4.7 Article

Human Primary Dermal Fibroblasts Interacting with 3-Dimensional Matrices for Surgical Application Show Specific Growth and Gene Expression Programs

期刊

出版社

MDPI
DOI: 10.3390/ijms22020526

关键词

3D-biomaterials; human primary fibroblasts; gene expression; cell growth; surgery

资金

  1. 3M
  2. University of Insubria
  3. Fondi di Ateneo per la Ricerca, University of Insubria [CAM17FAR2017, DEE18FAR2018]

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The study compared the growth of human primary fibroblasts on different biological matrices, revealing differences in attachment and proliferation abilities, as well as activation of gene expression programs. Variations were observed in the expression of metalloproteinases and interleukin-6 among different 3D matrices.
Several types of 3-dimensional (3D) biological matrices are employed for clinical and surgical applications, but few indications are available to guide surgeons in the choice among these materials. Here we compare the in vitro growth of human primary fibroblasts on different biological matrices commonly used for clinical and surgical applications and the activation of specific molecular pathways over 30 days of growth. Morphological analyses by Scanning Electron Microscopy and proliferation curves showed that fibroblasts have different ability to attach and proliferate on the different biological matrices. They activated similar gene expression programs, reducing the expression of collagen genes and myofibroblast differentiation markers compared to fibroblasts grown in 2D. However, differences among 3D matrices were observed in the expression of specific metalloproteinases and interleukin-6. Indeed, cell proliferation and expression of matrix degrading enzymes occur in the initial steps of interaction between fibroblast and the investigated meshes, whereas collagen and interleukin-6 expression appear to start later. The data reported here highlight features of fibroblasts grown on different 3D biological matrices and warrant further studies to understand how these findings may be used to help the clinicians choose the correct material for specific applications.

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