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J Biomed Opt ; 18(4): 046009, 2013 Apr.
Article in English | MEDLINE | ID: mdl-23588807

ABSTRACT

Nature has developed many pathways to produce medicinal products of extraordinary potency and specificity with significantly higher efficiencies than current synthetic methods can achieve. Identification of these mechanisms and their precise locations within plants could substantially increase the yield of a number of natural pharmaceutics. We report label-free imaging of Δ9-tetrahydrocannabinolic acid (THCa) in Cannabis sativa L. using coherent anti-Stokes Raman scattering microscopy. In line with previous observations we find high concentrations of THCa in pistillate flowering bodies and relatively low amounts within flowering bracts. Surprisingly, we find differences in the local morphologies of the THCa-containing bodies: organelles within bracts are large, diffuse, and spheroidal, whereas in pistillate flowers they are generally compact, dense, and have heterogeneous structures. We have also identified two distinct vibrational signatures associated with THCa, both in pure crystalline form and within Cannabis plants; at present the exact natures of these spectra remain an open question.


Subject(s)
Cannabis/chemistry , Dronabinol/chemistry , Spectrum Analysis, Raman/methods , Dronabinol/analysis , Flowers/chemistry , Nonlinear Dynamics , Plant Leaves/chemistry , Signal Processing, Computer-Assisted
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