Cellular Physiology and Biochemistry (Dec 2013)

Repeated Administration of Bone Marrow-Derived Cells Prevents Disease Progression in Experimental Silicosis

  • Miquéias Lopes-Pacheco,
  • Debora G. Xisto,
  • Felipe M. Ornellas,
  • Mariana A. Antunes,
  • Soraia C. Abreu,
  • Patricia R.M. Rocco,
  • Christina M. Takiya,
  • Marcelo M. Morales

DOI
https://doi.org/10.1159/000356603
Journal volume & issue
Vol. 32, no. 6
pp. 1681 – 1694

Abstract

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Background/Aims: Bone marrow-derived cells (BMDCs) reduced mechanical and histologic changes in the lung in a murine model of silicosis, but these beneficial effects did not persist in the course of lung injury. We hypothesized that repeated administration of BMDCs may decrease lung inflammation and remodeling thus preventing disease progression. Methods: One hundred and two C57BL/6 mice were randomly divided into SIL (silica, 20 mg intratracheally [IT]) and control (C) groups (saline, IT). C and SIL groups were further randomized to receive BMDCs (2×106 cells) or saline IT 15 and 30 days after the start of the protocol. Results: By day 60, BMDCs had decreased the fractional area of granuloma and the number of polymorphonuclear cells, macrophages (total and M1 phenotype), apoptotic cells, the level of transforming growth factor (TGF)-β‚ and types I and III collagen fiber content in the granuloma. In the alveolar septa, BMDCs reduced the amount of collagen and elastic fibers, TGF-β, and the number of M1 and apoptotic cells. Furthermore, interleukin (IL)-1β, IL-1R1, caspase-3 mRNA levels decreased and the level of IL-1RN mRNA increased. Lung mechanics improved after BMDC therapy. The presence of male donor cells in lung tissue was not observed using detection of Y chromosome DNA. Conclusion: repeated administration of BMDCs reduced inflammation, fibrogenesis, and elastogenesis, thus improving lung mechanics through the release of paracrine factors.

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