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Hydrogel-Tissue Chemistry: Principles and Applications
Annual Review of Biophysics ( IF 10.4 ) Pub Date : 2018-05-24 00:00:00 , DOI: 10.1146/annurev-biophys-070317-032905
Viviana Gradinaru 1 , Jennifer Treweek 1 , Kristin Overton 2 , Karl Deisseroth 2, 3, 4
Affiliation  

Over the past five years, a rapidly developing experimental approach has enabled high-resolution and high-content information retrieval from intact multicellular animal (metazoan) systems. New chemical and physical forms are created in the hydrogel-tissue chemistry process, and the retention and retrieval of crucial phenotypic information regarding constituent cells and molecules (and their joint interrelationships) are thereby enabled. For example, rich data sets defining both single-cell-resolution gene expression and single-cell-resolution activity during behavior can now be collected while still preserving information on three-dimensional positioning and/or brain-wide wiring of those very same neurons—even within vertebrate brains. This new approach and its variants, as applied to neuroscience, are beginning to illuminate the fundamental cellular and chemical representations of sensation, cognition, and action. More generally, reimagining metazoans as metareactants—or positionally defined three-dimensional graphs of constituent chemicals made available for ongoing functionalization, transformation, and readout—is stimulating innovation across biology and medicine.

中文翻译:


水凝胶组织化学:原理与应用

在过去的五年中,一种快速发展的实验方法已经能够从完整的多细胞动物(后生动物)系统中检索高分辨率和高内涵的信息。在水凝胶-组织化学过程中会产生新的化学和物理形式,从而能够保留和检索有关组成细胞和分子(及其联合相互关系)的关键表型信息。例如,现在可以收集定义行为过程中单细胞分辨率基因表达和单细胞分辨率活动的丰富数据集,同时仍保留有关这些相同神经元的三维定位和/或全脑布线的信息——甚至在脊椎动物的大脑中。这种应用于神经科学的新方法及其变体,开始阐明感觉、认知和行动的基本细胞和化学表征。更一般地说,将后生动物重新想象为元反应物——或可用于持续功能化、转化和读出的化学成分的位置定义三维图——正在刺激生物学和医学领域的创新。

更新日期:2018-05-24
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