Molecular dynamics simulations in drug discovery and pharmaceutical development

Publication date

2021-01

Authors

Salo-Ahen, Outi M.H.
Alanko, Ida
Bhadane, Rajendra
Bonvin, Alexandre M.J.J.ORCID 0000-0001-7369-1322ISNI 0000000396501354
Honorato, Rodrigo VargasISNI 0000000492959592
Hossain, Shakhawath
Juffer, André H.
Kabedev, Aleksei
Lahtela-Kakkonen, Maija
Larsen, Anders Støttrup

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Molecular dynamics (MD) simulations have become increasingly useful in the modern drug development process. In this review, we give a broad overview of the current application pos-sibilities of MD in drug discovery and pharmaceutical development. Starting from the target validation step of the drug development process, we give several examples of how MD studies can give important insights into the dynamics and function of identified drug targets such as sirtuins, RAS proteins, or intrinsically disordered proteins. The role of MD in antibody design is also reviewed. In the lead discovery and lead optimization phases, MD facilitates the evaluation of the binding energetics and kinetics of the ligand-receptor interactions, therefore guiding the choice of the best candidate molecules for further development. The importance of considering the biological lipid bilayer environment in the MD simulations of membrane proteins is also discussed, using G-protein coupled receptors and ion channels as well as the drug-metabolizing cytochrome P450 enzymes as relevant examples. Lastly, we discuss the emerging role of MD simulations in facilitating the pharmaceutical formulation development of drugs and candidate drugs. Specifically, we look at how MD can be used in studying the crystalline and amorphous solids, the stability of amorphous drug or drug-polymer formulations, and drug solubility. Moreover, since nanoparticle drug formulations are of great interest in the field of drug delivery research, different applications of nano-particle simulations are also briefly summarized using multiple recent studies as examples. In the future, the role of MD simulations in facilitating the drug development process is likely to grow substan-tially with the increasing computer power and advancements in the development of force fields and enhanced MD methodologies.

Keywords

Binding free energy, Computational pharmaceutics, Computer-aided drug design, Con-formational ensemble, Drug formulations, Drug targets, Enhanced sampling methods, Ligand binding kinetics, Membrane interactions, Protein flexibility, Bioengineering, Chemical Engineering (miscellaneous), Process Chemistry and Technology

Citation

Salo-Ahen, O M H, Alanko, I, Bhadane, R, Alexandre, A M, Honorato, R V, Hossain, S, Juffer, A H, Kabedev, A, Lahtela-Kakkonen, M, Larsen, A S, Lescrinier, E, Marimuthu, P, Mirza, M U, Mustafa, G, Nunes-Alves, A, Pantsar, T, Saadabadi, A, Singaravelu, K & Vanmeert, M 2021, 'Molecular dynamics simulations in drug discovery and pharmaceutical development', Processes, vol. 9, no. 1, 71, pp. 1-60. https://doi.org/10.3390/pr9010071