Region-Resolved Label-Free Raman Profiling of Perturbation Responses in Intestinal Organoids

Abstract In recent years, organoids have emerged as physiologically relevant three-dimensional in vitro models for studying biological processes as they can better recapitulate tissue architecture, spatial organization, and microenvironmental features. However, current organoid studies still rely predominantly on destructive analytical methods and remain limited in spatially resolved detection, broad molecular readout, and sensitive detection of subtle perturbation-associated changes. We established a label-free, spatially resolved, and sensitive Raman-based workflow for evaluating perturbation-associated responses in intestinal organoids. Using irradiation as a controlled perturbation, we observed dose- and time-dependent Raman spectral changes in murine intestinal organoids, with detectable differences even under mild perturbation. These spectral responses were primarily reflected in coordinated variations of the 785 and 1092 cm–1 nucleic-acid-associated Raman bands, showing an early decrease at 2 h and a partial return toward the control level at 24 and 72 h, with further support from corresponding changes in the 1656 cm–1 protein-associated band and the 1583 cm–1 cytochrome c-associated band. Notably, region-resolved Raman analysis revealed spatial heterogeneity, showing that the stem-cell-enriched region exhibited larger perturbation-associated spectral deviations than the differentiated-cell-associated region. Together, these findings support a practical, sensitive, spatially resolved, and resource-efficient workflow for organoid response evaluation, with potential for longitudinal monitoring of dynamic processes.

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Publication Details

Journal
Langmuir
Published
2026-09-19
DOI
https://doi.org/10.1021/acs.langmuir.6c04180
Primary Topic
Spectroscopy Techniques in Biomedical and Chemical Research
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article
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article

Region-Resolved Label-Free Raman Profiling of Perturbation Responses in Intestinal Organoids

Lijun Wu, Shengmin Xu, Biao Chen, Yilin Lu et al.
Langmuir
Spectroscopy Techniques in Biomedical and Chemical Research
article

Region-Resolved Label-Free Raman Profiling of Perturbation Responses in Intestinal Organoids

Lijun Wu, Shengmin Xu, Biao Chen, Yilin Lu, Tong Li, Ruhao Zhang, Xiaowen Cheng
article en

Abstract

Abstract In recent years, organoids have emerged as physiologically relevant three-dimensional in vitro models for studying biological processes as they can better recapitulate tissue architecture, spatial organization, and microenvironmental features. However, current organoid studies still rely predominantly on destructive analytical methods and remain limited in spatially resolved detection, broad molecular readout, and sensitive detection of subtle perturbation-associated changes. We established a label-free, spatially resolved, and sensitive Raman-based workflow for evaluating perturbation-associated responses in intestinal organoids. Using irradiation as a controlled perturbation, we observed dose- and time-dependent Raman spectral changes in murine intestinal organoids, with detectable differences even under mild perturbation. These spectral responses were primarily reflected in coordinated variations of the 785 and 1092 cm–1 nucleic-acid-associated Raman bands, showing an early decrease at 2 h and a partial return toward the control level at 24 and 72 h, with further support from corresponding changes in the 1656 cm–1 protein-associated band and the 1583 cm–1 cytochrome c-associated band. Notably, region-resolved Raman analysis revealed spatial heterogeneity, showing that the stem-cell-enriched region exhibited larger perturbation-associated spectral deviations than the differentiated-cell-associated region. Together, these findings support a practical, sensitive, spatially resolved, and resource-efficient workflow for organoid response evaluation, with potential for longitudinal monitoring of dynamic processes.

Langmuir
Anhui University (CN)
Decent work and economic growth
Openalex Percentile: Top 12%
Spectroscopy Techniques in Biomedical and Chemical Research
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Region-Resolved Label-Free Raman Profiling of Perturbation Responses in Intestinal Organoids — Lijun Wu, Shengmin Xu, et al. · Langmuir (2026) | TGRS Research Map | TGRS