نتایج جستجو برای: dragline

تعداد نتایج: 220  

2010
Joern W. Kuhbier Christina Allmeling Kerstin Reimers Anja Hillmer Cornelia Kasper Bjoern Menger Gudrun Brandes Merlin Guggenheim Peter M. Vogt

BACKGROUND Several materials have been used for tissue engineering purposes, since the ideal matrix depends on the desired tissue. Silk biomaterials have come to focus due to their great mechanical properties. As untreated silkworm silk has been found to be quite immunogenic, an alternative could be spider silk. Not only does it own unique mechanical properties, its biocompatibility has been sh...

2014
Sandeep P. Patil Senbo Xiao Konstantinos Gkagkas Bernd Markert Frauke Gräter

The hierarchical structure of spider dragline silk is composed of two major constituents, the amorphous phase and crystalline units, and its mechanical response has been attributed to these prime constituents. Silk mechanics, however, might also be influenced by the resistance against sliding of these two phases relative to each other under load. We here used atomistic molecular dynamics (MD) s...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 1990
M Xu R V Lewis

Spider major ampullate (dragline) silk is an extracellular fibrous protein with unique characteristics of strength and elasticity. The silk fiber has been proposed to consist of pseudocrystalline regions of antiparallel beta-sheet interspersed with elastic amorphous segments. The repetitive sequence of a fibroin protein from major ampullate silk of the spider Nephila clavipes was determined fro...

Journal: :Journal of the Royal Society, Interface 2010
Sinan Keten Markus J Buehler

Spider silk is a self-assembling biopolymer that outperforms most known materials in terms of its mechanical performance, despite its underlying weak chemical bonding based on H-bonds. While experimental studies have shown that the molecular structure of silk proteins has a direct influence on the stiffness, toughness and failure strength of silk, no molecular-level analysis of the nanostructur...

2015
Bofan Zhu Wen Li Randolph V. Lewis Carlo U. Segre Rong Wang

Biocomposite matrices with high mechanical strength, high stability, and the ability to direct matrix-specific stem cell differentiation are essential for the reconstruction of lesioned tissues in tissue engineering and cell therapeutics. Toward this end, we used the electrospinning technique to fabricate well-aligned composite fibers from collagen and spider dragline silk protein, obtained fro...

Journal: :Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 2021

The pyriform silk of the attachment disc a spider was studied using infrared-visible vibrational sum frequency generation (SFG) spectroscopy. can attach dragline and radial lines to many kinds substrates in nature (concrete, alloy, metal, glass, plant branches, leaves, etc.) with disc. adhesion bear spider's own weight, resist wind on its orb web. From our SFG spectroscopy study, NH group argin...

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