Fibroblasts maintained in 3 dimensions show a better differentiation state and higher sensitivity to estrogens
Creators
- 1. Laboratory of Biotechnology, Department of Laboratory Medicine, Civic Hospital of Brescia (Italy)
- 2. Laboratory of Tissue Engineering, Anatomy and Physiopathology Unit, Department of Clinical and Experimental Sciences, School of Medicine, University of Brescia (Italy)
- 3. Department of Molecular and Translational Medicine, University of Brescia, Brescia (Italy)
- 4. Integrated Systems Engineering (ISE), Milan (Italy)
- 5. IRCCS-Multimedica, Milan (Italy)
- 6. IRGB-CNR, Milan (Italy)
Description
Cell differentiation and response to hormonal signals were studied in a 3D environment on an in-house generated mouse fibroblast cell line expressing a reporter gene under the control of estrogen responsive sequences (EREs). 3D cell culture conditions were obtained in a Rotary Cell Culture System; (RCCS™), a microgravity based bioreactor that promotes the aggregation of cells into multicellular spheroids (MCS). In this bioreactor the cells maintained a better differentiated phenotype and more closely resembled in vivo tissue. The RCCS™ cultured fibroblasts showed higher expression of genes regulating cell assembly, differentiation and hormonal functions. Microarray analysis showed that genes related to cell cycle, proliferation, cytoskeleton, migration, adhesion and motility were all down-regulated in 3D as compared to 2D conditions, as well as oncogene expression and inflammatory cytokines. Controlled remodeling of ECM, which is an essential aspect of cell organization, homeostasis and tissue was affected by the culture method as assessed by immunolocalization of β-tubulin. Markers of cell organization, homeostasis and tissue repair, metalloproteinase 2 (MMP2) and its physiological inhibitor (TIMP4) changed expression in association with the relative formation of cell aggregates. The fibroblasts cultured in the RCCS™ maintain a better responsiveness to estrogens, measured as expression of ERα and regulation of an ERE-dependent reporter and of the endogenous target genes CBP, Rarb, MMP1 and Dbp. Our data highlight the interest of this 3D culture model for its potential application in the field of cell response to hormonal signals and the pharmaco-toxicological analyses of chemicals and natural molecules endowed of estrogenic potential. - Highlights: • We here characterized the first cell line derived from an estrogen reporter mouse. • In the RCCS cells express an immortalized behavior but not a transformed phenotype. • The RCCS provides a system for maintaining cells in more physiological conditions. • RCCS-cultured fibroblasts showed higher hormonal sensitivity to estradiol. • This bioreactor is a novel 3D model to be applied to pharmacotoxicological studies
Availability note (English)
Available from http://dx.doi.org/10.1016/j.taap.2014.08.021Additional details
Identifiers
- DOI
- 10.1016/j.taap.2014.08.021;
- PII
- S0041-008X(14)00313-5;
Publishing Information
- Journal Title
- Toxicology and Applied Pharmacology
- Journal Volume
- 280
- Journal Issue
- 3
- Journal Page Range
- p. 421-433
- ISSN
- 0041-008X
- CODEN
- TXAPA9
INIS
- Country of Publication
- United States
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 47009423
- Subject category
- S60: APPLIED LIFE SCIENCES;
- Descriptors DEI
- AGGLOMERATION; ANIMAL TISSUES; CELL CULTURES; CELL CYCLE; CELL DIFFERENTIATION; ESTRADIOL; FIBROBLASTS; HOMEOSTASIS; IN VIVO; INFLAMMATION; LYMPHOKINES; MICE; MICROTUBULES; ONCOGENES; PHENOTYPE; RECEPTORS; SENSITIVITY
- Descriptors DEC
- ANIMAL CELLS; ANIMALS; BODY; CELL CONSTITUENTS; CONNECTIVE TISSUE CELLS; ESTRANES; ESTROGENS; GENES; GROWTH FACTORS; HORMONES; HYDROXY COMPOUNDS; MAMMALS; MEMBRANE PROTEINS; MITOGENS; ORGANIC COMPOUNDS; PATHOLOGICAL CHANGES; PROTEINS; RODENTS; SOMATIC CELLS; STEROID HORMONES; STEROIDS; SYMPTOMS; VERTEBRATES
Optional Information
- Copyright
- Copyright (c) 2014 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.