Chemical Fingerprinting Profile and Targeted Quantitative Analysis of Phenolic Compounds from Rooibos Tea (Aspalathus linearis) and Dietary Supplements Using …

OI Fantoukh, YH Wang, A Parveen, MF Hawwal, Z Ali… - Separations, 2022 - mdpi.com
OI Fantoukh, YH Wang, A Parveen, MF Hawwal, Z Ali, GA Al-Hamoud, AG Chittiboyina
Separations, 2022mdpi.com
Aspalathus linearis (Burm. f.) R. Dahlgren, commonly known as rooibos tea, was consumed
traditionally by the indigenous South African inhabitants as an herbal remedy. Beside
antioxidant properties, it displays antiallergic, antispasmodic, and hypoglycemic activities.
An ultra-high-performance liquid chromatography method coupled with photodiode array
and mass spectrometry detectors were developed for the determination of 14 phenolic
constituents from leaves and stems of A. linearis. The efficient separation was performed …
Aspalathus linearis (Burm.f.) R. Dahlgren, commonly known as rooibos tea, was consumed traditionally by the indigenous South African inhabitants as an herbal remedy. Beside antioxidant properties, it displays antiallergic, antispasmodic, and hypoglycemic activities. An ultra-high-performance liquid chromatography method coupled with photodiode array and mass spectrometry detectors were developed for the determination of 14 phenolic constituents from leaves and stems of A. linearis. The efficient separation was performed within 30 min at a temperature of 30 °C by using C-18 column as the stationary phase and water/acetonitrile with 0.05% formic acid as the mobile phase. Method validation for linearity, repeatability, limits of detection, and limits of quantification was achieved. The limits of detection from 0.2–1 μg/mL were reported for the standard compounds. Their total content varied substantially (1.50–9.85 mg/100 mg sample) in 21 dietary supplements. The presence of regioisomers and diastereomers which co-elute on a variety of stationary phases make separation for quantification purposes challenging. This method was found to be efficient in providing low retention times and excellent resolution for this type of phytochemicals. The established method is suitable for chemical fingerprint analysis of A. linearis and cost-effective for quality control of rooibos tea products.
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