Paradowska Katarzyna, Wolniak Michał, Pisklak Maciej, Gliński Jan A, Davey Matthew H, Wawer Iwona
Faculty of Pharmacy, Medical University of Warsaw, 02-097 Warsaw, Banacha 1, Poland.
Solid State Nucl Magn Reson. 2008 Nov;34(4):202-9. doi: 10.1016/j.ssnmr.2008.10.002. Epub 2008 Oct 22.
Oxindole alkaloids, isolated from the bark of Uncaria tomentosa [Willd. ex Schult.] Rubiaceae, are considered to be responsible for the biological activity of this herb. Five pentacyclic and two tetracyclic alkaloids were studied by solid-state NMR and theoretical GIAO DFT methods. The (13)C and (15)N CPMAS NMR spectra were recorded for mitraphylline, isomitraphylline, pteropodine (uncarine C), isopteropodine (uncarine E), speciophylline (uncarine D), rhynchophylline and isorhynchophylline. Theoretical GIAO DFT calculations of shielding constants provide arguments for identification of asymmetric centers and proper assignment of NMR spectra. These alkaloids are 7R/7S and 20R/20S stereoisomeric pairs. Based on the (13)C CP MAS chemical shifts the 7S alkaloids (delta C3 70-71ppm) can be easily and conveniently distinguished from 7R (deltaC3 74.5-74.9ppm), also 20R (deltaC20 41.3-41.7ppm) from the 20S (deltaC20 36.3-38.3ppm). The epiallo-type isomer (3R, 20S) of speciophylline is characterized by a larger (15)N MAS chemical shift of N4 (64.6ppm) than the allo-type (3S, 20S) of isopteropodine (deltaN4 53.3ppm). (15)N MAS chemical shifts of N1-H in pentacyclic alkaloids are within 131.9-140.4ppm.
从茜草科植物毛钩藤(Uncaria tomentosa [Willd. ex Schult.])树皮中分离出的氧化吲哚生物碱被认为是该草药具有生物活性的原因。采用固态核磁共振(NMR)和理论GIAO DFT方法对5种五环生物碱和2种四环生物碱进行了研究。记录了帽柱木碱、异帽柱木碱、翅果定碱(钩吻碱C)、异翅果定碱(钩吻碱E)、异叶叶碱(钩吻碱D)、钩藤碱和异钩藤碱的¹³C和¹⁵N交叉极化魔角旋转(CPMAS)NMR谱。屏蔽常数的理论GIAO DFT计算为不对称中心的识别和NMR谱的正确归属提供了依据。这些生物碱是7R/7S和20R/20S立体异构对。根据¹³C CP MAS化学位移,7S生物碱(δC3 70 - 71ppm)可以很容易且方便地与7R(δC3 74.5 - 74.9ppm)区分开来,同样,20R(δC20 41.3 - 41.7ppm)也能与20S(δC20 36.3 - 38.3ppm)区分开。异叶叶碱的表别allo型异构体(3R,20S)的特征是N4的¹⁵N MAS化学位移(64.6ppm)比异翅果定碱的allo型(3S,20S)(δN4 53.3ppm)更大。五环生物碱中N1 - H的¹⁵N MAS化学位移在131.9 - 140.4ppm范围内。