The rod-shaped nanoparticles of the widespread plant pathogen tobacco mosaic virus (TMV) have been a matter of intense debates and cutting-edge research for more than a hundred years. During the late 19th century, their behavior in filtration tests applied to the agent causing the 'plant mosaic disease' eventually led to the discrimination of viruses from bacteria. Thereafter, they promoted the development of biophysical cornerstone techniques such as electron microscopy and ultracentrifugation. Since the 1950s, the robust, helically arranged nucleoprotein complexes consisting of a single RNA and more than 2100 identical coat protein subunits have enabled molecular studies which have pioneered the understanding of viral replication and self...
Immunosorbent turnip vein clearing virus (TVCV) particles displaying the IgG-binding domains D and E...
Increasing number of researchers are introducing viruses as primary building blocks to generate orna...
The cooperative organization of enzymes by cells is a key feature for the efficiency of living syste...
The rod-shaped nanoparticles of the widespread plant pathogen tobacco mosaic virus (TMV) have been a...
Tobacco mosaic virus (TMV) is a robust nanotubular nucleoprotein scaffold increasingly employed for ...
Plant viruses are emerging as versatile tools for nanotechnology applications since it is possible t...
Plant virus nanoparticles are promising candidates for the development of novel materials, including...
Advances in nanotechnology offer significant improvements in a wide range of applications that inclu...
The conjunction of (bio-)chemical recognition elements with nanoscale biological building blocks suc...
The spacing of functional nanoscopic elements may play a fundamental role in nanotechnological and b...
The tobacco mosaic virus (TMV) is one of the most studied virus. Its properties (simplicity, self as...
In recent years there has been an outburst of interest regarding the employment of nanoparticles for...
In recent years there has been an outburst of interest regarding the employment of nanoparticles for...
Viruses are widely used to fabricate nanomaterials in the field of nanotechnology. Plant viruses are...
Plant virus nanoparticles (VNPs) have many unique advantages, including their ability to self-assemb...
Immunosorbent turnip vein clearing virus (TVCV) particles displaying the IgG-binding domains D and E...
Increasing number of researchers are introducing viruses as primary building blocks to generate orna...
The cooperative organization of enzymes by cells is a key feature for the efficiency of living syste...
The rod-shaped nanoparticles of the widespread plant pathogen tobacco mosaic virus (TMV) have been a...
Tobacco mosaic virus (TMV) is a robust nanotubular nucleoprotein scaffold increasingly employed for ...
Plant viruses are emerging as versatile tools for nanotechnology applications since it is possible t...
Plant virus nanoparticles are promising candidates for the development of novel materials, including...
Advances in nanotechnology offer significant improvements in a wide range of applications that inclu...
The conjunction of (bio-)chemical recognition elements with nanoscale biological building blocks suc...
The spacing of functional nanoscopic elements may play a fundamental role in nanotechnological and b...
The tobacco mosaic virus (TMV) is one of the most studied virus. Its properties (simplicity, self as...
In recent years there has been an outburst of interest regarding the employment of nanoparticles for...
In recent years there has been an outburst of interest regarding the employment of nanoparticles for...
Viruses are widely used to fabricate nanomaterials in the field of nanotechnology. Plant viruses are...
Plant virus nanoparticles (VNPs) have many unique advantages, including their ability to self-assemb...
Immunosorbent turnip vein clearing virus (TVCV) particles displaying the IgG-binding domains D and E...
Increasing number of researchers are introducing viruses as primary building blocks to generate orna...
The cooperative organization of enzymes by cells is a key feature for the efficiency of living syste...