The lack of gold standard methodology for synergy quantification of anticancer drugs warrants the consideration of different synergy metrics to develop efficient Artificial Intelligence-based predictive methods. Furthermore, neglecting combination sensitivity in synergy prediction may lead to biased synergistic combinations that are inefficient in conferring anticancer activity.

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[1] Muhammad Alsherbiny, Ibrahim Radwan, "Prediction of Anticancer Synergistic Combinations using Multi-Modal Deep Neural Network; SynPredict", IEEE Dataport, 2021. [Online]. Available: http://dx.doi.org/10.21227/qqeb-7v80. Accessed: Feb. 07, 2025.
@data{qqeb-7v80-21,
doi = {10.21227/qqeb-7v80},
url = {http://dx.doi.org/10.21227/qqeb-7v80},
author = {Muhammad Alsherbiny; Ibrahim Radwan },
publisher = {IEEE Dataport},
title = {Prediction of Anticancer Synergistic Combinations using Multi-Modal Deep Neural Network; SynPredict},
year = {2021} }
TY - DATA
T1 - Prediction of Anticancer Synergistic Combinations using Multi-Modal Deep Neural Network; SynPredict
AU - Muhammad Alsherbiny; Ibrahim Radwan
PY - 2021
PB - IEEE Dataport
UR - 10.21227/qqeb-7v80
ER -
Muhammad Alsherbiny, Ibrahim Radwan. (2021). Prediction of Anticancer Synergistic Combinations using Multi-Modal Deep Neural Network; SynPredict. IEEE Dataport. http://dx.doi.org/10.21227/qqeb-7v80
Muhammad Alsherbiny, Ibrahim Radwan, 2021. Prediction of Anticancer Synergistic Combinations using Multi-Modal Deep Neural Network; SynPredict. Available at: http://dx.doi.org/10.21227/qqeb-7v80.
Muhammad Alsherbiny, Ibrahim Radwan. (2021). "Prediction of Anticancer Synergistic Combinations using Multi-Modal Deep Neural Network; SynPredict." Web.
1. Muhammad Alsherbiny, Ibrahim Radwan. Prediction of Anticancer Synergistic Combinations using Multi-Modal Deep Neural Network; SynPredict [Internet]. IEEE Dataport; 2021. Available from : http://dx.doi.org/10.21227/qqeb-7v80
Muhammad Alsherbiny, Ibrahim Radwan. "Prediction of Anticancer Synergistic Combinations using Multi-Modal Deep Neural Network; SynPredict." doi: 10.21227/qqeb-7v80