Stem Cell Biology and Regenerative Medicine Group, Reading School of Pharmacy, University of Reading, PO Box 226, Whiteknights, Reading, RG6 6AP, UK.
Cellular and Molecular Neuroscience, School of Pharmacy, University of Reading, Reading, UK.
Stem Cell Res Ther. 2021 Jan 7;12(1):31. doi: 10.1186/s13287-020-02094-8.
As populations age across the world, osteoporosis and osteoporosis-related fractures are becoming the most prevalent degenerative bone diseases. More than 75 million patients suffer from osteoporosis in the USA, the EU and Japan. Furthermore, it is anticipated that the number of patients affected by osteoporosis will increase by a third by 2050. Although conventional therapies including bisphosphonates, calcitonin and oestrogen-like drugs can be used to treat degenerative diseases of the bone, they are often associated with serious side effects including the development of oesophageal cancer, ocular inflammation, severe musculoskeletal pain and osteonecrosis of the jaw.The use of autologous mesenchymal stromal cells/mesenchymal stem cells (MSCs) is a possible alternative therapeutic approach to tackle osteoporosis while overcoming the limitations of traditional treatment options. However, osteoporosis can cause a decrease in the numbers of MSCs, induce their senescence and lower their osteogenic differentiation potential.Three-dimensional (3D) cell culture is an emerging technology that allows a more physiological expansion and differentiation of stem cells compared to cultivation on conventional flat systems.This review will discuss current understanding of the effects of different 3D cell culture systems on proliferation, viability and osteogenic differentiation, as well as on the immunomodulatory and anti-inflammatory potential of MSCs.
随着世界人口老龄化,骨质疏松症和骨质疏松症相关骨折成为最普遍的退行性骨病。在美国、欧盟和日本,超过 7500 万名患者患有骨质疏松症。此外,预计到 2050 年,受骨质疏松症影响的患者人数将增加三分之一。尽管包括双磷酸盐、降钙素和雌激素样药物在内的传统疗法可用于治疗骨的退行性疾病,但它们常伴有严重的副作用,包括食道癌、眼部炎症、严重的肌肉骨骼疼痛和下颌骨坏死的发生。使用自体间充质基质细胞/间充质干细胞(MSCs)是一种可能的替代治疗方法,可以解决骨质疏松症的问题,同时克服传统治疗方案的局限性。然而,骨质疏松症会导致 MSCs 数量减少、诱导其衰老并降低其成骨分化潜能。三维(3D)细胞培养是一种新兴技术,与传统的平面培养系统相比,它可以更有效地促进干细胞的扩增和分化。本文将讨论不同 3D 细胞培养系统对 MSCs 增殖、活力和成骨分化的影响,以及对其免疫调节和抗炎潜能的影响。