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Updated: Sep 28, 2026

A Multilayer Microfluidic Platform for the Conduction of Prolonged Cell-Free Gene Expression
Published on: October 6, 2019
Constructing cell-type-specific gene regulatory networks from cell-cell communication and a global gene regulatory
Yuke Xie1, Bowen Fu1, Laijun Zhong1
1Key Laboratory of Systems Health Science of Zhejiang Province, School of Life Science, Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences, No. 1 Xiangshan Branch Road, Xihu District, Hangzhou 310024, Zhejiang, China.
Abstract:
Accurately inferring cell-type-specific gene regulatory networks (GRNs) is crucial for understanding cellular heterogeneity, lineage determination, and disease progression mechanisms. Although single-cell RNA sequencing (scRNA-seq) enables high-resolution expression profiling, its inherent sparsity and high noise levels pose challenges to reliable GRN reconstruction. To address these issues, we propose cell type-specific gene regulatory network (CTN), a regulatory inference framework based on bilateral self-representation matrix decomposition, which integrates bulk RNA-seq data with scRNA-seq data to decompose global regulatory relationships and intercellular communication, thereby reconstructing GRNs at the cell type level. CTN demonstrates high inference accuracy and strong performance in functional module identification. In the analysis of real biological processes, CTN reveals the key regulators and functional modules in the differentiation process for different lineages of the hematopoietic system, identifies differentially perturbed regulatory networks for tumor-related cell types, and depicts potential functional mechanisms in the tumor microenvironment.
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