Blocking the SIRPα-CD47 axis promotes macrophage phagocytosis of exosomes derived from visceral adipose tissue and improves inflammation and metabolism in mice.

IF 9 2区 医学 Q1 CELL BIOLOGY
Yun-Kai Lin, Yu-Fei Pan, Tian-Yi Jiang, Yi-Bin Chen, Tai-Yu Shang, Meng-You Xu, Hui-Bo Feng, Yun-Han Ma, Ye-Xiong Tan, Hong-Yang Wang, Li-Wei Dong
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引用次数: 0

Abstract

Background: Adipose tissue plays a pivotal role in systemic metabolism and maintaining bodily homeostasis. Exosomes from adipose tissues, known as AT-Exos, are recognized as important messengers in the communication between adipose tissue and other organs. Despite this, the alterations in exosome composition and the functional disparities among depot-specific AT-Exos in obesity remain elusive.

Methods: In this work, we utilized lipidomics and microRNA (miRNA) sequencing to elucidate the lipid and miRNA profiles of AT-Exos in a diet-induced obesity model. We identified obesity-related miRNAs in AT-Exos and further explored their mechanisms using gain- and loss-of-function experiments. To evaluate the metabolic effects of AT-Exos on adipocytes, we conducted RNA-sequencing (RNA-seq) and confirmed our findings through Quantitative Real-time PCR (qPCR) and Western bolt analyses. Meanwhile, a mouse model with intraperitoneal injections was utilized to validate the role of exosomes derived from visceral white adipose tissue (vWAT-Exos) in obesity progression in vivo. Finally, we explored potential therapeutic intervention strategies targeting AT-Exos, particularly focusing on modulating the SIRPα-CD47 axis to enhance macrophage phagocytosis using Leptin-deficient (ob/ob) mice and SIRPα knock-out mice.

Results: Our study revealed that obesity-related metabolism affects the biological processes of AT-Exos, with depot-specific secretion patterns. In obesity, the lipidome profile of AT-Exos was significantly altered, and diet can modify the miRNA content and function within these exosomes, influencing lipid metabolism and inflammatory pathways that contribute to metabolic dysregulation. Specifically, we identified that miR-200a-3p and miR-200b-3p promoted lipid accumulation in 3T3L1 cells partly through the PI3K/AKT/mTOR pathway. RNA-Seq analysis revealed that AT-Exos from different fat depots exerted distinct effects on adipocyte metabolism, with obese vWAT-Exos being notably potent in triggering inflammation and lipid accumulation in diet-induced obesity. Additionally, we found that inhibiting the SIRPα-CD47 axis can mitigate metabolic disorders induced by obese vWAT-Exos or ob/ob mice, partly due to the enhanced clearance of vWAT-Exos. Consistent with this, SIRPα-deficient mice exhibited a reduction in vWAT-Exos and displayed greater resistance to obesity.

Conclusions: This study elucidates that diet-induced obesity altered the lipid and miRNA profiles of AT-Exos, which involved in modulating adipocyte inflammation and metabolic balance. The SIRPα-CD47 axis emerges as a potential therapeutic target for obesity and its associated complications.

阻断SIRPα-CD47轴可促进巨噬细胞吞噬来自内脏脂肪组织的外泌体,改善小鼠炎症和代谢。
背景:脂肪组织在全身代谢和维持体内平衡中起着关键作用。来自脂肪组织的外泌体,被称为AT-Exos,被认为是脂肪组织和其他器官之间沟通的重要信使。尽管如此,肥胖中外泌体组成的改变和仓库特异性AT-Exos之间的功能差异仍然难以捉摸。方法:在这项工作中,我们利用脂质组学和microRNA (miRNA)测序来阐明饮食诱导肥胖模型中AT-Exos的脂质和miRNA谱。我们在AT-Exos中发现了与肥胖相关的mirna,并通过功能获得和功能丧失实验进一步探索了它们的机制。为了评估AT-Exos对脂肪细胞的代谢作用,我们进行了rna测序(RNA-seq),并通过定量实时PCR (qPCR)和Western bolt分析证实了我们的发现。同时,利用腹腔注射小鼠模型来验证内脏白色脂肪组织外泌体(vWAT-Exos)在体内肥胖进展中的作用。最后,我们探索了针对AT-Exos的潜在治疗干预策略,特别是在瘦素缺陷(ob/ob)小鼠和SIRPα敲除小鼠中,通过调节SIRPα- cd47轴来增强巨噬细胞吞噬。结果:我们的研究表明,肥胖相关的代谢影响AT-Exos的生物学过程,具有特异性的分泌模式。在肥胖中,AT-Exos的脂质组谱显著改变,饮食可以改变这些外泌体中的miRNA含量和功能,影响脂质代谢和炎症途径,从而导致代谢失调。具体来说,我们发现miR-200a-3p和miR-200b-3p部分通过PI3K/AKT/mTOR途径促进3T3L1细胞中的脂质积累。RNA-Seq分析显示,来自不同脂肪库的AT-Exos对脂肪细胞代谢有不同的影响,肥胖的vat - exos在饮食诱导的肥胖中引发炎症和脂质积累的作用尤为显著。此外,我们发现抑制SIRPα-CD47轴可以减轻肥胖vwa - exos或ob/ob小鼠引起的代谢紊乱,部分原因是vwa - exos的清除增强。与此一致的是,sirp α-缺陷小鼠表现出vWAT-Exos的减少,并表现出更强的抗肥胖能力。结论:本研究阐明了饮食诱导的肥胖改变了AT-Exos的脂质和miRNA谱,参与调节脂肪细胞炎症和代谢平衡。SIRPα-CD47轴成为肥胖及其相关并发症的潜在治疗靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Biomedical Science
Journal of Biomedical Science 医学-医学:研究与实验
CiteScore
18.50
自引率
0.90%
发文量
95
审稿时长
1 months
期刊介绍: The Journal of Biomedical Science is an open access, peer-reviewed journal that focuses on fundamental and molecular aspects of basic medical sciences. It emphasizes molecular studies of biomedical problems and mechanisms. The National Science and Technology Council (NSTC), Taiwan supports the journal and covers the publication costs for accepted articles. The journal aims to provide an international platform for interdisciplinary discussions and contribute to the advancement of medicine. It benefits both readers and authors by accelerating the dissemination of research information and providing maximum access to scholarly communication. All articles published in the Journal of Biomedical Science are included in various databases such as Biological Abstracts, BIOSIS, CABI, CAS, Citebase, Current contents, DOAJ, Embase, EmBiology, and Global Health, among others.
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