English
Related papers

Related papers: Polymorphism of stable collagen fibrils

200 papers

Mammalian tissues contain networks and ordered arrays of collagen fibrils originating from the periodic self-assembly of helical 300 nm long tropocollagen complexes. The fibril radius is typically between 25 to 250 nm, and tropocollagen at…

Biological Physics · Physics 2014-09-16 Aidan I Brown , Laurent Kreplak , Andrew D Rutenberg

To describe the interaction between longitudinal density modulations along collagen fibrils (the D-band) with the radial twist-field of molecular orientation (double-twist), we couple phase-field-crystal (PFC) with liquid-crystalline…

Soft Condensed Matter · Physics 2020-03-25 Samuel Cameron , Laurent Kreplak , Andrew D. Rutenberg

Collagen fibrils are the main structural component of load-bearing tissues such as tendons, ligaments, skin, the cornea of the eye, and the heart. The D-band of collagen fibrils is an axial periodic density modulation that can be easily…

Biological Physics · Physics 2021-09-30 Matthew P. Leighton , Andrew D. Rutenberg , Laurent Kreplak

Collagen fibrils are the building block of many biological tissues, which viability depend on the fibrils properties. Altered properties of collagen fibrils are central to the appearance of many diseases, while physiological or native…

Soft Condensed Matter · Physics 2026-05-08 Konstantinos Steiakakis , Alan Pichard , Maxime Vassaux

The lysyl oxidase (LOX) enzyme that catalyses cross-link formation during the assembly of collagen fibrils in vivo is too large to diffuse within assembled fibrils, and so is incompatible with a fully equilibrium mechanism for fibril…

Biological Physics · Physics 2021-09-30 Matthew P. Leighton , Laurent Kreplak , Andrew D. Rutenberg

Collagen fibrils are the most important structural component of tendons. Their crimped structure and parallel arrangement within the tendon lead to a distinctive non-linear stress-strain curve when a tendon is stretched. Microstructural…

Tissues and Organs · Quantitative Biology 2021-03-09 James Gregory , Tom Shearer , Andrew L. Hazel

Type I collagen fibrils have circular cross sections with radii mostly distributed in between 50 and 100 nm and are characterized by an axial banding pattern with a period of 67 nm. The constituent long molecules of those fibrils, the…

Soft Condensed Matter · Physics 2013-10-28 Jean Charvolin , Jean-François Sadoc

Collagen fibrils, cable-like assemblies of long biological molecules, are dominant components of connective tissues. Their determinant morphological and functional roles motivated a large number of studies concerning their formation and…

Soft Condensed Matter · Physics 2011-04-04 Jean Charvolin , Jean-François Sadoc

Collagen fibril cross-sectional radii show no systematic variation between the interior and the periphery of fibril bundles, indicating an effectively constant rate of collagen incorporation into fibrils throughout the bundle. Such…

Tissues and Organs · Quantitative Biology 2016-09-13 Andrew D Rutenberg , Aidan I Brown , Laurent Kreplak

Mineralized collagen microfibrils in human bone provide its mechanical properties (stiffness, elasticity, ductility, energy dissipation and strength). However, detailed 3D finite element models describing the mechanical behaviour of the…

Tissues and Organs · Quantitative Biology 2012-03-01 Ridha Hambli , Abdelwahed Barkaoui

Collagen type I is well-known for its outstanding mechanical properties which it inherits from its hierarchical structure. Collagen type I fibrils may be viewed as an heterogeneous material made of protein, macromolecules (such as…

Soft Condensed Matter · Physics 2024-06-27 Maxime Vassaux

We present a fiber-distributed model of the reinforcing collagen of the human cornea. The model describes the basic connections between the components of the tissue by defining an elementary block (cell) and upscaling it to the physical…

Biological Physics · Physics 2023-06-28 Maria Laura De Bellis , Marcello Vasta , Alessio Gizzi , Anna Pandolfi

Collagen fibrils, when subjected to cyclic loading, are known to exhibit hysteretic behaviour with energy dissipation that is partially recovered on relaxation. In this paper, we develop a kinetic model for a collagen fibril incorporating…

Statistical Mechanics · Physics 2022-06-07 Amir Suhail , Anuradha Banerjee , R. Rajesh

The predominant structural protein in vertebrates is collagen, which plays a key role in extracellular matrix and connective tissue mechanics. Despite its prevalence and physical importance in biology, the mechanical properties of molecular…

Biological Physics · Physics 2018-11-14 Naghmeh Rezaei , Aaron Lyons , Nancy R. Forde

The complexity and heterogeneity of bone tissue require a multiscale modelling to understand its mechanical behaviour and its remodelling mechanisms. In this paper, a novel multiscale hierarchical approach including microfibril scale based…

Medical Physics · Physics 2014-03-13 Abdelwahed Barkaoui , Abdessalem Chamekh , Merzouki Tarek , Ridha Hambli , Mkaddem Ali

Bone is mineralized tissue constituting the skeletal system, supporting and protecting body organs and tissues. At the molecular level, mineralized collagen fibril is the basic building block of bone tissue, and hence, understanding bone…

Atomic and Molecular Clusters · Physics 2021-06-16 Mario Milazzo , Alessio David , Gang Seob Jung , Serena Danti , Markus J. Buehler

We measured Young's modulus at temperatures ranging from 20 to 100 ^{\circ}$C for a collagen fibril taken from rat's tendon. The hydration change under heating and the damping decrement were measured as well. At physiological temperatures…

Soft Condensed Matter · Physics 2009-11-13 S. G. Gevorkian , A. E. Allahverdyan , D. S. Gevorgyan , A. L. Simonian

Collagen is the most abundant structural protein in animals, forming hierarchically organised fibrils that provide mechanical support to tissues. Despite detailed structural studies, the physical principles that govern the formation of the…

Soft Condensed Matter · Physics 2025-05-01 Art'om Zolotarjov , Roland Kröger , Dmitri O. Pushkin

The primary building block of the body is collagen, which is found in the extracellular matrix and in many stress-bearing tissues such as tendon and cartilage. It provides elasticity and support to cells and tissues while influencing…

Biomolecules · Quantitative Biology 2019-07-29 Michael W. H. Kirkness , Kathrin Lehmann , Nancy R. Forde

State of the art research and treatment of biological tissues require accurate and efficient methods for describing their mechanical properties. Indeed, micromechanics motivated approaches provide a systematic method for elevating relevant…

Soft Condensed Matter · Physics 2012-05-04 Gal deBotton , Tal Oren
‹ Prev 1 2 3 10 Next ›