Universidad de Burgos RIUBU Principal Default Universidad de Burgos RIUBU Principal Default
  • español
  • English
  • français
  • Deutsch
  • português (Brasil)
  • italiano
Universidad de Burgos RIUBU Principal Default
  • Ayuda
  • Contact Us
  • Send Feedback
  • Acceso abierto
    • Archivar en RIUBU
    • Acuerdos editoriales para la publicación en acceso abierto
    • Controla tus derechos, facilita el acceso abierto
    • Sobre el acceso abierto y la UBU
    • español
    • English
    • français
    • Deutsch
    • português (Brasil)
    • italiano
    • español
    • English
    • français
    • Deutsch
    • português (Brasil)
    • italiano
    JavaScript is disabled for your browser. Some features of this site may not work without it.

    Browse

    All of RIUBUCommunities and CollectionsBy Issue DateAuthorsTitlesSubjectsThis CollectionBy Issue DateAuthorsTitlesSubjects

    My Account

    LoginRegister

    Statistics

    View Usage Statistics

    Compartir

    View Item 
    •   RIUBU Home
    • E-Prints and Research Data
    • Untitled
    • Untitled
    • Untitled
    • View Item
    •   RIUBU Home
    • E-Prints and Research Data
    • Untitled
    • Untitled
    • Untitled
    • View Item

    Por favor, use este identificador para citar o enlazar este ítem: https://hdl.handle.net/10259/12245

    Título
    Toxicologial Evaluation of Pristine MXene, PolyPyrrole Functionalized MXene, and MXene-Graphene Hybrids Using Cellular and Computational Models
    Autor
    Fuente Vivas, Dalia de laUBU authority Orcid
    Huerta Sainz, Sergio de laUBU authority Orcid
    Rodriguez-Vinagre, J.
    Palacios Santamaría, DavidUBU authority Orcid
    Aparicio Martínez, SantiagoUBU authority Orcid
    Gómez Cuadrado, LauraUBU authority Orcid
    Fecha de publicación
    2026
    Descripción
    Póster presentado a: 23 International Congress ESTIV, Maastricht, 2026, 29 june - 2 july
    Abstract
    Background: MXenes and Graphene possess outstanding physicochemical properties (thermal stability, electrical conductivity). They have strong application potential in biosensors, conductive ink, and EMI shielding. Challenge: Current (nano)particle regulations present critical gaps, particularly in human health risk assessment. There is a growing need for Safe by Design (SbD) aligned evaluation strategies. Aim: Implementing NAMs (in vitro and in silico) to replace animal testing and effectively bridge the in vitro-in vivo gap in safety assessments. Approach: Step-1 SbD was implemented via chemical hazard identification. In vitro NAMs (static and dynamic 3D spheroids) were compared with 2D cultures in a multi-tiered approach integrating toxicological profiles with predictive in silico models for mechanistic cellular analysis. Impact: Enables SbD-driven, animal-free predictive toxicology by integrating advanced 3D NAMs with in silico mechanistic modeling.
    Palabras clave
    MXenes
    Safe-and-Sustainable-by-Design (SSbD)
    New Approach Methodologies (NAMs)
    QSAR
    3D spheroids
    Nanotoxicology
    Materia
    Materiales nanoestructurados
    Nanostructured materials
    Toxicología
    Toxicology
    URI
    https://hdl.handle.net/10259/12245
    Collections
    • Untitled
    Files in this item
    Nombre:
    Fuente-ESTIV_2026.pdf
    Tamaño:
    1.566Mb
    Formato:
    Adobe PDF
    Descripción:
    Póster
    Thumbnail
    FilesOpen

    Métricas

    Citas

    Ver estadísticas de uso

    Export

    RISMendeleyRefworksZotero
    • edm
    • marc
    • xoai
    • qdc
    • ore
    • ese
    • dim
    • uketd_dc
    • oai_dc
    • etdms
    • rdf
    • mods
    • mets
    • didl
    • premis
    Show full item record

    Universidad de Burgos

    Powered by MIT's. DSpace software, Version 5.10