Cultured plant cells of Eucalyptus perriniana regioselectively hydroxylated (+)- and (-)-α-pinenes to the corresponding (+)- and (-)-verbenols. In addition, (+)-and (-)-verbenols were converted into mono-β-D-glucosides. On the other hand, (+)- and (-)-β-pinenes were transformed into (+)- and (-)-pinocarveol 3-O-β-D-glucosides via (+)- and (-)-pinocarveols.
IshiharaK, HamadaH, HirataT, NakajimaN., (2003) Biotransformation using plant cultured cells. Journal of Molecular Catalysis B: Enzymatic, 23, 145–170.
2.
HamadaH, FuchikamiY, JansingRL, KaminskyLS. (1993) Regioselective hydroxylation of warfarin by cell suspension cultures of Catharanthus roseus. Phytochemistry, 33, 599–600.
3.
HirataT, IkedaY, IzumiS, ShimodaK, HamadaH, KawamuraT., (1994) Introduction of oxygenated functional groups into 3-carene and 2-pinene by cultured cells. Phytochemistry, 37, 401–403.
4.
HamadaH, FuchikamiY, IkematsuY, HirataT, WilliamH, ScottAI. (1994) Hydroxylation of piperitone by cell suspension cultures of Catharanthus roseus. Phytochemistry, 37, 1037–1038.
5.
HamadaH, TanakaT, FuruyaT, TakahataHH., NemotoH. (2001) Hydroxylation of benzylic and allylic sites by plant cultured suspension cells, Tetrahedron Letters, 42, 909–911.
6.
KondoY, ShimodaK, MiyaharaK, HamadaH, HirokiH., (2006) Regioselective hydroxylation, reduction, and glycosylation of diphenyl compounds by cultured plant cells of Eucalyptus perriniana. Plant Biotechnology, 23, 291–296.
7.
MastelicJ, JerkovicI, VinkovicM, DzolicZ, Vikic-TopicD. (2004) Synthesis of selected naturally occurring glucosides of volatile compounds. Their chromatographic and spectroscopic properties. Croatica Chemica Acta, 77, 491–500.
8.
Lindmark-HenrikssonM, IsakssonD, SjodinK, HogbergHE, VanekT, ValterovaI., (2003) Transformation of α-pinene using Picea abies suspension culture. Journal of Natural Products, 66, 337–343.