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Macrophages are key drivers of inflammatory and fibrotic diseases and their activation is shaped by interactions in their tissue microenvironment. However, dissecting the processes that drive immunopathology has proved challenging as traditional 2D culture methods fail to capture the complex mole...

2026-06-08 | MTBLS12917 | MetaboLights

Three-dimensional (3D) cell culture technologies, which more closely mimic the complex microenvironment of tissue, are being increasingly evaluated as a tool for the preclinical screening of clinically promising new molecules, and studying of tissue metabolism. Studies of metabolites released int...

2023-12-12 | MTBLS5375 | MetaboLights
BACKGROUND: Ductal carcinoma in situ (DCIS) is the earliest stage of breast cancer. During DCIS, tumor cells remain inside the mammary duct, growing under a microenvironment characterized by hypoxia, nutrient starvation, and waste product accumulation; this harsh microenvironment promotes genomic in...
2019-02-08 | MTBLS669 | MetaboLights

Maintaining the integrity of the mucus layer is essential for host health. Studies have implicated that reduced or abnormal mucus production may lead to intestinal inflammation. When dietary nutrients are abundant in the gut, mucin degradation by microbes decreases. However, when nutrient availab...

2025-07-18 | MTBLS11724 | MetaboLights
Background: Dupuytren’s disease (DD) is a common fibrotic disorder of the hand, characterized by progressive thickening and contracture of the palmar and digital fascia. Surgical excision remains the primary treatment; however, there are currently no therapies to prevent disease progression or recur...
ORGANISM(S): Homo sapiens (Human) 
2026-04-06 | PXD072354 | Pride
Hypoxia episodes and areas in tumours have been associated with metastatic dissemination and poor prognosis. Given the link between tumour tissue oxygen levels and cellular metabolic activity, we hypothesised that the metabolic profile between metastatic and non-metastatic tumours would reveal poten...
2018-08-13 | MTBLS541 | MetaboLights
In vitro cell culture studies are common in cancer research field, and reliable biomimetic 3D models are needed to ensure physiological relevance. In this manuscript, we hypothesized that decellularized xenograft tumors can serve as an optimal 3D substrate to generate a top-down approach for in vitr...
ORGANISM(S): Homo sapiens (Human) Mus musculus (Mouse) 
2022-09-12 | PXD034597 | Pride
This SuperSeries is composed of the following subset Series: GSE17980: Genome-Wide Dynamics of Replication Timing Revealed by In Vitro Models of Mouse Embryogenesis (Expression) GSE17983: Genome-Wide Dynamics of Replication Timing Revealed by In Vitro Models of Mouse Embryogenesis (WG_CGH; Replicati...
ORGANISM(S): Mus musculus 
Generation of an in vitro 3D Engineered Colorectal Cancer Patient-Derived Xenograft Model
The study of muscle dystrophies, including Duchenne and Myotonic dystrophies, has faced significant challenges due to the lack of physiologically relevant in vitro models. This research introduces a novel, scaffold- and biomaterial-free platform based on cell sheet engineering to create in vitro mod...
ORGANISM(S): Homo sapiens (Human) 
2024-12-24 | PXD052728 | Pride
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