一种适合细胞治疗的可合成炎症诱导启动子的创造。

IF 1.4
Anish Jadav, Kevin Truong
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引用次数: 0

摘要

“智能”细胞疗法的发展需要细胞首先识别与疾病相符的条件(例如炎症),然后释放治疗蛋白,从而减少持续表达的潜在毒性。含有NF-κB反应元件的启动子常被用作炎症的报告因子;然而,内源性启动子与其他途径存在串扰,目前合成的启动子具有许多NF-κB应答元件的精确序列重复,这使得它们既难以合成,又具有固有的遗传不稳定性。本研究通过包装14个NF-κB反应元件(无重复序列>9 bp),构建了一个合成友好的炎症诱导启动子(SFNp),然后是一个最小的巨细胞病毒启动子。在稳定表达的人胚胎肾293细胞中,我们评估了SFNp诱导转录基因以报告表达、改变细胞形态和进行细胞融合的能力。这些实验代表了SFNp在细胞疗法开发中潜在应用的简单里程碑。由于强烈重复的DNA会损害遗传电路的长期稳定性,因此用于“智能”细胞治疗的新设计将更加依赖于SFNp等有利于合成的成分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Creation of a synthesis-friendly inflammation-inducible promoter suitable for cell therapy.

Creation of a synthesis-friendly inflammation-inducible promoter suitable for cell therapy.

Creation of a synthesis-friendly inflammation-inducible promoter suitable for cell therapy.

The development of 'smart' cell-based therapeutics requires cells that first recognize conditions consistent with disease (e.g. inflammation) and then subsequently release therapeutic proteins, thereby reducing potential toxicity from otherwise continuous expression. Promoters containing NF-κB response elements are often used as reporters of inflammation; however, endogenous promoters have crosstalk with other pathways, and current synthetic promoters have many exact sequence repeats of NF-κB response elements which make them both difficult to synthesize and inherently genetically unstable. Herein, a synthesis-friendly inflammation-inducible promoter (named SFNp) was created by the packing of 14 NF-κB response elements, which have no repeats >9 bp, followed by a minimal cytomegalovirus promoter. In stably expressing human embryonic kidney 293 cells, we assessed the ability of SFNp to inducibly transcribe genes for reporting expression, changing cell morphology, and performing cell fusion. These experiments represent simple milestones for potentially using SFNp in the development of cell-based therapeutics. As strongly repeated DNA can compromise the long-term stability of genetic circuits, new designs used in 'smart' cell therapy will become more reliant on synthesis-friendly components like SFNp.

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