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A Novel Organ Culture Model of Mouse Intervertebral Disc Tissues

机译:小鼠椎间盘组织的新型器官培养模型

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The intervertebral disc (IVD) is a fibrocartilaginous joint between two vertebral bodies. An IVD unit consists of a gelatinous central nucleus pulposus, encased by the annulus fibrosus, which is sandwiched between cartilaginous endplates (EPs). The IVD homeostasis can be disrupted by injuries, ageing and/or genetic predispositions, leading to degenerative disc disorders and subsequent lower back pain. The complex structure and distinct characteristics of IVDs warrant the establishment of robust in vitro IVD organ culture for studying the etiology and treatment of disc degeneration. Here, we isolate mouse lumbar IVDs and culture the minimal IVD units in submersion or suspension medium supplemented with 2% bovine serum or 10% fetal bovine serum (FBS). We find the minimal IVD units remain healthy for up to 14 days when cultured in submersion culture supplemented with 10% FBS. New bone formation in the EPs of the cultured IVDs can be assessed with calcein labeling. Furthermore, the cultured IVDs can be effectively transduced by recombinant adenovirus, and transgene expression lasts for 2 weeks. Thus, our findings demonstrate that the optimized IVD organ culture system can be used to study IVD biology and screen for biological factors that may prevent, alleviate and/or treat disc degeneration. (C) 2015 S. Karger AG, Basel
机译:椎间盘(IVD)是两个椎体之间的纤维软骨关节。 IVD单元由被纤维环包裹的胶状中心髓核组成,夹在软骨终板(EPs)之间。损伤,衰老和/或遗传易感性可能会破坏IVD稳态,从而导致椎间盘退行性病变和随后的下背部疼痛。 IVD的复杂结构和独特特征保证了建立强大的体外IVD器官培养物以研究椎间盘退变的病因和治疗方法。在这里,我们分离出小鼠腰部IVD,并在浸没了2%牛血清或10%胎牛血清(FBS)的浸没或悬浮培养基中培养了最小的IVD单位。我们发现,在辅以10%FBS的浸没式培养物中培养时,最少的IVD单位可保持健康长达14天。可以用钙黄绿素标记评估培养的IVD的EP中新的骨形成。此外,可以通过重组腺病毒有效地转导培养的IVD,转基因表达持续2周。因此,我们的发现表明,优化的IVD器官培养系统可用于研究IVD生物学,并筛选可能预防,缓解和/或治疗椎间盘退变的生物学因素。 (C)2015 S.Karger AG,巴塞尔

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