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Research Article

Cytotoxic Activity of Diterpenoids Isolated from Salvia hypargeia

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Pages 148-151 | Published online: 29 Sep 2008

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Yusuf Ozay, Sevda Guzel, Ebru Gokalp Ozkorkmaz, Meltem Kumas, Cosar Uzun, Zuhal Yıldırım, Ayla Celik, Yusuf Camlıca, Onder Yumrutas, Gizem Guler, Nurten Erdal, Bahar Tasdelen, Havva Didem Celikcan & Ahmet Kahraman. (2021) Biochemical, Histopathologic, and Genotoxic Effects of Ethanol Extract of Salvia hypargeia (Fisch. & Mey.) on Incisional and Excisional Wounded Diabetic Rats. Journal of Investigative Surgery 34:1, pages 7-19.
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Perihan Koysu, Nusret Genc, Mahfuz Elmastas, Huseyin Aksit & Ramazan Erenler. (2019) Isolation, identification of secondary metabolites from Salvia absconditiflora and evaluation of their antioxidative properties. Natural Product Research 33:24, pages 3592-3595.
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Yuanyuan Jiang, Li Zhang & HP Vasantha Rupasinghe. (2016) The anticancer properties of phytochemical extracts from Salvia plants. Botanics: Targets and Therapy 6, pages 25-44.
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G. Topcu, Z. Turkmen, J. K. Schilling, D. G. I. Kingston, J. M. Pezzuto & A. Ulubelen. (2008) Cytotoxic Activity of Some Anatolian Salvia. Extracts and Isolated Abietane Diterpenoids. Pharmaceutical Biology 46:3, pages 180-184.
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R.B. Badisa, O. Tzakou, M. Couladis & E. Pilarinou. (2005) Cytotoxic Activities of Salvia. of the Labiatae Family. Pharmaceutical Biology 42:8, pages 640-645.
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Namik F. Mir-Babayev & Peter J. Houghton. (2002) Plants of the Republic of Azerbaijan with Potential Medicinal Applications. Part III. Pharmaceutical Biology 40:1, pages 16-22.
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G.P.P. Kamatou, N.P. Makunga, W.P.N. Ramogola & A.M. Viljoen. (2008) South African Salvia species: A review of biological activities and phytochemistry. Journal of Ethnopharmacology 119:3, pages 664-672.
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