Tesis doctoralsDepartament d'Enginyeria Química

Quantitative Systems Toxicology Modeling for Neuronal Adverse Outcome

  • Identification data

    Identifier:  TDX:4033
    Authors:  -, Deepika
    Abstract:
    Humans are exposed to multiple environmental chemicals with some being toxic, and others with unknown or poorly characterized health effects. Chemical risk assessment relies on the knowledge of hazard, the dose–response relationship, and exposure to characterize potential risks to human health. Understanding the human health risk, especially neurotoxicity posed by these chemicals is a significant challenge due to diverse chemical space and limited toxicological information. Moreover, the existing computational models are either focused on exposure or chemical response being unable to capture the dynamic human physiology, mechanistic signaling and hence targeted toxicity. The objective of this thesis is to develop quantitative systems toxicology (QST) models to predict neurotoxicity by integrating chemical exposure, physiology, chemical kinetics, molecular dynamics and cellular response (brain). QST approach was utilized for multiple chemicals like bisphenol A (BPA), flame retardants (FRs), PFOS and PFOA. Risk assessment was improved by including mechanistic kinetics for FRs and sex-specific physiological and biochemical differences for BPA. Dynamic PBPK model was developed to evaluate the toxicokinetic in pediatric, adult, and geriatric for PFOS. In-vitro in-vivo (IVIVE) Brain PBPK Model was developed for predicting the estimated brain tissue dose which was coupled with perturbations in endogenous ROS using systems biology model. PBPK for FRs showed prolonged distribution in brain and the sex-specific BPA model displayed a higher half-life for girls than boys
  • Others:

    Publisher: Universitat Rovira i Virgili
    Date: 2022-09-07, 2024-03-05T23:05:13Z, 2022-09-28T10:18:08Z
    Identifier: http://hdl.handle.net/10803/675504
    Departament/Institute: Departament d'Enginyeria Química, Universitat Rovira i Virgili.
    Language: eng
    Author: -, Deepika
    Director: Raju Prasad, Sharma, Kumar, Vikas, Schuhmacher Ansuategui, Marta
    Source: TDX (Tesis Doctorals en Xarxa)
    Format: application/pdf, application/pdf, 329 p.
  • Keywords:

    Systems Biology Model
    Neurotoxicity
    Biología de Sistemas
    Modelo PBPK
    Neurotoxicidad
    Biologia de Sistemes
    PBPK Model
    Neurotoxicitat
    Ciències de la salut
  • Documents:

  • Cerca a google

    Search to google scholar