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鸡胚心脏开始跳动后,胚胎外血管中机械敏感基因的表达动态。

The expression dynamics of mechanosensitive genes in extra-embryonic vasculature after heart starts to beat in chick embryo.

作者信息

Rajendran Saranya, Sundaresan Lakshmikirupa, Rajendran Krithika, Selvaraj Monica, Gupta Ravi, Chatterjee Suvro

机构信息

Vascular Biology Laboratory, AU-KBC Research Centre, Chennai, Tamil Nadu, India.

SciGenom Labs Pvt. Ltd, CSEZ, Cochin, Kerala, India.

出版信息

Biorheology. 2016 Feb 11;53(1):33-47. doi: 10.3233/BIR-15075.

Abstract

BACKGROUND

Fluid flow plays an important role in vascular development. However, the detailed mechanisms, particularly the link between flow and modulation of gene expression during vascular development, remain unexplored. In chick embryo, the key events of vascular development from initiation of heart beat to establishment of effective blood flow occur between the stages HH10 and HH13. Therefore, we propose a novel in vivo model to study the flow experienced by developing endothelium.

OBJECTIVE

Using this model, we aimed to capture the transcriptome dynamics of the pre- and post-flow conditions.

METHODS

RNA was isolated from extra embryonic area vasculosa (EE-AV) pooled from three chick embryos between HH10-HH13 and RNA sequencing was performed.

RESULTS

The whole transcriptome sequencing of chick identified up-regulation of some of the previously well-known mechanosensitive genes including NFR2, HAND1, CTGF and KDR. GO analyses of the up-regulated genes revealed enrichment of several biological processes including heart development, extracellular matrix organization, cell-matrix adhesion, cell migration, blood vessel development, patterning of blood vessels, collagen fibril organization. Genes encoding for gap junctions proteins which are involved in vascular remodeling and arterial-venous differentiation, and genes involved in cell-cell adhesion, and ECM interactions were significantly up-regulated. Validation of selected genes through semi quantitative PCR was performed.

CONCLUSION

The study indicates that shear stress plays a major role in development. Through appropriate validation, this platform can serve as an in vivo model to study conditions of disturbed flow in pathology as well as normal flow during development.

摘要

背景

流体流动在血管发育中起着重要作用。然而,详细机制,特别是血管发育过程中流体流动与基因表达调控之间的联系,仍未得到探索。在鸡胚中,从心跳开始到有效血流建立的血管发育关键事件发生在HH10和HH13阶段之间。因此,我们提出了一种新的体内模型来研究发育中的内皮细胞所经历的流体流动。

目的

利用该模型,我们旨在捕捉流体流动前后条件下的转录组动态变化。

方法

从HH10-HH13阶段的三个鸡胚的胚外血管区(EE-AV)中分离RNA,并进行RNA测序。

结果

鸡的全转录组测序确定了一些先前已知的机械敏感基因的上调,包括NFR2、HAND1、CTGF和KDR。对上调基因的基因本体(GO)分析显示,包括心脏发育、细胞外基质组织、细胞-基质粘附、细胞迁移、血管发育、血管模式形成、胶原纤维组织在内的几个生物学过程显著富集。编码参与血管重塑和动静脉分化的间隙连接蛋白的基因,以及参与细胞-细胞粘附和细胞外基质相互作用的基因均显著上调。通过半定量PCR对选定基因进行了验证。

结论

该研究表明剪切应力在发育中起主要作用。通过适当验证,该平台可作为体内模型,用于研究病理状态下血流紊乱的情况以及发育过程中的正常血流情况。

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