尿毒症毒素硫酸吲哚酚降低骨细胞RANKL/OPG,增加Wnt抑制剂RNA的表达,这种表达被甲状旁腺激素逆转。

IF 3.4 Q2 ENDOCRINOLOGY & METABOLISM JBMR Plus Pub Date : 2024-10-29 eCollection Date: 2025-01-01 DOI:10.1093/jbmrpl/ziae136
Neal X Chen, Kalisha D O'Neill, Hannah E Wilson, Shruthi Srinivasan, Lynda Bonewald, Sharon M Moe
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Long-term incubation of IS for 14 days led to decreased expression of Tnfsf11/Tnfrsf11b ratio (RANKL/OPG), which would increase osteoclast activity, and increased expression of Wnt inhibitors Sost and Dkk1, which would decrease bone formation in addition to decreased mineralization and alkaline phosphatase (ALP) activity. When osteocytes were incubated with IS and the AhR translocation inhibitor CH223191, mineralization and ALP activity were restored. However, the Tnfsf11/Tnfrsf11b ratio and Sost, Dkk1 expression were not altered compared with IS alone, suggesting more complex signaling. In both early and mature osteocytes, co-culture with parathyroid hormone (PTH) and IS reversed the IS-induced upregulation of Sost and Dkk1, and IS enhanced the PTH-induced increase of the Tnfsf11/Tnfrsf11b ratio. Co-culture of IS with PTH additively enhanced the AhR activity assessed by <i>Cyp1a1</i> and <i>Cyp1b1</i> expression. 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引用次数: 0

摘要

肾性骨营养不良(ROD)导致骨折增加,可能是由于慢性肾脏疾病(CKD)中潜在的低骨转换。我们假设硫酸吲哚酚(IS),一种在CKD中升高的循环毒素和芳烃受体(AhR)的配体,可能靶向骨细胞,导致ROD中骨细胞解偶联。将IDG-SW3骨细胞培养14天(早期)和35天(成熟骨细胞),并在500 μM IS中进行剂量测定,确认AhR活化。IS长期孵育14天,导致Tnfsf11/Tnfrsf11b比值(RANKL/OPG)表达降低,从而增加破骨细胞活性;Wnt抑制剂Sost和Dkk1表达增加,除了矿化和碱性磷酸酶(ALP)活性降低外,还会减少骨形成。当骨细胞与IS和AhR易位抑制剂CH223191孵育时,矿化和ALP活性恢复。然而,与IS单独相比,Tnfsf11/Tnfrsf11b比值和Sost、Dkk1表达未发生改变,提示信号传导更为复杂。在早期和成熟骨细胞中,与甲状旁腺激素(PTH)和IS共培养逆转了IS诱导的Sost和Dkk1的上调,IS增强了PTH诱导的Tnfsf11/Tnfrsf11b比值的升高。通过Cyp1a1和Cyp1b1表达评估,IS与PTH共培养可增强AhR活性。综上所述,在没有PTH的情况下,IS增加了早期和成熟骨细胞中骨细胞信使RNA (mRNA) Wnt抑制剂的表达,降低了早期骨细胞中tnfsf11 /Tnfrsf11b比值的mRNA表达,降低了矿化。这些变化会导致骨吸收和骨形成减少,从而导致骨重塑降低。这些数据表明,当甲状旁腺激素不升高时,IS可能在CKD中观察到的潜在的低周转率骨病中起重要作用。此外,当PTH升高时,is相互作用进一步增加早期和成熟骨细胞中破骨细胞活性的Tnfsf11/Tnfrsf11b比值,从而加重骨吸收。
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The uremic toxin indoxyl sulfate decreases osteocyte RANKL/OPG and increases Wnt inhibitor RNA expression that is reversed by PTH.

Renal osteodystrophy (ROD) leads to increased fractures, potentially due to underlying low bone turnover in chronic kidney disease (CKD). We hypothesized that indoxyl sulfate (IS), a circulating toxin elevated in CKD and a ligand for the aryl hydrocarbon receptor (AhR), may target the osteocytes leading to bone cell uncoupling in ROD. The IDG-SW3 osteocytes were cultured for 14 days (early) and 35 days (mature osteocytes) and incubated with 500 μM of IS after dose finding studies to confirm AhR activation. Long-term incubation of IS for 14 days led to decreased expression of Tnfsf11/Tnfrsf11b ratio (RANKL/OPG), which would increase osteoclast activity, and increased expression of Wnt inhibitors Sost and Dkk1, which would decrease bone formation in addition to decreased mineralization and alkaline phosphatase (ALP) activity. When osteocytes were incubated with IS and the AhR translocation inhibitor CH223191, mineralization and ALP activity were restored. However, the Tnfsf11/Tnfrsf11b ratio and Sost, Dkk1 expression were not altered compared with IS alone, suggesting more complex signaling. In both early and mature osteocytes, co-culture with parathyroid hormone (PTH) and IS reversed the IS-induced upregulation of Sost and Dkk1, and IS enhanced the PTH-induced increase of the Tnfsf11/Tnfrsf11b ratio. Co-culture of IS with PTH additively enhanced the AhR activity assessed by Cyp1a1 and Cyp1b1 expression. In summary, IS in the absence of PTH increased osteocyte messenger RNA (mRNA) Wnt inhibitor expression in both early and mature osteocytes, decreased mRNA expression ofTnfsf11/Tnfrsf11b ratio and decreased mineralization in early osteocytes. These changes would lead to decreased resorption and formation resulting in low bone remodeling. These data suggest IS may be important in the underlying low turnover bone disease observed in CKD when PTH is not elevated. In addition, when PTH is elevated, IS interacts to further increase Tnfsf11/Tnfrsf11b ratio for osteoclast activity in both early and mature osteocytes, which would worsen bone resorption.

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来源期刊
JBMR Plus
JBMR Plus Medicine-Orthopedics and Sports Medicine
CiteScore
5.80
自引率
2.60%
发文量
103
审稿时长
8 weeks
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