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KMID : 1098420220300030195
Korean Journal of Medicinal Crop Science
2022 Volume.30 No. 3 p.195 ~ p.203
Physicochemical Properties of Extracts from Different Parts of Camellia sinensis
Im Sang-Hwi

Kim Ju-Sung
Abstract
Background: There are various physiologically active substances in Camellia sinensis leaves, and much research has been conducted on it, however, the properties of other parts such as branch, flower, seed, and root are still unknown. Therefore, in this study, we checked the physicochemical properties of each part of C. sinensis.

Methods and Results: In this study, we prepared a 70% ethyl alcohol extract of each part of C.
sinensis and determined their yield, total polyphenol and total flavonoid contents, antioxidant activ?ity, components [using high performance liquid chromatography (HPLC)], and ¥á-glucosidase inhibitory activity. The yield was highest in the flower extract, and the total polyphenol content and antioxidant activity tended to be high in the order of leaf, root, branch, flower, and seed. Analysis of the catechin compounds using HPLC, confirmed that epigallocatechin (EGC) and epigallocate?chin gallate (EGCG) were mostly present in the leaf, but epicatechin (EC), gallocatechin gallate (GCG), and gallocatechin (GC) were present in varying concentrations in each part. The inhibitory activity of ¥á-glucosidase was higher than that of acarbose, a hypoglycemic agent, in all parts except the seed, which showed no activity. Furthermore, significantly higher ¥á-glucosidase inhibitory activity was confirmed in the root.

Conclusions: Apart from the leaves, which have been widely used and studied in the industry, the C. sinensis root and brances showed high activity. In particular, the ¥á-glucosidase inhibitory activ?ity was very high, confirming the possibility of using the roots and brances discarded by the tea leaf industry as an antidiabetic material.
KEYWORD
Camellia sinensis, Antioxidant, Flavonoid, ¥á-Glucosidase, High Performance Liquid Chromatography, Polyphenol
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