AI-enabled label free monitoring of TGFβ1-induced remodeling in iPSC-derived alveolar organoids

Citations

SCOPUS

1

초록

Pulmonary fibrosis (PF) is a progressive interstitial lung disease with poor prognosis and limited therapeutic options, largely due to the lack of physiologically relevant and dynamically traceable preclinical models. Here, we establish an induced pluripotent stem cell (iPSC)-derived alveolar organoid platform that faithfully recapitulates PF-like remodeling upon TGFβ1 stimulation. The organoids exhibit lineage commitment to the distal lung epithelium (NKX2.1, SFTPC/SFTPB) and, following TGFβ1 exposure, undergo hallmark fibrotic changes including organoid condensation and size reduction, collagen deposition (Masson's trichrome), myofibroblast activation (α-SMA), up-regulation of profibrotic genes (COL1A1, FN, VIM, ACTA2), and partial EMT-like reprogramming (↑CDH2, TWIST1, and ↓CDH1). To enable label-free, longitudinal readouts, we integrate a deep neural network (YOLOv8-nano) that detects subtle morphological cues directly from bright-field images and classifies treatment status with high fidelity. Across augmented datasets (8892 images), the model achieved strong performance on the original context-preserving images (mAP50–95 up to 0.95; high precision/recall and 98–99% true-positive rates), supporting robust discrimination of control versus TGFβ1-treated organoids. This AI-enhanced organoid system provides a quantitative, label-free platform for monitoring fibrotic remodeling and offers a scalable foundation for preclinical antifibrotic screening and mechanism-of-action studies. © 2026 The Authors

키워드

Deep neural networksiPSC-derived alveolar organoidsLabel-free longitudinal imagingPulmonary fibrosis
제목
AI-enabled label free monitoring of TGFβ1-induced remodeling in iPSC-derived alveolar organoids
저자
Kim, Seung HyeonLee, JooyeonHan, Jong HyeokSeo, Sang HyukJang, JiminLee, Jong-HeeHong, Seok-HoJu, Myeong JinLee, Dae-HeeJeon, Hee-JaeYang, Se-Ran
DOI
10.1016/j.mtbio.2026.103181
발행일
2026-06
유형
Article
저널명
Materials Today Bio
38