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Yayoi Yoshitomi 《Tetrahedron》2008,64(51):11568-11579
The martinelline chiral core 3 and its diastereomer were synthesized by using the asymmetric tandem Michael-aldol reaction as the key step from 4-methoxycarbonylanthranilaldehyde and the α,β-unsaturated aldehyde.  相似文献   
2.
Osamu Hara 《Tetrahedron》2004,60(42):9381-9390
The pyrrolo[3,2-c]quinoline consisting of a core structure of martinellines, the first naturally occurring heterocycle, was prepared through silicon-tether ring-closing metathesis reaction and intramolecular allylic amination as key steps.  相似文献   
3.
A Povarov reaction, between an aromatic imine derived from cinnamaldehyde and a cyclic enamide, was employed to rapidly construct the tricyclic core of the alkaloids martinelline and martinellic acid. The cycloaddition was completely regioselective though the exo/endo selectivity was poor. The diastereoisomers were readily separated by flash chromatography and the relative stereochemistry of the exo-isomer confirmed by single crystal X-ray crystallography. This intermediate was converted to the central core of the aforementioned alkaloids in five additional synthetic operations.  相似文献   
4.
Okiko Miyata 《Tetrahedron》2007,63(40):10092-10117
Radical addition-cyclization-elimination (RACE) reaction of oxime ether carrying unsaturated ester provides a novel method for the construction of pyrroloquinoline. Treatment of oxime ethers with Bu3SnH and AIBN gave N-norpyrroloquinoline as a major product, which was also obtained by the radical reaction of the corresponding hydrazone and imine. The radical reaction of aldehyde and ketone carrying unsaturated ester proceeded stereoselectively to give cis-furoquinolines and cis-hydroxyesters. The RACE reactions by using each of Bu3SnNMe2, Bu3SnD, and/or D2O were also examined in order to propose a reaction pathway to N-norpyrroloquinoline. Furthermore, the synthetic utility of RACE reaction is demonstrated by preparation of a key intermediate for the synthesis of (±)-martinelline.  相似文献   
5.
A formal synthesis of martinelline has been accomplished via two types of radical reactions as the key steps. These are the radical addition-cyclization-elimination of an oxime ether carrying an unsaturated ester and a C-C bond formation through a radical 1,5-hydrogen atom translocation.  相似文献   
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