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用于基因治疗的药理学转基因控制系统。

Pharmacologic transgene control systems for gene therapy.

作者信息

Weber Wilfried, Fussenegger Martin

机构信息

Institute for Chemical and Bio-Engineering, Swiss Federal Institute of Technology Zurich-ETH Zurich, ETH Hoenggerberg HCI F 115, Wolfgang-Pauli-Strasse 10, CH-8093 Zurich, Switzerland.

出版信息

J Gene Med. 2006 May;8(5):535-56. doi: 10.1002/jgm.903.

Abstract

Pharmacologic transgene-expression dosing is considered essential for future gene therapy scenarios. Genetic interventions require precise transcription or translation fine-tuning of therapeutic transgenes to enable their titration into the therapeutic window, to adapt them to daily changing dosing regimes of the patient, to integrate them seamlessly into the patient's transcriptome orchestra, and to terminate their expression after successful therapy. In recent years, decisive progress has been achieved in designing high-precision trigger-inducible mammalian transgene control modalities responsive to clinically licensed and inert heterologous molecules or to endogenous physiologic signals. Availability of a portfolio of compatible transcription control systems has enabled assembly of higher-order control circuitries providing simultaneous or independent control of several transgenes and the design of (semi-)synthetic gene networks, which emulate digital expression switches, regulatory transcription cascades, epigenetic expression imprinting, and cellular transcription memories. This review provides an overview of cutting-edge developments in transgene control systems, of the design of synthetic gene networks, and of the delivery of such systems for the prototype treatment of prominent human disease phenotypes.

摘要

药理转基因表达剂量被认为对未来的基因治疗方案至关重要。基因干预需要对治疗性转基因进行精确的转录或翻译微调,以便将其滴定到治疗窗口内,使其适应患者每日变化的给药方案,将它们无缝整合到患者的转录组中,并在成功治疗后终止其表达。近年来,在设计对临床许可的惰性异源分子或内源性生理信号有响应的高精度触发诱导型哺乳动物转基因控制模式方面取得了决定性进展。一系列兼容转录控制系统的可用性使得能够组装提供对多个转基因同时或独立控制的高阶控制电路,并设计出模拟数字表达开关、调节转录级联、表观遗传表达印记和细胞转录记忆的(半)合成基因网络。本文综述了转基因控制系统的前沿发展、合成基因网络的设计以及此类系统用于突出人类疾病表型的原型治疗的递送情况。

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