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高渗膨胀培养基可改善髓核细胞表型。

Hyperosmolar expansion medium improves nucleus pulposus cell phenotype.

作者信息

Laagland Lisanne T, Bach Frances C, Creemers Laura B, Le Maitre Christine L, Poramba-Liyanage Deepani W, Tryfonidou Marianna A

机构信息

Department of Clinical Sciences, Faculty of Veterinary Medicine Utrecht University Utrecht The Netherlands.

Department of Orthopedics University Medical Centre Utrecht Utrecht The Netherlands.

出版信息

JOR Spine. 2022 Aug 18;5(3):e1219. doi: 10.1002/jsp2.1219. eCollection 2022 Sep.

Abstract

BACKGROUND

Repopulating the degenerated intervertebral disc (IVD) with tissue-specific nucleus pulposus cells (NPCs) has already been shown to promote regeneration in various species. Yet the applicability of NPCs as cell-based therapy has been hampered by the low cell numbers that can be extracted from donor IVDs and their potentially limited regenerative capacity due to their degenerated phenotype. To optimize the expansion conditions, we investigated the effects of increasing culture medium osmolarity during expansion on the phenotype of dog NPCs and their ability to produce a healthy extracellular matrix (ECM) in a 3D culture model.

METHODS

Dog NPCs were expanded in expansion medium with a standard osmolarity of 300 mOsm/L or adjusted to 400 or 500 mOsm/L in both normoxic and hypoxic conditions. Following expansion, NPCs were cultured in a 3D culture model in chondrogenic culture medium with a standard osmolarity. Read-out parameters included cell proliferaton rate, morphology, phenotype and healthy ECM production.

RESULTS

Increasing the expansion medium osmolarity from 300 to 500 mOsm/L resulted in NPCs with a more rounded morphology and a lower cell proliferation rate accompanied by the expression of several healthy NPC and progenitor markers at gene () and protein (ACAN, PAX1, CD24, TEK, CD73) level. The NPCs expanded at 500 mOsm/L were able to retain most of their phenotypic markers and produce healthy ECM during 3D culture independent of the oxygen level used during expansion.

CONCLUSIONS

Altogether, our findings show that increasing medium osmolarity during expansion results in an NPC population with improved phenotype, which could enhance the potential of cell-based therapies for IVD regeneration.

摘要

背景

用组织特异性髓核细胞(NPCs)重新填充退变的椎间盘(IVD)已被证明可促进多种物种的再生。然而,NPCs作为基于细胞的治疗方法的适用性受到从供体IVD中可提取的细胞数量少以及由于其退变表型导致的潜在有限再生能力的阻碍。为了优化扩增条件,我们研究了在扩增过程中增加培养基渗透压对犬NPCs表型及其在三维培养模型中产生健康细胞外基质(ECM)能力的影响。

方法

犬NPCs在渗透压为300 mOsm/L的标准扩增培养基中扩增,或在常氧和低氧条件下将渗透压调整为400或500 mOsm/L。扩增后,NPCs在渗透压标准的软骨生成培养基中进行三维培养。检测参数包括细胞增殖率、形态、表型和健康ECM的产生。

结果

将扩增培养基的渗透压从300 mOsm/L提高到500 mOsm/L,导致NPCs形态更圆,细胞增殖率降低,同时在基因()和蛋白质(ACAN、PAX1、CD24、TEK、CD73)水平上表达几种健康NPC和祖细胞标志物。在500 mOsm/L下扩增的NPCs能够保留其大部分表型标志物,并在三维培养期间产生健康的ECM,而与扩增期间使用的氧气水平无关。

结论

总之,我们的研究结果表明,在扩增过程中增加培养基渗透压会导致NPC群体的表型得到改善,这可能会增强基于细胞的IVD再生治疗的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0a6/9520765/4752d9c43c6b/JSP2-5-e1219-g002.jpg

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