[HTML][HTML] Computational and experimental approaches for investigating nanoparticle-based drug delivery systems
Most therapeutic agents suffer from poor solubility, rapid clearance from the blood stream, a
lack of targeting, and often poor translocation ability across cell membranes. Drug/gene …
lack of targeting, and often poor translocation ability across cell membranes. Drug/gene …
Coupled multiphysics modelling of sensors for chemical, biomedical, and environmental applications with focus on smart materials and low-dimensional …
Low-dimensional nanostructures have many advantages when used in sensors compared
to the traditional bulk materials, in particular in their sensitivity and specificity. In such …
to the traditional bulk materials, in particular in their sensitivity and specificity. In such …
The dynamics of meaningful social interactions and the emergence of collective knowledge
Collective knowledge as a social value may arise in cooperation among actors whose
individual expertise is limited. The process of knowledge creation requires meaningful …
individual expertise is limited. The process of knowledge creation requires meaningful …
Molecular dynamics simulations on drug delivery systems
Z Shariatinia - Modeling and Control of Drug Delivery Systems, 2021 - Elsevier
Molecular dynamics (MD) simulation is a robust method that is used as an in silico means in
the arena of computer-aided drug discovery and design to explore the interactions occurred …
the arena of computer-aided drug discovery and design to explore the interactions occurred …
Mathematical and computational models of RNA nanoclusters and their applications in data-driven environments
Ribonucleic acid (RNA) is a fundamental molecule having several favourable structural
properties that can be used for various potential applications in the field of nanotechnology …
properties that can be used for various potential applications in the field of nanotechnology …
Coarse-grained models of RNA nanotubes for large time scale studies in biomedical applications
In order to describe the physical properties of large time scale biological systems, coarse-
grained models play an increasingly important role. In this paper we develop Coarse …
grained models play an increasingly important role. In this paper we develop Coarse …
Atomistic to continuum model for studying mechanical properties of RNA nanotubes
With rapid advancements in the emerging field of RNA nanotechnology, its current and
potential applications, new important problems arise in our quest to better understand …
potential applications, new important problems arise in our quest to better understand …
Nonlocal Models in Biology and Life Sciences: Sources, Developments, and Applications
Nonlocality is important in realistic mathematical models of physical and biological systems
at small-length scales. It characterizes the properties of two individuals located in different …
at small-length scales. It characterizes the properties of two individuals located in different …
A molecular dynamics study of nanowire resonator bio-object detection
R Fallahpour, R Melnik - Journal of Mechanics in Medicine and …, 2022 - World Scientific
This paper presents a comprehensive analysis, carried out by the molecular dynamics (MD)
simulations, of the vibrations of silicon nanowire (SiNW) resonators, having diverse …
simulations, of the vibrations of silicon nanowire (SiNW) resonators, having diverse …
Prediction of solution properties and dynamics of RNAs by means of Brownian dynamics simulation of coarse-grained models: Ribosomal 5S RNA and phenylalanine …
Background The possibility of validating biological macromolecules with locally disordered
domains like RNA against solution properties is helpful to understand their function. In this …
domains like RNA against solution properties is helpful to understand their function. In this …