scELMo: Embeddings from Language Models are Good Learners for Single-cell Data Analysis.
Tianyu Liu1,2, Tianqi Chen2, Wangjie Zheng2
1Interdepartmental Program in Computational Biology & Bioinformatics, Yale University, New Haven, 06511, CT, USA.
Biorxiv : the Preprint Server for Biology
|September 2, 2025
Summary
We introduce scELMo, a novel method using Large Language Models (LLMs) to analyze single-cell data. scELMo achieves high performance in tasks like cell clustering and annotation with fewer resources, outperforming existing Foundation Models.
Area of Science:
- Computational Biology
- Bioinformatics
- Genomics
Background:
- Foundation Models (FMs) are increasingly used for single-cell data analysis, but with varying success.
- Existing methods often require extensive resources and task-specific training.
Purpose of the Study:
- To propose scELMo (Single-cell Embedding from Language Models), a novel method for single-cell data analysis.
- To leverage Large Language Models (LLMs) for generating metadata descriptions and embeddings.
- To enable zero-shot and fine-tuning capabilities for diverse single-cell tasks.
Main Methods:
- scELMo utilizes LLMs to generate embeddings from metadata descriptions.
- Combines LLM embeddings with raw single-cell data under a zero-shot learning framework.
- Employs a fine-tuning framework for advanced tasks like in-silico treatment analysis.
Main Results:
- scELMo performs cell clustering, batch effect correction, and cell-type annotation without new model training.
- Achieves superior performance compared to established FMs like scGPT and Geneformer.
- Demonstrates effectiveness in complex tasks such as perturbation modeling.
Conclusions:
- scELMo offers a computationally efficient and resource-light approach to single-cell data analysis.
- Represents a promising direction for developing domain-specific FMs for biological data.
- Outperforms existing LLM-based pipelines and large-scale FMs in evaluations.
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