Department of Cell biology and Anatomy, Augusta University, Augusta, GA, USA.
Department of Physiology & Cell Biology, University of Arkansas for Medical Sciences, Arkansas, USA.
Aging Dis. 2023 Dec 1;14(6):2303-2316. doi: 10.14336/AD.2023.0310-1.
Emerging evidence shows that the microRNA-141-3p is involved in various age-related pathologies. Previously, our group and others reported elevated levels of miR-141-3p in several tissues and organs with age. Here, we inhibited the expression of miR-141-3p using antagomir (Anti-miR-141-3p) in aged mice and explored its role in healthy aging. We analyzed serum (cytokine profiling), spleen (immune profiling), and overall musculoskeletal phenotype. We found decreased levels of pro-inflammatory cytokines (such as TNF-α, IL-1β, IFN-γ) in serum with Anti-miR-141-3p treatment. The flow-cytometry analysis on splenocytes revealed decreased M1 (pro-inflammatory) and increased M2 (anti-inflammatory) populations. We also found improved bone microstructure and muscle fiber size with Anti-miR-141-3p treatment. Molecular analysis revealed that miR-141-3p regulates the expression of AU-rich RNA-binding factor 1 (AUF1) and promotes senescence (p21, p16) and pro-inflammatory (TNF-α, IL-1β, IFN-γ) environment whereas inhibiting miR-141-3p prevents these effects. Furthermore, we demonstrated that the expression of FOXO-1 transcription factor was reduced with Anti-miR-141-3p and elevated with silencing of AUF1 (siRNA-AUF1), suggesting crosstalk between miR-141-3p and FOXO-1. Overall, our proof-of-concept study demonstrates that inhibiting miR-141-3p could be a potential strategy to improve immune, bone, and muscle health with age.
新出现的证据表明,微小 RNA-141-3p 参与了各种与年龄相关的病理过程。之前,我们小组和其他小组在多个组织和器官中都报道了随着年龄的增长,miR-141-3p 的水平升高。在这里,我们使用反义寡核苷酸(Anti-miR-141-3p)抑制衰老小鼠中 miR-141-3p 的表达,并探索其在健康衰老中的作用。我们分析了血清(细胞因子谱)、脾脏(免疫谱)和整个肌肉骨骼表型。我们发现,用 Anti-miR-141-3p 处理后,血清中促炎细胞因子(如 TNF-α、IL-1β、IFN-γ)的水平降低。脾细胞的流式细胞术分析显示,M1(促炎)群体减少,M2(抗炎)群体增加。我们还发现,用 Anti-miR-141-3p 处理后,骨微结构和肌纤维尺寸得到改善。分子分析表明,miR-141-3p 调节富含 AU 的 RNA 结合因子 1(AUF1)的表达,并促进衰老(p21、p16)和促炎(TNF-α、IL-1β、IFN-γ)环境,而抑制 miR-141-3p 则阻止了这些效应。此外,我们证明,用 Anti-miR-141-3p 处理后,FOXO-1 转录因子的表达减少,而用 AUF1 沉默(siRNA-AUF1)后则升高,这表明 miR-141-3p 和 FOXO-1 之间存在串扰。总的来说,我们的概念验证研究表明,抑制 miR-141-3p 可能是改善免疫、骨骼和肌肉健康与年龄相关的潜在策略。