Related Experiment Video
Updated: Apr 17, 2026

Isolation of Primary Myofibroblasts from Mouse and Human Colon Tissue
Published on: October 12, 2013
Glucocorticoids and the non-steroidal selective glucocorticoid receptor modulator, compound A, differentially affect
Zuzanna Drebert1, Marc Bracke1, Ilse M Beck1
1Laboratory of Experimental Cancer Research, Department of Radiation Oncology & Experimental Cancer Research, Ghent University, Gent, Belgium.
Abstract:
The glucocorticoid receptor functions as a ligand-dependent transcription factor that positively or negatively regulates the transcription of various specific target genes. Not only steroidal glucocorticoids can bind and activate the glucocorticoid receptor, but also the intensively examined non-steroidal selective glucocorticoid receptor modulators can do so, albeit with a select effector profile skewed to glucocorticoid receptor transrepression. Glucocorticoids are widely used to treat inflammatory afflictions, but also as anti-cancer therapies or adjuvants thereof. As the impact of glucocorticoids and selective glucocorticoid receptor modulators has scarcely been researched in this setting, we focused on colon cancer and its stromal environment, in particular the stromal myofibroblasts, which are known to influence cancer cells via paracrine signaling. In these myofibroblasts, the glucocorticoid dexamethasone is able to drive the glucocorticoid receptor into the nucleus and thus negatively regulates the expression of particular pro-inflammatory genes in TNFα-stimulated cells. The selective glucocorticoid receptor modulator compound A has an impaired ability to translocate GR, presumably underpinning its modest anti-inflammatory properties in these cells. Only dexamethasone, and not compound A, can upregulate the glucocorticoid receptor transactivation-dependent GILZ expression. Neither dexamethasone, nor compound A affects myofibroblast cell viability. However, compound A retards the growth of this myofibroblast cell line. Additionally, dexamethasone can inhibit the expression of Tenascin C, hepatocyte growth factor, and TGFβ, which are all factors known for their impact on colon cancer cell invasion, in a glucocorticoid receptor-dependent manner. In contrast, compound A can only slightly diminish the expression of just hepatocyte growth factor, and not tenascin C or TGFβ. Combined, our results expose new tumor microenvironment-modulating effects of glucocorticoids and the selective GR modulator compound A.
Insights
Glucocorticoids and selective modulators impact colon cancer stroma. Dexamethasone inhibits pro-tumorigenic factors, while compound A has limited effects but slows myofibroblast growth.
Area of Science:
- Oncology
- Endocrinology
- Molecular Biology
Background:
- Glucocorticoid receptor (GR) regulates gene transcription, influencing inflammation and cancer.
- Glucocorticoids and selective GR modulators (SEGRMs) have therapeutic uses, but their role in the tumor microenvironment is under-researched.
- Colon cancer-associated myofibroblasts influence cancer progression via paracrine signaling.
Purpose of the Study:
- To investigate the effects of dexamethasone and SEGRM compound A on colon cancer-associated myofibroblasts.
- To elucidate the impact of these agents on pro-inflammatory and pro-invasion gene expression within the tumor microenvironment.
Main Methods:
- Treatment of colon cancer-associated myofibroblasts with dexamethasone and compound A.
- Assessment of glucocorticoid receptor nuclear translocation.
- Analysis of target gene expression, including pro-inflammatory and invasion-related factors.
- Evaluation of myofibroblast cell viability and growth.
Main Results:
- Dexamethasone induced GR nuclear translocation, downregulating pro-inflammatory genes in TNFα-stimulated cells.
- Compound A showed impaired GR translocation and modest anti-inflammatory effects.
- Dexamethasone upregulated GILZ expression and inhibited Tenascin C, HGF, and TGFβ.
- Compound A only slightly reduced HGF expression and retarded myofibroblast growth without affecting viability.
Conclusions:
- Glucocorticoids and compound A exert distinct effects on the colon cancer tumor microenvironment.
- Dexamethasone demonstrates significant anti-inflammatory and anti-invasion potential via GR-dependent mechanisms.
- Compound A exhibits limited modulation of key tumor-promoting factors but affects myofibroblast proliferation.
Related Concept Videos
Drugs for Treatment of Crohn's Disease in IBD Using Glucocorticoids
Targeted Cancer Therapies
There are several types of targeted therapies against...
Drugs for Treatment of Crohn's Disease in IBD Using Immunomodulatory Agents
Mitogens and the Cell Cycle
Differentiation of Common Myeloid Progenitor Cells

