仿形(计算机编程)
人工智能
计算机科学
深度学习
机器学习
计算生物学
生物
操作系统
作者
Matt De Vries,Lucas Dent,Nathan Curry,Leo Rowe-Brown,Vicky Bousgouni,Olga Fourkioti,Reed Naidoo,Hugh Sparks,Adam L. Tyson,Christopher W. Dunsby,Chris Bakal
出处
期刊:Cell systems
[Elsevier BV]
日期:2025-03-01
卷期号:16 (3): 101229-101229
被引量:19
标识
DOI:10.1016/j.cels.2025.101229
摘要
The three-dimensional (3D) morphology of cells emerges from complex cellular and environmental interactions, serving as an indicator of cell state and function. In this study, we used deep learning to discover morphology representations and understand cell states. This study introduced MorphoMIL, a computational pipeline combining geometric deep learning and attention-based multiple-instance learning to profile 3D cell and nuclear shapes. We used 3D point-cloud input and captured morphological signatures at single-cell and population levels, accounting for phenotypic heterogeneity. We applied these methods to over 95,000 melanoma cells treated with clinically relevant and cytoskeleton-modulating chemical and genetic perturbations. The pipeline accurately predicted drug perturbations and cell states. Our framework revealed subtle morphological changes associated with perturbations, key shapes correlating with signaling activity, and interpretable insights into cell-state heterogeneity. MorphoMIL demonstrated superior performance and generalized across diverse datasets, paving the way for scalable, high-throughput morphological profiling in drug discovery. A record of this paper's transparent peer review process is included in the supplemental information.
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