This Methods in Molecular Biology(TM) volume offers detailed protocols, with theoretical background, and step-by-step instructions on implementing synchronization, as well as current techniques for the enhanced study of regulatory mechanisms in cell cycle events.
Systems biology is the study of interactions between assorted components of biological systems with the aim of acquiring new insights into how organisms function and respond to different stimuli.
Stem cell mobilization represents a transient increase in the levels of circulating stem and progenitor cells.
The last fifteen years have witnessed the birth and maturation of many original methods and the development of protocols specific to single molecule... Læs mere
Characterization of copy number variation and other forms of structural genetic variation has highlighted the complexity of human genetic variation and also provided significant insight into the evolution and dynamic nature of our genome.
This volume provides brief introductions and clear instructions for the applications of many common and useful in silico tools. It features a variety of tools with easy to follow methodologies and includes key tips and vital implementation advice.
In The Plant Cell Wall: Methods and Protocols, experts in the field describe detailed methods which are currently being applied to investigate the many aspects of the plant cell wall including its structure, biochemical composition, and metabolism.
This Methods in Molecular Biology(TM) volume offers methods for applying the principles of nanotechnology to tissue regeneration. Covers delivery systems and biosensors, and techniques for studying interaction between cells, biomolecules and surfaces at nanoscale.
Today, activation endoproteolysis of secretory proteins is recognized as a fundamental biological mechanism of spatial and temporal regulation of protein activity as well as of diversification of protein functions.
Progress in rAAV-mediated gene transfer is so robust that long-term, efficient, and regulatable transgene expression is reproducibly achieved in large animal models. This book provides a complete and comprehensive guide to this rapidly progressing field.
This comprehensive survey of the field sees expert researchers provide concise descriptions of the most up-to-date methodologies used to fabricate microarrays for the analysis of proteins or responses to proteins that help inform our study of human disease.