ENDOTHELIAL GATA4 IN ATHEROSCLEROSIS PROGRESSION
ENDOTHELIAL GATA4 IN ATHEROSCLEROSIS PROGRESSION
批准号:
MR/W00366X/2
负责人:
Paul Evans
金额:
$48.33万
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2023
资助国家:
英国
项目状态:
未结题
起止时间:
2023 至 --
中文摘要
动脉粥样硬化是一种动脉疾病,是导致死亡的主要原因。它的特征是脂肪沉积物的积聚,称为斑块。一些斑块发展成危险的形式,可能破裂导致心脏病发作或中风。这个过程是由动脉弯曲或分支处复杂的血流模式驱动的。这种联系的机制目前尚不清楚,可以为预防斑块破裂的新疗法提供信息。为了阐明它们,我们使用了一种无偏见的方法来识别和识别血流响应基因,并发现转录因子GATA 4在驱动已知促进斑块破裂的多个过程(炎症,增殖,凋亡)中是独特的。这项拟议的工作汇集了一组基础科学家和临床医生,以测试GATA 4是内皮致病变化的主要调节因子的假设,并且靶向GATA 4通路可以降低患病动脉破裂的风险。我们提出了一个雄心勃勃的研究项目,包括在小鼠中使用条件性基因敲除和分析人类冠状动脉斑块,以确定内皮GATA 4在驱动斑块进展到危险的破裂倾向形式中的作用。重要的是,GATA4通路以前没有在动脉粥样硬化斑块中进行过研究,因此在潜在的新药靶点方面,它代表了一种新的和有价值的资源。事实上,我们建议确定GATA4通路中的分子靶点,这些分子靶点可能适合于药理学调节,并且可以在未来的研究中进行随访。拟议的研究项目具有很高的潜在影响,因为它将导致识别GATA 4通路中的分子靶点,这些分子靶点可以有针对性地降低斑块破裂的风险,使有心脏病发作或中风风险的患者受益。
英文摘要
Atherosclerosis is a disease of arteries that is a leading cause of death. It is characterised by the build-up of fatty deposits called plaques. Some plaques develop into dangerous forms that can rupture leading to heart attack or stroke. This process is driven by complex blood flow patterns at bends or branches of arteries. The mechanisms of this link, which are currently unknown, could inform new therapies to prevent plaque rupture. To elucidate them, we used an unbiased approach to identify and characterise flow-responsive genes and found that the transcription factor GATA4 was unique in driving multiple processes (inflammation, proliferation, apoptosis) that are known to promote plaque rupture. The proposed work brings together a group of basic scientists and clinicians to test the hypothesis that GATA4 is a master regulator of endothelial pathogenic change and that targeting of the GATA4 pathway can reduce the risk of rupture in diseased arteries. We propose an ambitious project of research including the use of conditional knockouts in mice and analysis of human coronary artery plaques to determine the role of endothelial GATA4 in driving plaque progression towards dangerous rupture-prone forms. Importantly, the GATA4 pathway has not been studied previously in atherosclerotic plaques and it therefore represents a novel and valuable resource in terms of potential new drug targets. Indeed, we propose to identify molecular targets in the GATA4 pathway that may be amenable to pharmacological modulation and can be followed-up in future studies. The proposed research project has high potential impact because it will lead to the identification of molecular targets in the GATA4 pathway that can be targeted to reduce the risk of plaque rupture, benefiting patients at risk of heart attack or stroke.
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Sporadic diffraction and absorption volumetric X-ray imaging
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SBIR Phase I: Viability of Low-Cost Cell Components for XL Batteries' Mild Aqueous Flow Battery
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Multi-Domain Virtual Prototyping Techniques for Wide-Bandgap Power Electronics
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ACID - Accelerated Contraband Identification by Diffraction
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批准号:ST/N006534/1
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项目类别:Research Grant
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资助金额:$13.83万
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负责人:Paul Evans
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Interface Structure and Dynamics in Multiferroic Phase Transformations
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财政年份:2016
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负责人:Paul Evans
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依托单位:
Manipulation of perovskite dielectrics with high electric fields and large strains
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批准号:1106050
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U.S.-Japan Dissertation Enhancement in Advanced X-ray Scattering Techniques for Complex Oxides
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负责人:Paul Evans
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Scatter enhanced 3D X-ray imaging
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批准号:EP/F017596/1
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资助金额:$38.93万
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财政年份:2008
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Quantitative Probes for Dynamics in Multiferroic Complex Oxides
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财政年份:2007
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负责人:Paul Evans
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依托单位:
国内基金
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