Magnetosomes are natural magnetic nanoparticles with exceptional properties that are synthesized in magnetotactic bacteria by a highly regulated biomineralization process. Their usability in many applications could be further improved by encapsulation in biocompatible polymers. In this study, we explored the production of spider silk-inspired peptides on magnetosomes of the alphaproteobacterium Magnetospirillum gryphiswaldense. Genetic fusion of different silk sequence-like variants to abundant magnetosome membrane proteins enhanced magnetite biomineralization and caused the formation of a proteinaceous capsule, which increased the colloidal stability of isolated particles. Furthermore, we show that spider silk peptides fused to a magnetoso...
The ability of magnetotactic bacteria (MTB) to navigate along magnetic field lines is based on uniqu...
Different neoteric solvents (both ionic liquids and deep eutectic solvents) were used for the disper...
Many species of bacteria can manufacture materials on a finer scale than those that are syntheticall...
Magnetosomes are natural magnetic nanoparticles with exceptional properties that are synthesized in ...
Magnetotactic bacteria (MTB) have the ability to navigate along the Earth's magnetic field. This so-...
The synthetic production of monodisperse single magnetic domain nanoparticles at ambient temperature...
Magnetosomes are membrane-enclosed magnetite nanocrystals synthesized by magnetotactic bacteria (MTB...
The synthetic production of monodisperse single magnetic domain nanoparticles at ambient temperature...
Surgical site infections (SSI) often occur after invasive surgery, which is as a serious health prob...
Spider silk protein-based materials represent a new generation of biomaterials with tunable mechanic...
Magnetic nanoparticles have both fundamental and technological applications, ranging from environmen...
Magnetotactic bacteria biosynthesize specific organelles, the magnetosomes, which are membrane-enclo...
Silk is a natural protein produced by members of the class Arachnida (over 30,000 species of spiders...
Bioengineered spider silk is a biomaterial that has exquisite mechanical properties, biocompatibilit...
In recent years, spider silk-based materials have attracted attention because of their biocompatibil...
The ability of magnetotactic bacteria (MTB) to navigate along magnetic field lines is based on uniqu...
Different neoteric solvents (both ionic liquids and deep eutectic solvents) were used for the disper...
Many species of bacteria can manufacture materials on a finer scale than those that are syntheticall...
Magnetosomes are natural magnetic nanoparticles with exceptional properties that are synthesized in ...
Magnetotactic bacteria (MTB) have the ability to navigate along the Earth's magnetic field. This so-...
The synthetic production of monodisperse single magnetic domain nanoparticles at ambient temperature...
Magnetosomes are membrane-enclosed magnetite nanocrystals synthesized by magnetotactic bacteria (MTB...
The synthetic production of monodisperse single magnetic domain nanoparticles at ambient temperature...
Surgical site infections (SSI) often occur after invasive surgery, which is as a serious health prob...
Spider silk protein-based materials represent a new generation of biomaterials with tunable mechanic...
Magnetic nanoparticles have both fundamental and technological applications, ranging from environmen...
Magnetotactic bacteria biosynthesize specific organelles, the magnetosomes, which are membrane-enclo...
Silk is a natural protein produced by members of the class Arachnida (over 30,000 species of spiders...
Bioengineered spider silk is a biomaterial that has exquisite mechanical properties, biocompatibilit...
In recent years, spider silk-based materials have attracted attention because of their biocompatibil...
The ability of magnetotactic bacteria (MTB) to navigate along magnetic field lines is based on uniqu...
Different neoteric solvents (both ionic liquids and deep eutectic solvents) were used for the disper...
Many species of bacteria can manufacture materials on a finer scale than those that are syntheticall...