A reversed-phase HPLC method was
developed to chromatographically “fingerprint” pine bark and
grape seed extracts and to identify oligomeric proanthocyanidin
monomers, dimers, and trimers. While several reversed-phase
HPLC methods (36, 37, 40, 41) have been reported for grape
seed extract oligomeric proanthocyanidins, there was only one
reported pine bark extract method
A reversed-phase HPLC method wasdeveloped to chromatographically “fingerprint” pine bark andgrape seed extracts and to identify oligomeric proanthocyanidinmonomers, dimers, and trimers. While several reversed-phaseHPLC methods (36, 37, 40, 41) have been reported for grapeseed extract oligomeric proanthocyanidins, there was only onereported pine bark extract method
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A reversed-Phase HPLC method was
developed to Chromatographically "Fingerprint" Pine bark and
grape extracts and Seed to Identify oligomeric proanthocyanidin
monomers, dimers, and Trimers. While several reversed-Phase
HPLC methods (36, 37, 40, 41) have been reported for grape
Seed Extract oligomeric proanthocyanidins, there was only one
reported Extract Pine bark method.
การแปล กรุณารอสักครู่..

A reversed-phase HPLC method was
developed to chromatographically "fingerprint." pine bark and
grape seed extracts and to. Identify oligomeric proanthocyanidin
monomers dimers and,, trimers. While several reversed-phase
HPLC methods (,,, 36 37 40 41). Have been reported for grape
seed extract, oligomeric proanthocyanidins there was only one
reported pine bark extract method.
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