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Adipose-derived stromal cells protect intervertebral disc cells in compression: implications for stem cell regenerative disc therapy

机译:adipose-derived stromal cells protect intervertebral disc cells in compression: implications for stem cell regenerative disc therapy

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摘要

INTRODUCTION: Abnormal biomechanics plays a role in intervertebral disc degeneration. Adipose-derived stromal cells (ADSCs) have been implicated in disc integrity; however, their role in the setting of mechanical stimuli upon the disc's nucleus pulposus (NP) remains unknown. As such, the present study aimed to evaluate the influence of ADSCs upon NP cells in compressive load culture. METHODS: Human NP cells were cultured in compressive load at 3.0MPa for 48 hours with or without ADSCs co-culture (the ratio was 50:50). We used flow cytometry, live/dead staining and scanning electron microscopy (SEM) to evaluate cell death, and determined the expression of specific apoptotic pathways by characterizing the expression of activated caspases-3, -8 and -9. We further used real-time (RT-) PCR and immunostaining to determine the expression of the extracellular matrix (ECM), mediators of matrix degradation (e.g. MMPs, TIMPs and ADAMTSs), pro-inflammatory factors and NP cell phenotype markers. RESULTS: ADSCs inhibited human NP cell apoptosis via suppression of activated caspase-9 and caspase-3. Furthermore, ADSCs protected NP cells from the degradative effects of compressive load by significantly up-regulating the expression of ECM genes (SOX9, COL2A1 and ACAN), tissue inhibitors of metalloproteinases (TIMPs) genes (TIMP-1 and TIMP-2) and cytokeratin 8 (CK8) protein expression. Alternatively, ADSCs showed protective effect by inhibiting compressive load mediated increase of matrix metalloproteinases (MMPs; MMP-3 and MMP-13), disintegrin and metalloproteinase with thrombospondin motifs (ADAMTSs; ADAMTS-1 and 5), and pro-inflammatory factors (IL-1beta, IL-6, TGF-beta1 and TNF-alpha). CONCLUSIONS: Our study is the first in vitro study assessing the impact of ADSCs on NP cells in an un-physiological mechanical stimulation culture environment. Our study noted that ADSCs protect compressive load induced NP cell death and degradation by inhibition of activated caspase-9 and -3 activity; regulating ECM and modulator genes, suppressing pro-inflammatory factors and preserving CK8. Consequently, the protective impact of ADSCs found in this study provides an essential understanding and expands our knowledge as to the utility of ADSCs therapy for intervertebral disc regeneration.
机译:简介:异常的生物力学在椎间盘退变中起作用。脂肪来源的基质细胞(ADSCs)与椎间盘的完整性有关。但是,它们在椎间盘髓核(NP)上机械刺激设置中的作用仍然未知。因此,本研究旨在评估ADSCs在压缩负荷培养中对NP细胞的影响。方法:在有或无ADSCs共培养的情况下,将人NP细胞在3.0MPa的压缩负荷下培养48小时(比例为50:50)。我们使用流式细胞仪,活/死染色和扫描电子显微镜(SEM)评估细胞死亡,并通过表征活化的caspases-3,-8和-9的表达来确定特定凋亡途径的表达。我们进一步使用实时(RT-)PCR和免疫染色来确定细胞外基质(ECM),基质降解介质(例如MMP,TIMP和ADAMTS),促炎因子和NP细胞表型标记的表达。结果:ADSCs通过抑制活化的caspase-9和caspase-3抑制人NP细胞的凋亡。此外,ADSC通过显着上调ECM基因(SOX9,COL2A1和ACAN),金属蛋白酶(TIMPs)组织抑制剂(TIMP-1和TIMP-2)和细胞角蛋白的表达来保护NP细胞免受压缩负荷的降解作用。 8(CK8)蛋白表达。另外,ADSC通过抑制压缩负荷介导的基质金属蛋白酶(MMPs; MMP-3和MMP-13),具有血小板反应蛋白基序(ADAMTSs; ADAMTS-1和5)和促炎因子(IL)的解整合素和金属蛋白酶的增加而显示出保护作用。 -1beta,IL-6,TGF-beta1和TNF-alpha)。结论:我们的研究是第一个体外研究,以评估在非生理性机械刺激培养环境中ADSCs对NP细胞的影响。我们的研究指出,ADSC通过抑制激活的caspase-9和-3活性来保护压负荷诱导的NP细胞死亡和降解。调节ECM和调节基因,抑制促炎因子并保存CK8。因此,本研究中发现的ADSC的保护作用提供了基本的了解,并扩大了我们对ADSC的治疗方法在椎间盘再生中的应用的认识。

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