The application of carbon nanotubes (CNT) in the area of biology such as Drug delivery vehicle and Biosensors calls for the basic understanding of the CNT's with biological macromolecules like proteins, DNA, Carbohydrates and lipids. CNT is known to be highly hydrophobic in nature. Our study reveals that the inherent hydrophobic nature of CNT is capable of disturbing the α-helical protein secondary structure. Thus our study provides mechanistic understanding of the loss in the α-helicity of the proteins in the presence of CNT. Our study reveals that the nanomaterials should be suitably modified for biological applications
In nanomedicine, carbon nanotubes (CNTs) are considered potential candidates as drug delivery system...
Background: The intrinsic physicochemical properties of carbon nanotubes (CNTs) make them unique too...
Carbon nanotubes, CNTs, and proteins could not be more chemically and physically distant. CNTs are h...
The combination of the very different chemical natures of carbon nanotubes (CNTs) and proteins gives...
Integrating carbon nanotubes (CNTs) with biological systems to form hybrid functional assemblies is ...
The scope of nanotechnology is gaining importance in biology and medicine. Carbon nanotubes (CNTs) h...
Because of the special properties of carbon nanotubes (CNTs), their applications have been introduce...
DNA-coated carbon nanotubes represent a hybrid system which unites the biological regime and the nan...
Proteins have been conjugated to carbon nanotubes for applications in biosensing, biorecognition, de...
Nanoscience deals with the characterization and manipulation of matter on the atomic/molecular size ...
We have characterized the influence of protein–carbon nanotube interactions on protein structure and...
Nanoscience deals with the characterization and manipulation of matter on the atomic/molecular size ...
Background: The formation of bio-corona, due to adsorption of biomolecules onto carbon nanotubes (CN...
SummaryCarbon nanotubes (CNTs) entered the domain of biological research a few years ago, creating a...
In this study a thorough investigation on the changes in the conformation of the α-helical pept...
In nanomedicine, carbon nanotubes (CNTs) are considered potential candidates as drug delivery system...
Background: The intrinsic physicochemical properties of carbon nanotubes (CNTs) make them unique too...
Carbon nanotubes, CNTs, and proteins could not be more chemically and physically distant. CNTs are h...
The combination of the very different chemical natures of carbon nanotubes (CNTs) and proteins gives...
Integrating carbon nanotubes (CNTs) with biological systems to form hybrid functional assemblies is ...
The scope of nanotechnology is gaining importance in biology and medicine. Carbon nanotubes (CNTs) h...
Because of the special properties of carbon nanotubes (CNTs), their applications have been introduce...
DNA-coated carbon nanotubes represent a hybrid system which unites the biological regime and the nan...
Proteins have been conjugated to carbon nanotubes for applications in biosensing, biorecognition, de...
Nanoscience deals with the characterization and manipulation of matter on the atomic/molecular size ...
We have characterized the influence of protein–carbon nanotube interactions on protein structure and...
Nanoscience deals with the characterization and manipulation of matter on the atomic/molecular size ...
Background: The formation of bio-corona, due to adsorption of biomolecules onto carbon nanotubes (CN...
SummaryCarbon nanotubes (CNTs) entered the domain of biological research a few years ago, creating a...
In this study a thorough investigation on the changes in the conformation of the α-helical pept...
In nanomedicine, carbon nanotubes (CNTs) are considered potential candidates as drug delivery system...
Background: The intrinsic physicochemical properties of carbon nanotubes (CNTs) make them unique too...
Carbon nanotubes, CNTs, and proteins could not be more chemically and physically distant. CNTs are h...