scMomer: A modality-aware pretraining framework for single-cell multi-omics modeling under missing modality conditions
Liu, Y.; Zou, Q.; Su, R.; Wei, L.
Show abstract
Foundation models offer new opportunities to capture cellular behavior from large-scale single-cell data. However, their development has been greatly constrained due to the limited availability of multi-omics profiles. Consequently, most models are designed for a single modality (e.g. scRNA-seq, or scATAC-seq, etc.), restricting their ability to capture the diversity of heterogeneous biological systems. Here, we introduce scMomer, a modality-aware pretraining framework designed for multi-modal representation learning under missing modality conditions. scMomer adopts a three-stage pretraining strategy that learns unimodal cell representations, models joint representations from multi-omics data, and distills multi-modal knowledge to enable multi-omics-like representations from unimodal input. Its modality-specific architecture and three-stage pretraining strategy enable effective learning under missing modality conditions and help capture cellular heterogeneity. Through extensive experiments, scMomer generates biologically meaningful embeddings and outperforms state-of-the-art unimodal approaches across diverse gene-level and cell-level downstream tasks, including cross-modality translation, gene function prediction, cell annotation, drug response prediction, and perturbation prediction. Overall, these results demonstrate that scMomer serves as a robust, generalizable, and scalable foundation for single-cell multi-modal analysis under missing modality conditions.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Integrative, high-resolution analysis of single cell gene expression across experimental conditions with PARAFAC2-RISE 96%
- scTrace+: enhance the cell fate inference by integrating the lineage-tracing and multi-faceted transcriptomic similarity information 96%
- scCausalVI disentangles single-cell perturbation responses with causality-aware generative model 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.