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Squidiff: predicting cellular development and responses to perturbations using a diffusion model

  • Siyu He
  • , Yuefei Zhu
  • , Daniel Naveed Tavakol
  • , Haotian Ye
  • , Yeh Hsing Lao
  • , Zixian Zhu
  • , Cong Xu
  • , Shradha Chauhan
  • , Guy Garty
  • , Raju Tomer
  • , Gordana Vunjak-Novakovic
  • , James Zou
  • , Elham Azizi
  • , Kam W. Leong
  • Columbia University
  • Stanford University

Research output: Contribution to journalArticlepeer-review

13 Scopus citations

Abstract

Single-cell sequencing has revolutionized our understanding of cellular heterogeneity and responses to environmental stimuli. However, mapping transcriptomic changes across diverse cell types in response to various stimuli and elucidating underlying disease mechanisms remains challenging. Here we present Squidiff, a diffusion model-based generative framework that predicts transcriptomic changes across diverse cell types in response to environmental changes. We demonstrate the robustness of Squidiff across cell differentiation, gene perturbation and drug response prediction. Through continuous denoising and semantic feature integration, Squidiff learns transient cell states and predicts high-resolution transcriptomic landscapes over time and conditions. Furthermore, we applied Squidiff to model blood vessel organoid development and cellular responses to neutron irradiation and growth factors. Our results demonstrate that Squidiff enables in silico screening of molecular landscapes and cellular state transitions, facilitating rapid hypothesis generation and providing valuable insights into the regulatory principles of cell fate decisions.

Original languageEnglish
Pages (from-to)65-77
Number of pages13
JournalNature Methods
Volume23
Issue number1
DOIs
StatePublished - Jan 2026

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