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脂肪营养不良患者 320 家族 miRNA 的循环水平:揭示该疾病的新特征。

Circulating Levels of MiRNAs From 320 Family in Subjects With Lipodystrophy: Disclosing Novel Signatures of the Disease.

机构信息

Institute of Life Sciences, Scuola Superiore Sant'Anna, Pisa, Italy.

Obesity and Lipodystrophy Center, Endocrinology Unit, Pisa University Hospital, Pisa, Italy.

出版信息

Front Endocrinol (Lausanne). 2022 Jun 6;13:866679. doi: 10.3389/fendo.2022.866679. eCollection 2022.

Abstract

Lipodystrophy (LD) indicates a group of rare disorders, with generalized or partial loss of white adipose tissue (WAT) often associated with metabolic derangements. Heterogeneity/wide spectrum of the disease and lack of biomarkers make diagnosis often difficult. MicroRNAs are important to maintain a correct WAT function and WAT is a source of circulating miRNAs (cmiRs). miRNAs from 320 family were previously detected in the WAT and variably associated to the metabolic syndrome. Our aim was then to investigate if LD can result in altered abundance of cmiRs-320. We collected samples from a cohort of LD subjects of various subtypes and from age matched controls. Use of quantitative PCR determined that cmiRs- 320a-3p, 320b, 320c, 320e are upregulated, while 320d is downregulated in LD. CmiRs-320 power as classifiers was more powerful in the most extreme and defined forms of LD, including the generalized and the Dunnigan subtypes. cmiR-320a-3p showed significant inverse relationships with plasma leptin (P < 0.0001), typically low in LD. The hepatic enzymes gamma-glutamyl transferase (GGT), aspartate aminotransferase (AST), alanine aminotransferase (ALT) and the marker of inflammation C-reactive protein (CRP) were inversely related to cmiR 320d (P < 0.05, for CRP and GGT; P < 0.01, for AST and ALT). Gene ontology analysis revealed cell-cell adhesion as a process regulated by 320 miRNAs targets, thus disclosing a novel route to investigate origin of WAT loss/dysfunction. In conclusion, cmiRs-320 constitute novel biomarkers of LD, abundance of miR320a-3p is inversely associated to indicators related to WAT function, while downregulation of cmiR-320d predicts an altered hepatic profile and higher inflammation.

摘要

脂肪营养不良(LD)是一组罕见的疾病,其特征为白色脂肪组织(WAT)的广泛或局部丧失,常伴有代谢紊乱。该病异质性/谱广泛且缺乏生物标志物,导致诊断常常很困难。microRNA 对维持正确的 WAT 功能非常重要,而 WAT 是循环 microRNA(cmiR)的来源。此前已在 WAT 中检测到 320 家族的 microRNA,并与代谢综合征存在可变关联。因此,我们的目标是研究 LD 是否会导致 cmiR-320 的丰度发生改变。我们收集了来自不同亚型 LD 患者和年龄匹配对照者的样本。采用定量 PCR 测定发现,cmiR-320a-3p、320b、320c 和 320e 上调,而 320d 在 LD 中下调。在最极端和明确的 LD 形式中,包括全身性和 Dunnigan 亚型,cmiR-320 的分类能力更强。cmiR-320a-3p 与血浆瘦素(P<0.0001)呈显著负相关,而 LD 中瘦素通常较低。肝酶γ-谷氨酰转移酶(GGT)、天冬氨酸转氨酶(AST)和丙氨酸转氨酶(ALT)以及炎症标志物 C 反应蛋白(CRP)与 cmiR-320d 呈负相关(CRP 和 GGT,P<0.05;AST 和 ALT,P<0.01)。基因本体分析显示细胞间粘附是 320 个 microRNA 靶标调控的过程,从而揭示了一种研究 WAT 丧失/功能障碍起源的新途径。总之,cmiR-320 构成了 LD 的新型生物标志物,miR320a-3p 的丰度与与 WAT 功能相关的指标呈负相关,而 cmiR-320d 的下调预示着肝谱改变和更高的炎症。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55fd/9207177/2cbbcbeb3e2b/fendo-13-866679-g001.jpg

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