Team:ACIBADEM ISTANBUL/Description


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References:

1)Calvete, J., Perez, A., Lomonte, B., Sanchez, E. and Sanz, L. (2013). SNAKE VENOMICS OF Crotalus tigris: THE MINIMALIST TOXIN ARSENAL OF THE DEADLIEST NEARTIC RATTLESNAKE VENOM Evolutionary clues for generating a pan-specific antivenom against crotalid type II venoms. PubMed.

2)Kasturiratne, A., Wickremasinghe, R., Silva, N., Gunawardena, K., Pathmeswaran, A., Premaratna, R., Savioli, L., Lalloo, D. and Silva, J. (2008). The Global Burden of Snakebite: A Literature Analysis and Modelling Based on Regional Estimates of Envenoming and Deaths. Plos Medicine.

3)Herzel, B., Samuel, S., Bulfone, T., Raj, S., Lewin, M. and Kahn, J. (2018). Snakebite: An Exploratory Cost-Effectiveness Analysis of Adjunct Treatment Strategies. PubMed.

4)“How to Make Antivenom—And Why the World is Running Short”By Douglas Main(2011)https://www.popularmechanics.com/science/health/g561/how-to-make-antivenom-why-the-world-is-running-out/?slide=7

5)Silva, A., Ryan, N. and Silva, J. (2016). Adverse reactions to snake antivenom, and their prevention and treatment. PubMed.

6)SG, C. and DD, D. (2015). An in silico insight into novel therapeutic interaction of LTNF peptide-LT10 and design of structure based peptidomimetics for putative anti-diabetic activity. PubMed.