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一种优化的分步方案,用于从小鼠椎间盘分离髓核、纤维环和终板细胞,并随后制备高质量的完整总RNA。

An optimized step-by-step protocol for isolation of nucleus pulposus, annulus fibrosus, and end plate cells from the mouse intervertebral discs and subsequent preparation of high-quality intact total RNA.

作者信息

Piprode Vikrant, Mohanty Sarthak, Bonavita Raffaella, Loh Sarah, Anbazhagan Rajakumar, Saini Chandan, Pinelli Robert, Pricop Paul, Dahia Chitra L

机构信息

Hospital for Special Surgery New York New York USA.

Department of Cell and Developmental Biology, Weill Cornell Medicine Graduate School of Medical Sciences New York New York USA.

出版信息

JOR Spine. 2020 Jul 17;3(3):e1108. doi: 10.1002/jsp2.1108. eCollection 2020 Sep.

Abstract

Intervertebral disc degeneration is the most significant, and least understood, cause of chronic back pain, affecting almost one in seven individuals at some point of time. Each intervertebral disc has three components; central nucleus pulposus (NP), concentric layers of annulus fibrosus (AF), and a pair of end plate (EP) that connects the disc to the vertebral bodies. Understanding the molecular and cellular basis of intervertebral disc growth, health, and aging will generate significant information for developing therapeutic approaches. Rapid and efficient preparations of homogeneous and pure cells are crucial for meaningful and rigorous downstream analysis at the cellular, molecular, and biochemical level. Cross-sample contamination may influence the interpretation of the results. In addition to altering gene expression, slow or delayed isolation procedures will also cause the degradation of cells and biomolecules that create a bias in the outcomes of the study. The mouse model system is extensively used to understand the intervertebral disc biology. Here we describe two protocols: (a) for efficient isolation of pure NP, AF, and EP cells from mouse lumbar intervertebral disc. We validated the purity of the NP and AF cells using ; dual-fluorescent reporter mice where all NP cells are GPF+ve, and by the sensitive approach of qPCR analysis using TaqMan probes for , and as NP-specific markers, as AF-specific marker, and as bone-specific marker. (b) For isolation of high-quality intact RNA with RIN of 9.3 to 10 from disc cells. These methods will be useful for the rigorous analysis of NP and AF cells, and improve our understanding of intervertebral disc biology.

摘要

椎间盘退变是慢性背痛最主要且最不为人所了解的原因,在某个时间点几乎每七个人中就有一个受其影响。每个椎间盘有三个组成部分:中央髓核(NP)、同心层的纤维环(AF)以及一对将椎间盘与椎体相连的终板(EP)。了解椎间盘生长、健康和衰老的分子及细胞基础将为开发治疗方法提供重要信息。快速高效地制备均匀且纯净的细胞对于在细胞、分子和生化水平进行有意义且严谨的下游分析至关重要。跨样本污染可能会影响结果的解读。除了改变基因表达外,缓慢或延迟的分离程序还会导致细胞和生物分子降解,从而在研究结果中产生偏差。小鼠模型系统被广泛用于了解椎间盘生物学。在此我们描述两种方案:(a)用于从小鼠腰椎椎间盘中高效分离纯净的NP、AF和EP细胞。我们使用 ; 双荧光报告小鼠验证了NP和AF细胞的纯度,其中所有NP细胞均为绿色荧光蛋白阳性,并通过使用TaqMan探针进行qPCR分析的灵敏方法,以 、 和 作为NP特异性标志物, 作为AF特异性标志物, 作为骨特异性标志物。(b)用于从椎间盘细胞中分离出RIN值为9.3至10的高质量完整RNA。这些方法将有助于对NP和AF细胞进行严谨分析,并增进我们对椎间盘生物学的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9397/7524240/dcdab5b185ed/JSP2-3-e1108-g001.jpg

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