Literature DB >> 26219255

Bi-content micro-collagen chip provides contractility-based biomechanical readout for phenotypic drug screening with expanded and profiled targets.

Hui Zhao1, Lyu Zhou, Qiang Zhang, Xiaoying Zhou, Yonghui Zhang, Huijun Chen, Yanan Du.   

Abstract

Phenotypic screening has regained momentum in the pharmaceutical industry owing to its success over target-based screening. Most phenotypic screening relies on nonspecific biochemical readouts regarding cellular viability, which hampers the discovery of novel drug mechanisms of action (MOAs). Here we present a Contractility-based bi-Content micro-Collagen Chip (3CChip), which establishes cellular contractility as a biomechanics-related phenotype for drug screening. Bi-content analysis of cell contractility (imaged by iPhone) and viability suggests that the label-free contractility-based analysis exhibits superior sensitivity to compounds targeting contractile elements (e.g. focal adhesion, cytoskeleton), resulting in a enlarged target pool for drug assessment. Six typical readout patterns of drug response are summarized according to the relative positions of the contraction/viability curves, and drug targets are profiled into three categories (biomechanical, biochemical and housekeeping) by 3CChip, which will benefit subsequent target identification. The simple-to-use and effective 3CChip offers a robust platform for micro-tissue-based functional screening and may lead to a new era of mechanism-informed phenotypic drug discovery.

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Year:  2015        PMID: 26219255     DOI: 10.1039/c5lc00589b

Source DB:  PubMed          Journal:  Lab Chip        ISSN: 1473-0189            Impact factor:   6.799


  5 in total

1.  Mechanotransduction-modulated fibrotic microniches reveal the contribution of angiogenesis in liver fibrosis.

Authors:  Longwei Liu; Zhifeng You; Hongsheng Yu; Lyu Zhou; Hui Zhao; Xiaojun Yan; Dulei Li; Bingjie Wang; Lu Zhu; Yuzhou Xu; Tie Xia; Yan Shi; Chenyu Huang; Wei Hou; Yanan Du
Journal:  Nat Mater       Date:  2017-11-13       Impact factor: 43.841

2.  Integration of FRET and sequencing to engineer kinase biosensors from mammalian cell libraries.

Authors:  Longwei Liu; Praopim Limsakul; Xianhui Meng; Yan Huang; Reed E S Harrison; Tse-Shun Huang; Yiwen Shi; Yiyan Yu; Krit Charupanit; Sheng Zhong; Shaoying Lu; Jin Zhang; Shu Chien; Jie Sun; Yingxiao Wang
Journal:  Nat Commun       Date:  2021-08-19       Impact factor: 14.919

Review 3.  Development of cell metabolite analysis on microfluidic platform.

Authors:  Luyao Lin; Jin-Ming Lin
Journal:  J Pharm Anal       Date:  2015-09-30

4.  Fibrotic microtissue array to predict anti-fibrosis drug efficacy.

Authors:  Mohammadnabi Asmani; Sanjana Velumani; Yan Li; Nicole Wawrzyniak; Isaac Hsia; Zhaowei Chen; Boris Hinz; Ruogang Zhao
Journal:  Nat Commun       Date:  2018-05-25       Impact factor: 14.919

5.  Development of a shear stress-free microfluidic gradient generator capable of quantitatively analyzing single-cell morphology.

Authors:  David Barata; Giulia Spennati; Cristina Correia; Nelson Ribeiro; Björn Harink; Clemens van Blitterswijk; Pamela Habibovic; Sabine van Rijt
Journal:  Biomed Microdevices       Date:  2017-09-07       Impact factor: 2.838

  5 in total

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