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Department of Pure and Applied Chemistry
删除限定条件 部门,学校或学院: Department of Pure and Applied Chemistry
出资者
GlaxoSmithKline
删除限定条件 出资者: GlaxoSmithKline
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Catalytic methods for etherification reactions
创造者:
Whitaker, Luke
日期:
2021
Funder:
GlaxoSmithKline
Department, School or Faculty:
Department of Pure and Applied Chemistry
Synthetic approaches to heterocyclic systems of pharmaceutical relevance
创造者:
Green, Luke
日期:
2021
Funder:
GlaxoSmithKline
Department, School or Faculty:
Department of Pure and Applied Chemistry
Homogeneous hydrogenation and photochemistry as tools in pharmaceutical process development
创造者:
Shaalan, Youssef
日期:
2021
Funder:
GlaxoSmithKline
Department, School or Faculty:
Department of Pure and Applied Chemistry
Development of lysine acylating small molecules for covalent kinase inhibition
创造者:
Fournier, Julie C. L.
日期:
2021
Funder:
GlaxoSmithKline
Department, School or Faculty:
Department of Pure and Applied Chemistry
Novel heterocyclic ligands for the lipid kinase PI4KIIIβ : a chemical biology approach
创造者:
Cosgrove, Brett
日期:
2020
Funder:
GlaxoSmithKline
Department, School or Faculty:
Department of Pure and Applied Chemistry
A medicinal chemistry approach towards brodomain epigenetic modulators
创造者:
Law, Robert Peter
日期:
2016
Funder:
GlaxoSmithKline
Department, School or Faculty:
Department of Pure and Applied Chemistry
Synthesis and optimisation of novel molecules to probe epigenetic mechanisms with applications in the treatment of inflammatory disorders
创造者:
Diallo, Hawa
日期:
2014
Funder:
GlaxoSmithKline
Department, School or Faculty:
Department of Pure and Applied Chemistry
The development and evaluation of a method for the quantitative determination of a monoclonal antibody using capillary electrophoresis-high resolution mass spectrometry
创造者:
Snell, Richard
日期:
2020
Funder:
GlaxoSmithKline
Department, School or Faculty:
Department of Pure and Applied Chemistry
The use of structure-based drug design to optimise protein-ligand interactions
创造者:
Bertrand, Sophie
日期:
2015
Funder:
GlaxoSmithKline
Department, School or Faculty:
Department of Pure and Applied Chemistry
The design, synthesis and optimisation of αvβ6 antagonists as potential idiopathic pulmonary fibrosis agents
创造者:
Anderson, Niall A.
日期:
2013
Funder:
GlaxoSmithKline
Department, School or Faculty:
Department of Pure and Applied Chemistry
Electrochemically enabled synthesis of substituted isoxazolines
创造者:
Holman, Samuel David Lee
日期:
2020
Funder:
GlaxoSmithKline
Department, School or Faculty:
Department of Pure and Applied Chemistry
αV integrin antagonists for the treatment of idiopathic pulmonary fibrosis
创造者:
Thompson, James
日期:
2020
Funder:
GlaxoSmithKline
Department, School or Faculty:
Department of Pure and Applied Chemistry
Application of electrochemical based sensors in support of toxicokinetic and pharmacokinetics
创造者:
Mahammed, Farjana
日期:
2020
Funder:
GlaxoSmithKline
Department, School or Faculty:
Department of Pure and Applied Chemistry
Development of photoaffinity labelling technologies for small molecule drug discovery - a case study targeting bromodomains
创造者:
Fallon, David
日期:
2020
Funder:
GlaxoSmithKline
Department, School or Faculty:
Department of Pure and Applied Chemistry
New methods for the synthesis of pharmaceutical azacycles
创造者:
Clark, Peter
日期:
2020
Funder:
GlaxoSmithKline
Department, School or Faculty:
Department of Pure and Applied Chemistry
New hydrogen atom transfer methodologies for synthesis
创造者:
Turner, Oliver
日期:
2020
Funder:
GlaxoSmithKline
Department, School or Faculty:
Department of Pure and Applied Chemistry
Hi-JAK-ing the ubiquitin system : the design and physicochemical optimisation of JAK PROTACs
创造者:
Shah, Rishi R.
日期:
2020
Funder:
GlaxoSmithKline
Department, School or Faculty:
Department of Pure and Applied Chemistry
Application of bioisosteres to modulate molecular properties in medicinal chemistry
创造者:
Measom, Nicholas
日期:
2017
Funder:
GlaxoSmithKline
Department, School or Faculty:
Department of Pure and Applied Chemistry
Investigations of the synthesis and properties of romodomain and extra-terminal domain proteolysis targeting chimeras
创造者:
Priestner, John C.
日期:
2020
Funder:
GlaxoSmithKline
Department, School or Faculty:
Department of Pure and Applied Chemistry
The design and synthesis of chemical probes for non-BET bromodomains
创造者:
Clegg, Michael A.
日期:
2019
Funder:
GlaxoSmithKline
Department, School or Faculty:
Department of Pure and Applied Chemistry
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EPSRC Centre for Doctoral Training in Technology Enhanced Chemical Synthesis
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Engineering and Physical Sciences Research Council
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Department of Pure and Applied Chemistry
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