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Toward a world of theranostic medication: Programming biological sentinel systems for therapeutic intervention

机译:迈向治疗疗法的世界:对生物定点系统进行编程以进行治疗干预

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摘要

Theranostic systems support diagnostic and therapeutic functions in a single integrated entity and enable precise spatiotemporal control of the generation of therapeutic molecules according to the individual patient's disease state, thereby maximizing the therapeutic outcome and minimizing side effects. These systems can also incorporate reporter systems equipped with a disease-sensing module that can be used to estimate the efficacy of treatment in vivo. Among these reporter systems, biological sentinel systems, such as viruses, bacteria, and mammalian cells, have great potential for use in the development of novel theranostic systems because of their ability to sense a variety of disease markers and secrete various therapeutic molecules. Furthermore, recent advances in biotechnology and synthetic biology have made it possible to treat these biological systems as true programmable entities capable of conducting complex operations, to accurately identify each individual patient's disease state.
机译:治疗诊断系统在单个集成实体中支持诊断和治疗功能,并能够根据个体患者的疾病状态对治疗分子的产生进行精确的时空控制,从而最大程度地提高治疗效果并最小化副作用。这些系统还可结合配备有疾病感应模块的报告系统,该报告系统可用于评估体内治疗的有效性。在这些报告系统中,生物哨兵系统,例如病毒,细菌和哺乳动物细胞,由于它们具有检测各种疾病标志物和分泌各种治疗分子的能力,因此在开发新型治疗学系统中具有巨大的潜力。此外,生物技术和合成生物学的最新进展使得将这些生物系统视为能够进行复杂操作,准确识别每个患者疾病状况的真正可编程实体成为可能。

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