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◆ In Vivo2026-08-28· Keloid

Gene Expression of TGF-β1 , Matrix Metalloproteinases, and Collagen in Keloid Patients and Their Growth Patterns in 2D and 3D Cell Cultures: An In Vitro Study

Alexander Helmer, Johann Kern, PETRA PROHASKA, Haneen Sadick, Benedikt Kramer, Lena Zaubitzer, Angela Schell, NICOLE ROTTER, Daniel Häussler

一句话结论 · In one sentence

Keloid gene and protein expression patterns varied among native tissue, 2D cultures, and 3D cultures. Keloid-derived spheroids displayed distinct histomorphological features compared with normal skin spheroids, suggesting that they may serve as more physiologically relevant models for future keloid research.

原始摘要(英文原文)· Original abstract
BACKGROUND/AIM: Keloids result from abnormal wound healing and are characterized by excess fibroblast activity, extracellular matrix (ECM) accumulation, and elevated collagen types. The contemporary research often relies on 2D cell cultures, which do not fully replicate keloid pathophysiology. Spheroid models offer a promising alternative. This study analyzed gene expression differences in keloid and normal skin tissues, evaluated mRNA expression from 2D cultures, and assessed spheroid viability as proof of concept. MATERIALS AND METHODS: Keloid and normal skin samples were collected from patients with auricular keloids. The tissues underwent histological and immunohistochemical analyses, RNA extraction for RT-qPCR, and 2D and 3D cell culture. Spheroids were cultivated for 21 days and analyzed for morphology, viability, and histological staining. RESULTS: expression. The keloid spheroids demonstrated comparable morphology, but decreased viability after 21 days. CONCLUSION: Keloid gene and protein expression patterns varied among native tissue, 2D cultures, and 3D cultures. Keloid-derived spheroids displayed distinct histomorphological features compared with normal skin spheroids, suggesting that they may serve as more physiologically relevant models for future keloid research.
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Gene Expression of TGF-β1 , Matrix Metalloproteinases, and Collagen in Keloid Patients and Their Growth Patterns in 2D and 3D Cell Cultures: An In Vitro Study — 科研速览 Science Skim