idw – Informationsdienst Wissenschaft

Nachrichten, Termine, Experten

Grafik: idw-Logo
Science Video Project
idw-Abo

idw-News App:

AppStore

Google Play Store



Instance:
Share on: 
06/27/2017 09:12

Using mathematical methods to study complex biological networks

Thomas Klein Communications department
Universität Luxemburg - Université du Luxembourg

    Complex biological processes, such as the metabolism, often involve thousands of different compounds coupled by chemical reactions. These process chains are described by researchers as chemical reaction networks. Researchers from the University of Luxembourg have developed new mathematical methods to study the energetic properties of these networks. The scientists published their findings in the scientific journal Physical Review X.

    The paper was prepared by the research group led by Prof Massimiliano Esposito
    that investigates how very small biological systems work at the molecular level. These systems are subject to large fluctuations in mass which make their behavior difficult to predict. In order to be able to describe them nonetheless, the researchers use a probalistic approach that calculates the dynamics of these systems based on the statistical likeliness that changes occur. Using these probabilistic descriptions, the group studies how these systems exchange energy and matter with their environment and how much energy they dissipate during these processes – a discipline known as stochastic thermodynamics. However, in the realm of complex chemical reaction networks, probabilistic descriptions become unfeasible since thousands of molecules are involved. The authors showed how the mathematical methods developed for small system can be used to investigate these networks.

    “Currently, rigorous thermodynamic models for this kind of networks are lacking. Our work paves the way for thermodynamic characterizations of real chemical networks, such as metabolism,” explains Riccardo Rao, the main author of the paper. “We think of these networks as machines transforming some compounds into others. Some compounds are consumed as they ‘fuel’ the processes. Our description allows to answer questions such as: Is this process efficient? How much energy does it dissipate? If we slightly tweak the system, how will it react?”

    At the moment, their research focuses on models of metabolic networks, for which some simplifying approximations are required. “We are now using this framework to investigate specific classes of chemical reaction networks, such as metabolic networks” Riccardo Rao said. Also, the research team will work with biologists and chemists to test and apply the results to concrete biological systems. Research in this direction with groups from the Luxembourg Center for Systems Biomedicine is already ongoing.


    Images

    Criteria of this press release:
    Journalists
    Biology, Chemistry, Physics / astronomy
    transregional, national
    Research results
    English


     

    Help

    Search / advanced search of the idw archives
    Combination of search terms

    You can combine search terms with and, or and/or not, e.g. Philo not logy.

    Brackets

    You can use brackets to separate combinations from each other, e.g. (Philo not logy) or (Psycho and logy).

    Phrases

    Coherent groups of words will be located as complete phrases if you put them into quotation marks, e.g. “Federal Republic of Germany”.

    Selection criteria

    You can also use the advanced search without entering search terms. It will then follow the criteria you have selected (e.g. country or subject area).

    If you have not selected any criteria in a given category, the entire category will be searched (e.g. all subject areas or all countries).