An Optimized Stem Cell Secretome Proteomics Platform: Application to Progranulin-Deficient iPSCs

Abstract Stem cells secrete diverse extracellular proteins that regulate pluripotency, differentiation, and cell–cell communication, making them powerful model systems for studying development, disease mechanisms, and regenerative medicine. However, robust stem cell secretome analysis remains technically challenging. Unlike many other cell types, pluripotent stem cells cannot tolerate serum starvation or growth factor deprivation, while low-abundance secreted proteins are often masked by media-derived proteins and intracellular contamination. Here, we systematically optimized the secretome proteomics workflow in induced pluripotent stem cells (iPSCs) by evaluating culture medium composition, conditioned-media collection time, cell plating density, media harvest and preparation methods, LC-MS acquisition methods, and data analysis strategies. Full-strength Essential 8 medium, 48 h media collection, 80% cell confluency, two-step centrifugation, and data-independent acquisition (DIA)LC-MS/MS provided the optimal secretome proteomics data quality. We then applied the optimized platform to an isogenic iPSC disease model to investigate how progranulin deficiency reshapes the extracellular and intracellular proteomes. Progranulin-deficient iPSCs showed a coordinated reduction of extracellular lysosomal hydrolases despite relatively modest intracellular proteome changes, suggesting altered lysosome trafficking and possible impairment of lysosomal exocytosis. Together, this work establishes a robust and standardized workflow for stem cell secretome proteomics and demonstrates its utility for investigating extracellular proteome remodeling in human disease models.

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Publication Details

Journal
Journal of Proteome Research
Published
2026-10-07
DOI
https://doi.org/10.1021/acs.jproteome.6c00588
Primary Topic
Advanced Proteomics Techniques and Applications
Type
article
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article

An Optimized Stem Cell Secretome Proteomics Platform: Application to Progranulin-Deficient iPSCs

Ling Hao, Jiawei Ni, Hope S. Tracey
Journal of Proteome Research
Advanced Proteomics Techniques and Applications
article

An Optimized Stem Cell Secretome Proteomics Platform: Application to Progranulin-Deficient iPSCs

Ling Hao, Jiawei Ni, Hope S. Tracey
article en

Abstract

Abstract Stem cells secrete diverse extracellular proteins that regulate pluripotency, differentiation, and cell–cell communication, making them powerful model systems for studying development, disease mechanisms, and regenerative medicine. However, robust stem cell secretome analysis remains technically challenging. Unlike many other cell types, pluripotent stem cells cannot tolerate serum starvation or growth factor deprivation, while low-abundance secreted proteins are often masked by media-derived proteins and intracellular contamination. Here, we systematically optimized the secretome proteomics workflow in induced pluripotent stem cells (iPSCs) by evaluating culture medium composition, conditioned-media collection time, cell plating density, media harvest and preparation methods, LC-MS acquisition methods, and data analysis strategies. Full-strength Essential 8 medium, 48 h media collection, 80% cell confluency, two-step centrifugation, and data-independent acquisition (DIA)LC-MS/MS provided the optimal secretome proteomics data quality. We then applied the optimized platform to an isogenic iPSC disease model to investigate how progranulin deficiency reshapes the extracellular and intracellular proteomes. Progranulin-deficient iPSCs showed a coordinated reduction of extracellular lysosomal hydrolases despite relatively modest intracellular proteome changes, suggesting altered lysosome trafficking and possible impairment of lysosomal exocytosis. Together, this work establishes a robust and standardized workflow for stem cell secretome proteomics and demonstrates its utility for investigating extracellular proteome remodeling in human disease models.

Journal of Proteome Research
University of Maryland, College Park (US)
Openalex Percentile: Top 26%
Advanced Proteomics Techniques and Applications
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An Optimized Stem Cell Secretome Proteomics Platform: Application to Progranulin-Deficient iPSCs — Ling Hao, Jiawei Ni, et al. · Journal of Proteome Research (2026) | TGRS Research Map | TGRS