成体间充质干细胞与髓核细胞在双层微球中共培养用于椎间盘再生

Aliza A. Allon MS , Richard A. Schneider Ph.D , Jeffrey C. Lotz Ph.D
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引用次数: 0

摘要

我们的目标是在椎间盘环境的背景下优化基于干细胞的组织工程策略。我们探索了髓核细胞(NPC)和成体间充质干细胞(MSC)共培养的好处,使用一种新的球形双层颗粒培养系统,其中一种细胞类型被封闭在另一种细胞类型的球体中。我们的3D系统提供了一种利用组织诱导和凝结等胚胎过程的结构。我们观察到一个独特的现象:共培养球团的出芽和从主球团分离的卫星球团的形成。方法制备smsc与NPC共培养微球,形成三种不同的结构组织。第一种是随机组织。另外两种为双层组织,要么是MSC在内部,NPC在外部,要么是NPC在内部,MSC在外部。结果14 d时,共培养微球均有出芽并自发产生卫星微球。卫星颗粒由两种细胞类型组成,令人惊讶的是,它们都具有相同的双层结构,MSC在内部,NPC在外部。这个组织独立于卫星所产生的主要颗粒的结构。结论主微球生成的卫星微球自发组织成双层结构。这意味着结构组织在这种细胞培养系统中自然发生,并且可能天生有利于基于细胞的组织工程策略。出芽的发生和卫星微球的组织可能对在基于细胞的椎间盘再生治疗中使用共培养微球具有重要意义。从治疗的角度来看,卫星微球的产生可能是一个有益的特征,它将有助于将供体细胞扩散到宿主基质中,并以可持续的方式恢复正常的基质成分,最终更新组织功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Co-culture of Adult Mesenchymal Stem Cells and Nucleus Pulposus Cells in Bilaminar Pellets for Intervertebral Disc Regeneration

Background

Our goal is to optimize stem cell-based tissue engineering strategies in the context of the intervertebral disc environment. We explored the benefits of co-culturing nucleus pulposus cells (NPC) and adult mesenchymal stem cells (MSC) using a novel spherical bilaminar pellet culture system where one cell type is enclosed in a sphere of the other cell type. Our 3D system provides a structure that exploits embryonic processes such as tissue induction and condensation. We observed a unique phenomenon: the budding of co-culture pellets and the formation of satellite pellets that separate from the main pellet.

Methods

MSC and NPC co-culture pellets were formed with three different structural organizations. The first had random organization. The other two had bilaminar organization with either MSC inside and NPC outside or NPC inside and MSC outside.

Results

By 14 days, all co-culture pellets exhibited budding and spontaneously generated satellite pellets. The satellite pellets were composed of both cell types and, surprisingly, all had the same bilaminar organization with MSC on the inside and NPC on the outside. This organization was independent of the structure of the main pellet that the satellites stemmed from.

Conclusion

The main pellets generated satellite pellets that spontaneously organized into a bilaminar structure. This implies that structural organization occurs naturally in this cell culture system and may be inherently favorable for cell-based tissue engineering strategies. The occurrence of budding and the organization of satellite pellets may have important implications for the use of co-culture pellets in cell-based therapies for disc regeneration.

Clinical Relevance

From a therapeutic point of view, the generation of satellite pellets may be a beneficial feature that would serve to spread donor cells throughout the host matrix and restore normal matrix composition in a sustainable way, ultimately renewing tissue function.

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