We present in situ studies on the self-assembly and dynamic evolution of collagen gels from semidilute solutions in a microfluidic device. Collagen fibrils not only reinforce the mechanical properties of bone and tissues, but they also influence cellular motility and morphology. We access the initial steps of the hierarchical self-assembly of collagen fibrils and networks by using hydrodynamic focusing to form oriented fibers. The accurate description of the conditions within the microchannel requires a numerical expression for the pH in the device as well as a modified mathematical description of the viscosity, which increases nearly 300-fold as collagen fibrils form around neutral pH. Finite element modeling profiles overlay impressively ...
The interior as well as the exterior of cells is governed by networks composed of fi-brous proteins....
Graduation date:2017The structure and mechanics of tissues affect many important cellular functions ...
Cell spatial remodelling in tensile connective tissue is at the base of fundamental biological proce...
We present in situ studies on the self-assembly and dynamic evolution of collagen gels from semidilu...
We present in situ studies on the self-assembly and dynamic evolution of collagen gels from semidilu...
Collagen is a major component of the extracellular matrix that exhibits unique hierarchical organiza...
<div><p>Collagen is the most abundant protein in the extracellular matrix (ECM), where its structura...
Collagen is the most abundant protein in the extracellular matrix (ECM), where its structural organi...
The interior as well as the exterior of cells is governed by networks composed of fi- brous proteins...
The hierarchical structure of type I collagen flbrils is a key contributor to the mechanical propert...
Type I collagen is a major constituent of many biological tissues, including skin, bone, tendon and ...
Collagen, the most abundant protein of connective tissues, in various forms has a wide applications ...
<p>(A) Turbidity increases significantly as collagen self-assembles into fibrils. Experiments were c...
Collagen is a fibrous protein representing the main constituent of connective tissue in mammals, wit...
To determine whether collagen solubilized from tendons can regenerate the most relevant characterist...
The interior as well as the exterior of cells is governed by networks composed of fi-brous proteins....
Graduation date:2017The structure and mechanics of tissues affect many important cellular functions ...
Cell spatial remodelling in tensile connective tissue is at the base of fundamental biological proce...
We present in situ studies on the self-assembly and dynamic evolution of collagen gels from semidilu...
We present in situ studies on the self-assembly and dynamic evolution of collagen gels from semidilu...
Collagen is a major component of the extracellular matrix that exhibits unique hierarchical organiza...
<div><p>Collagen is the most abundant protein in the extracellular matrix (ECM), where its structura...
Collagen is the most abundant protein in the extracellular matrix (ECM), where its structural organi...
The interior as well as the exterior of cells is governed by networks composed of fi- brous proteins...
The hierarchical structure of type I collagen flbrils is a key contributor to the mechanical propert...
Type I collagen is a major constituent of many biological tissues, including skin, bone, tendon and ...
Collagen, the most abundant protein of connective tissues, in various forms has a wide applications ...
<p>(A) Turbidity increases significantly as collagen self-assembles into fibrils. Experiments were c...
Collagen is a fibrous protein representing the main constituent of connective tissue in mammals, wit...
To determine whether collagen solubilized from tendons can regenerate the most relevant characterist...
The interior as well as the exterior of cells is governed by networks composed of fi-brous proteins....
Graduation date:2017The structure and mechanics of tissues affect many important cellular functions ...
Cell spatial remodelling in tensile connective tissue is at the base of fundamental biological proce...