Altres ajuts: the COST Action CA15126, Fundació La Marató de TV3 Nr. 201812 i ICREA Academia AwardIn tissue engineering, biological, physical, and chemical inputs have to be combined to properly mimic cellular environments and successfully build artificial tissues which can be designed to fulfill different biomedical needs such as the shortage of organ donors or the development of in vitro disease models for drug testing. Inclusion body-like protein nanoparticles (pNPs) can simultaneously provide such physical and biochemical stimuli to cells when attached to surfaces. However, this attachment has only been made by physisorption. To provide a stable anchoring, a covalent binding of lactic acid bacteria (LAB) produced pNPs, which lack the in...
[EN] Appropriate combinations of mechanical and biological stimuli are required to promote proper co...
A strategy to bind bacterial cells to surfaces in a directed fashion via dip-pen nanolithography (DP...
The fully de novo design of protein building blocks for self-assembling as functional nanoparticles ...
Cano Garrido, Olivia et al.Inclusion bodies (IBs) are protein-based nanoparticles formed in Escheric...
A growing number of insights on the biology of bacterial inclusion bodies (IBs) have revealed intrig...
Bacterial inclusion bodies (IBs) are proteinaceous aggregates that are used as nanoparticulate mate...
Aims: Bacterial inclusion bodies (IBs) are protein-based, amyloidal nanomaterials that mechanically ...
Altres ajuts: ICREA ACADEMIA awardNanoscale protein materials are highly convenient as vehicles for ...
Developing new implant surfaces with anti-adhesion bacterial properties used for medical devices rem...
Combining biomolecules with materials used in medicine allows for local control of the biological re...
When nanoparticles are exposed to biological environments, proteins rapidly adsorb to the surface an...
Altres ajuts: CIBER de Bioingeniería, Biomateriales y Nanomedicina (project NANOPROTHER). A Villaver...
Altres ajuts: CIBER de Bioingeniería, Biomateriales y Nanomedicina (project NANOPROTHER) (to AV), Ma...
Bacterial inclusion bodies (IBs) are mechanically stable protein particles in the microscale, which ...
Altres ajuts: acords transformatius de la UABWe have developed a simple, robust, and fully transvers...
[EN] Appropriate combinations of mechanical and biological stimuli are required to promote proper co...
A strategy to bind bacterial cells to surfaces in a directed fashion via dip-pen nanolithography (DP...
The fully de novo design of protein building blocks for self-assembling as functional nanoparticles ...
Cano Garrido, Olivia et al.Inclusion bodies (IBs) are protein-based nanoparticles formed in Escheric...
A growing number of insights on the biology of bacterial inclusion bodies (IBs) have revealed intrig...
Bacterial inclusion bodies (IBs) are proteinaceous aggregates that are used as nanoparticulate mate...
Aims: Bacterial inclusion bodies (IBs) are protein-based, amyloidal nanomaterials that mechanically ...
Altres ajuts: ICREA ACADEMIA awardNanoscale protein materials are highly convenient as vehicles for ...
Developing new implant surfaces with anti-adhesion bacterial properties used for medical devices rem...
Combining biomolecules with materials used in medicine allows for local control of the biological re...
When nanoparticles are exposed to biological environments, proteins rapidly adsorb to the surface an...
Altres ajuts: CIBER de Bioingeniería, Biomateriales y Nanomedicina (project NANOPROTHER). A Villaver...
Altres ajuts: CIBER de Bioingeniería, Biomateriales y Nanomedicina (project NANOPROTHER) (to AV), Ma...
Bacterial inclusion bodies (IBs) are mechanically stable protein particles in the microscale, which ...
Altres ajuts: acords transformatius de la UABWe have developed a simple, robust, and fully transvers...
[EN] Appropriate combinations of mechanical and biological stimuli are required to promote proper co...
A strategy to bind bacterial cells to surfaces in a directed fashion via dip-pen nanolithography (DP...
The fully de novo design of protein building blocks for self-assembling as functional nanoparticles ...