Hybrid deterministic/stochastic simulation of complex biochemical systems.

Mol Biosyst

Department of Physics, University of Trento, via Sommarive 14, Trento, Italy.

Published: November 2017

AI Article Synopsis

Article Abstract

In a biological cell, cellular functions and the genetic regulatory apparatus are implemented and controlled by complex networks of chemical reactions involving genes, proteins, and enzymes. Accurate computational models are indispensable means for understanding the mechanisms behind the evolution of a complex system, not always explored with wet lab experiments. To serve their purpose, computational models, however, should be able to describe and simulate the complexity of a biological system in many of its aspects. Moreover, it should be implemented by efficient algorithms requiring the shortest possible execution time, to avoid enlarging excessively the time elapsing between data analysis and any subsequent experiment. Besides the features of their topological structure, the complexity of biological networks also refers to their dynamics, that is often non-linear and stiff. The stiffness is due to the presence of molecular species whose abundance fluctuates by many orders of magnitude. A fully stochastic simulation of a stiff system is computationally time-expensive. On the other hand, continuous models are less costly, but they fail to capture the stochastic behaviour of small populations of molecular species. We introduce a new efficient hybrid stochastic-deterministic computational model and the software tool MoBioS (MOlecular Biology Simulator) implementing it. The mathematical model of MoBioS uses continuous differential equations to describe the deterministic reactions and a Gillespie-like algorithm to describe the stochastic ones. Unlike the majority of current hybrid methods, the MoBioS algorithm divides the reactions' set into fast reactions, moderate reactions, and slow reactions and implements a hysteresis switching between the stochastic model and the deterministic model. Fast reactions are approximated as continuous-deterministic processes and modelled by deterministic rate equations. Moderate reactions are those whose reaction waiting time is greater than the fast reaction waiting time but smaller than the slow reaction waiting time. A moderate reaction is approximated as a stochastic (deterministic) process if it was classified as a stochastic (deterministic) process at the time at which it crosses the threshold of low (high) waiting time. A Gillespie First Reaction Method is implemented to select and execute the slow reactions. The performances of MoBios were tested on a typical example of hybrid dynamics: that is the DNA transcription regulation. The simulated dynamic profile of the reagents' abundance and the estimate of the error introduced by the fully deterministic approach were used to evaluate the consistency of the computational model and that of the software tool.

Download full-text PDF

Source
http://dx.doi.org/10.1039/c7mb00426eDOI Listing

Publication Analysis

Top Keywords

waiting time
16
reaction waiting
12
reactions
8
computational models
8
complexity biological
8
molecular species
8
computational model
8
model software
8
software tool
8
fast reactions
8

Similar Publications

Background: In Uganda, many people self-medicate and the practice raises important questions about access to healthcare, patient choices, and the increasing prevalence of antimicrobial resistance. This systematic review and meta-analysis investigated the prevalence and factors associated with self-medication in Uganda.

Methods: We searched Scopus, PubMed, and Embase databases, WHO AFRO, UNIPH registries, and Google Scholar search engine from inception to November 2024 using the algorithm "Self-Medication" AND "Uganda".

View Article and Find Full Text PDF

Improving and decentralising neuropaediatric healthcare in Nicaragua by implementing an education programme. A pre-experimental study.

Enferm Clin (Engl Ed)

January 2025

Departamento de Enfermería, Facultad de Enfermería, Fisioterapia y Podología, Universidad de Sevilla, Grupo de Investigación PAIDI CTS1050: «Cuidados Complejos, Cronicidad y Resultados en Salud», Sevilla, Spain. Electronic address:

Objective: To improve and decentralize neuropediatric healthcare in Nicaragua by implementing an education program.

Method: This study is carried out as an international cooperation proyecto between September 2018 and June 2019. It has a pre-experimental and before-after design (on a single group) of the implementation of an education program.

View Article and Find Full Text PDF

Introduction: A lack of national consensus on the roles and responsibilities of Australian memory and cognition clinics contributes to the large variability seen across services. The introduction of guidelines and a quality assessment framework could facilitate greater harmonization and quality improvements.

Methods: We used a modified Delphi process to develop the guidelines.

View Article and Find Full Text PDF

Dentistry still faces difficulties in diagnosing oral precancer and cancer, especially when it comes to early phase changes or disease detection, evaluation, and treatment. In essence, oral lumenography is the process of identifying oral lesions using a chemiluminescent light source and a toluidine blue labeling system. Since neoplastic epithelial cells have a changed nuclear-cytoplasmic ratio, acetic acid dehydration brings out this nuclear density and gives the tissue an "acetowhite" look.

View Article and Find Full Text PDF

The discrepancy between donor organ availability and demand leads to a significant waiting-list dropout rate and mortality. Although quantitative tools such as the Donor Risk Index (DRI) help assess organ suitability, many potentially viable organs are still discarded due to the lack of universally accepted markers to predict post-transplant outcomes. Normothermic machine perfusion (NMP) offers a platform to assess viability before transplantation.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!