Large bottlebrush complexes formed from the polysaccharide hyaluronan (HA) and the proteoglycan aggrecan contribute to cartilage compression resistance and are necessary for healthy joint function. A variety of mechanical forces act on these complexes in the cartilage extracellular matrix, motivating the need for a quantitative description that links their structure and mechanical response. Studies using electron microscopy have imaged the HA-aggrecan brush but require adsorption to a surface, dramatically altering the complex from its native conformation. We use magnetic tweezers force spectroscopy to measure changes in extension and mechanical response of an HA chain as aggrecan monomers bind and form a bottlebrush. This technique directl...
Marine-gel biopolymers were recently visualized at the molecular level using atomic force microscopy...
a b s t r a c t Aggrecan is a high-molecular-weight, bottlebrush-shaped, negatively charged biopolym...
AbstractMarine-gel biopolymers were recently visualized at the molecular level using atomic force mi...
Spatially confined yet strongly hydrated assemblies made from the proteoglycan aggrecan and the poly...
The extracellular polysaccharide hyaluronan (HA) is ubiquitous in all vertebrate tissues, where its ...
AbstractWe investigated self-adhesion between highly negatively charged aggrecan macromolecules extr...
Harder A, Walhorn V, Dierks T, Fernandez-Busquets X, Anselmetti D. Single-Molecule Force Spectroscop...
The extracellular polysaccharide hyaluronan (HA) is ubiquitous in all vertebrate tissues, where its ...
International audienceThe most abundant cartilage proteoglycan is aggrecan, a bottlebrush shaped mol...
The biopolymer hyaluronic acid (HA) is ubiquitous in extracellular spaces and forms complexes with p...
Glycosaminoglycans (GAGs), a category of linear, anionic polysaccharides, are ubiquitous in the extr...
Conformation and interactions between biological macromolecules are crucial for the mechanical prope...
*S Supporting Information ABSTRACT: Using a surface force balance, normal and shear interactions hav...
International audienceAggrecan, a large biological polyelectrolyte molecule with a bottlebrush shape...
The extracellular matrix of tendon is mainly composed of discontinuous Type-I collagen fibrils and s...
Marine-gel biopolymers were recently visualized at the molecular level using atomic force microscopy...
a b s t r a c t Aggrecan is a high-molecular-weight, bottlebrush-shaped, negatively charged biopolym...
AbstractMarine-gel biopolymers were recently visualized at the molecular level using atomic force mi...
Spatially confined yet strongly hydrated assemblies made from the proteoglycan aggrecan and the poly...
The extracellular polysaccharide hyaluronan (HA) is ubiquitous in all vertebrate tissues, where its ...
AbstractWe investigated self-adhesion between highly negatively charged aggrecan macromolecules extr...
Harder A, Walhorn V, Dierks T, Fernandez-Busquets X, Anselmetti D. Single-Molecule Force Spectroscop...
The extracellular polysaccharide hyaluronan (HA) is ubiquitous in all vertebrate tissues, where its ...
International audienceThe most abundant cartilage proteoglycan is aggrecan, a bottlebrush shaped mol...
The biopolymer hyaluronic acid (HA) is ubiquitous in extracellular spaces and forms complexes with p...
Glycosaminoglycans (GAGs), a category of linear, anionic polysaccharides, are ubiquitous in the extr...
Conformation and interactions between biological macromolecules are crucial for the mechanical prope...
*S Supporting Information ABSTRACT: Using a surface force balance, normal and shear interactions hav...
International audienceAggrecan, a large biological polyelectrolyte molecule with a bottlebrush shape...
The extracellular matrix of tendon is mainly composed of discontinuous Type-I collagen fibrils and s...
Marine-gel biopolymers were recently visualized at the molecular level using atomic force microscopy...
a b s t r a c t Aggrecan is a high-molecular-weight, bottlebrush-shaped, negatively charged biopolym...
AbstractMarine-gel biopolymers were recently visualized at the molecular level using atomic force mi...