[eng] Actuated structures are becoming relevant in medical fields; however, they call for flexible/soft-base materials that comply with biological tissues and can be synthesized in simple fabrication steps. In this work, we extend the palette of techniques to afford soft, actuable spherical structures taking advantage of the biosynthesis process of bacterial cellulose. Bacterial cellulose spheres (BCS) with localized magnetic nanoparticles (NPs) have been biosynthesized using two different one-pot processes: in agitation and on hydrophobic surface-supported static culture, achieving core-shell or hollow spheres, respectively. Magnetic actuability is conferred by superparamagnetic iron oxide NPs (SPIONs), and their location within the struct...
The aim of this study was to demonstrate the applicability of a novel magnetically assisted external...
Abstract Magnetotactic bacteria are microscale complex natural systems that synthesize magnetic nano...
© 2016, Springer Science+Business Media New York.Here, we report a scalable and rapid method to fabr...
Actuated structures are becoming relevant in medical fields; however, they call for flexible/soft-ba...
The synthesis of magnetic nanoparticles has long been an area of active research. Magnetic nanoparti...
Magnetic nanoparticles have both fundamental and technological applications, ranging from environmen...
Forming microspheres or microbeads from nanofibrous materials has recently attracted research intere...
Biomaterials derived from nature can offer sustainable, biomimetic, and biointeractive solutions. Ba...
The synthetic production of monodisperse single magnetic domain nanoparticles at ambient temperature...
Superparamagnetic cellulosics were prepared by the in situ synthesis of nanoscale ferrites. The inte...
The synthetic production of monodisperse single magnetic domain nanoparticles at ambient temperature...
Magnetotactic bacteria (MTB) have the ability to navigate along the Earth's magnetic field. This so-...
Supplementary material related to this article can be found online at https://doi.org/10.1016/j.nano...
Throughout the last two decades, cellulose, as the most available green and nontoxic biomacromolecul...
We have developed a new biofabrication process in which the precise control of bacterial motion is u...
The aim of this study was to demonstrate the applicability of a novel magnetically assisted external...
Abstract Magnetotactic bacteria are microscale complex natural systems that synthesize magnetic nano...
© 2016, Springer Science+Business Media New York.Here, we report a scalable and rapid method to fabr...
Actuated structures are becoming relevant in medical fields; however, they call for flexible/soft-ba...
The synthesis of magnetic nanoparticles has long been an area of active research. Magnetic nanoparti...
Magnetic nanoparticles have both fundamental and technological applications, ranging from environmen...
Forming microspheres or microbeads from nanofibrous materials has recently attracted research intere...
Biomaterials derived from nature can offer sustainable, biomimetic, and biointeractive solutions. Ba...
The synthetic production of monodisperse single magnetic domain nanoparticles at ambient temperature...
Superparamagnetic cellulosics were prepared by the in situ synthesis of nanoscale ferrites. The inte...
The synthetic production of monodisperse single magnetic domain nanoparticles at ambient temperature...
Magnetotactic bacteria (MTB) have the ability to navigate along the Earth's magnetic field. This so-...
Supplementary material related to this article can be found online at https://doi.org/10.1016/j.nano...
Throughout the last two decades, cellulose, as the most available green and nontoxic biomacromolecul...
We have developed a new biofabrication process in which the precise control of bacterial motion is u...
The aim of this study was to demonstrate the applicability of a novel magnetically assisted external...
Abstract Magnetotactic bacteria are microscale complex natural systems that synthesize magnetic nano...
© 2016, Springer Science+Business Media New York.Here, we report a scalable and rapid method to fabr...