Примеры использования Fibroin на Английском языке и их переводы на Русский язык
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Bio strengthening of natural nails with fibroin.
Preliminarily, dry fibroin films were prepared.
Fibroin can preserve its crystalline structure for long periods 10.
Amorphous areas of the protein form α-helices,the part of these helices increasing with fibroin hydration.
Fibroin is a thermostable protein; its denaturation temperature being higher than 127 С.
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Matrices made of collagen sponges and fibroin knitted net can imitate ligament components.
Fibroin is a fibrillar protein with a great number of repeats in primary structure.
These structures are more compatible with blood in comparison with films andmatrices made from pure fibroin.
Fibroin is the main silk protein obtained from the cocoons of silkworms and related species.
The results of the experiments confirmed the possibility of using silk fibroin for vascular regeneration 147.
Silkworm Bombyx mori silk fibroin is one of the most prospective nature polymers for tissue engineering.
The aim of the investigation was tostudy the mechanical and biological properties of silk fibroin silkworm B.
The main protein of silkworm silk(fibroin) and the frame silk of spider webs(spidroin) both share these advantages.
One of universal materials used as a scaffold component is silk fibroin of silkworm Bombyx mori.
The modification of silk fibroin and spidroin with additives can increase the effectiveness of their application 102.
The mechanical properties of the hybrid structures can be optimized for the regeneration of various natural ligaments andtendons by changing the number of twisted strands of fibroin 141.
Fibroin refers to fibrillar proteins and is characterized by a great number of repetitions in its primary structure.
Such structure causes homogeneity of fibroin secondary structure presenting antiparallel β-layers with hydrogen bonds.
For a complete understanding of the uniqueness of these two biopolymers andan objective evaluation of their advantages it is necessary to review other polymers and compare them with fibroin and spidroin.
Laboratory tests showed that the addition of fibroin to polylactide-co-glycolide, enhances the proliferation of nerve cells.
Fibroin is highly transparent, its transmissibility in the visible spectrum is 90-95%, while the refractive index of fibroin films is 1.55 at a thickness of 30-50 µm 14.
Mechanical properties andbiodegradation rate of fibroin products can be controlled by changing a proportion of β-layers in its structure 2.
Silk fibroin and spidroin are shown to be applied for creation of 3D matrices promoting regeneration of damaged organs and tissues, biodegradable cell carriers and pharmaceutical preparations.
More than two hundred different polymers including silk fibroin[108], collagen[109], chitosan[110] and gelatin[111] are suitable for use with this method.
It can be due to the fact that collagen as a part of composite fails to provide proliferative activity growth due to cell receptor shielding by fibroin molecules of collagen RGD-sequence.
Silk II refers to the arrangement of fibroin molecules in spun silk, which has greater strength and is often used in various commercial applications.
The fabricated scaffolds were based on two polymers: silk fibroin and gelatin and fibroin-gelatin blend in different ratios.
Matrices of silk fibroin containing a mechanical growth factor, transforming growth factor and stem cells can contribute to the regeneration of articular cartilage in situ 130.
Availability of silkworm cocoons in nature,debugged methods of fibroin purification make this protein very perspective in bioengineering constructs.
At the same time, silk fibroin is characterized by unique mechanical properties; however, cell proliferative activity on silk fibroin scaffolds is lower than that on gelatin constructions 26, 27.