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内皮祖细胞的数量和再增殖能力与端粒长度有关:对人类动脉粥样硬化形成的启示。

Number and Replating Capacity of Endothelial Colony-Forming Cells are Telomere Length Dependent: Implication for Human Atherogenesis.

机构信息

Inserm DCAC Université de Lorraine Nancy France.

CHRU-Nancy Pôle Maladies du vieillissement, Gérontologie et Soins Palliatifs and Fédération Hospitalo-Universitaire CARTAGE-PROFILES Université de Lorraine Nancy France.

出版信息

J Am Heart Assoc. 2021 May 18;10(10):e020606. doi: 10.1161/JAHA.120.020606. Epub 2021 May 6.

Abstract

Background Short leukocyte telomere length (TL) is associated with atherosclerotic cardiovascular disease. Endothelial repair plays a key role in the development of atherosclerosis. The objective was to examine associations between TL and proliferative dynamics of endothelial colony-forming cells (ECFCs), which behave as progenitor cells displaying endothelial repair activity. Methods and Results To isolate ECFCs, we performed a clonogenic assay on blood samples from 116 participants (aged 24-94 years) in the TELARTA (Telomere in Arterial Aging) cohort study. We detected no ECFC clones in 29 (group 1), clones with no replating capacity in other 29 (group 2), and clones with replating capacity in the additional 58 (group 3). Leukocyte TL was measured by Southern blotting and ECFCs (ECFC-TL). Age- and sex-adjusted leukocyte TL (mean±SEM) was the shortest in group 1 (6.51±0.13 kb), longer in group 2 (6.69±0.13 kb), and the longest in group 3 (6.78±0.09 kb) (<0.05). In group 3, ECFC-TL was associated with the number of detected clones (<0.01). ECFC-TL (7.98±0.13 kb) was longer than leukocyte TL (6.74±0.012 kb) (<0.0001) and both parameters were strongly correlated (=0.82; <0.0001). Conclusions Individuals with longer telomeres display a higher number of self-renewing ECFCs. Our results also indicate that leukocyte TL, as a proxy of TL dynamics in ECFCs, could be used as a surrogate marker of endothelial repair capacity in clinical and laboratory practice because of easy accessibility of leukocytes. Registration URL: https://www.clinicaltrials.gov; Unique identifier: NCT02176941.

摘要

背景 短白细胞端粒长度 (TL) 与动脉粥样硬化性心血管疾病相关。内皮修复在动脉粥样硬化的发展中起着关键作用。目的是研究 TL 与内皮祖细胞 (ECFC) 的增殖动力学之间的关联,后者表现为具有内皮修复活性的祖细胞。

方法和结果 为了分离 ECFCs,我们在 TELARTA(端粒在动脉老化中的作用)队列研究中的 116 名参与者(年龄 24-94 岁)的血液样本上进行了集落形成测定。我们在 29 名参与者(第 1 组)中未检测到 ECFC 克隆,在另外 29 名参与者(第 2 组)中克隆没有再板能力,在另外 58 名参与者(第 3 组)中克隆具有再板能力。通过 Southern 印迹法和 ECFCs(ECFC-TL)测量白细胞 TL。年龄和性别调整后的白细胞 TL(平均值±SEM)在第 1 组最短(6.51±0.13 kb),在第 2 组较长(6.69±0.13 kb),在第 3 组最长(6.78±0.09 kb)(<0.05)。在第 3 组中,ECFC-TL 与检测到的克隆数量相关(<0.01)。ECFC-TL(7.98±0.13 kb)长于白细胞 TL(6.74±0.012 kb)(<0.0001),两者参数强烈相关(=0.82;<0.0001)。

结论 端粒较长的个体显示出更高数量的自我更新的 ECFCs。我们的结果还表明,白细胞 TL 作为 ECFCs 中 TL 动力学的替代物,由于白细胞易于获得,因此可以在临床和实验室实践中用作内皮修复能力的替代标志物。

注册网址

https://www.clinicaltrials.gov;独特标识符:NCT02176941。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55a6/8200696/135774880a5f/JAH3-10-e020606-g005.jpg

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