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马诱导多能干细胞的成骨细胞分化

Osteoblast differentiation of equine induced pluripotent stem cells.

作者信息

Baird Arabella, Lindsay Timothy, Everett Alice, Iyemere Valentine, Paterson Yasmin Z, McClellan Alyce, Henson Frances M D, Guest Deborah J

机构信息

Centre for Preventive Medicine, Animal Health Trust, Lanwades Park, Kentford, Newmarket, Suffolk, CB8 7UU, UK.

Division of Trauma and Orthopaedic Surgery, University of Cambridge, Addenbrooke's Hospital, Cambridge, CB2 0QQ, UK.

出版信息

Biol Open. 2018 May 10;7(5):bio033514. doi: 10.1242/bio.033514.

Abstract

Bone fractures occur in horses following traumatic and non-traumatic (bone overloading) events. They can be difficult to treat due to the need for the horse to bear weight on all legs during the healing period. Regenerative medicine to improve fracture union and recovery could significantly improve horse welfare. Equine induced pluripotent stem cells (iPSCs) have previously been derived. Here we show that equine iPSCs cultured for 21 days in osteogenic induction media on an OsteoAssay surface upregulate the expression of osteoblast associated genes and proteins, including , , , , and We also demonstrate that iPSC-osteoblasts are able to produce a mineralised matrix with both calcium and hydroxyapatite deposition. Alkaline phosphatase activity is also significantly increased during osteoblast differentiation. Although the genetic background of the iPSC donor animal affects the level of differentiation observed after 21 days of differentiation, less variation between lines of iPSCs derived from the same horse was observed. The successful, direct, differentiation of equine iPSCs into osteoblasts may provide a source of cells for future regenerative medicine strategies to improve fracture repair in horses undergoing surgery. iPSC-derived osteoblasts will also provide a potential tool to study equine bone development and disease.

摘要

马在经历创伤性和非创伤性(骨骼过度负荷)事件后会发生骨折。由于马在愈合期需要用所有腿承重,骨折治疗可能会很困难。用于改善骨折愈合和恢复的再生医学可以显著提高马的福利。此前已获得马诱导多能干细胞(iPSC)。在此我们表明,马iPSC在成骨诱导培养基中于OsteoAssay表面培养21天,会上调成骨细胞相关基因和蛋白质的表达,包括 、 、 、 、 和 。我们还证明iPSC来源的成骨细胞能够产生具有钙和羟基磷灰石沉积的矿化基质。在成骨细胞分化过程中碱性磷酸酶活性也显著增加。尽管iPSC供体动物的遗传背景会影响分化21天后观察到的分化水平,但在源自同一匹马的iPSC系之间观察到的差异较小。马iPSC成功、直接地分化为成骨细胞可能为未来的再生医学策略提供细胞来源,以改善接受手术的马的骨折修复。iPSC来源的成骨细胞也将为研究马的骨骼发育和疾病提供一个潜在工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6944/5992527/9f3aacaacf96/biolopen-7-033514-g1.jpg

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