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葡萄糖耗竭条件培养基增强间充质干细胞修复梗死心肌的能力。

Mesenchymal stem cells conditioned with glucose depletion augments their ability to repair-infarcted myocardium.

机构信息

National Center of Excellence in Molecular Biology, University of the Punjab, Lahore, Pakistan.

出版信息

J Cell Mol Med. 2012 Oct;16(10):2518-29. doi: 10.1111/j.1582-4934.2012.01568.x.

Abstract

Mesenchymal stem cells (MSCs) are an attractive candidate for autologous cell therapy, but their ability to repair damaged myocardium is severely compromised with advanced age. Development of viable autologous cell therapy for treatment of heart failure in the elderly requires the need to address MSC ageing. In this study, MSCs from young (2 months) and aged (24 months) C57BL/6 mice were characterized for gene expression of IGF-1, FGF-2, VEGF, SIRT-1, AKT, p16(INK4a) , p21 and p53 along with measurements of population doubling (PD), superoxide dismutase (SOD) activity and apoptosis. Aged MSCs displayed senescent features compared with cells isolated from young animals and therefore were pre-conditioned with glucose depletion to enhance age affected function. Pre-conditioning of aged MSCs led to an increase in expression of IGF-1, AKT and SIRT-1 concomitant with enhanced viability, proliferation and delayed senescence. To determine the myocardial repair capability of pre-conditioned aged MSCs, myocardial infarction (MI) was induced in 24 months old C57BL/6 wild type mice and GFP expressing untreated and pre-conditioned aged MSCs were transplanted. Hearts transplanted with pre-conditioned aged MSCs showed increased expression of paracrine factors, such as IGF-1, FGF-2, VEGF and SDF-1α. This was associated with significantly improved cardiac performance as measured by dp/dt(max), dp/dt(min), LVEDP and LVDP, declined left ventricle (LV) fibrosis and apoptosis as measured by Masson's Trichrome and TUNEL assays, respectively, after 30 days of transplantation. In conclusion, pre-conditioning of aged MSCs with glucose depletion can enhance proliferation, delay senescence and restore the ability of aged cells to repair senescent infarcted myocardium.

摘要

间充质干细胞(MSCs)是自体细胞治疗的有吸引力的候选者,但随着年龄的增长,其修复受损心肌的能力严重受损。为了治疗老年人心力衰竭,需要开发可行的自体细胞疗法,这就需要解决 MSC 老化的问题。在这项研究中,从小鼠(2 个月)和老年(24 个月)C57BL/6 中分离的 MSCs 进行了 IGF-1、FGF-2、VEGF、SIRT-1、AKT、p16(INK4a)、p21 和 p53 的基因表达特征分析,并进行了群体倍增(PD)、超氧化物歧化酶(SOD)活性和凋亡的测量。与从小鼠中分离的细胞相比,老年 MSC 显示出衰老特征,因此用葡萄糖耗竭对其进行预处理,以增强受年龄影响的功能。老年 MSC 的预处理导致 IGF-1、AKT 和 SIRT-1 的表达增加,同时提高了细胞活力、增殖和延缓衰老。为了确定预处理老年 MSC 的心肌修复能力,在 24 个月大的 C57BL/6 野生型小鼠中诱导心肌梗死(MI),并移植未处理和预处理的老年 MSC。与移植未处理的老年 MSC 的心脏相比,移植预处理的老年 MSC 的心脏表达了更多的旁分泌因子,如 IGF-1、FGF-2、VEGF 和 SDF-1α。这与心脏功能的显著改善有关,如 dp/dt(max)、dp/dt(min)、LVEDP 和 LVDP 的测量结果所示,30 天后移植时 LV 纤维化和凋亡的减少,如 Masson's Trichrome 和 TUNEL 检测结果所示。总之,用葡萄糖耗竭预处理老年 MSC 可以增强增殖、延缓衰老,并恢复老年细胞修复衰老性梗死心肌的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbc5/3823444/14c4e2bd5b09/jcmm0016-2518-f1.jpg

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