Tools capable of imaging and perturbing mechanical signaling pathways with fine spatiotemporal resolution have been elusive, despite their importance in diverse cellular processes. The challenge in developing a mechanogenetic toolkit (i.e., selective and quantitative activation of genetically encoded mechanoreceptors) stems from the fact that many mechanically activated processes are localized in space and time yet additionally require mechanical loading to become activated. To address this challenge, we synthesized magnetoplasmonic nanoparticles that can image, localize, and mechanically load targeted proteins with high spatiotemporal resolution. We demonstrate their utility by investigating the cell-surface activation of two mechanorecept...
In living cells and organisms there is a myriad of biomolecules that are able to activate specific c...
Cellular domains accrue mechanical fluctuations as a means of communication. The process by which th...
As a new enabling nanotechnology tool for wireless, target-specific, and long-distance stimulation o...
Tools capable of imaging and perturbing mechanical signaling pathways with fine spatiotemporal resol...
Spatiotemporal interrogation of signal transduction at the single-cell level is necessary to answer ...
Cell-cell communication is essential for maintaining cell coordination and tissue level functions. C...
In vivo, cells are frequently exposed to multiple mechanical stimuli arising from the extracellular ...
Multifunctional magnetic nanoparticles have shown great promise as next-generation imaging and pertu...
Mechanical signals affect virtually every fundamental single- and multi-cellular process in biology....
Magnetic nanoparticles can be coated with specific ligands that enable them to bind to receptors on ...
Neuronal cells are competent in precisely sensing nanotopographical features of their microenvironme...
Multifunctional magnetic nanoparticles have shown great promise as next-generation imaging and pertu...
This dissertation presents research conducted on the design and development of three bioengineering ...
Biophysical and biochemical signals of material surfaces potently regulate cell functions and fate. ...
Cells are able to sense and react to their physical environment by translating a mechanical cue into...
In living cells and organisms there is a myriad of biomolecules that are able to activate specific c...
Cellular domains accrue mechanical fluctuations as a means of communication. The process by which th...
As a new enabling nanotechnology tool for wireless, target-specific, and long-distance stimulation o...
Tools capable of imaging and perturbing mechanical signaling pathways with fine spatiotemporal resol...
Spatiotemporal interrogation of signal transduction at the single-cell level is necessary to answer ...
Cell-cell communication is essential for maintaining cell coordination and tissue level functions. C...
In vivo, cells are frequently exposed to multiple mechanical stimuli arising from the extracellular ...
Multifunctional magnetic nanoparticles have shown great promise as next-generation imaging and pertu...
Mechanical signals affect virtually every fundamental single- and multi-cellular process in biology....
Magnetic nanoparticles can be coated with specific ligands that enable them to bind to receptors on ...
Neuronal cells are competent in precisely sensing nanotopographical features of their microenvironme...
Multifunctional magnetic nanoparticles have shown great promise as next-generation imaging and pertu...
This dissertation presents research conducted on the design and development of three bioengineering ...
Biophysical and biochemical signals of material surfaces potently regulate cell functions and fate. ...
Cells are able to sense and react to their physical environment by translating a mechanical cue into...
In living cells and organisms there is a myriad of biomolecules that are able to activate specific c...
Cellular domains accrue mechanical fluctuations as a means of communication. The process by which th...
As a new enabling nanotechnology tool for wireless, target-specific, and long-distance stimulation o...