Magnetotactic bacteria (MTB) naturally synthesize magnetic nanoparticles that are wrapped in lipid membranes. These membrane-bound particles, which are known as magnetosomes, are characterized by their narrow size distribution, high colloidal stability, and homogenous magnetic properties. These characteristics of magnetosomes confer them with significant value as materials for biomedical and industrial applications. MTB are also a model system to study key biological questions relating to formation of bacterial organelles, metal homeostasis, biomineralization, and magnetoaerotaxis. The similar size scale of nano and microfluidic systems to MTB and ease of coupling to local magnetic fields make them especially useful to study and analyze MTB...
Magnetotactic bacteria are aquatic microorganisms that have the ability to align in the geomagnetic ...
magnetotactic bacteria; bacterial organelle; magnetosome; magnetite; biomineralization; compartmenta...
International audienceMagnetotactic bacteria are capable of biosynthesizing magnetic nanoparticles, ...
Magnetotactic bacteria (MTB), a diverse group of marine and freshwater microorganisms, have attracte...
Magnetic nanoparticles (MNPs) are useful for many biomedical applications, but it is challenging to ...
Magnetotactic bacteria (MTB) biomineralize magnetosomes, which are defined as intracellular nanocrys...
Magnetotactic bacteria (MTB) have the ability to navigate along the Earth's magnetic field. This so-...
Magnetotactic bacteria (MTB) belong to several phyla. This class of microorganisms exhibits the abil...
The ability of magnetotactic bacteria (MTB) to navigate along magnetic field lines is based on uniqu...
Magnetotactic bacteria orient and migrate along geomagnetic field lines. This ability is based on in...
Magnetotactic bacteria (MTB) produce intracellular organelles called magnetosomes which are magnetic...
Magnetic nanoparticles have both fundamental and technological applications, ranging from environmen...
Many species of bacteria can manufacture materials on a finer scale than those that are syntheticall...
In the framework of the dialog between P systems and Microbiology, in this paper we focus on the ma...
International audienceMagnetotactic bacteria (MTB) are a heterogeneous group of Gram-negative prokar...
Magnetotactic bacteria are aquatic microorganisms that have the ability to align in the geomagnetic ...
magnetotactic bacteria; bacterial organelle; magnetosome; magnetite; biomineralization; compartmenta...
International audienceMagnetotactic bacteria are capable of biosynthesizing magnetic nanoparticles, ...
Magnetotactic bacteria (MTB), a diverse group of marine and freshwater microorganisms, have attracte...
Magnetic nanoparticles (MNPs) are useful for many biomedical applications, but it is challenging to ...
Magnetotactic bacteria (MTB) biomineralize magnetosomes, which are defined as intracellular nanocrys...
Magnetotactic bacteria (MTB) have the ability to navigate along the Earth's magnetic field. This so-...
Magnetotactic bacteria (MTB) belong to several phyla. This class of microorganisms exhibits the abil...
The ability of magnetotactic bacteria (MTB) to navigate along magnetic field lines is based on uniqu...
Magnetotactic bacteria orient and migrate along geomagnetic field lines. This ability is based on in...
Magnetotactic bacteria (MTB) produce intracellular organelles called magnetosomes which are magnetic...
Magnetic nanoparticles have both fundamental and technological applications, ranging from environmen...
Many species of bacteria can manufacture materials on a finer scale than those that are syntheticall...
In the framework of the dialog between P systems and Microbiology, in this paper we focus on the ma...
International audienceMagnetotactic bacteria (MTB) are a heterogeneous group of Gram-negative prokar...
Magnetotactic bacteria are aquatic microorganisms that have the ability to align in the geomagnetic ...
magnetotactic bacteria; bacterial organelle; magnetosome; magnetite; biomineralization; compartmenta...
International audienceMagnetotactic bacteria are capable of biosynthesizing magnetic nanoparticles, ...