A Biofocussed Chemoprospecting Approach to Drug Discovery: Design, Synthesis and Bioactivity Screening of Diverse Biofocussed Chemical Libraries
Permanent lenke
https://hdl.handle.net/10037/11155Åpne
Thesis (PDF)
Paper 1: Gani, O. A., Thakkar. B., Narayanan, D., Alam, K. A., Kyomuhendo, P., Rothweiler, U., Franco, V. T., Engh, R. A.: “Assessing protein kinase target similarity: Comparing sequence, structure, and cheminformatics approaches”. Also available in BBA Proteins and Proteomics 2015, 1854:1605–1616 . (PDF)
Paper 2: Thakkar, B. S., Albrigtsen, M., Svendsen, J. S., Andersen, J. H., Engh, R. A.: “Biofocussed chemoprospecting: An efficient approach for drug discovery”. Published version available in Chem Biol Drug Des. 2017;90:128–140. (PDF)
Dato
2017-04-28Type
Doctoral thesisDoktorgradsavhandling
Forfatter
Thakkar, BalmukundSammendrag
With pharma R & D witnessing rising cost, high attrition rates and an overall decline in productivity in recent times, newer approaches are needed for more efficient early phase drug discovery. This thesis describes a new approach, “biofocussed chemoprospecting”. The essence of the approach is to use diverse, yet “bio-like” compounds for efficient hit-finding, along with property filtering and optimization of qualities such as diversity of physicochemical properties, drug likeness, ease of synthesis and low cost for efficient selection of compounds.Three libraries based on biomolecules such as linear and cyclic dipeptides, and tartaric acid were designed. Virtual libraries were generated, and their physicochemical properties and drug likeness were analysed. The libraries of compounds with optimum diversity were synthesized, and multiple compounds with significant bioactivities were found. The substitution effects for cyclization reaction were rationalized using QM methods to enable synthetic efficiency as a parameter of library design. The overall success of the approach can be attributed essentially to the efficient library design as an outcome of focus on bio-likeness and optimized diversity – the core ideas of the biofocussed chemoprospecting approach.
Beskrivelse
The paper 3 of this thesis is not available in Munin.
Paper 3: Thakkar, B. S., Svendsen, J. S., Engh, R. A.: «Density functional studies on cis/trans isomerization in secondary amides: reaction paths, nitrogen inversion and relevance to peptidic systems”. (Manuscript). Published version with title "Cis/Trans Isomerization in Secondary Amides: Reaction Paths, Nitrogen Inversion and Relevance to Peptidic Systems" available in J. Phys. Chem. A 2017.
Paper 3: Thakkar, B. S., Svendsen, J. S., Engh, R. A.: «Density functional studies on cis/trans isomerization in secondary amides: reaction paths, nitrogen inversion and relevance to peptidic systems”. (Manuscript). Published version with title "Cis/Trans Isomerization in Secondary Amides: Reaction Paths, Nitrogen Inversion and Relevance to Peptidic Systems" available in J. Phys. Chem. A 2017.
Forlag
UiT Norges arktiske universitetUiT The Arctic University of Norway
Metadata
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