4.5 Article

Gene expression profiling of extracellular matrix as an effector of human hepatocyte phenotype in primary cell culture

期刊

TOXICOLOGICAL SCIENCES
卷 97, 期 2, 页码 384-397

出版社

OXFORD UNIV PRESS
DOI: 10.1093/toxsci/kfm034

关键词

extracellular matrix; primary hepatocytes; human; cell culture; microarray; phenobarbital; integrins; connexins

资金

  1. NIEHS NIH HHS [U19 ES011387, P30 ES005022, U19 ES11387] Funding Source: Medline
  2. NIGMS NIH HHS [R01 GM066411, GM66411] Funding Source: Medline

向作者/读者索取更多资源

Previously, we demonstrated that primary cultures of rat hepatocytes evidence higher levels of differentiated function when cultured in the presence of a dilute overlay of extracellular matrix (Matrigel). In this investigation, we used DNA microarrays, quantitative RT-PCR, immunoblotting, and. cell morphology analyses to evaluate the biological responses imparted by Matrigel overlays on primary cultures of human hepatocytes from five independent donors. Although interindividual variability in responses was evident, our results demonstrated that Matrigel additions typically improved hepatocyte morphology and differentiation character. Results from RNA-profiling experiments indicated that Matrigel additions enhanced hepatocyte RNA expression levels associated with a battery of differentiated features, to levels comparable to those seen in vivo, for genes such as the cytochrome P450s, solute carrier family members, sulfotransferases, certain nuclear transcription factors, and other liver-specific markers, such as albumin, transferrin, and response to the inducer, phenobarbital. In contrast, Matrigel additions were generally associated with reduced RNA expression levels for several cytokeratins, integrins, and a number of stress-related pathways. Decreases in integrin protein expression were similarly detected, although enhanced levels of the gap junction-associated protein, connexin 32, were detected in Matrigel-treated cultures. These data support the concept that ECM functions mechanistically to augment the differentiation character of primary human hepatocytes in culture by mediating a reduction in cellular stress response signaling and by enhancing gap junctional cell-cell communication.

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