In an effort to design efficient platform for siRNA delivery, we combine all atom classical and quantum simulations to study the binding of small interfering RNA (siRNA) by pristine single wall carbon nanotube (SWCNT). Our results show that siRNA strongly binds to SWCNT surface via unzipping its base-pairs and the propensity of unzipping increases with the increase in the diameter of the SWCNTs. The unzipping and subsequent wrapping events are initiated and driven by van der Waals interactions between the aromatic rings of siRNA nucleobases and the SWCNT surface. However, molecular dynamics (MD) simulations of double strand DNA (dsDNA) of the same sequence show that the dsDNA undergoes much less unzipping and wrapping on the SWCNT in the si...
Molecular dynamics (MD) simulations have been carried out to understand the binding mechanism of var...
By using molecular dynamics simulations, we investigate the spontaneous encapsulation and offloading...
By using molecular dynamics simulations, we investigate the spontaneous encapsulation and offloading...
In an effort to design efficient platform for siRNA delivery, we combine all atom classical and quan...
In an effort to design efficient platform for siRNA delivery, we combine all atom classical and quan...
We report spontaneous translocation of small interfering RNA (siRNA) inside carbon nanotubes (CNTs) ...
We report spontaneous translocation of small interfering RNA (siRNA) inside carbon nanotubes (CNTs) ...
Xenonucleic acids are synthetic nucleic acid analogues that are potential candidates for antisense o...
Using atomistic molecular dynamics simulations, we report graphene-assisted spontaneous unzipping of...
Using all atom molecular dynamics simulations, we report spontaneous unzipping and strong binding of...
The hybrids of single-walled carbon nanotube.(SWCNT) and single,stranded DNA (ssDNA) are novel nanos...
One of the major obstacles to the clinical development of gene silencing by small interfering RNA (s...
Nucleic acid interaction with nanoscale objects like carbon nanotubes (CNTs) and dendrimers is of fu...
Nucleic acid interaction with nanoscale objects like carbon nanotubes (CNTs) and dendrimers is of fu...
Nucleic acid interaction with nanoscale objects like carbon nanotubes (CNTs) and dendrimers is of fu...
Molecular dynamics (MD) simulations have been carried out to understand the binding mechanism of var...
By using molecular dynamics simulations, we investigate the spontaneous encapsulation and offloading...
By using molecular dynamics simulations, we investigate the spontaneous encapsulation and offloading...
In an effort to design efficient platform for siRNA delivery, we combine all atom classical and quan...
In an effort to design efficient platform for siRNA delivery, we combine all atom classical and quan...
We report spontaneous translocation of small interfering RNA (siRNA) inside carbon nanotubes (CNTs) ...
We report spontaneous translocation of small interfering RNA (siRNA) inside carbon nanotubes (CNTs) ...
Xenonucleic acids are synthetic nucleic acid analogues that are potential candidates for antisense o...
Using atomistic molecular dynamics simulations, we report graphene-assisted spontaneous unzipping of...
Using all atom molecular dynamics simulations, we report spontaneous unzipping and strong binding of...
The hybrids of single-walled carbon nanotube.(SWCNT) and single,stranded DNA (ssDNA) are novel nanos...
One of the major obstacles to the clinical development of gene silencing by small interfering RNA (s...
Nucleic acid interaction with nanoscale objects like carbon nanotubes (CNTs) and dendrimers is of fu...
Nucleic acid interaction with nanoscale objects like carbon nanotubes (CNTs) and dendrimers is of fu...
Nucleic acid interaction with nanoscale objects like carbon nanotubes (CNTs) and dendrimers is of fu...
Molecular dynamics (MD) simulations have been carried out to understand the binding mechanism of var...
By using molecular dynamics simulations, we investigate the spontaneous encapsulation and offloading...
By using molecular dynamics simulations, we investigate the spontaneous encapsulation and offloading...