In silico identification of viper phospholipaseA2 inhibitors: validation by in vitro, in vivo studies

Author:

Nargotra Amit,Sharma Sujata,Alam Mohd Iqbal,Ahmed Zabeer,Bhagat Asha,Taneja Subhash Chander,Qazi Ghulam Nabi,Koul Surrinder

Publisher

Springer Science and Business Media LLC

Subject

Computational Theory and Mathematics,Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Catalysis

Reference36 articles.

1. Warrell DA (1996) Venoms, toxins and poisons of animals and plants. In: Weatherall DJ, Ledingham JGG, Warrell DA (eds) Oxford Textbook of Medicine, 3rd edn. Oxford University Press, New York

2. Chippaux JP (1998) Snake-bites: Appraisal of the global situation. Bull World Health Organ 76:515–524

3. Kim DK, Fukuda T, Thomson BT, Cockrill C, Halles C, Bonventure JV (1995) Bronchoalveolar lavage fluid phospholipase A2 activities are increased in human adult respiratory distress syndrome. Am J Physiol 269:109–118

4. Aleksiev B, Tchorbanov B (1976) Action on phosphatidylcholine of the toxic phospholipase A2 from the venom of Bulgarian viper (Vipera ammodytes ammodytes). Toxicon 14:477–485

5. Houghton PJ, Osibogun IM (1993) Flowering plants used against snakebite. J Ethnopharmacol 39:1–29

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