Tbx5的回归;系谱追踪显示受伤的成年哺乳动物心脏中存在心室心肌细胞样前体。

IF 6.4 1区 医学 Q1 CELL & TISSUE ENGINEERING
Panagiota Siatra, Giannis Vatsellas, Athanasia Chatzianastasiou, Evangelos Balafas, Theodora Manolakou, Andreas Papapetropoulos, Anna Agapaki, Eleni-Taxiarchia Mouchtouri, Prashant J Ruchaya, Artemis G Korovesi, Manolis Mavroidis, Dimitrios Thanos, Dimitris Beis, Ioannis Kokkinopoulos
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引用次数: 0

摘要

心脏衰竭患者的唯一治疗措施是心脏移植,但由于供体短缺、需要免疫抑制和经济成本等原因,心脏移植手术受到限制。因此,我们迫切需要找到能够跟踪和监测的心脏再生细胞群。成年哺乳动物心肌受伤后,由于再生能力闲置,大量心肌细胞不可逆转地丧失,往往会导致心脏病发作。最近的斑马鱼研究报告表明,Tbx5a 是心肌细胞再生的重要转录因子。临床前数据强调了 Tbx5 在心力衰竭时对心脏的保护作用。我们早期的小鼠发育研究数据发现,表达 Tbx5 的胚胎心脏前体细胞群具有突出的单能性,能够在体内、体外和体外形成心肌细胞。通过对成年心脏损伤模型进行发育研究,并采用品系追踪小鼠模型和单细胞 RNA-seq 技术,我们在哺乳动物成年心脏损伤部位发现了表达 Tbx5 的类似心室心肌细胞的前体细胞群。与胚胎心肌细胞前体相比,该前体细胞群的转录谱更接近于新生儿心肌细胞前体。Tbx5是一个重要的心脏发育转录因子,位于心室成体前体细胞群的中心,似乎受到神经激素时空线索的影响。Tbx5特异性心肌细胞前体样细胞群能够进行再分化并可能部署心肌细胞再生程序,它的鉴定为转化相关的心脏干预研究提供了一个明确的目标细胞群。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Return of the Tbx5; lineage-tracing reveals ventricular cardiomyocyte-like precursors in the injured adult mammalian heart.

Return of the Tbx5; lineage-tracing reveals ventricular cardiomyocyte-like precursors in the injured adult mammalian heart.

Return of the Tbx5; lineage-tracing reveals ventricular cardiomyocyte-like precursors in the injured adult mammalian heart.

Return of the Tbx5; lineage-tracing reveals ventricular cardiomyocyte-like precursors in the injured adult mammalian heart.

The single curative measure for heart failure patients is a heart transplantation, which is limited due to a shortage of donors, the need for immunosuppression and economic costs. Therefore, there is an urgent unmet need for identifying cell populations capable of cardiac regeneration that we will be able to trace and monitor. Injury to the adult mammalian cardiac muscle, often leads to a heart attack through the irreversible loss of a large number of cardiomyocytes, due to an idle regenerative capability. Recent reports in zebrafish indicate that Tbx5a is a vital transcription factor for cardiomyocyte regeneration. Preclinical data underscore the cardioprotective role of Tbx5 upon heart failure. Data from our earlier murine developmental studies have identified a prominent unipotent Tbx5-expressing embryonic cardiac precursor cell population able to form cardiomyocytes, in vivo, in vitro and ex vivo. Using a developmental approach to an adult heart injury model and by employing a lineage-tracing mouse model as well as the use of single-cell RNA-seq technology, we identify a Tbx5-expressing ventricular cardiomyocyte-like precursor population, in the injured adult mammalian heart. The transcriptional profile of that precursor cell population is closer to that of neonatal than embryonic cardiomyocyte precursors. Tbx5, a cardinal cardiac development transcription factor, lies in the center of a ventricular adult precursor cell population, which seems to be affected by neurohormonal spatiotemporal cues. The identification of a Tbx5-specific cardiomyocyte precursor-like cell population, which is capable of dedifferentiating and potentially deploying a cardiomyocyte regenerative program, provides a clear target cell population for translationally-relevant heart interventional studies.

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来源期刊
npj Regenerative Medicine
npj Regenerative Medicine Engineering-Biomedical Engineering
CiteScore
10.00
自引率
1.40%
发文量
71
审稿时长
12 weeks
期刊介绍: Regenerative Medicine, an innovative online-only journal, aims to advance research in the field of repairing and regenerating damaged tissues and organs within the human body. As a part of the prestigious Nature Partner Journals series and in partnership with ARMI, this high-quality, open access journal serves as a platform for scientists to explore effective therapies that harness the body's natural regenerative capabilities. With a focus on understanding the fundamental mechanisms of tissue damage and regeneration, npj Regenerative Medicine actively encourages studies that bridge the gap between basic research and clinical tissue repair strategies.
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