Grupo de Química Ecológica, Departamento de Química, Facultad de Ciencias, Universidad de Los Andes, Mérida 5101, Venezuela.
Phytochem Anal. 2013 Jul-Aug;24(4):290-5. doi: 10.1002/pca.2409. Epub 2012 Nov 20.
Bracken (Pteridium spp) illudane glycosidess are labile biologically active terpenoids that undergo decomposition in mild alkali or acid, heat and enzymatic reactions. Hypothetically, quantitation of these weakly chromophoric carcinogens may be challenged by plant sample preparation procedures that may alter the yield of isolates.
To study the influence of common plant sample pre-treatments on the recovery of Pteridium caudatum illudane glycoside carcinogens, ptaquiloside (1a), caudatoside (1c) and ptaquiloside Z (1d), and associated pterosins A, B and Z (2a, b, c) using HPLC-DAD.
Bracken fronds were divided in equal left/right sections. One section was subjected to high vacuum desiccation (VD) and the other to freeze-drying (FD), air drying at room temperature (AD) for 7 days, air drying at 70 °C for 72 h (HD), or no treatment (fresh frond, FF). Quantitation was achieved by brief hot-water extraction, base-acid transformation of 1a, 1c and 1d to 2a, b, c and HPLC-DAD analysis against standards.
Substantial differences in extraction yields were found for all illudane glycosides in the order FF > FD ≈ VD > AD > HD. Illudane instability to HD was 1c > 1d > 1a. Significant losses also were recorded in yields of Pterosins A, B and Z.
Glycoside extraction suffers from substantial yield loss of all illudane glycosides and indigenous pterosins in all sample pre-treatments studied relative to fresh frond material.
水龙骨科(水龙骨属)的贝壳杉烯型糖苷是不稳定的生物活性萜类化合物,在弱碱或弱酸、热和酶反应中会分解。理论上,植物样品制备过程可能会改变分离物的产量,从而对这些弱显色致癌物质的定量产生影响。
研究常见植物样品预处理对采自水龙骨( Pteridium caudatum )的贝壳杉烯型糖苷致癌物质萇酮糖苷( 1a )、马尾杉苷( 1c )和萇酮糖苷 Z ( 1d ),以及相关的贝壳杉烯 A 、 B 和 Z ( 2a 、 b 、 c )回收率的影响,采用 HPLC-DAD 法进行分析。
将水龙骨叶片均分为左右两部分。一部分进行高真空干燥( VD ),另一部分进行冷冻干燥( FD )、室温空气干燥( AD ) 7 天、 72 小时 70°C 空气干燥( HD )或不处理(新鲜叶片, FF )。通过短时间热水提取,将 1a 、 1c 和 1d 在碱-酸条件下转化为 2a 、 b 、 c ,并与标准品进行 HPLC-DAD 分析,从而实现定量。
所有贝壳杉烯糖苷的提取率均存在显著差异,按顺序为 FF > FD ~ VD > AD > HD 。 1c > 1d > 1a 对 HD 不稳定。 Pterosins A 、 B 和 Z 的产量也有明显下降。
与新鲜叶片相比,在所研究的所有样品预处理中,所有贝壳杉烯糖苷和内源性贝壳杉烯的糖苷提取都存在严重的产量损失。