Galectin-3 interferes with tissue repair and promotes cardiac dysfunction and comorbidities in a genetic heart failure model.

IF 0.3 4区 历史学 Q2 HISTORY HISTORIAN Pub Date : 2022-04-19 DOI:10.1007/s00018-022-04266-6
Fani Vlachou, Aimilia Varela, Konstantina Stathopoulou, Konstantinos Ntatsoulis, Evgenia Synolaki, Harris Pratsinis, Dimitris Kletsas, Paschalis Sideras, Constantinos H Davos, Yassemi Capetanaki, Stelios Psarras
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Abstract

Galectin-3, a biomarker for heart failure (HF), has been associated with myocardial fibrosis. However, its causal involvement in HF pathogenesis has been questioned in certain models of cardiac injury-induced HF. To address this, we used desmin-deficient mice (des-/-), a model of progressive HF characterized by cardiomyocyte death, spontaneous inflammatory responses sustaining fibrosis, and galectin-3 overexpression. Genetic ablation or pharmacological inhibition of galectin-3 led to improvement of cardiac function and adverse remodeling features including fibrosis. Over the course of development of des-/- cardiomyopathy, monitored for a period of 12 months, galectin-3 deficiency specifically ameliorated the decline in systolic function accompanying the acute inflammatory phase (4-week-old mice), whereas a more pronounced protective effect was observed in older mice, including the preservation of diastolic function. Interestingly, the cardiac repair activities during the early inflammatory phase were restored under galectin-3 deficiency by increasing the proliferation potential and decreasing apoptosis of fibroblasts, while galectin-3 absence modulated macrophage-fibroblast coupled functions and suppressed both pro-fibrotic activation of cardiac fibroblasts and pro-fibrotic gene expression in the des-/- heart. In addition, galectin-3 also affected the emphysema-like comorbid pathology observed in the des-/- mice, as its absence partially normalized lung compliance. Collectively galectin-3 was found to be causally involved in cardiac adverse remodeling, inflammation, and failure by affecting functions of cardiac fibroblasts and macrophages. In concordance with this role, the effectiveness of pharmacological inhibition in ameliorating cardiac pathology features establishes galectin-3 as a valid intervention target for HF, with additive benefits for treatment of associated comorbidities, such as pulmonary defects. Schematic illustrating top to bottom, the detrimental role of galectin-3 (Gal3) in heart failure progression: desmin deficiency-associated spontaneous myocardial inflammation accompanying cardiac cell death (reddish dashed border) is characterized by infiltration of macrophages (round cells) and up-regulation of Lgals3 (encoding secretable galectin-3, green) and detrimental macrophage-related genes (Ccr2 and Arg1). In this galectin-3-enriched milieu, the early up-regulation of profibrotic gene expression (Tgfb1, Acta2, Col1a1), in parallel to the suppression of proliferative activities and a potential of senescence induction by cardiac fibroblasts (spindle-like cells), collectively promote des-/- cardiac fibrosis and dysfunction establishing heart failure (left panel). Additionally, galectin-3+ macrophage-enrichment accompanies the development of emphysema-like lung comorbidities. In the absence of galectin-3 (right panel), the effect of macrophage-fibroblast dipole and associated events are modulated (grey color depicts reduced expression or activities) leading to attenuated cardiac pathology in the des-/-Lgals3-/- mice. Pulmonary comorbidities are also limited.

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在遗传性心力衰竭模型中,Galectin-3 会干扰组织修复,促进心脏功能障碍和合并症。
作为心力衰竭(HF)的生物标志物,Galectin-3 与心肌纤维化有关。然而,在某些心脏损伤诱导的心力衰竭模型中,它与心力衰竭发病机制的因果关系一直受到质疑。为了解决这个问题,我们使用了desmin缺陷小鼠(des-/-),这是一种以心肌细胞死亡、自发性炎症反应维持纤维化和galectin-3过表达为特征的进行性高频模型。基因消融或药物抑制 galectin-3 可改善心功能和不良重塑特征,包括纤维化。在对 12 个月的 des-/- 心肌病发展过程的监测中,galectin-3 的缺乏特别改善了急性炎症阶段(4 周大的小鼠)收缩功能的下降,而在年长的小鼠中观察到了更明显的保护作用,包括舒张功能的保护。有趣的是,在缺乏 galectin-3 的情况下,炎症早期的心脏修复活动通过增加成纤维细胞的增殖潜能和减少其凋亡而得到恢复,同时,缺乏 galectin-3 可调节巨噬细胞-成纤维细胞耦联功能,并抑制促纤维化的心脏成纤维细胞活化和促纤维化基因在 des-/- 心脏中的表达。此外,galectin-3 还影响了在 des-/- 小鼠中观察到的类似肺气肿的合并病理学,因为缺乏 galectin-3 可使肺顺应性部分恢复正常。总之,研究发现 galectin-3 通过影响心脏成纤维细胞和巨噬细胞的功能,与心脏不良重塑、炎症和衰竭有因果关系。与这一作用相一致,药物抑制在改善心脏病理特征方面的有效性将 galectin-3 确立为治疗高血压的有效干预靶点,并对相关合并症(如肺部缺陷)的治疗带来额外的益处。示意图从上到下说明了galectin-3(Gal3)在心力衰竭进展过程中的有害作用:伴随心脏细胞死亡的desmin缺乏症相关自发性心肌炎症(红色虚线)的特征是巨噬细胞(圆形细胞)浸润、Lgals3(编码可分泌的galectin-3,绿色)和有害巨噬细胞相关基因(Ccr2和Arg1)的上调。在这种富含galectin-3的环境中,促纤维化基因表达(Tgfb1、Acta2、Col1a1)的早期上调,与此同时,心脏成纤维细胞(纺锤体样细胞)的增殖活动受到抑制,并可能诱导衰老,这些共同促进了去/-心脏纤维化和功能障碍,从而导致心力衰竭(左图)。此外,galectin-3+巨噬细胞的富集伴随着肺气肿样肺合并症的发生。在缺乏 galectin-3 的情况下(右图),巨噬细胞-成纤维细胞偶极效应及相关事件受到调节(灰色表示表达或活动减少),导致 des-/-Lgals3-/- 小鼠的心脏病变减轻。肺部合并症也受到限制。
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HISTORIAN
HISTORIAN HISTORY-
CiteScore
0.40
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期刊介绍: Founded in 1938, The Historian has one of the largest circulations of any scholarly journal in the US or Britain with over 13,000 paid subscribers, both individual and institutional. The Historian seeks to publish only the finest of contemporary and relevant historical scholarship. It is the commitment of The Historian to serve as an integrator for the historical profession, bringing together the many strands of historical analysis through the publication of a diverse collection of articles.
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