Despite over a century of applying organic synthesis to the search for drugs, we are still far from even a cursory examination of the vast number of possible small molecules that could be created. Indeed, a thorough examination of all ‘chemical space’ is practically impossible. Given this, what are the best strategies for identifying small molecules that modulate biological targets? And how might such strategies differ, depending on whether the primary goal is to understand biological systems or to develop potential drugs
Small molecule drugs target many core metabolic enzymes in humans and pathogens, often mimicking end...
Small-molecule probes can illuminate biological processes and aid in the assessment of emerging ther...
The search for new bioactive molecules remains an open challenge limiting our ability to discover ne...
Despite over a century of applying organic synthesis to the search for drugs, we are still far from ...
Over the past decade one can observe a scientific revolution taking place resulting in an explosion ...
Chemogenomics aims towards the systematic identification of small molecules that interact with the p...
Chemical biology has emerged as a new scientific discipline to change the way scientists approach an...
The concept of "pharmacological space" provides a theoretical framework for navigating the apparentl...
The chemical universe containing organic molecules within a reasonable molecular weight is vast and ...
The development of effective small-molecule probes and drugs entails a discovery phase, often requir...
“Organic synthesis” is a compound-creating activity often focused on biologically active small molec...
Chemical biology and drug discovery are two scientific activities that pursue different goals but co...
The chemical space is the ensemble of all possible molecules, which is believed to contain at least ...
Biologically active small molecules have a central role in drug development, and as chemical probes ...
Chemical genetics employs diverse small-molecule compounds to elucidate biological processes in a ma...
Small molecule drugs target many core metabolic enzymes in humans and pathogens, often mimicking end...
Small-molecule probes can illuminate biological processes and aid in the assessment of emerging ther...
The search for new bioactive molecules remains an open challenge limiting our ability to discover ne...
Despite over a century of applying organic synthesis to the search for drugs, we are still far from ...
Over the past decade one can observe a scientific revolution taking place resulting in an explosion ...
Chemogenomics aims towards the systematic identification of small molecules that interact with the p...
Chemical biology has emerged as a new scientific discipline to change the way scientists approach an...
The concept of "pharmacological space" provides a theoretical framework for navigating the apparentl...
The chemical universe containing organic molecules within a reasonable molecular weight is vast and ...
The development of effective small-molecule probes and drugs entails a discovery phase, often requir...
“Organic synthesis” is a compound-creating activity often focused on biologically active small molec...
Chemical biology and drug discovery are two scientific activities that pursue different goals but co...
The chemical space is the ensemble of all possible molecules, which is believed to contain at least ...
Biologically active small molecules have a central role in drug development, and as chemical probes ...
Chemical genetics employs diverse small-molecule compounds to elucidate biological processes in a ma...
Small molecule drugs target many core metabolic enzymes in humans and pathogens, often mimicking end...
Small-molecule probes can illuminate biological processes and aid in the assessment of emerging ther...
The search for new bioactive molecules remains an open challenge limiting our ability to discover ne...