After a short perturbation of a bistable genetic network, it returns to its initial steady state or transits to another steady state. The time scale characterizing such transient regimes can be appreciably longer compared to those of the degradation of the perturbed mRNAs and proteins. The author shows in detail the specifics of this slowdown of the transient kinetics using mean-field kinetic equations and Monte Carlo simulations. Attention is focused on nanocarrier-mediated delivery and release of short non-coding RNA (e.g., miRNA or siRNA) into cells with subsequent suppression of the populations of the targeted mRNA and corresponding protein
mRNA delivery into cells forms the basis for one of the new and promising ways to treat various dise...
Recent experiments indicate that several viruses may encode microRNAs (miRNAs) in cells. Such RNAs m...
The long-term changes of the neuron function are often related to the interplay of the membrane volt...
Nanocarrier-mediated delivery and release of short non-coding RNA (e.g., miRNA or siRNA) into the ce...
Kinetics of gene expression may be bistable or oscillatory due to the feedbacks between the RNA and ...
Nanocarrier-mediated mRNA delivery and release into the cells with subsequent translation to protein...
In cells, genes are transcribed into mRNAs, and the latter are translated into proteins. Due to the ...
In cells, the bistable kinetics of gene expression can be observed on the level of (i) one gene with...
In eukaryotic cells, many genes are transcribed into non-coding RNAs. Small RNAs or, more specifical...
Because of the feedbacks between the DNA transcription and mRNA translation, the gene expression in ...
Transcriptional delay can significantly impact the dynamics of gene networks. Here we examine how su...
Transcriptional delay can significantly impact the dynamics of gene networks. Here we examine how su...
Mathematical models and computational simulations have proved valuable in many areas of cell biology...
In eukaryotic cells, the mRNA-protein interplay can be dramatically influenced by non-coding RNAs (n...
The experiments indicate that the transcription of genes into ncRNA can positively or negatively int...
mRNA delivery into cells forms the basis for one of the new and promising ways to treat various dise...
Recent experiments indicate that several viruses may encode microRNAs (miRNAs) in cells. Such RNAs m...
The long-term changes of the neuron function are often related to the interplay of the membrane volt...
Nanocarrier-mediated delivery and release of short non-coding RNA (e.g., miRNA or siRNA) into the ce...
Kinetics of gene expression may be bistable or oscillatory due to the feedbacks between the RNA and ...
Nanocarrier-mediated mRNA delivery and release into the cells with subsequent translation to protein...
In cells, genes are transcribed into mRNAs, and the latter are translated into proteins. Due to the ...
In cells, the bistable kinetics of gene expression can be observed on the level of (i) one gene with...
In eukaryotic cells, many genes are transcribed into non-coding RNAs. Small RNAs or, more specifical...
Because of the feedbacks between the DNA transcription and mRNA translation, the gene expression in ...
Transcriptional delay can significantly impact the dynamics of gene networks. Here we examine how su...
Transcriptional delay can significantly impact the dynamics of gene networks. Here we examine how su...
Mathematical models and computational simulations have proved valuable in many areas of cell biology...
In eukaryotic cells, the mRNA-protein interplay can be dramatically influenced by non-coding RNAs (n...
The experiments indicate that the transcription of genes into ncRNA can positively or negatively int...
mRNA delivery into cells forms the basis for one of the new and promising ways to treat various dise...
Recent experiments indicate that several viruses may encode microRNAs (miRNAs) in cells. Such RNAs m...
The long-term changes of the neuron function are often related to the interplay of the membrane volt...