نتایج جستجو برای: dragline

تعداد نتایج: 220  

Journal: :Journal of the Royal Society, Interface 2011
Aaron M T Harmer Todd A Blackledge Joshua S Madin Marie E Herberstein

Spider silks exhibit remarkable properties, surpassing most natural and synthetic materials in both strength and toughness. Orb-web spider dragline silk is the focus of intense research by material scientists attempting to mimic these naturally produced fibres. However, biomechanical research on spider silks is often removed from the context of web ecology and spider foraging behaviour. Similar...

Journal: :RSC advances 2016
Robyn Plowright Nina Dinjaski Shun Zhou David J Belton David L Kaplan Carole C Perry

Biomaterial design via genetic engineering can be utilized for the rational functionalization of proteins to promote biomaterial integration and tissue regeneration. Spider silk has been extensively studied for its biocompatibility, biodegradability and extraordinary material properties. As a protein-based biomaterial, recombinant DNA derived derivatives of spider silks have been modified with ...

2015
Ro Crystal Chaw Sandra M. Correa-Garhwal Thomas H. Clarke Nadia A. Ayoub Cheryl Y. Hayashi

Spider silk research has largely focused on spidroins, proteins that are the primary components of spider silk fibers. Although a number of spidroins have been characterized, other types of proteins associated with silk synthesis are virtually unknown. Previous analyses of tissue-specific RNA-seq libraries identified 647 predicted genes that were differentially expressed in silk glands of the W...

Journal: :Journal of the Royal Society, Interface 2015
Rangam Rajkhowa Jasjeet Kaur Xungai Wang Warren Batchelor

Silk fibres from silkworm cocoons have lower strength than spider silk and have received less attention as a source of high-performance fibres. In this work, we have used an innovative procedure to eliminate the flaws gradually of a single fibre specimen by retesting the unbroken portion of the fibre, after each fracture test. This was done multiple times so that the final test may provide the ...

2016
Qingfa Peng Yaopeng Zhang Li Lu Huili Shao Kankan Qin Xuechao Hu Xiaoxia Xia

Spiders achieve superior silk fibres by controlling the molecular assembly of silk proteins and the hierarchical structure of fibres. However, current wet-spinning process for recombinant spidroins oversimplifies the natural spinning process. Here, water-soluble recombinant spider dragline silk protein (with a low molecular weight of 47 kDa) was adopted to prepare aqueous spinning dope. Artific...

2015
Anne Steins Pieter Dik Wally H. Müller Stephin J. Vervoort Kerstin Reimers Jörn W. Kuhbier Peter M. Vogt Aart A. van Apeldoorn Paul J. Coffer Koen Schepers Xiaohua Liu

Reconstruction of the bladder by means of both natural and synthetic materials remains a challenge due to severe adverse effects such as mechanical failure. Here we investigate the application of spider major ampullate gland-derived dragline silk from the Nephila edulis spider, a natural biomaterial with outstanding mechanical properties and a slow degradation rate, as a potential scaffold for ...

2012
Koji Yazawa Erika Yamaguchi Akihiro Aoki Yasumoto Nakazawa Yuu Suzuki Tetsuo Asakura

INTRODUCTION The dragline silk of the golden orb web spider Nephila clavipes has received significant attention because of its remarkable mechanical properties, which include toughness and high tensile strength.1,2 This silk contains two structural proteins designated as major ampullate spidroin 1 (MaSp1) and major ampullate spidroin 2 (MaSp2).3,4 The dominant MaSp1 can be described as AB block...

2011
Graham Hayden Bratzel

Silk is a hierarchically structured protein fiber with exceptional tensile strength and extensibility, making it one of the toughest and most versatile biocompatible materials. While experimental studies have shown that the molecular structure of silk has a direct influence on the stiffness, toughness, and failure strength of silk, few molecular-level analyses of the nanostructure of silk assem...

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