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Published on: June 10, 2016
TGF-β Isoforms Affect the Planar and Subepithelial Fibrogenesis of Human Conjunctival Fibroblasts in Different
Megumi Watanabe1, Yuri Tsugeno1, Tatsuya Sato2,3
1Departments of Ophthalmology, School of Medicine, Sapporo Medical University, Sapporo 060-8556, Japan.
Abstract:
Three highly homologous isoforms of TGF-β, TGF-β-1~3, are involved in the regulation of various pathophysiological conditions such as wound healing processes in different manners, despite the fact that they bind to the same receptors during their activation. The purpose of the current investigation was to elucidate the contributions of TGF-β-1 ~3 to the pathology associated with conjunctiva. For this purpose, the biological effects of these TGF-β isoforms on the structural and functional properties of two-dimensional (2D) and three-dimensional (3D) cultured human conjunctival fibroblasts (HconF) were subjected to the following analyses: 1) transendothelial electrical resistance (TEER), a Seahorse cellular metabolic measurement (2D), size and stiffness measurements of the 3D HTM spheroids, and the qPCR gene expression analyses of extracellular matrix (ECM) components (2D and 3D). The TGF-β isoforms caused different effects on the proliferation of the HconF cell monolayer evaluated by TEER measurements. The differences included a significant increase in the presence of 5 ng/mL TGF-β-1 and -2 and a substantial decrease in the presence of 5 ng/mL TGF-β-3, although there were no significant differences in the response to the TGF-β isoforms for cellular metabolism among the three groups. Similar to planar proliferation, the TGF-β isoforms also induced diverse effects toward the mechanical aspects of 3D HconF spheroids, where TGF-β-1 increased stiffness, TGF-β-2 caused no significant effects, and TGF-β-3 caused the downsizing of the spheroids and stiffness enhancement. The mRNA expression of the ECMs were also modulated in diverse manners by the TGF-β isoforms as well as the culture conditions for the 2D vs. 3D isoforms. Many of these TGF-β-3 inducible effects were markedly different from those caused by TGF-β1 and TGF-β-2. The findings presented herein suggest that the three TGF-β isoforms induce diverse and distinctly different effects on cellular properties and the expressions of ECM molecules in HconF and that these changes are independent of cellular metabolism, thereby inducing different effects on the epithelial and subepithelial proliferation of human conjunctiva.
Insights
Transforming growth factor-beta (TGF-β) isoforms 1-3 differentially impact human conjunctival fibroblast properties and extracellular matrix gene expression, independent of cellular metabolism, influencing conjunctival tissue pathology.
Area of Science:
- Ocular Surface Science
- Cell Biology
- Tissue Engineering
Background:
- Three highly homologous transforming growth factor-beta (TGF-β) isoforms (TGF-β-1, TGF-β-2, TGF-β-3) regulate diverse pathophysiological processes, including wound healing.
- These isoforms bind to common receptors but may exert distinct biological effects.
- Understanding their specific roles in conjunctival pathology is crucial for targeted therapeutic interventions.
Purpose of the Study:
- To elucidate the differential contributions of TGF-β-1, TGF-β-2, and TGF-β-3 to conjunctival pathology.
- To investigate the effects of these TGF-β isoforms on the structural and functional properties of human conjunctival fibroblasts (HconF) in 2D and 3D cultures.
Main Methods:
- Cultured human conjunctival fibroblasts (HconF) in 2D and 3D models.
- Assessed cellular proliferation via transendothelial electrical resistance (TEER) and Seahorse metabolic measurements (2D).
- Measured spheroid size and stiffness (3D) and analyzed extracellular matrix (ECM) component gene expression (qPCR) in both culture types.
Main Results:
- TGF-β-1 and TGF-β-2 significantly increased HconF proliferation (TEER), while TGF-β-3 substantially decreased it; cellular metabolism remained unaffected.
- In 3D spheroids, TGF-β-1 increased stiffness, TGF-β-2 had no significant effect, and TGF-β-3 reduced spheroid size and increased stiffness.
- All three TGF-β isoforms differentially modulated ECM gene expression, with distinct responses observed between 2D and 3D cultures and among isoforms.
Conclusions:
- The three TGF-β isoforms induce distinct and diverse effects on HconF cellular properties and ECM molecule expression.
- These isoform-specific effects on HconF are independent of cellular metabolism.
- The findings suggest differential roles for TGF-β isoforms in regulating human conjunctival epithelial and subepithelial proliferation and pathology.
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