Low reporting quality limits the contribution of human organ models to COVID-19 research: a systematic review

Autor/innen

  • Maren Hülsemann
  • Silke Kniffert
  • Anna Löwa
  • Morris Baumgardt
  • Katja Hönzke
  • Valeria Fernandez Vallone
  • Natascha I. Drude
  • Thomas Stüdemann
  • Ahmed S.M. Ali
  • Maria Arroyo Araujo
  • Alexandra Bannach-Brown
  • Linda Brunotte
  • Aileen Faist
  • Diana Fatykhova
  • Mara Fischer
  • Lina Hellwig
  • Saskia Hinse
  • Mirjana Kessler
  • Benjamin G. Carlisle
  • Sadaf Khankeh
  • Ishminder Singh Dhamrait
  • Charlotte Klein
  • Hristina Koceva
  • Sriram Kumar
  • Jens Kurreck
  • Katarzyna A. Ludwik
  • Philipp Mergenthaler
  • Sarah S. Schmerbeck
  • Sameer Singh
  • Luiz Gustavo Teixeira Alves
  • Emanuel Wyler
  • Harald Stachelscheid
  • Stefan Hippenstiel
  • Ulf Toelch
  • Andreas C. Hocke

Journal

  • EBioMedicine

Quellenangabe

  • EBioMedicine 130: 106392

Zusammenfassung

  • BACKGROUND: The COVID-19 pandemic created a unique situation in which researchers repurposed human models of varying complexity to investigate SARS-CoV-2, providing the opportunity to analyse their contribution across organs. METHODS: We conducted a systematic review of 558 studies, divided into pandemic and post-pandemic periods, to assess how human models were applied to investigate host factors, viral replication of SARS-CoV-2, immune responses, and to evaluate reporting quality. FINDINGS: Our analysis revealed substantial limitations that were only partially alleviated in post-pandemic studies. These limitations included heterogeneity of outcome measures, incomplete documentation of model characteristics and experimental procedures, and variable reporting quality, which were associated with reduced cross-study comparability, more difficult risk-of-bias assessment, and limited reliability and interpretability of evidence synthesis and meta-analytical results. INTERPRETATION: Strengthening community-driven reporting standards and methodological transparency is essential to enable robust evidence synthesis and to fully realise the potential of human organ models in future pandemics and translational research.


DOI

doi:10.1016/j.ebiom.2026.106392