Manzo Paola, Scala Pasqualina, Giudice Valentina, Gorrese Marisa, Bertolini Angela, Morini Denise, D'Alto Francesca, Pepe Rita, Pedicini Antonio, Izzo Barbara, Verdesca Francesco, Langella Maddalena, Serio Bianca, Della Porta Giovanna, Selleri Carmine
Hematology and Transplant Center, University Hospital "San Giovanni di Dio e Ruggi d'Aragona", Salerno, Italy.
Department of Medicine, Surgery, and Dentistry "Scuola Medica Salernitana", University of Salerno, Baronissi, Italy.
Heliyon. 2022 Dec 1;8(12):e11998. doi: 10.1016/j.heliyon.2022.e11998. eCollection 2022 Dec.
Hematopoietic stem cell (HSC) maintenance is challenging because stem cell survival relies on cell-to-cell contacts and paracrine signals from bone marrow (BM) microenvironment. Indeed, HSCs easily differentiate in conventional culture systems, and study of stem cell biology, leukemogenesis, and evolutionary trajectories is limited. 3D-culture systems can mimic tissue architecture and microenvironment thus preserving HSC phenotype. In this study, we developed a calcium alginate hydrogel-based 3D co-culture system of BM mononuclear cells (BMMCs) and BM-derived mesenchymal stem cells (BM-MSCs) to study hemopoiesis in health and disease, such as biological roles of M541L somatic mutation of unknown significance. BMMCs and peripheral blood stem cells were obtained from an acute myeloid leukemia patient who experienced graft failure and his haploidentical donor, and from a healthy donor. Cells embedded in alginate scaffolds were cultured for up to 21 days, and flow cytometry immunophenotyping was performed at baseline and every seven days. Our results showed suitability of our 3D culture system in preserving HSC vitality and phenotype throughout the culture period, and also in maintaining composition and vitality of total BMMCs. Moreover, 3D culture results suggested that M541L somatic mutation could be a loss-of-function alteration by reducing HSC maintenance ability thus quickly promoting differentiation, as documented by graft failure and absence of long-term culture stability. In conclusions, our 3D BM-like biomimetic culture system allowed long-term stemness maintenance, making it a valid and effective tool for study of physiological and pathological hemopoiesis.
造血干细胞(HSC)的维持具有挑战性,因为干细胞的存活依赖于细胞间接触以及来自骨髓(BM)微环境的旁分泌信号。事实上,造血干细胞在传统培养系统中很容易分化,这限制了对干细胞生物学、白血病发生机制以及进化轨迹的研究。三维培养系统可以模拟组织结构和微环境,从而保留造血干细胞的表型。在本研究中,我们开发了一种基于海藻酸钙水凝胶的三维共培养系统,用于培养BM单核细胞(BMMCs)和BM来源的间充质干细胞(BM-MSCs),以研究健康和疾病状态下的造血过程,比如意义不明的M541L体细胞突变的生物学作用。BMMCs和外周血干细胞分别取自一名发生移植失败的急性髓系白血病患者及其单倍体相合供者,以及一名健康供者。将包埋在海藻酸盐支架中的细胞培养长达21天,并在基线期和每七天进行一次流式细胞术免疫表型分析。我们的结果表明,我们的三维培养系统适合在整个培养期间维持造血干细胞的活力和表型,也适合维持总BMMCs的组成和活力。此外,三维培养结果表明,M541L体细胞突变可能是一种功能丧失性改变,它通过降低造血干细胞的维持能力从而迅速促进分化,移植失败和缺乏长期培养稳定性就证明了这一点。总之,我们的三维类骨髓仿生培养系统能够长期维持干细胞特性,使其成为研究生理性和病理性造血的有效工具。