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Glycochenodeoxycholate Affects Iron Homeostasis via Up-Regulating Hepcidin Expression
Long-Jiao Wang1, Guo-Ping Zhao2, Xi-Fan Wang1
1Key Laboratory of Functional Dairy, Co-Constructed by Ministry of Education and Beijing Municipality, College of Food Science & Nutritional Engineering, China Agricultural University, Beijing 100083, China.
Insights
Abnormal levels of Glycochenodeoxycholate (GCDCA) increase hepcidin expression, impacting iron homeostasis in chronic kidney disease (CKD) patients. GCDCA activates the FXR-SMAD signaling pathway, potentially causing iron deficiency in CKD.
Area of Science:
- Nephrology
- Endocrinology
- Biochemistry
Background:
- Hepcidin regulates iron homeostasis, and its increased expression is linked to iron deficiency in chronic kidney disease (CKD).
- Abnormal serum steroid levels are implicated in elevated hepcidin, but the specific role of Glycochenodeoxycholate (GCDCA) remains unclear.
Purpose of the Study:
- To investigate the correlation between Glycochenodeoxycholate (GCDCA) and hepcidin expression in patients with chronic kidney disease (CKD).
- To elucidate the underlying molecular mechanisms by which GCDCA influences hepcidin levels and iron homeostasis.
Main Methods:
- Measured serum hepcidin, iron, and GCDCA levels in CKD patients and healthy controls.
- Utilized HepG2 cells to assess GCDCA's effect on hepcidin expression and signaling pathways (SMAD, STAT3, CREBH, FXR).
- Administered varying doses of GCDCA to C57/BL6 mice to evaluate in vivo effects on hepcidin, hemoglobin, and serum iron.
Main Results:
- CKD patients exhibited higher GCDCA and hepcidin levels, with decreased serum iron.
- In vitro, GCDCA treatment significantly increased hepcidin expression in HepG2 cells by activating the FXR-BMP6/ALK3-SMAD signaling pathway.
- In vivo, GCDCA administration in mice elevated hepcidin and reduced hemoglobin and serum iron levels, confirming the FXR-SMAD pathway's role.
Conclusions:
- Glycochenodeoxycholate (GCDCA) is a potential inducer of hepcidin expression, contributing to iron homeostasis imbalance in CKD.
- The mechanism involves GCDCA activating the farnesoid X receptor (FXR) and subsequently the BMP6/ALK3-SMAD signaling pathway.
- Elevated GCDCA levels may serve as a biomarker for iron deficiency risk in CKD patients.
Abstract:
Increasing hepcidin expression is a vital factor in iron homeostasis imbalance among patients with chronic kidney disease (CKD). Recent studies have elucidated that abnormal serum steroid levels might cause the elevation of hepcidin. Glycochenodeoxycholate (GCDCA), a steroid, is significantly elevated in patients with CKD. However, the correlation between GCDCA and hepcidin has not been elucidated. Decreased serum iron levels and increased hepcidin levels were both detected in patients with CKD in this study. Additionally, the concentrations of GCDCA in nephropathy patients were found to be higher than those in healthy subjects. HepG2 cells were used to investigate the effect of GCDCA on hepcidin in vitro. The results showed that hepcidin expression increased by nearly two-fold against control under 200 μM GCDCA treatment. The phosphorylation of SMAD1/5/8 increased remarkably, while STAT3 and CREBH remained unchanged. GCDCA triggered the expression of farnesoid X receptor (FXR), followed with the transcription and expression of both BMP6 and ALK3 (upward regulators of SMAD1/5/8). Thus, GCDCA is a potential regulator for hepcidin, which possibly acts by triggering FXR and the BMP6/ALK3-SMAD signaling pathway. Furthermore, 40 C57/BL6 mice were treated with 100 mg/kg/d, 200 mg/kg/d, and 300 mg/kg/d GCDCA to investigate its effect on hepcidin in vivo. The serum level of hepcidin increased in mice treated with 200 mg/kg/d and 300 mg/kg/d GCDCA, while hemoglobin and serum iron levels decreased. Similarly, the FXR-mediated SMAD signaling pathway was also responsible for activating hepcidin in liver. Overall, it was concluded that GCDCA could induce the expression of hepcidin and reduce serum iron level, in which FXR activation-related SMAD signaling was the main target for GCDCA. Thus, abnormal GCDCA level indicates a potential risk of iron homeostasis imbalance.
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