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Major traits of the senescent phenotype of nucleus pulposus intervertebral disc cells persist under the specific microenvironmental conditions of the tissue

机译:在组织的特异性微环境条件下,核骨盆椎间盘细胞衰老表型的主要特征在组织的特定微环境条件下持续存在

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摘要

Intervertebral discs (IVDs) are the joints of the spine, mainly consisting of extracellular matrix (ECM) with a low number of cells embedded therein. Low cellularity stems from nutrient deprivation due to the lack of blood supply, as well as from the hypoxic and hyperosmotic conditions prevailing in the tissue. Intervertebral disc degeneration (IDD) has been firmly connected with low back pain, a major age-related disease, whereas degenerated discs have been characterized by increased proteolytic activity and accumulation of senescent cells. While the catabolic phenotype of senescent IVD cells has been documented, whether this phenotype is preserved under the harsh conditions met in the IVD milieu has never been investigated. Here we showed that a combination of low glucose, hypoxia, high osmolality and absence of serum is anti-proliferative for young disc cells. In addition, we demonstrated for the first time that classical senescence markers, namely p16(INK4a), p21(WAF1) and ICAM-1, remain up-regulated in senescent cells under these conditions. Finally, up-regulation of the main senescence-associated ECM degrading enzymes, i.e. MMP-1, -2 and -3 was maintained in this strict environment. Conservation of IVD cells' senescent phenotype under the actual conditions these cells are confronted with in vivo further supports their possible implication in IDD.
机译:椎间盘(IVDS)是脊柱的关节,主要由细胞外基质(ECM)组成,其中嵌入其中的少量细胞。由于缺乏血液供应,低细胞性缺乏营养剥夺,以及组织中持续的缺氧和高血白条件。椎间盘退化(IDD)已经牢固地与腰痛牢固连接,具有重大的年龄相关疾病,而退化的椎间盘已经表征着增加的蛋白水解活性和衰老细胞的积累。虽然已经记录了衰老IVD细胞的分解表型,但在伊夫法德Milieu的苛刻条件下是否保留了这种表型,从未被调查过。在这里,我们表明,低葡萄糖,缺氧,高渗透压和血清的缺乏的组合是对幼球细胞的抗增殖性。此外,我们首次证明了古典衰老标记,即P16(INK4A),P21(WAF1)和ICAM-1,在这些条件下在衰老细胞中保持上调。最后,在这种严格的环境中保持了主要衰老相关的ECM降解酶,即MMP-1,-2和-3。在实际条件下,在实际情况下,这些细胞面临的实际条件下的IVD细胞的衰老表型进一步支持其在IDD中可能的含义。

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