- Adams R.P. 2004. Juniperus deltoides, a new species, and nomenclatural notes on Juniperus polycarpos and J. turcomanica (Cupressaceae). Phytologia, 86(2):49-53.
- Ahani H., Jalilvand H., Hosseini Nasr S.M., Soltani Kouhbanani H., Ghazi M.R., Mohammadzadeh H. 2013. Reproduction of juniper (Juniperus polycarpos) in Khorasan Razavi, Iran. Forest Science and Practice, 15(3):231-237.
- Al Groshi A., Jasim H.A., Evans A.R., Ismail F.M., Dempster N.M., Nahar L., Sarker S.D. 2019. Growth inhibitory activity of biflavonoids and diterpenoids from the leaves of the Libyan Juniperus phoenicea against human cancer cells. Phytotherapy Research, 33(8):2075-2082.
- Ben Mrid R., Bouchmaa N., Bouargalne Y., Ramdan B., Karrouchi K., Kabach I., El Karbane M., Idir A., Zyad A., Nhiri M. 2019. Phytochemical characterization, antioxidant and in vitro cytotoxic activity evaluation of Juniperus oxycedrus Subsp. oxycedrus needles and berries. Molecules, 24(3):502-513
- Benzie I.F., Strain J.J. 1996. The ferric reducing ability of plasma (FRAP) as a measure of “antioxidant power”: the FRAP assay. Analytical Biochemistry, 239(1):70-76.
- Chang C.C., Yang M.H., Wen H.M., Chern J.C. 2002. Estimation of total flavonoid content in propolis by two complementary colorimetric methods. Journal of Food and Drug Analysis, 10(3):178-182.
- Chavan J.J., Gaikwad N.B., Umdale S.D., Kshirsagar P.R., Bhat K.V., Yadav S.R. 2014. Efficiency of direct and indirect shoot organogenesis, molecular profiling, secondary metabolite production and antioxidant activity of micropropagated Ceropegia santapaui. Plant Growth Regulation, 72(1):1-15.
- Coruzzi G., Bush D.R. 2001. Nitrogen and carbon nutrient and metabolite signaling in plants. Plant Physiology, 125(1):61-64.
- Cowin P., Rowlands T.M., Hatsell S.J. 2005. Cadherins and catenins in breast cancer. Current Opinion in Cell Biology, 17(5):499-508.
- Crozier A., Lean M.E., McDonald M.S., Black C. 1997. Quantitative analysis of the flavonoid content of commercial tomatoes, onions, lettuce, and celery. Journal of Agricultural and Food Chemistry, 45(3):590-595.
- Darvishi M., Esmaeili S., Dehghan-Nayeri N., Mashati P., Gharehbaghian A. 2017. Anticancer effect and enhancement of therapeutic potential of Vincristine by extract from aerial parts of Juniperus excelsa on pre-B acute lymphoblastic leukemia cell lines. Journal of Applied Biomedicine, 15(3):219-226.
- Dörnenburg H., Knorr D. 1995. Strategies for the improvement of secondary metabolite production in plant cell cultures. Enzyme and Microbial Technology, 17(8):674-684.
- Emami S.A., Abedindo B.F., Hassanzadeh-Khayyat M. 2011. Antioxidant activity of the essential oils of different parts of Juniperus excelsa M. Bieb. subsp. excelsa and J. excelsa M. Bieb. subsp. polycarpos (K. Koch) Takhtajan (Cupressaceae). Iranian Journal of Pharmaceutical Research, 10(4):799-808.
- Figueiredo A.C., Barroso J.G., Pedro L.G., Scheffer J.J. 2008. Factors affecting secondary metabolite production in plants: volatile components and essential oils. Flavour and Fragrance Journal, 23(4):213-226.
- Gurib-Fakim A. 2006. Medicinal plants: traditions of yesterday and drugs of tomorrow. Molecular Aspects of Medicine, 27(1):1-93.
- Jalill R.D.A. 2018. Chemical analysis and anticancer effects of Juniperus polycarpos and oak gall plants extracts. Research Journal of Pharmacy and Technology, 11(6):2372-2387.
- Javanshir A., Karimi E., Homayouni T.M. 2020. Investigation of Antioxidant and Antibacterial Potential of Ricinus communis L. Nano-emulsion. Jundishapur Scientific Medical Journal, 19(1):1-9.
- Karimi E., Oskoueian E., Hendra R., Jaafar H.Z. 2010. Evaluation of Crocus sativus L. stigma phenolic and flavonoid compounds and its antioxidant activity. Molecules, 15(9):6244-6256.
- Karimi N., Behbahani M., Dini G., Razmjou A. 2018. Enhancing the secondary metabolite and anticancer activity of Echinacea purpurea callus extracts by treatment with biosynthesized ZnO nanoparticles. Advances in Natural Sciences: Nanoscience and Nanotechnology, 9(4):045009.
- Le D.H., Commandeur U., Steinmetz N.F. 2019. Presentation and delivery of tumor necrosis factor-related apoptosis-inducing ligand via elongated plant viral nanoparticle enhances antitumor efficacy. ACS Nano, 13(2):2501-2510.
- Maurya A.K., Devi R., Kumar A., Koundal R., Thakur S., Sharma A., Kumar, D., Kumar R., Padwad Y.S., Chand G., Singh B. 2018. Chemical composition, cytotoxic and antibacterial activities of essential oils of cultivated clones of Juniperus communis and wild Juniperus species. Chemistry and Biodiversity, 15(9):180-188.
- Moein M.R., Ghasemi Y., Moein S., Nejati M. 2010. Analysis of antimicrobial, antifungal and antioxidant activities of Juniperus excelsa M. B subsp. Polycarpos (K. Koch) Takhtajan essential oil. Pharmacognosy Research, 2(3):128-134
- Mousavi S.M., Montazeri A., Mohagheghi M.A., Jarrahi A.M., Harirchi I., Najafi M., Ebrahimi M. 2007. Breast cancer in Iran: an epidemiological review. The Breast Journal, 13(4):383-391.
- Petrovska B.B. 2012. Historical review of medicinal plants’ usage. Pharmacognosy Reviews, 6(11):1-7
- Van Wyk B.E., Wink M. 2018. Medicinal plants of the world. CABI. Second edition – Wallingford. pp: 28.
- Verpoorte R., Memelink J. 2002. Engineering secondary metabolite production in plants. Current Opinion in Biotechnology, 13(2):181-187.
- Verpoorte R., Kim H.K., Choi, Y.H. 2006. Plants as source for medicines: New perspectives. Frontis, 47(3):261-273.
- You B.J., Lee M.H., Tien N., Lee M.S., Hsieh H.C., Tseng L.H., Chung Y.L., Lee H.Z. 2013. A novel approach to enhancing ganoderic acid production by Ganoderma lucidum using apoptosis induction. PloS One, 8(1):e53616.
- You B.J., Tien N., Lee M.H., Bao B.Y., Wu Y.S., Hu T.C., Lee H.Z. 2017. Induction of apoptosis and ganoderic acid biosynthesis by cAMP signaling in Ganoderma lucidum. Scientific Reports, 7(1):1-13.
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