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从奥氏亚历山大藻培养物中获取螺旋环肽的新方案,回收率高且纯度高。

New protocol to obtain spirolides from Alexandrium ostenfeldii cultures with high recovery and purity.

作者信息

Otero Paz, Alfonso Amparo, Alfonso Carmen, Vieytes Mercedes R, Louzao M Carmen, Botana Ana M, Botana Luis M

机构信息

Departamento de Farmacología, Facultad de Veterinaria, Universidad de Santiago de Compostela, 27002 Lugo, Spain.

出版信息

Biomed Chromatogr. 2010 Aug;24(8):878-86. doi: 10.1002/bmc.1380.

Abstract

The aim of this work was to develop a method to purify large amounts of spirolide toxins from cultures of Alexandrium ostenfeldii. The dinoflagellates grew in batches under controlled conditions of salinity, light and temperature. Analysis of the cultures demonstrated the existence of neurotoxins associated with paralytic shellfish poisoning toxins and two spirolides, 13-desmethyl spirolide C and 13,19-didesmethyl spirolide C. The protocol designed presents several stages of extraction, separation between spirolides and paralytic shellfish poisoning toxins, and cleanup in solid-phase extraction. Finally, the purification of spirolides was conducted by a preparative high-performance liquid chromatography system coupled to a mass spectrometer detector. The purity and the amount of both toxins in each step was monitored by analytical liquid chromatographic-mass spectrometry. Large amounts of 13-desMeC, 97% pure, and 13,19-didesMeC, 99% pure, were obtained. A novel and efficient method to separate and purify spirolide toxins from large amounts of phytoplankton is provided. The protocol proposed shows, for the first time, a complete and detailed methodology to separate and purify spirolide toxins with high purity, recovery, repeatability and stability.

摘要

这项工作的目的是开发一种从奥氏亚历山大藻培养物中纯化大量螺旋环肽毒素的方法。这些甲藻在盐度、光照和温度可控的条件下分批培养。对培养物的分析表明存在与麻痹性贝类中毒毒素相关的神经毒素以及两种螺旋环肽,即13-去甲基螺旋环肽C和13,19-二去甲基螺旋环肽C。所设计的方案包括几个提取阶段、螺旋环肽与麻痹性贝类中毒毒素之间的分离以及固相萃取中的净化步骤。最后,通过与质谱检测器联用的制备型高效液相色谱系统对螺旋环肽进行纯化。每个步骤中两种毒素的纯度和含量通过分析型液相色谱-质谱法进行监测。获得了大量纯度为97%的13-去甲基螺旋环肽C和纯度为99%的13,19-二去甲基螺旋环肽C。提供了一种从大量浮游植物中分离和纯化螺旋环肽毒素的新颖且高效方法。所提出的方案首次展示了一种完整且详细的方法,可用于以高纯度、回收率、重复性和稳定性分离和纯化螺旋环肽毒素。

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