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光遗传学在癌症药物发现中的应用。

Optogenetics in cancer drug discovery.

机构信息

a Department of Biochemistry and Molecular Biology , Medical University of Lublin , Lublin , Poland.

b Postgraduate School of Molecular Medicine , Medical University of Warsaw , Warsaw , Poland.

出版信息

Expert Opin Drug Discov. 2018 May;13(5):459-472. doi: 10.1080/17460441.2018.1437138. Epub 2018 Feb 15.

Abstract

The discovery and domestication of biomolecules that respond to light has taken a light of its own, providing new molecular tools with incredible spatio-temporal resolution to manipulate cellular behavior. Areas covered: The authors herein analyze the current optogenetic tools in light of their current, and potential, uses in cancer drug discovery, biosafety and cancer biology. Expert opinion: The pipeline from drug discovery to the clinic is plagued with drawbacks, where most drugs fail in either efficacy or safety. These issues require the redesign of the pipeline and the development of more controllable/personalized therapies. Light is, aside from inexpensive, almost harmless if used appropriately, can be directed to single cells or organs with controllable penetration, and comes in a variety of wavelengths. Light-responsive systems can activate, inhibit or compensate cell signaling pathways or specific cellular events, allowing the specific control of the genome and epigenome, and modulate cell fate and transformation. These synthetic molecular tools have the potential to revolutionize drug discovery and cancer research.

摘要

生物分子对光的反应的发现和驯化开辟了新的道路,为操纵细胞行为提供了具有令人难以置信的时空分辨率的新分子工具。

涵盖领域

本文作者分析了当前光遗传学工具在癌症药物发现、生物安全性和癌症生物学方面的当前和潜在用途。

专家意见

从药物发现到临床应用的过程充满了缺陷,大多数药物要么在疗效上,要么在安全性上失败。这些问题需要重新设计管道,并开发更可控/个性化的治疗方法。光除了价格低廉外,如果使用得当,几乎是无害的,可以定向到单个细胞或器官,具有可控的穿透性,并且有多种波长。光响应系统可以激活、抑制或补偿细胞信号通路或特定的细胞事件,允许对基因组和表观基因组进行特异性控制,并调节细胞命运和转化。这些合成分子工具有可能彻底改变药物发现和癌症研究。

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