Department of Nutritional Sciences, Oklahoma State University, Stillwater, Oklahoma, USA.
Department of Microbiology and Molecular Genetics, Oklahoma State University, Stillwater, Oklahoma, USA.
Physiol Rep. 2024 Jan;12(1):e15914. doi: 10.14814/phy2.15914.
Characterization of the interleukin (IL)-10 knockout (KO) mouse with chronic gut inflammation, cardiovascular dysfunction, and bone loss suggests a critical role for this cytokine in interorgan communication within the gut, bone, and cardiovascular axis. We sought to understand the role of IL-10 in the cross-talk between these systems. Six-week-old IL-10 KO mice and their wild type (WT) counterparts were maintained on a standard rodent diet for 3 or 6 months. Gene expression of proinflammatory markers and Fgf23, serum 17β-estradiol (E2), and cardiac protein expression were assessed. Ileal Il17a and Tnf mRNA increased while Il6 mRNA increased in the bone and heart by at least 2-fold in IL-10 KO mice. Bone Dmp1 and Phex mRNA were repressed at 6 months in IL-10 KO mice, resulting in increased Fgf23 mRNA (~4-fold) that contributed to increased fibrosis. In the IL-10 KO mice, gut bacterial β-glucuronidase activity and ovarian Cyp19a1 mRNA were lower (p < 0.05), consistent with reduced serum E2 and reduced cardiac pNOS3 (Ser ) in these mice. Treatment of ileal lymphocytes with E2 reduced gut inflammation in WT but not IL-10 KO mice. In conclusion, our data suggest that diminished estrogen and defective bone mineralization increased FGF23 which contributed to cardiac fibrosis in the IL-10 KO mouse.
IL-10 基因敲除(KO)小鼠具有慢性肠道炎症、心血管功能障碍和骨质流失的特征,这表明该细胞因子在肠道、骨骼和心血管轴体间的器官间通讯中起着关键作用。我们试图了解 IL-10 在这些系统间相互作用中的作用。将 6 周龄的 IL-10 KO 小鼠及其野生型(WT)对照维持在标准啮齿动物饮食中 3 或 6 个月。评估促炎标志物和 Fgf23、血清 17β-雌二醇(E2)和心脏蛋白表达的基因表达。IL-10 KO 小鼠的回肠 Il17a 和 Tnf mRNA 增加,而骨和心脏中的 Il6 mRNA 增加了至少 2 倍。IL-10 KO 小鼠在 6 个月时骨 Dmp1 和 Phex mRNA 被抑制,导致 Fgf23 mRNA 增加(~4 倍),这有助于增加纤维化。在 IL-10 KO 小鼠中,肠道细菌 β-葡糖苷酸酶活性和卵巢 Cyp19a1 mRNA 降低(p<0.05),与这些小鼠血清 E2 和心脏 pNOS3(Ser)减少一致。E2 处理回肠淋巴细胞可减轻 WT 但不是 IL-10 KO 小鼠的肠道炎症。总之,我们的数据表明,雌激素减少和骨矿物质化缺陷增加了 FGF23,这导致了 IL-10 KO 小鼠的心脏纤维化。