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通过高通量 siRNA 筛选鉴定调控底物形貌诱导成骨分化的关键信号通路。

Identification of Key Signaling Pathways Orchestrating Substrate Topography Directed Osteogenic Differentiation Through High-Throughput siRNA Screening.

机构信息

Department of Genetics and Bioengineering, Tokat Gaziosmanpasa University, Tokat, Turkey.

Department of Biomedical Engineering, The Pennsylvania State University, University Park, State College, PA, USA.

出版信息

Sci Rep. 2019 Jan 30;9(1):1001. doi: 10.1038/s41598-018-37554-y.

Abstract

Fibrous scaffolds are used for bone tissue engineering purposes with great success across a variety of polymers with different physical and chemical properties. It is now evident that the correct degree of curvature promotes increased cytoskeletal tension on osteoprogenitors leading to osteogenic differentiation. However, the mechanotransductive pathways involved in this phenomenon are not fully understood. To achieve a reproducible and specific cellular response, an increased mechanistic understanding of the molecular mechanisms driving the fibrous scaffold mediated bone regeneration must be understood. High throughput siRNA mediated screening technology has been utilized for dissecting molecular targets that are important in certain cellular phenotypes. In this study, we used siRNA mediated gene silencing to understand the osteogenic differentiation observed on fibrous scaffolds. A high-throughput siRNA screen was conducted using a library collection of 863 genes including important human kinase and phosphatase targets on pre-osteoblast SaOS-2 cells. The cells were grown on electrospun poly(methyl methacrylate) (PMMA) scaffolds with a diameter of 0.938 ± 0.304 µm and a flat surface control. The osteogenic transcription factor RUNX2 was quantified with an in-cell western (ICW) assay for the primary screen and significant targets were selected via two sample t-test. After selecting the significant targets, a secondary screen was performed to identify osteoinductive markers that also effect cell shape on fibrous topography. Finally, we report the most physiologically relevant molecular signaling mechanisms that are involved in growth factor free, fibrous topography mediated osteoinduction. We identified GTPases, membrane channel proteins, and microtubule associated targets that promote an osteoinductive cell shape on fibrous scaffolds.

摘要

纤维支架在各种具有不同物理和化学性质的聚合物中被成功地用于骨组织工程。现在很明显,正确的曲率程度可以增加成骨前体细胞的细胞骨架张力,从而促进成骨分化。然而,这种现象涉及的机械转导途径尚未完全理解。为了实现可重复和特定的细胞反应,必须深入了解驱动纤维支架介导的骨再生的分子机制的机械转导。高通量 siRNA 介导的筛选技术已被用于剖析在某些细胞表型中重要的分子靶标。在这项研究中,我们使用 siRNA 介导的基因沉默来理解在纤维支架上观察到的成骨分化。在预成骨 SaOS-2 细胞上进行了高通量 siRNA 筛选,使用了包含 863 个基因的文库,包括重要的人类激酶和磷酸酶靶标。细胞在直径为 0.938±0.304μm 的电纺聚甲基丙烯酸甲酯(PMMA)支架和平坦表面对照物上生长。使用细胞内西方(ICW)测定法对成骨转录因子 RUNX2 进行定量,用于初步筛选,并通过双样本 t 检验选择显著靶标。选择显著靶标后,进行二次筛选,以鉴定也影响纤维形貌上细胞形状的成骨标记物。最后,我们报告了在无生长因子、纤维形貌介导的成骨诱导中涉及的最具生理相关性的分子信号机制。我们确定了促进纤维支架上成骨诱导细胞形状的 GTPases、膜通道蛋白和微管相关靶标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f470/6353928/c8d5a0add617/41598_2018_37554_Fig1_HTML.jpg

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