1st year MSc (Interdisciplinary Biomedical Research). The student will be assigned to a PhD project prior to the 2nd year of study.
1st year MSc (Interdisciplinary Biomedical Research). The student will be assigned to a PhD project prior to the 2nd year of study.
批准号:
2713873
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2022
资助国家:
英国
项目状态:
未结题
起止时间:
2022 至 --
中文摘要
T细胞是我们免疫系统的重要组成部分,它可以消除感染,使我们保持健康,尽管我们经常接触病原体。T细胞包含一个复杂的信号网络,它决定我们身体的细胞是否受到感染,但有时这种决策过程无效,并导致疾病。目前的许多药物都是为了操纵这些信号通路,以提高对感染或癌症的免疫反应。虽然在识别这些网络的部分方面已经取得了很大的进展,但我们也必须了解它们之间的动态联系,以了解这些疗法是如何起作用的,并有望改进它们。然而,对于大多数信令网络来说,这种知识仍然非常有限。为了解决这个问题,我们开发了新的分子工具来研究T细胞信号网络的动力学,通过设计对光响应的输入,使我们能够在空间和时间上精确地控制信号。在这个项目中,我们将探索T细胞如何将不同的输入信号组合在一起来控制下游的输出响应。我们将开发和实施新的工具来在机械层面上研究这个问题。了解T细胞如何“整合”信息具有重要意义,因为目前用于癌症免疫治疗的许多“检查点”抑制剂药物会破坏这一过程,因此需要阐明它们是如何发挥作用的,以改善它们的临床功能。承担这一项目的博士生将掌握一系列生化和细胞生物学技术,这些技术需要使用定量方法来调查与医学研究相关的问题。学生还将从第二导师那里获得良好的基础,使用计算和数学方法进行数据集建模的原理和应用,这将提供强大的跨学科技能培训。
英文摘要
T cells are an essential part of our immune system that eliminate infections to keep us healthy despite constant exposure to pathogens. T cells contain an intricate signalling network that decides whether the cells of our body have become infected, but sometimes this decision-making process is ineffective and leads to disease. Many current drugs are designed to manipulate these signalling pathways to improve the immune response to infection or cancer. Whilst great progress has been made in identifying the parts of these networks, we must also understand the dynamic connections between them to know how these therapies work and hopefully improve them. However, for most signalling networks this knowledge remains very limited. To address this, we develop new molecular tools to investigate the dynamics of the T cell signalling network by engineering inputs that are light-responsive, giving us precise control over signalling in space and time.In this project, we will explore how different input signals are combined together by T cells to control the downstream output response. We will develop and implement new tools to investigate this question at the mechanistic level. Understanding how T cells 'integrate' information has important consequences, as many of the 'checkpoint' inhibitor drugs currently used for cancer immunotherapy disrupt this process, so elucidating how they work is required to improve their clinical function.The PhD student undertaking this project will master an array of biochemical and cell-biological techniques required to investigate questions relevant to medical research using quantitative approaches. The student will also get an excellent grounding in the principles and application of dataset modelling using computational and mathematical approaches from the second supervisor, which will provide strong interdisciplinary skills-training.
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