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Biology subjects

Azizi, S.

Publications and source records attributed to Azizi, S..

2 recordsLinked to original sources

Scaling Large Language Models for Next-Generation Single-Cell Analysis

AO_SCPLOWBSTRACTC_SCPLOWSingle-cell RNA sequencing has transformed our understanding of cellular diversity, yet current single-cell foundation models (scFMs) remain limited in their scalability, flexibility across diverse tasks, and ability to natively integrate textual information. In this work, we build upon the Cell2Sentence (C2S) framework, which represents scRNA-seq profiles as textual "cell sentences," to train Large Language Models (LLMs) on a corpus comprising over one billion tokens of transcriptomic data, biological text, and metadata. Scaling the model to 27 billion parameters yields consistent improvements in predictive and generative capabilities and supports advanced downstream tasks that require synthesis of information across multi-cellular contexts. Targeted fine-tuning with modern reinforcement learning techniques produces strong performance in perturbation response prediction, natural language interpretation, and complex biological reasoning. This predictive strength enabled a dual-context virtual screen that nominated the kinase inhibitor silmitasertib (CX-4945) as a candidate for context-selective upregulation of antigen presentation. Experimental assessment in human cell models unseen during training supported this prediction, demonstrating that C2S-Scale can effectively guide the discovery of context-conditioned biology. C2S-Scale unifies transcriptomic and textual data at unprecedented scales, surpassing both specialized single-cell models and general-purpose LLMs to provide a platform for next-generation single-cell analysis and the development of "virtual cells."

bioinformatics↗

The Negative Effects of Smoking Cigarettes on Morphological and Histological Damages to 18 and 21 Days Mouse Embryo Liver

Smoking cigarettes can lead to morphological and histological changes in several human and animal tissues. This paper describes the effects of CS exposure on the liver, weight, and length of mouse embryos. 42 NMRI adult mice were used for mating. Pregnant female mice were categorized into 3 groups: F (filtered), NF (non-filtered), and C (controlled). Each group included 14 female mice exposed to 12 cigarettes daily; 7 mice for 18 days and 7 mice for 21 days. In addition, only the group C were exposed to ambient air. Seven mouse embryos from each group were euthanized. Their livers were fixed for histological processing. The Livers of groups F & NF as compared with group C revealed changes in cellular architecture, centrilobular veins, inflammatory cells, kupffer cells, cytoplasmic vacuolation, hepatocytes necrosis, and decreased parenchymal cellularity. The average weight of embryo, liver, and CR in F & NF significantly reduced (p<0.05 and p<0.01).

pathology↗