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      • SCOPUSKCI등재

        Allelopathic Effects of Artemisia lavandulaefolia

        Kil, B.S.,Han, D.M.,Lee, C.H.,Kim, Y.S.,Yun, K.Y.,Yoo, H.G. The Ecological Society of Korea 2000 Journal of Ecology and Environment Vol.23 No.2

        The allelopathic effects of Artemisia lavandulaefolia were studied using several test plants and microbes. Aqueous extracts and volatile compounds of A. lavandulaefolia inhibited seed germination, seedling and root growth of the test species such as Achyranthes japonica. Lactuca sativa, Artemisia princeps var. orientalis. Oenothera odorata, Plantago asiatica. Aster yomena, Elsholtzia ciliata, and Raphanus sativus var. hortensis for. acanthiformis. The root growth of test species was more affected than shoot growth by allelochemicals of A. lavandulaefolia. Essential oil of A. lavandulaefolia had antibacterial and antifungal effects. However, the antimicrobial activity of the essential oil was dependent upon the microbial species and concentrations. Callus growth of Oryza sativa, Brassica campestris subsp. napus var. pekinensis and Achyranthes japonica was sensitive by the essential oil of A. lavandulaefolia. Twenty three chemicals were identified from A. lavandulaefolia essential oil by gas chromatography. Primary allelochemicals among them were 1, 8-cineole, 1-$\alpha$-terpineol, $\alpha$-terpinene. camphor, 2-buten-1-ol and azulene. We concluded that aqueous extract and essential oil of A. lavandulaefolia were responsible for allelopathic effects.

      • KCI등재

        Extract of Artemisia lavandulaefolia Inhibits In Vitro Angiogenesis in Human Umbilical Vein Endothelial Cells

        이의연,Kyung-Suk Han,김영진 대한암예방학회 2014 Journal of cancer prevention Vol.19 No.4

        Angiogenesis is important processes for tumor growth and metastasis. Anti-angiogenesis target therapy has recently been known to be new anti-cancer therapeutic strategies. Natural products such as traditional medicine comprise a major source of angiogenesis inhibitors. Artemisia lavandulaefolia has been known to use in the traditional medical practices. However, its molecular mechanism on the tumor protection and therapy was not clearly elucidated. In this study, we investigated the possibility that extract of A. lavandulaefolia inhibits in vitro angiogenesis. Therefore, we examined the effect of extract of A. lavandulaefolia on the vascular network formation of humanumbilical vein endothelial cells (HUVECs). We found that the treatment of A. lavandulaefolia extract suppressed the tube formation ofHUVECs without any influence on the viability of HUVECs. In addition, extract of A. lavandulaefolia inhibited the migration and invasionof HUVECs. These results suggest that extract of A. lavandulaefolia could be act for an angiogenic inhibitor.

      • KCI등재

        Essential Oil and 1,8-Cineole from Artemisia lavandulaefolia Induces Apoptosis in KB Cells via Mitochondrial Stress and Caspase Activation

        Jeong-Dan Cha,Youn-Hwa Kim,Ji-Young Kim 한국식품과학회 2010 Food Science and Biotechnology Vol.19 No.1

        Artemisia lavandulaefolia has been utilized in traditional medicines for the treatment of several diseases. In this study, we attempted to determine whether the essential oil and 1,8-cineole of A. lavandulaefolia induce apoptosis in KB cells. The oil and 1,8-cineole induced the cell death of KB cells as evidenced by the increased cell population in the sub-G1 phase, the appearance of condensed and/or fragmented nuclei, and the generation of a cleaved PARP product. The treatment of the cells with the oil also induced changes in the mitochondrial level of Bcl-2 and Bax, thereby inducing the release of cytochrome c into the cytosol. Furthermore, the oil increased the phosphorylation of extracellular signal-regulated kinase (ERK), c-jun N-terminal kinase, and p38 MAPK, but 1,8-cineole activated pp38 and pJNK at the same concentrations. These findings show that the mitochondrial and MAPKs pathways might be involved in the oil-induced apoptosis,and may enhance our current understanding of the anticancer functions of the oil to a greater degree than 1,8-cineole.

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