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猪、犬和人类脊索细胞条件培养基中的可溶性和可沉淀因子:对椎间盘再生的影响。

Soluble and pelletable factors in porcine, canine and human notochordal cell-conditioned medium: implications for IVD regeneration.

作者信息

Bach F C, de Vries S A, Riemers F M, Boere J, van Heel F W, van Doeselaar M, Goerdaya S S, Nikkels P G, Benz K, Creemers L B, Maarten Altelaar A F, Meij B P, Ito K, Tryfonidou M A

机构信息

Department of Clinical Sciences of Companion Animals, Faculty of Veterinary Medicine, Utrecht University, Yalelaan 108, 3584 CM Utrecht, the

出版信息

Eur Cell Mater. 2016 Aug 30;32:163-80. doi: 10.22203/ecm.v032a11.

Abstract

During intervertebral disc (IVD) maturation, notochordal cells (NCs) are replaced by chondrocyte-like cells (CLCs) in the nucleus pulposus, suggesting that NCs play a role in maintaining tissue health. Affirmatively, NC-conditioned medium (NCCM) exerts regenerative effects on CLC proliferation and extracellular matrix (ECM) production. The aim of this study was to identify NC-secreted substances that stimulate IVD regeneration. By mass spectrometry of porcine, canine and human NCCM, 149, 170 and 217 proteins were identified, respectively, with 66 proteins in common. Mainly ECM-related proteins were identified, but also organelle-derived and membrane-bound vesicle proteins. To determine whether the effect of NCCM was mediated by soluble and/or pelletable factors, porcine and canine NCCM were separated into a soluble (NCCM-S; peptides and proteins) and pelletable (NCCM-P; protein aggregates and extracellular vesicles) fraction by ultracentrifugation, and tested on bovine and canine CLCs in vitro, respectively. In each model, NCCM-S exerted a more pronounced anabolic effect than NCCM-P. However, glycosaminoglycan (GAG) uptake from the medium into the carrier gel prevented more definite conclusions. While the effect of porcine NCCM-P on bovine CLCs was negligible, canine NCCM-P appeared to enhance GAG and collagen type II deposition by canine CLCs. In conclusion, porcine and canine NCCM exerted their anabolic effects mainly through soluble factors, but also the pelletable NCCM factors showed moderate regenerative potential. Although the regenerative potential of NCCM-P should not be overlooked, future studies should focus on unraveling the protein-based regenerative mechanism from NCCM produced from isolated NCs, e.g. by NCCM fractionation and pathway blocking studies.

摘要

在椎间盘(IVD)成熟过程中,髓核中的脊索细胞(NCs)被软骨样细胞(CLCs)取代,这表明NCs在维持组织健康方面发挥作用。确实,NC条件培养基(NCCM)对CLC增殖和细胞外基质(ECM)产生具有再生作用。本研究的目的是鉴定刺激IVD再生的NC分泌物质。通过对猪、犬和人NCCM进行质谱分析,分别鉴定出149、170和217种蛋白质,其中有66种蛋白质是共有的。主要鉴定出与ECM相关的蛋白质,但也有细胞器衍生和膜结合囊泡蛋白。为了确定NCCM的作用是否由可溶性和/或可沉淀因子介导,通过超速离心将猪和犬的NCCM分离为可溶性部分(NCCM-S;肽和蛋白质)和可沉淀部分(NCCM-P;蛋白质聚集体和细胞外囊泡),并分别在体外对牛和犬的CLCs进行测试。在每个模型中,NCCM-S比NCCM-P发挥更明显的合成代谢作用。然而,培养基中糖胺聚糖(GAG)被载体凝胶摄取阻碍了得出更明确的结论。虽然猪NCCM-P对牛CLCs的作用可忽略不计,但犬NCCM-P似乎增强了犬CLCs的GAG和II型胶原蛋白沉积。总之,猪和犬的NCCM主要通过可溶性因子发挥其合成代谢作用,但可沉淀的NCCM因子也显示出适度的再生潜力。虽然不应忽视NCCM-P的再生潜力,但未来的研究应侧重于从分离的NCs产生的NCCM中阐明基于蛋白质的再生机制,例如通过NCCM分级分离和途径阻断研究。

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