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比较大气和低氧培养的间充质干细胞转录组:对椎间盘干细胞治疗的启示。

Comparing atmospheric and hypoxic cultured mesenchymal stem cell transcriptome: implication for stem cell therapies targeting intervertebral discs.

机构信息

BioRestorative Therapies, Inc., 40 Marcus Drive, Suite 1, Melville, NY, 11747, USA.

Immune Advisors, LLC, La Jolla, CA, 92037, USA.

出版信息

J Transl Med. 2018 Aug 10;16(1):222. doi: 10.1186/s12967-018-1601-9.

Abstract

BACKGROUND

Mesenchymal stem cells (MSCs) represent an attractive avenue for cellular therapies targeting degenerative diseases. MSC in vitro expansion is required in order to obtain therapeutic numbers during the manufacturing process. It is known that culture conditions impact cellular properties and behavior after in vivo transplantation. In this study, we aimed at evaluating the benefit of hypoxic culturing of human bone marrow derived mesenchymal stem cells on cell fitness and whole genome expression and discussed its implication on cellular therapies targeting orthopedic diseases such as chronic lower back pain.

METHODS

Human bone marrow mesenchymal stem cells (hBMMSCs) were isolated from fresh human anticoagulated whole bone marrow and were cultured side by side in atmospheric (20% O) and hypoxic (5% O) oxygen partial pressure for up to 3 passages. Stem cell fitness was assessed by clonogenic assay, cell surface marker expression and differentiation potential. Whole genome expression was performed by mRNA sequencing. Data from clonogenic assays, cell surface marker by flow cytometry and gene expression by quantitative PCR were analyzed by two-tailed paired Student's t-test. Data from mRNA sequencing were aligned to hg19 using Tophat-2.0.13 and analyzed using Cufflinks-2.1.1.

RESULTS

Hypoxic culturing of hBMMSCs had positive effects on cell fitness, as evidenced by an increased clonogenicity and improved differentiation potential towards adipocyte and chondrocyte lineages. No difference in osteoblast differentiation or in cell surface markers were observed. Only a small subset of genes (34) were identified by mRNA sequencing to be significantly dysregulated by hypoxia. When clustered by biological function, these genes were associated with chondrogenesis and cartilage metabolism, inflammation and immunomodulation, cellular survival, migration and proliferation, vasculogenesis and angiogenesis.

CONCLUSIONS

Hypoxic culturing positively impacted hBMMSCs fitness and transcriptome, potentially improving inherent properties of these cells that are critical for the development of successful cellular therapies. Hypoxic culturing should be considered for the in vitro expansion of hBMMSCs during manufacturing of cellular therapies targeting orthopedic disorders such as lower back pain.

摘要

背景

间充质干细胞(MSCs)是针对退行性疾病的细胞治疗的有吸引力的途径。在制造过程中,需要体外扩增 MSC 以获得治疗数量。已知培养条件会影响体内移植后细胞的特性和行为。在这项研究中,我们旨在评估对人骨髓间充质干细胞进行低氧培养对细胞适应性和全基因组表达的益处,并讨论其对针对骨科疾病(如慢性下腰痛)的细胞治疗的影响。

方法

从新鲜抗凝全骨髓中分离出人骨髓间充质干细胞(hBMMSCs),并在大气(20% O)和低氧(5% O)氧分压下并排培养,最多可达 3 个传代。通过克隆形成试验、细胞表面标志物表达和分化潜能评估干细胞适应性。通过 mRNA 测序进行全基因组表达。通过双尾配对学生 t 检验分析克隆形成试验、流式细胞术的细胞表面标志物和定量 PCR 的基因表达数据。使用 Tophat-2.0.13 将 mRNA 测序数据与 hg19 对齐,并使用 Cufflinks-2.1.1 进行分析。

结果

低氧培养对 hBMMSCs 的细胞适应性有积极影响,表现在克隆形成能力增加和向成脂和成软骨谱系的分化潜能提高。未观察到成骨分化或细胞表面标志物的差异。通过 mRNA 测序仅鉴定出一小部分(34 个)基因显著受低氧调节。当按生物学功能聚类时,这些基因与软骨发生和软骨代谢、炎症和免疫调节、细胞存活、迁移和增殖、血管生成和血管生成有关。

结论

低氧培养显著影响 hBMMSCs 的适应性和转录组,可能改善这些细胞的固有特性,这对于成功的细胞治疗至关重要。在针对骨科疾病(如慢性下腰痛)的细胞治疗的体外 hBMMSCs 扩增过程中,应考虑低氧培养。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8497/6086019/5d6cbe39a4cb/12967_2018_1601_Fig1_HTML.jpg

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