Эротические рассказы

Secondary Metabolites of Medicinal Plants. Bharat SinghЧитать онлайн книгу.

Secondary Metabolites of Medicinal Plants - Bharat Singh


Скачать книгу
M.S. (2003). Evaluation of the radioprotective effect of Aegle marmelos (L.) Correa in cultured human peripheral blood lymphocytes exposed to different doses of gamma-radiation: a micronucleus study. Mutagenesis 18: 387–393.

      25 Jain, N.K. (1977). Antifungal activity of essential oil of Aegle marmelos Correa (Rutaceae). Indian Drugs Pharm. Ind. 12: 55.

      26 Joshi, C.G. and Magar, N.G. (1952). Antibiotic activity of some Indian medicinal plants. J. Sci. Ind. Res. 11: 261–266.

      27 Kamalakkanan, N. and Prince, P.S. (2005). Antihyperlipidaemic effect of Aegle marmelos fruit extract in streptozotocin-induced diabetes in rats. J. Sci. Food Agric. 85: 569–578.

      28 Kamalakkanan, N., Rajadurai, M., and Prince, P.S. (2003). Effect of Aegle marmelos fruits on normal and streptozotocin-diabetic Wistar rats. J. Med. Food 6: 93–99.

      29 Kumar, V., Ahmed, D., Verma, A. et al. (2013). Umbelliferone β-d-galactopyranoside from Aegle marmelos (L.) corr. an ethnomedicinal plant with antidiabetic, antihyperlipidemic and antioxidative activity. BMC Complement. Altern. Med. 13: 273.

      30 Kumar, S., Bodla, R.B., and Bansal, H. (2016). Antioxidant activity of leaf extract of Aegle marmelos Correa ex Roxb. Pharemacogn. J. 8: 447–450.

      31 Lampronti, I., Matello, D., Bianchi, N. et al. (2003). In vitro antiproliferate effects on human tumour cell lines of extract from the Bangladeshi medicinal plant Aegle marmelos Correa. Phytomedicine 10: 300–308.

      32 Maity, P., Hansda, D., Bandyopadhyay, U., and Mishra, D.K. (2009). Biological activities of crude extracts and chemical constituents of Bael, Aegle marmelos (L.) Corr. Indian J. Exp. Biol. 47: 849–861.

      33 Manandhar, M.D., Shoeb, A., Kapil, R.S., and Popli, S.P. (1978). New alkaloids from Aegle marmelos. Phytochemistry 17: 1814–1815.

      34 Mishra, P., Pal, N.L., Guru, P.Y. et al. (1991). Antimalarial activity of traditional plants against erythrocytic stages of Plasmodium berghei. Int. J. Pharmacogn. 19: 29–35.

      35 Mohammed, M.M.D., Ibrahim, N.A., El-Sakhawy, F.S. et al. (2016). Two new cytotoxic furoquinoline alkaloids isolated from Aegle marmelos (Linn.) Correa. Nat. Prod. Res. 30: 2559–2566.

      36 Murashige, T. and Skoog, F. (1962). A revised medium for rapid growth and bio assays with tobacco tissue cultures. Physiol. Plant. 15: 473–497.

      37 Nadkarni, A.K. (1986). Indian Materia Medica. Panvel, Mumbai: Dhootapapeshwar Prakashan Ltd.

      38 Nandedkar, P.H., Sonawane, P.A., and Chavan, V.K. (2017). In vitro antimicrobial activity of fruit extract of Aegle marmelos (Bael). Int. J. Pure Appl. Biosci. 5: 595–599.

      39 Neeraj, Bisht, V., and Johar, V. (2017). Bael (Aegle marmelos) extraordinary species of India: a review. Int. J. Curr. Microbiol. App. Sci. 6: 1870–1887.

      40 Nugroho, A.E., Agistia, D.D., Tegar, M., and Purnomo, H. (2013). Interaction of active compounds from Aegle marmelos CORREA with histamine-1 receptor. Bioinformation 9: 383–387.

      41 Ohashi, K., Watanabe, H., Ohi, K. et al. (1995). Two new 7-geranyloxycoumarins from the bark of Aegle marmelos, an Indonesian medicinal plant. Chem. Lett. 24: 881–882.

      42 Pandey, D.K., Asthana, A., Tripathi, N.N., and Dixit, S.N. (1981). Volatile plant products Vis-à-Vis potato pathogenic bacteria. Indian Perf. 10: 25–29.

      43 Pati, R. and Muthukumar, M. (2013). Genetic transformation of Bael (Aegle marmelos Corr.). In: Biotechnology of Neglected and Underutilized Crops (eds. S.M. Jain and S. Dutta Gupta), 343–365. Dordrecht: Springer Science+Business Media.

      44 Phuwapraisirisan, P., Puksasook, T., Jong-aramruang, J., and Kokpol, U. (2008). Phenylethyl cinnamides: a new series of α-glucosidase inhibitors from the leaves of Aegle marmelos. Bioorg. Med. Chem. Lett. 18: 4956–4958.

