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Updated: May 6, 2026

Ultrasonic-augmented Primary Adult Fibroblast Isolation
Published on: July 29, 2019
Gucy1α1 specifically marks kidney, heart, lung and liver fibroblasts
Abstract:
Fibrosis is a common outcome of numerous pathologies, including chronic kidney disease (CKD), a progressive renal function deterioration. Current approaches to target activated fibroblasts, key effector contributors to fibrotic tissue remodeling, lack specificity. Here, we report Gucy1α1 as a specific kidney fibroblast marker. Gucy1α1 levels significantly increased over the course of two clinically relevant murine CKD models and directly correlated with established fibrosis markers. Immunofluorescent (IF) imaging showed that Gucy1α1 comprehensively labelled cortical and medullary quiescent and activated fibroblasts in the control kidney and throughout injury progression, respectively. Unlike traditionally used markers platelet derived growth factor receptor beta (Pdgfrβ) and vimentin (Vim), Gucy1α1 did not overlap with off-target populations such as podocytes. Notably, Gucy1α1 labelled kidney fibroblasts in both male and female mice. Furthermore, we observed elevated GUCY1α1 expression in the human fibrotic kidney and lung. Studies in the murine models of cardiac and liver fibrosis revealed Gucy1α1 elevation in activated Pdgfrβ-, Vim- and alpha smooth muscle actin (αSma)-expressing fibroblasts paralleling injury progression and resolution. Overall, we demonstrate Gucy1α1 as an exclusive fibroblast marker in both sexes. Due to its multiorgan translational potential, GUCY1α1 might provide a novel promising strategy to specifically target and mechanistically examine fibroblasts.
Insights
Researchers identified Gucy1α1 as a specific marker for kidney fibroblasts, crucial in fibrotic diseases like chronic kidney disease (CKD). This discovery offers a precise way to target these cells in fibrosis research.
Area of Science:
- Nephrology
- Cell Biology
- Biomarker Discovery
Background:
- Fibrosis, a hallmark of chronic kidney disease (CKD), involves activated fibroblasts.
- Current methods to target fibroblasts lack specificity, hindering effective treatment development.
Conclusions:
- Gucy1α1 is a highly specific marker for kidney fibroblasts across both sexes.
- Gucy1α1 demonstrates translational potential for targeting fibroblasts in multiorgan fibrotic diseases.
- This marker may offer a novel strategy for mechanistic studies and therapeutic targeting of fibroblasts in fibrosis.
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