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首页> 外文期刊>ACS Synthetic Biology >Inducible Gene Switches with Memory in Human T Cells for Cellular Immunotherapy
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Inducible Gene Switches with Memory in Human T Cells for Cellular Immunotherapy

机译:诱导基因与人T细胞中的记忆切换,用于细胞免疫疗法

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Cell-based therapies that employ engineered T cells-including those modified to express chimeric antigen receptors (CARs)-to target cancer cells have demonstrated promising responses in clinical trials. However, engineered T cell responses must be regulated to prevent severe side effects such as cytokine storms and off-target responses. Here we present a class of recombinase-based gene circuits that will enable inducible, one-time state switching in adoptive T cell therapy using an FDA-approved drug, creating a generalizable platform that can be used to control when and how strongly a gene is expressed. These circuits exhibit memory such that induced T cells will maintain any changes made even when the drug inducer is removed. This memory feature avoids prolonged drug inducer exposure, thus reducing the complexity and potential side effect associated with the drug inducer. We have utilized these circuits to control the expression of an anti-Her2-CAR, demonstrating the ability of these circuits to regulate CAR expression and T cell activity. We envision this platform can be extended to regulate other genes involved in T cell behavior for applications in various adoptive T cell therapies.
机译:使用工程化T细胞的细胞的疗法 - 包括被修饰的嵌入嵌合抗原受体(汽车)-To靶癌细胞的那些靶癌细胞在临床试验中表现出对应的反应。然而,必须调节工程化T细胞应答,以防止严重的副作用如细胞因子风暴和脱靶反应。在这里,我们介绍了一类基于重组酶的基因电路,该基因电路将使用FDA批准的药物进行诱导,一次性状态切换采用T细胞疗法,创建可用于控制何时以及基因的何时何种且基因的何时何种速度平台表达。这些电路表现出记忆,使得诱导的T细胞即使除去药物诱导剂时也会保持任何改变。该记忆功能避免了延长的药物诱导曝光,从而降低了与药物诱导剂相关的复杂性和潜在的副作用。我们利用这些电路来控制抗HER2-CAR的表达,证明这些电路调节汽车表达和T细胞活性的能力。我们设想该平台可以扩展以调节涉及T细胞行为的其他基因,以便在各种采用T细胞疗法中的应用。

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