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持续暴露于高葡萄糖会诱导小鼠巨噬细胞中细胞衰老标志物的差异表达,但会损害对衰老细胞分泌组的免疫监视反应。

Sustained exposure to high glucose induces differential expression of cellular senescence markers in murine macrophages but impairs immunosurveillance response to senescent cells secretome.

机构信息

Nutrigerontology Laboratory, Faculty of Applied Sciences & Biotechnology, Shoolini University, Solan, 173229, India.

School of Pharmaceutical Sciences, Shoolini University, Solan, 173229, India.

出版信息

Biogerontology. 2024 Aug;25(4):627-647. doi: 10.1007/s10522-024-10092-z. Epub 2024 Jan 19.

Abstract

The influence of chronic diseases on various facets of macrophage cellular senescence is poorly understood. This study evaluated the impact of chronic hyperglycemia on the induction of cellular senescence and subsequent immunosurveillance functions in RAW264.7 macrophages. Macrophages were cultured under normal glucose (NG; 5 mM), high glucose (HG; 20 mM), and very high glucose (VHG; 40 mM) conditions and assessed for markers of cellular senescence. Hyperglycemia induced strong upregulation of SA-β-gal activity, and loss of PCNA and Lamin B1 gene expression while markers of cell cycle arrest generally decreased. Non-significant changes in SASP-related proteins were observed while ROS levels slightly decreased and mitochondrial membrane potential increased. Protein concentration on the exosome membrane surface and their stability appeared to increase under hyperglycemic conditions. However, when macrophages were exposed to the secretory media (SM) of senescent preadipocytes, a dramatic increase in the levels of all inflammatory proteins was recorded especially in the VHG group that was also accompanied by upregulation of NF-κB and NLRP3 gene expression. SM treatment to hyperglycemic macrophages activated the TLR-2/Myd88 pathway but decreased the expression of scavenger receptors RAGE, CD36, and Olr-1 while CD44 and CXCL16 expression increased. On exposure to LPS, a strong upregulation in NO, ROS, and inflammatory cytokines was observed. Together, these results suggest that primary markers of cellular senescence are aberrantly expressed under chronic hyperglycemic conditions in macrophages with no significant SASP activation. Nonetheless, hyperglycemia strongly deregulates macrophage functions leading to impaired immunosurveillance of senescent cells and aggravation of inflamm-aging. This work provides novel insights into how hyperglycemia-induced dysfunctions can impact the potency of macrophages to manage senescent cell burden in aging tissues.

摘要

慢性疾病对巨噬细胞细胞衰老的各个方面的影响知之甚少。本研究评估了慢性高血糖对 RAW264.7 巨噬细胞中细胞衰老的诱导及其随后的免疫监视功能的影响。巨噬细胞在正常葡萄糖(NG;5 mM)、高葡萄糖(HG;20 mM)和极高葡萄糖(VHG;40 mM)条件下培养,并评估细胞衰老的标志物。高血糖强烈诱导 SA-β-半乳糖酶活性上调,以及 PCNA 和 Lamin B1 基因表达丧失,而细胞周期阻滞标志物普遍降低。SASP 相关蛋白的变化不明显,而 ROS 水平略有下降,线粒体膜电位增加。在高血糖条件下,外体膜表面的蛋白质浓度及其稳定性似乎增加。然而,当巨噬细胞暴露于衰老前体细胞的分泌培养基(SM)时,所有炎症蛋白的水平都记录到显著增加,尤其是在 VHG 组,这也伴随着 NF-κB 和 NLRP3 基因表达的上调。SM 处理高血糖巨噬细胞激活了 TLR-2/Myd88 途径,但降低了清道夫受体 RAGE、CD36 和 Olr-1 的表达,而 CD44 和 CXCL16 的表达增加。暴露于 LPS 时,NO、ROS 和炎症细胞因子的表达明显上调。总之,这些结果表明,在高血糖条件下,巨噬细胞中细胞衰老的主要标志物异常表达,而 SASP 无明显激活。尽管如此,高血糖强烈调节巨噬细胞功能,导致衰老细胞的免疫监视受损和炎症-衰老加重。这项工作提供了新的见解,即高血糖诱导的功能障碍如何影响巨噬细胞管理衰老组织中衰老细胞负担的能力。

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