Matthews Elloise Z, Lanham Stuart, White Kate, Kyriazi Maria-Eleni, Alexaki Konstantina, El-Sagheer Afaf H, Brown Tom, Kanaras Antonios G, J West Jonathan, MacArthur Ben D, Stumpf Patrick S, Oreffo Richard Oc
Faculty of Medicine, Centre for Human Development, Stem Cells and Regeneration, Human Development and Health, Institute of Developmental Sciences, University of Southampton, Southampton, UK.
Cancer Sciences, Faculty of Medicine, University of Southampton, Southampton, UK.
J Tissue Eng. 2023 May 16;14:20417314231169375. doi: 10.1177/20417314231169375. eCollection 2023 Jan-Dec.
There is a wealth of data indicating human bone marrow contains skeletal stem cells (SSC) with the capacity for osteogenic, chondrogenic and adipogenic differentiation. However, current methods to isolate SSCs are restricted by the lack of a defined marker, limiting understanding of SSC fate, immunophenotype, function and clinical application. The current study applied single-cell RNA-sequencing to profile human adult bone marrow populations from 11 donors and identified novel targets for SSC enrichment. Spherical nucleic acids were used to detect these mRNA targets in SSCs. This methodology was able to rapidly isolate potential SSCs found at a frequency of <1 in 1,000,000 in human bone marrow, with the capacity for tri-lineage differentiation in vitro and ectopic bone formation in vivo. The current studies detail the development of a platform to advance SSC enrichment from human bone marrow, offering an invaluable resource for further SSC characterisation, with significant therapeutic impact therein.
大量数据表明,人类骨髓中含有具有成骨、软骨生成和脂肪生成分化能力的骨骼干细胞(SSC)。然而,目前分离SSC的方法受到缺乏明确标志物的限制,这限制了对SSC命运、免疫表型、功能和临床应用的理解。当前的研究应用单细胞RNA测序对11名供体的人类成人骨髓群体进行分析,并确定了用于富集SSC的新靶点。球形核酸被用于检测SSC中的这些mRNA靶点。这种方法能够快速分离出在人类骨髓中频率低于百万分之一的潜在SSC,这些SSC具有体外三系分化和体内异位骨形成的能力。当前的研究详细阐述了一个从人类骨髓中推进SSC富集的平台的开发,为进一步的SSC表征提供了宝贵资源,在其中具有重大的治疗意义。