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Anticancer activity of the ethanolic extract of Crateva nurvala bark against testosterone and MNU-induced prostate cancer in rats 被引量:1

Anticancer activity of the ethanolic extract of Crateva nurvala bark against testosterone and MNU-induced prostate cancer in rats
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摘要 AIM: In the present study the anticancer activity of the ethanolic extract of Crateva nurvala bark was evaluated against testosterone and N-methyl-N-nitrosourea (MNU)-induced prostate cancer in male Wistar rats. METHODS: Prostate cancer was induced in rats by the injection of testosterone for 3 d followed by injection of the chemical carcinogen MNU for 1 week. The prostate cancer-induced rats were treated with the ethanolic extract of C. nurvala bark, and testosterone injection was also continued through the experimental period of 4 months. Biochemical estimations including prostatic acid phosphatase, lipid peroxidation, enzymic antioxidants and non-enzymic antioxidants activity were done in the prostate and seminal vesicle tissue homogenate. RESULTS: There was a significant increase in the level of acid phosphatase and lipid peroxidation in prostate cancer-induced rats, and after treatment with C. nurvala extract a significant decrease in the level of acid phosphatase lipid peroxidation were observed. The enzymic and non-enzymic antioxidants were decreased in the prostate cancer induced group and after treatment they were restored to near normal values. Histopathological examination showed significant changes such as hyperplastic prostatic acini and malignant proliferation of ductal epithelial cells in the prostate and seminal vesicle of carcinogen induced rats. After treatment with C. nurvala extract normal and flow-dilated ducts and acini with regular epithelial lining were observed in the prostate and partially hyperplastic and partially flattered epithelium were observed in seminal vesicles. CONCLUSION: The ethanolic extract of C. nurvala has significant anticancer activity evaluated by in an in vivo model. AIM: In the present study the anticancer activity of the ethanolic extract of Crateva nurvala bark was evaluated against testosterone and N-methyl-N-nitrosourea (MNU)-induced prostate cancer in male Wistar rats. METHODS: Prostate cancer was induced in rats by the injection of testosterone for 3 d followed by injection of the chemical carcinogen MNU for 1 week. The prostate cancer-induced rats were treated with the ethanolic extract of C. nurvala bark, and testosterone injection was also continued through the experimental period of 4 months. Biochemical estimations including prostatic acid phosphatase, lipid peroxidation, enzymic antioxidants and non-enzymic antioxidants activity were done in the prostate and seminal vesicle tissue homogenate. RESULTS: There was a significant increase in the level of acid phosphatase and lipid peroxidation in prostate cancer-induced rats, and after treatment with C. nurvala extract a significant decrease in the level of acid phosphatase lipid peroxidation were observed. The enzymic and non-enzymic antioxidants were decreased in the prostate cancer induced group and after treatment they were restored to near normal values. Histopathological examination showed significant changes such as hyperplastic prostatic acini and malignant proliferation of ductal epithelial cells in the prostate and seminal vesicle of carcinogen induced rats. After treatment with C. nurvala extract normal and flow-dilated ducts and acini with regular epithelial lining were observed in the prostate and partially hyperplastic and partially flattered epithelium were observed in seminal vesicles. CONCLUSION: The ethanolic extract of C. nurvala has significant anticancer activity evaluated by in an in vivo model.
出处 《中国天然药物》 SCIE CAS CSCD 2012年第5期334-338,共5页
关键词 N-methyl-N-nitroso urea TESTOSTERONE Crateva nurvala Prostate carcinogenesis Antioxidants N-methyl-N-nitroso urea Testosterone Crateva nurvala Prostate carcinogenesis Antioxidants
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  • 1Dr. Okezie I. Aruoma.Free radicals, oxidative stress, and antioxidants in human health and disease[J].Journal of the American Oil Chemists’ Society.1998(2)
  • 2Poonam Kakkar,Sudhir Mehrotra,P. N. Viswanathan.Interrelation of active oxygen species, membrane damage and altered calcium functions[J].Molecular and Cellular Biochemistry (-).1992(1-2)
  • 3Ansari K N.The free radicals-the hidden culprits-an update[].Indian J Med Sci.1997
  • 4Kakkar P,Mehrotra S,Viswanathan, P N.Interrelation of active oxygen species, membrane damage and altered calcium functions[].Molecular and Cellular Biochemistry.1992
  • 5Repetto M G,Llesuy, S F.Antioxidant properties of natural compounds used in popular medicine for gastric ulcers[].Braz J Med Biol Res.2002
  • 6Surh Y Z,Ferguson L R.Dietary and medicinal antimutagens and anticarcinogens[].molecular mechanisms and chemopreventive potential-highlight of a symposium.2003
  • 7Delanty N,Dichter, M A.Antioxidant therapy in neurological diseases[].ArchNeur.2000
  • 8Naithani V,Nair S,Kakkar P.Decline in antioxidant capacity of Indian herbal teas during storage and its relation to phenolic content[].Food Res Int.2006
  • 9Chopra R N,Nayer S L,Chopra I C.Glossary of Indian medicinal plants[]..1956
  • 10Singleton V L,Orthofer R,Lamuela-Raventos R M.Analysis of total phenols and other oxidation substrates and antioxidants by means of Folin-Cicoalteu reagent[].Methods in Enzymology Oxidant and Antioxidants (Part A).1999

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  • 2韩铮.中药材中常见真菌毒素分析方法学及代谢动力学研究[D]浙江大学,2011.
  • 3Issa Gholampour Azizi,Hassan Ghadi,Samaneh Rouhi.Ochratoxin A analysis in rice samples of different cities of Mazandaran (a province in Northern Iran)[J]. Nutrition & Food Science . 2014 (3)
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  • 10C.W.Hou,K.C.Jeng,Y.S.Chen.Enhancement of Fermentation Process in Pu‐Erh Tea by Tea‐Leaf Extract[J]. Journal of Food Science . 2010 (1)

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