deoxy-13,14-dihydro-15-keto-11,16-cyclo-PGE2, was formed in addition (cf. Fig. 1). The amounts of the latter compound increased with time and with increasing pH. In samples containing albumin, 15-keto-dihydro-PGE2 was degraded even more rapidly than in buffer of the same pH. In addition to the formation of the dehydration products, a considerable part of the metabolite was bound to albumin to yield water soluble adducts. A similar binding occurred to a low molecular weight fraction of plasma. The compound that was bound was 15-keto-dihydro-PGA2, whereas both 15-keto-dihydro-PGE2 and the bicyclic product were relatively inert in this respect. Due to its chemical stability, the bicyclic degradation product, 11-deoxy-13,14-dihydro-15-keto-11,16-cyclo-PGE2, is suggested as a suitable target for measurements instead of the labile parent compound, 15-keto-dihydro-PGE2, or the reactive dehydration product, 15-keto-dihydro-PGA2.

摘要

在各种条件下研究了15-酮-13,14-二氢-PGE2的自发降解情况。在水性介质中,脱水迅速发生,特别是在高pH或非常低的pH值下。酸催化的脱水产物被鉴定为15-酮-13,14-二氢-PGA2。该化合物在碱性pH下也会形成,然而,在较高pH值下,还会形成一种双环化合物,即11-脱氧-13,14-二氢-15-酮-11,16-环-PGE2(参见图1)。后一种化合物的量随时间和pH值的增加而增加。在含有白蛋白的样品中,15-酮-二氢-PGE2的降解甚至比在相同pH的缓冲液中更快。除了形成脱水产物外,相当一部分代谢物与白蛋白结合,产生水溶性加合物。与血浆的低分子量部分也发生了类似的结合。结合的化合物是15-酮-二氢-PGA2,而15-酮-二氢-PGE2和双环产物在这方面相对惰性。由于其化学稳定性,双环降解产物11-脱氧-13,14-二氢-15-酮-11,16-环-PGE2被建议作为合适的测量目标,而不是不稳定的母体化合物15-酮-二氢-PGE2或活性脱水产物15-酮-二氢-PGA2。

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