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Pharm Sci
. 2018;24(4): 332-339. doi:
10.15171/PS.2018.47
Research Article
Cytotoxic Flavonoids from the Aerial Parts of Stachys lavandulifolia Vahl
Mohammad-Reza Delnavazi
1
, Parisa Saiyarsarai
1
, Saeedeh Jafari-Nodooshan
2
, Mahnaz Khanavi
1
, Saeed Tavakoli
1
, Hormoz Hadavinia
1
, Narguess Yassa
1
*
Cited by CrossRef: 12
1- Mohammadi M, Kharazian N. Untargeted metabolomics study and identification of potential biomarkers in the six sections of the genus Stachys L. (Lamiaceae) using HPLC‐MQ‐API‐MS/MS.
Phytochemical Analysis
. 2022;33(6):915
[Crossref]
2- Kargin Solmaz F, Isitez N, Sarikurkcu C. Ultrasound-assisted extraction of Stachys chasmosericea : phytochemical profile, antioxidant potentials via RACI analysis, and enzyme inhibitory activities .
Preparative Biochemistry & Biotechnology
. 2025;:1
[Crossref]
3- Vali A, Soleimani Badie M, Dastan D, Moradkhani S. Cytotoxicity of the Extracts of Lamiaceae Plant Species against a Breast Cancer Cell Line.
IJT
. 2023;17(4):35
[Crossref]
4- Nouasri A, Miri Y, Alouache A, Benabdalah A, Toumi M. Algerian’s Stachys ocymastrum L., phytochemical analysis, phenolic compound dosage, and assessment of antimicrobial activity.
Vegetos
. 2025;
[Crossref]
5- Pashova S, Karcheva-Bahchevanska D, Ivanov K, Ivanova S. Genus Stachys—Phytochemistry, Traditional Medicinal Uses, and Future Perspectives.
Molecules
. 2024;29(22):5345
[Crossref]
6- Yıldırım A, Şen A, Göktaş B, Uslu H, Özakpınar Ö, Bitiş L. Antiproliferative Activity and Molecular Docking Analyses of Sesquiterpene Lactones Obtained from Activity-Directed Isolation of Centaurea saligna (K.Koch) Wagenitz in Neoplastic Cells.
Mol Biotechnol
. 2024;
[Crossref]
7- Perrino E, Wagensommer R, Mezzapesa G, Trani A. Stachys italica Mill.: synecology, functional compounds and potential use of an Italian endemic taxon.
Planta
. 2024;260(6)
[Crossref]
8- Erdenetsogt U, Nadmid S, Paulus C, Chanagsuren G, Dolgor E, Gotov C, Dahse H, Luzhetskyy A, Dagvadorj E. Bioactive flavonoids from plant extract of Pyrethrum pulchrum and its acute toxicity.
Natural Product Research
. 2021;35(24):5960
[Crossref]
9- Nerdy N, Lestari P, Sinaga J, Ginting S, Zebua N, Mierza V, Bakri T. Brine Shrimp (Artemia salina Leach.) Lethality Test of Ethanolic Extract from Green Betel (Piper betle Linn.) and Red Betel (Piper crocatum Ruiz and Pav.) through the Soxhletation Method for Cytotoxicity Test.
Open Access Maced J Med Sci
. 2021;9(A):407
[Crossref]
10- Kharazian N, Dehkordi F, Lorigooini Z. Untargeted metabolite profiling: A comprehensive study using data analysis workflow in Salvia L. species (Lamiaceae).
South African Journal of Botany
. 2024;165:101
[Crossref]
11- Moghaddam M, Tehranipour M, Molavi F. Antitumor Activity of Biogenic Synthetized Zinc Oxide Nanoparticles Mediated Stachys Lavandulifolia: In-vivo Study Model.
BioNanoSci
. 2024;14(5):5035
[Crossref]
12- Dastan D, Dobie C, Zadali R, Pourrashid M, Skropeta D, Miran M. Botanical description, phytochemical constituents, ethnobotany, traditional medicinal use, and pharmacological activities of Stachys lavandulifolia Vahl .
Natural Product Research
. 2024;38(24):4479
[Crossref]
13- Akbari-Ahangar A, Delnavazi M. Flavone Glycosides from the Aerial Parts of Stachys lavandulifolia Vahl.
Pharm Sci
. 2020;26(2):198
[Crossref]
14- Tomou E, Barda C, Skaltsa H. Genus Stachys: A Review of Traditional Uses, Phytochemistry and Bioactivity.
Medicines
. 2020;7(10):63
[Crossref]
15- Şöhretoğlu D, Barut B, Sari S, Özel A, Arroo R. In vitro and in silico assessment of DNA interaction, topoisomerase I and II inhibition properties of chrysosplenetin.
International Journal of Biological Macromolecules
. 2020;163:1053
[Crossref]
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