Mechanical forces are central to most, if not all, biological processes, including cell development, immune recognition, and metastasis. Because the cellular machinery mediating mechano-sensing and force generation is dependent on the nanoscale organization and geometry of protein assemblies, a current need in the field is the development of force-sensing probes that can be customized at the nanometer-length scale. In this work, we describe a DNA origami tension sensor that maps the piconewton (pN) forces generated by living cells. As a proof-of-concept, we engineered a novel library of six-helix-bundle DNA-origami tension probes (DOTPs) with a tailorable number of tension-reporting hairpins (each with their own tunable tension response thr...
Engineering: 1st Place (The Ohio State University Edward F. Hayes Graduate Research Forum)Biological...
Mechanical forces play critical roles in collective cell behaviors such as cell migration, prolifera...
We have developed a nanoscopic force sensor with optical readout. The sensor consists of a single-st...
Mechanical forces are central to most, if not all, biological processes, including cell development,...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
Forces in biological systems are typically investigated at the single-molecule level with atomic for...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
Mechanical forces are an integral part in biology, they regulate several cellular properties, such a...
We have simulated large-scale DNA nanostructures using the oxDNA software which uses coarse-graining...
Living cells are exquisitely responsive to mechanical cues, yet how cells produce and detect mechani...
Cells must respond specifically and dynamically to mechanical cues from the extracellular environmen...
Cells sense and respond to the physical properties of their environment through receptor-mediated si...
International audienceAbstract How cells respond to mechanical forces by converting them into biolog...
Cells transmit piconewton (pN) receptor forces to ligands in the extracellular matrix (ECM) and on t...
Engineering: 1st Place (The Ohio State University Edward F. Hayes Graduate Research Forum)Biological...
Mechanical forces play critical roles in collective cell behaviors such as cell migration, prolifera...
We have developed a nanoscopic force sensor with optical readout. The sensor consists of a single-st...
Mechanical forces are central to most, if not all, biological processes, including cell development,...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
Forces in biological systems are typically investigated at the single-molecule level with atomic for...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
Mechanical forces are an integral part in biology, they regulate several cellular properties, such a...
We have simulated large-scale DNA nanostructures using the oxDNA software which uses coarse-graining...
Living cells are exquisitely responsive to mechanical cues, yet how cells produce and detect mechani...
Cells must respond specifically and dynamically to mechanical cues from the extracellular environmen...
Cells sense and respond to the physical properties of their environment through receptor-mediated si...
International audienceAbstract How cells respond to mechanical forces by converting them into biolog...
Cells transmit piconewton (pN) receptor forces to ligands in the extracellular matrix (ECM) and on t...
Engineering: 1st Place (The Ohio State University Edward F. Hayes Graduate Research Forum)Biological...
Mechanical forces play critical roles in collective cell behaviors such as cell migration, prolifera...
We have developed a nanoscopic force sensor with optical readout. The sensor consists of a single-st...