小分子信号、调控及其在细胞治疗中的潜在应用。

IF 7.9 Q1 Medicine
Monica P McNerney, Mark P Styczynski
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引用次数: 12

摘要

小分子在生命之树上扮演着许多重要的角色:它们调节从新陈代谢到转录的过程,它们在物种内部和物种之间发出信号,它们是细胞的生化基石。它们也代表了有价值的表型终点,有望用作疾病状态的生物标志物。在以细胞为基础的治疗工程的背景下,它们特别有希望更好地控制治疗细胞,并使它们对细胞外信号做出反应。小分子的自然信号和调节功能可以被利用和重新连接来控制细胞活性和治疗有效载荷的传递,潜在地提高疗效,同时降低毒性。为此,本文综述了细菌中小分子介导的调控和信号传导。我们首先讨论一些最突出的应用和期望的反应性细胞为基础的治疗。然后,我们描述了与可能在治疗性细菌工程中利用的三类分子相关的转运、信号传导和调控:氨基酸、脂肪酸和群体感应信号分子。我们还介绍了一些现有工程努力的例子,以产生能够感知和响应不同小分子水平的细胞。最后,我们讨论了如何利用小分子介导的调控用于治疗应用的未来方向,以及此类努力最终成功的一些关键考虑因素。中国生物医学工程学报,2018,31(4):444 - 444。doi: 10.1002 / wsbm.1405本文分类如下:生物学机制>细胞信号传导生物学机制>代谢、转化、基因组和系统医学>治疗方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Small molecule signaling, regulation, and potential applications in cellular therapeutics.

Small molecule signaling, regulation, and potential applications in cellular therapeutics.

Small molecule signaling, regulation, and potential applications in cellular therapeutics.

Small molecules have many important roles across the tree of life: they regulate processes from metabolism to transcription, they enable signaling within and between species, and they serve as the biochemical building blocks for cells. They also represent valuable phenotypic endpoints that are promising for use as biomarkers of disease states. In the context of engineering cell-based therapeutics, they hold particularly great promise for enabling finer control over the therapeutic cells and allowing them to be responsive to extracellular cues. The natural signaling and regulatory functions of small molecules can be harnessed and rewired to control cell activity and delivery of therapeutic payloads, potentially increasing efficacy while decreasing toxicity. To that end, this review considers small molecule-mediated regulation and signaling in bacteria. We first discuss some of the most prominent applications and aspirations for responsive cell-based therapeutics. We then describe the transport, signaling, and regulation associated with three classes of molecules that may be exploited in the engineering of therapeutic bacteria: amino acids, fatty acids, and quorum-sensing signaling molecules. We also present examples of existing engineering efforts to generate cells that sense and respond to levels of different small molecules. Finally, we discuss future directions for how small molecule-mediated regulation could be harnessed for therapeutic applications, as well as some critical considerations for the ultimate success of such endeavors. WIREs Syst Biol Med 2018, 10:e1405. doi: 10.1002/wsbm.1405 This article is categorized under: Biological Mechanisms > Cell Signaling Biological Mechanisms > Metabolism Translational, Genomic, and Systems Medicine > Therapeutic Methods.

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来源期刊
CiteScore
18.40
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: Journal Name:Wiley Interdisciplinary Reviews-Systems Biology and Medicine Focus: Strong interdisciplinary focus Serves as an encyclopedic reference for systems biology research Conceptual Framework: Systems biology asserts the study of organisms as hierarchical systems or networks Individual biological components interact in complex ways within these systems Article Coverage: Discusses biology, methods, and models Spans systems from a few molecules to whole species Topical Coverage: Developmental Biology Physiology Biological Mechanisms Models of Systems, Properties, and Processes Laboratory Methods and Technologies Translational, Genomic, and Systems Medicine
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