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脂代谢上调的 MSC 通过外泌体 CTP-1A 阻断 MDS 中造血干细胞分化

英文原题:MSCs with upregulated lipid metabolism block hematopoietic stem cell differentiation via exosomal CTP-1A in MDS.

PubMed 2025/02/07(内容时间) Stem Cell Res Ther Q1 · IF 7.8(JCR 2025)

研究概要

我们认为MDS骨髓微环境通过增加CPT-1A的表达破坏MSCs代谢,从而损害其支持正常HSCs的能力。有趣的是,这种抑制作用是由MSCs来源的富含CPT-1A的外泌体介导的。这些发现为MDS中MSCs-代谢-外泌体轴在无效造血中的作用提供了新见解,并为MDS的治疗提供了新策略。

研究思路结论见上方概要

骨髓增生异常综合征(MDS)是一种造血干细胞(HSCs)的克隆性疾病,以无效造血和进展为急性髓系白血病的高风险为特征。阐明MDS-HSCs功能障碍的机制对于探索该综合征的发病机制至关重要。虽然既往研究已表明间充质干细胞(MSCs)——骨髓(BM)微环境的主要组成部分——参与抑制正常造血,但确切的分子机制尚未完全阐明。在本研究中,我们从代谢角度探讨了MDS患者的MSCs对HSCs造血功能的影响。

MSCs 从 MDS 患者的 BM 中分离。分别使用 CCK-8 assay、FC 和诱导培养基以及 CFU(集落形成单位) assay 分析这些细胞的增殖、凋亡、分化及对造血的支撑。代谢分子的表达水平被用作筛选具有不同代谢途径的 MSCs 的指标,并通过 RT-PCR 和 Western blotting 检测。MSCs 来源的外泌体从培养上清中分离,并通过 Transmission Electron Microscope、Dynamic Light Scattering 和 Western blotting 确认。这些外泌体对 HSCs 的影响使用与评估 MSCs 功能相同的方法进行分析。

我们的研究结果表明,MDS-MSC表现出显著的功能损伤,包括增殖减少、分化受损、对造血的支撑减弱以及凋亡增加。值得注意的是,我们在这些MSC中观察到脂质代谢上调,这似乎促成了其功能障碍。有趣的是,这种异常的脂质代谢谱可通过给予依托莫昔(ETO)——一种肉碱棕榈酰转移酶1A(CPT-1A)抑制剂——得到有效逆转。此外,脂质代谢增强的MSC可通过分泌富含CPT-1A的外泌体将这种功能障碍传递给HSC。

展开英文摘要原文

BACKGROUND: Myelodysplastic syndrome (MDS) is a clonal disorder of hematopoietic stem cells (HSCs), characterized by ineffective hematopoiesis and a high risk of progression to acute myeloid leukemia. Elucidating the mechanism underlying the dysfunction of MDS-HSCs is crucial for exploring the pathogenesis of the syndrome. While previous studies have implicated mesenchymal stem cells (MSCs), a principal component of the bone marrow (BM) microenvironment, in the inhibition of normal hematopoiesis, the precise molecular mechanisms have not been fully elucidated. In this study, we investigated the effects of MSCs from MDS patients on hematopoietic functions of HSCs from a metabolic perspective. METHODS: MSCs were isolated from BM of MDS patients. The proliferation, apoptosis, differentiation and support for hematopoiesis of these cells were analyzed using CCK-8 assay, FC and induction medium and CFU (colony forming units) assay, respectively. Expression levels of metabolic molecules were used as indicators to screen MSCs with different metabolic pathways and were detected by RT-PCR and Western blotting. Exosome derived from MSCs were isolated from the culture supernatant and confirmed by Transmission Electron Microscope, Dynamic Light Scattering and Western blotting. The effects of these exosomes on HSCs were analyzed using the same methods as those used to assess MSCs function. RESULTS: Our findings demonstrated that MDS-MSCs exhibited significant functional impairments, including reduced proliferation, impaired differentiation, diminished support for hematopoiesis, and increased apoptosis. Notably, we observed an upregulation of lipid metabolism in these MSCs, which appears to contribute to their dysfunction. Intriguingly, the aberrant lipid metabolic profile can be effectively reversed by the administration of etomoxir (ETO), an inhibitor of carnitine palmitoyltransferase 1A (CPT-1A). Furthermore, MSCs with enhanced lipid metabolism could transmit this dysfunction to HSCs through the secretion of exosomes that are enriched in CPT-1A. CONCLUSIONS: We suggest that the MDS BM microenvironment disrupts MSCs metabolism by increasing the expression of CPT-1A, which impairs the ability to support normal HSCs. Interestingly, the suppressive effect is mediated by exosomes rich in CPT-1A, which derived from MSCs. These findings provide novel insights into MDS MSCs-metabolism-Exosome axis in ineffective hematopoiesis and offer new strategies for the treatment of MDS.

论文信息

作者
Yin C、Yan X、Ren J、Zhang C、Liu J、Wang Z、Liu J、Li W
第一作者单位
Department of Immunology, College of Basic Medical Science, Dalian Medical University, Dalian, 116044, Liaoning, China.China
通讯作者单位
Department of Immunology, College of Basic Medical Science, Dalian Medical University, Dalian, 116044, Liaoning, China. lixia416@163.com.China
期刊
Stem cell research & therapy2025 Feb 7
原文标识
PubMed 39920846 · DOI 10.1186/s13287-025-04154-3