      45 Pitre, S. and Srivastava, S.K. (1987). Pharmacological, microbiological and phytochemical studies on the roots of Aegle marmelos. Fitoterapia 58: 197–199.

      46 Radchatawedchakoon, W., Bamrungsuk, S., Namwijit, S. et al. (2015). A new 3′-prenyloxypsoralen from the raw fruits of Aegle marmelos and its cytotoxic activity. Nat. Prod. Commun. 10: 1973–1975.

      47 Rahman, A., Said, H.M., and Ahmad, V.U. (1986). Pakistan Encyclopaedia Planta Medica: Chemistry, Pharmacology, Indigenous Medicine. Karachi, Pakistan: Hamdard Foundation Press.

      48 Raja, W.W. and Khan, S.H. (2017). Estimation of some phytoconstituents and evaluation of antioxidant activity in Aegle marmelos leaves extract. J. Pharmacogn. Phytochem. 6: 37–40.

      49 Riyanto, S., Sukari, M.A., Rahmani, M. et al. (2001). Alkaloids from Aegle marmelos (Rutaceae). Malays. J. Anal. Sci. 7: 463–465.

      50 Rusia, K. and Srivastva, S.K. (1988). Antimicrobial activity of some Indian medicinal plants. Indian J. Pharm. Sci. 50: 57–67.

      51 Sharma, B.R., Rattan, R.K., and Sharma, P. (1980). Constituents of leaves and fruits of Aegle marmelos. Indian J. Chem. 19: 162–164.

      52 Shinde, P.B. and Laddha, K.S. (2015). Simultaneous quantification of furanocoumarins from Aegle marmelos fruit pulp extract. J. Chromatogr. Sci. 53: 576–579.

      53 Shinde, P.B., Katekhaye, S.D., Mulik, M.B., and Laddha, K.S. (2014). Rapid simultaneous determination of marmelosin, umbelliferone and scopoletin from Aegle marmelos fruit by RP-HPLC. J. Food Sci. Technol. 51: 2251–2255.

      54 Shoeb, A., Kapil, R.S., and Popli, S.P. (1973). Coumarins and alkaloids of Aegle marmelos. Phyochemistry 12: 2071–2072.

      55 Soni, K. and Goswami, A. (2013). Identification, isolation and estimation of flavonoids and effect of growth regulators and salts on flavonoids in Aegle marmelos and Moringa oleifera in vitro. Int. J. Sci. Res. 4: 1767–1770.

      56 Srivastva, S.D., Srivastva, S., and Srivastva, S.K. (1996). A new insecticidal protolimonoid. Fitoterapia 67: 83–84.

      57 Sultana, S., Ali, M., and Jameel, M. (2018). Chemical constituents from the fruits of Aegle marmelos (L.) Corrêa and leaves of Clutia lanceolata Forssk and Ficus rumphii Blume. Eur. J. Biomed. Pharm. Sci. 5: 451–457.

      58 Vrushabendra, S.B.M., Nataraj, K.S., Jayaveera, K.N. et al. (2007). Anti-diarrheal potential of Aegle marmelos Corr. root bark extract in rats. Pharmacologyonline 3: 1–14.

      59 White, N.J. (2004). Antimalarial drug resistance. J. Clin. Invest. 113: 1084–1089.

      60 Yadav, N.P. and Chanotia, C.S. (2009). Phytochemical and pharmacological profile of leaves of A. marmelos Linn. Pharma. Rev. 10: 144–149.

      61 Yang, X.W., Hattori, M., and Namba, T. (1996). Two new coumarins from the roots of Aegle marmelos. J. Chin. Pharm. Sci. 5: 68–73.

      2.6.1 Ethnopharmacological Properties and Phytochemistry

      Ageratina pichinchensis (Kunth) R. M. King and H. Rob syn. Eupatorium adenophora Spreng (Fam. – Asteraceae) is used for the healing of skin wounds in folk medicine system of Mexico (Monroy and Castillo 2000), an antidiabetic, and a diminution in fibroblast proliferation and increases tissue regeneration (Romero-Cerecero et al. 2014, 2015). The hexane-ethylacetate extracts of A. pichinchensis were used for curing of diabetic foot ulcer rat models (Romero et al. 2013; Romero-Cerecero et al. 2014). The chloroform, methanol, petroleum ether, ethyl acetate, and aqueous extracts of Ageratina adenophora demonstrated antibacterial activity against Staphylococcus aureus, Klebsiella pneumoniae, and Escherichia coli (Harish Kumar et al. 2014). The hexane extract of A. pichinchensis possesses antifungal properties against Trichophyton rubrum (Romero-Cerecero et al. 2006, 2008, 2009) and antibacterial properties against S. aureus and Enterococcus faecalis (Torres et al. 2013), and acetone extract against Aedes aegypti and Culex quinquefasciatus larvae activities (Mohan and Ramaswamy 2007). The methanolic and aqueous extracts of Ageratina jahnii and A. pichinchensis showed antiparasitic effects against Lutzomyia migonei females and Leishmania transmitters in Latin America (Torres et al. 2017). The methanolic extract of


Скачать книгу
Яндекс.Метрика