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基于用人血小板裂解液扩增的脐带间充质基质细胞生成工程化骨构建体的策略。

Strategy for the Generation of Engineered Bone Constructs Based on Umbilical Cord Mesenchymal Stromal Cells Expanded with Human Platelet Lysate.

作者信息

Silva-Cote Ingrid, Cruz-Barrera Mónica, Cañas-Arboleda Mariana, Correa-Araujo Luz, Méndez Leidi, Jagielska Joanna, Camacho Bernardo, Salguero Gustavo

机构信息

Advanced Therapies Unit, Instituto Distrital de Ciencia Biotecnología e Innovación en Salud (IDCBIS), Bogotá, Colombia.

出版信息

Stem Cells Int. 2019 Dec 1;2019:7198215. doi: 10.1155/2019/7198215. eCollection 2019.

Abstract

Umbilical cord mesenchymal stromal cells (UC-MSC) are promising candidates for cell therapy due to their potent multilineage differentiation, enhanced self-renewal capacity, and immediate availability for clinical use. Clinical experience has demonstrated satisfactory biosafety profiles and feasibility of UC-MSC application in the allogeneic setting. However, the use of UC-MSC for bone regeneration has not been fully established. A major challenge in the generation of successful therapeutic strategies for bone engineering lies on the combination of highly functional proosteogenic MSC populations and bioactive matrix scaffolds. To address that, in this study we proposed a new approach for the generation of bone-like constructs based on UC-MSC expanded in human platelet lysate (hPL) and evaluated its potential to induce bone structures . In order to obtain UC-MSC for potential clinical use, we first assessed parameters such as the isolation method, growth supplementation, microbiological monitoring, and cryopreservation and performed full characterization of the cell product including phenotype, growth performance, tree-lineage differentiation, and gene expression. Finally, we evaluated bone-like constructs based on the combination of stimulated UC-MSC and collagen microbeads for bone formation. UC-MSC were successfully cultured from 100% of processed UC donors, and efficient cell derivation was observed at day 14 ± 3 by the explant method. UC-MSC maintained mesenchymal cell morphology, phenotype, high cell growth performance, and probed multipotent differentiation capacity. No striking variations between donors were recorded. As expected, UC-MSC showed tree-lineage differentiation and gene expression profiles similar to bone marrow- and adipose-derived MSC. Importantly, upon osteogenic and endothelial induction, UC-MSC displayed strong proangiogenic and bone formation features. The combination of hPL-expanded MSC and collagen microbeads led to bone/vessel formation following implantation into an immune competent mouse model. Collectively, we developed a high-performance UC-MSC-based cell manufacturing bioprocess that fulfills the requirements for human application and triggers the potency and effectivity of cell-engineered scaffolds for bone regeneration.

摘要

脐带间充质基质细胞(UC-MSC)因其强大的多向分化能力、增强的自我更新能力以及可立即用于临床治疗,成为细胞治疗的理想候选者。临床经验表明,UC-MSC在同种异体移植中的生物安全性良好且应用可行。然而,UC-MSC在骨再生方面的应用尚未完全确立。成功制定骨工程治疗策略的一个主要挑战在于将高功能促骨生成的间充质干细胞群体与生物活性基质支架相结合。为了解决这一问题,在本研究中,我们提出了一种基于在人血小板裂解液(hPL)中扩增的UC-MSC生成类骨构建体的新方法,并评估了其诱导骨结构的潜力。为了获得可用于潜在临床应用的UC-MSC,我们首先评估了诸如分离方法、生长补充剂、微生物监测和冷冻保存等参数,并对细胞产品进行了全面表征,包括表型、生长性能、三系分化和基因表达。最后,我们评估了基于刺激的UC-MSC与胶原微珠组合用于骨形成的类骨构建体。从100%的处理过的脐带供体中成功培养出UC-MSC,通过组织块法在第14±3天观察到高效的细胞衍生。UC-MSC保持间充质细胞形态、表型、高细胞生长性能,并具有多能分化能力。未记录到供体之间的显著差异。正如预期的那样,UC-MSC显示出与骨髓和脂肪来源的间充质干细胞相似的三系分化和基因表达谱。重要的是,在成骨和内皮诱导后,UC-MSC表现出强大的促血管生成和骨形成特征。将hPL扩增的间充质干细胞与胶原微珠组合植入免疫健全的小鼠模型后,可导致骨/血管形成。总体而言,我们开发了一种基于UC-MSC的高性能细胞制造生物工艺,该工艺满足人类应用的要求,并触发了用于骨再生的细胞工程支架的效力和有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af58/6914958/8d5601ef6216/SCI2019-7198215.001.jpg

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