Monocarboxylate transporter 1-mediated lactate accumulation promotes nucleus pulposus degeneration under hypoxia in a 3D multilayered nucleus pulposus degeneration model.

IF 3.1 3区 医学 Q3 CELL & TISSUE ENGINEERING
C Y Wang, M K Hsieh, Y J Hu, A Bit, P L Lai
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引用次数: 2

Abstract

During intervertebral disc degeneration (IVDD), due to endplate calcification, diminished oxygen and nutrient concentrations and accumulated lactate are present in the microenvironment of the nucleus pulposus (NP). The disadvantages of 3D layered culture include uneven oxygen and nutrient gradients. In the present study, to mimic the in vivo microenvironment of the NP, a 5-layered 3D culture was constructed using clinical haemostatic gelatine sponges and developed as a NP degeneration (NPD) model. Subsequently, cell distribution as well as expression of NP chondrogenic markers (type II collagen and aggrecan), glycosaminoglycan (GAG) and degeneration markers [e.g. matrix metalloproteinase (MMP) 3] were measured from the top to the bottom layer. However, in a single NP-cell-loaded disc model, the chondrogenic potency in the middle or bottom layer was higher than that in the top layer. To further study the mechanism underlying the degeneration of NP cells in this NPD model, the contribution of secreted metabolites was examined. Lactate identified in the supernatant modulated GAG accumulation and MMP3 expression. Inhibition of lactate influx by the monocarboxylate transporter (MCT)-1 inhibitor, AZD3965, reversed the effect of lactate on GAG accumulation and MMP3 expression and further improved NP cell degeneration in the NPD model. Thanks to the homogenous expression of lactate in the model, it was possible to further identified that the combination of lactate and hypoxia enhanced MMP3 expression. Taken together, multilayered cell-loaded sponges, with oxygen and nutrient gradients as well as lactate accumulation, can represent a 3D multilayered NPD model for exploring potential agents for IVDD.

在三维多层髓核变性模型中,单羧酸转运蛋白1介导的乳酸积累促进缺氧下髓核变性。
在椎间盘退变(IVDD)期间,由于终板钙化,髓核(NP)微环境中存在氧气和营养物质浓度降低以及乳酸积累。三维分层培养的缺点是氧和养分梯度不均匀。在本研究中,为了模拟NP的体内微环境,使用临床止血明胶海绵构建了一个5层的3D培养物,并开发了NP变性(NPD)模型。随后,从上至下测量细胞分布以及NP软骨形成标志物(II型胶原和聚集蛋白)、糖胺聚糖(GAG)和变性标志物(如基质金属蛋白酶(MMP) 3)的表达。然而,在单个装载np细胞的椎间盘模型中,中层或底层的软骨形成效力高于顶层。为了进一步研究NPD模型中NP细胞退化的机制,我们检查了分泌代谢物的贡献。在上清中发现乳酸调节GAG积累和MMP3表达。单羧酸转运体(MCT)-1抑制剂AZD3965对乳酸内流的抑制逆转了乳酸对GAG积累和MMP3表达的影响,并进一步改善了NPD模型中NP细胞的变性。由于乳酸在模型中均质表达,我们可以进一步确定乳酸和缺氧联合作用增强了MMP3的表达。综上所述,具有氧气和营养梯度以及乳酸积累的多层细胞负载海绵可以代表一个3D多层NPD模型,用于探索潜在的IVDD药物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
European cells & materials
European cells & materials 生物-材料科学:生物材料
CiteScore
6.00
自引率
6.50%
发文量
55
审稿时长
1.5 months
期刊介绍: eCM provides an interdisciplinary forum for publication of preclinical research in the musculoskeletal field (Trauma, Maxillofacial (including dental), Spine and Orthopaedics). The clinical relevance of the work must be briefly mentioned within the abstract, and in more detail in the paper. Poor abstracts which do not concisely cover the paper contents will not be sent for review. Incremental steps in research will not be entertained by eCM journal.Cross-disciplinary papers that go across our scope areas are welcomed.
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