Suppr超能文献

仿生条件对去分化脂肪细胞神经源性和神经保护特性的影响。

The influence of biomimetic conditions on neurogenic and neuroprotective properties of dedifferentiated fat cells.

作者信息

Radoszkiewicz Klaudia, Rybkowska Paulina, Szymanska Magdalena, Krzesniak Natalia Ewa, Sarnowska Anna

机构信息

Translational Platform for Regenerative Medicine, Mossakowski Medical Research Institute, Polish Academy of Sciences, 02-106 Warsaw, Poland.

Department of Plastic and Reconstructive Surgery, Centre of Postgraduate Medical Education, Prof. W. Orlowski Memorial Hospital, 00-416 Warsaw, Poland.

出版信息

Stem Cells. 2025 Jan 17;43(1). doi: 10.1093/stmcls/sxae066.

Abstract

In the era of a constantly growing number of reports on the therapeutic properties of dedifferentiated, ontogenetically rejuvenated cells and their use in the treatment of neurological diseases, the optimization of their derivation and long-term culture methods seem to be crucial. One of the solutions is seen in the use of dedifferentiated fat cells (DFATs) that are characterized by a greater homogeneity. Moreover, these cells seem to possess a higher expression of transcriptional factors necessary to maintain pluripotency (stemness-related transcriptional factors) as well as a greater ability to differentiate in vitro into 3 embryonic germ layers, and a high proliferative potential in comparison to adipose stem/stromal cells. However, the neurogenic and neuroprotective potential of DFATs is still insufficiently understood; hence, our research goal was to contribute to our current knowledge of the subject. To recreate the brain's physiological (biomimetic) conditions, the cells were cultured at 5% oxygen concentration. The neural differentiation capacity of DFATs was assessed in the presence of the N21 supplement containing the factors that are typically found in the natural environment of the neural cell niche or in the presence of cerebrospinal fluid and under various spatial conditions (microprinting). The neuroprotective properties of DFATs were assessed using the coculture method with the ischemically damaged nerve tissue.

摘要

在关于去分化、个体发育复壮细胞的治疗特性及其在神经疾病治疗中的应用的报道数量不断增加的时代,优化其来源和长期培养方法似乎至关重要。其中一种解决方案是使用具有更高同质性的去分化脂肪细胞(DFATs)。此外,这些细胞似乎具有更高的维持多能性所需转录因子(与干性相关的转录因子)表达水平,以及在体外分化为3个胚胎胚层的更强能力,并且与脂肪干细胞/基质细胞相比具有更高的增殖潜力。然而,DFATs的神经发生和神经保护潜力仍未得到充分了解;因此,我们的研究目标是为该领域的现有知识做出贡献。为了重现大脑的生理(仿生)条件,细胞在5%氧气浓度下培养。在含有神经细胞生态位自然环境中通常存在的因子的N21补充剂存在下,或在脑脊液存在下以及在各种空间条件(微打印)下,评估DFATs的神经分化能力。使用与缺血性损伤神经组织的共培养方法评估DFATs的神经保护特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42b7/11811640/f819dca7108e/sxae066_fig8.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验