Technological advances have contributed to the evolution of the natural product chemistry and drug discovery programs. Recently, computational methods for nuclear magnetic resonance (NMR) and mass spectrometry (MS) have speeded up and facilitated the process of structural elucidation even in high complex biological samples. In this chapter, the current computational tools related to NMR and MS databases and spectral similarity networks, as well as their applications on dereplication and determination of biological biomarkers, are addressed
Abstract: Recent technological advances in NMR methods and instrumentation are having a significant ...
AbstractAlthough three-dimensional protein structure determination using nuclear magnetic resonance ...
The field of metabolomics focuses on the study of biochemical changes occurring in living systems an...
This textbook begins with an overview of NMR development and applications in biological systems. It ...
The success of data standards and public databases in biology is the foundation for the current and ...
Proteins are the workhorses of the cells. The Human Genome Project, completed in 2001, opened the pa...
Most of new chemical entities introduced as antibacterials over the last decades are derivated from ...
In this thesis, we applied both numerical methods and artificial intelligence techniques to NMR data...
The prevailing dogma in structural genomics is the existence of a strong correlation between protein...
Current interests in structural genomics, and the associated need for high through-put structure det...
Mass spectrometry (MS) and nuclear magnetic resonance (NMR) constitute the two major pillars upon wh...
Several studies have shown that biomolecular NMR structures are often of lower quality when compared...
[[abstract]]Understanding the functions of the vast number of proteins encoded in many genomes that ...
Mass spectrometry is a technique to determine the molecular content of samples derived from human, a...
Abstract Background Current efforts in Metabolomics, such as the Human Metabolome Project, collect s...
Abstract: Recent technological advances in NMR methods and instrumentation are having a significant ...
AbstractAlthough three-dimensional protein structure determination using nuclear magnetic resonance ...
The field of metabolomics focuses on the study of biochemical changes occurring in living systems an...
This textbook begins with an overview of NMR development and applications in biological systems. It ...
The success of data standards and public databases in biology is the foundation for the current and ...
Proteins are the workhorses of the cells. The Human Genome Project, completed in 2001, opened the pa...
Most of new chemical entities introduced as antibacterials over the last decades are derivated from ...
In this thesis, we applied both numerical methods and artificial intelligence techniques to NMR data...
The prevailing dogma in structural genomics is the existence of a strong correlation between protein...
Current interests in structural genomics, and the associated need for high through-put structure det...
Mass spectrometry (MS) and nuclear magnetic resonance (NMR) constitute the two major pillars upon wh...
Several studies have shown that biomolecular NMR structures are often of lower quality when compared...
[[abstract]]Understanding the functions of the vast number of proteins encoded in many genomes that ...
Mass spectrometry is a technique to determine the molecular content of samples derived from human, a...
Abstract Background Current efforts in Metabolomics, such as the Human Metabolome Project, collect s...
Abstract: Recent technological advances in NMR methods and instrumentation are having a significant ...
AbstractAlthough three-dimensional protein structure determination using nuclear magnetic resonance ...
The field of metabolomics focuses on the study of biochemical changes occurring in living systems an...