Human adipose stem cells decrease liver fibrosis damage with low persistence of transplanted cells in rats
- Nathaly Enciso Benavides,
- Carlos Cisneros Huamaní,
- Nancy Rojas Morán,
- Ernesto Nava Carrión,
- John Pando Mayta,
- Fredy Fabián Domínguez
- Universidad Científica del Sur,
- Universidad Nacional Mayor de San Marcos,
- Instituto de Criopreservació n y Terapia Celular,
Publication Information
Output type
Original language
SpanishPages from-to (Number of pages)
Pages 1496-1507 (12 pages)Journal (Volume, Issue Number)
International Journal of Morphology (Volume 38, Issue 5)Publication milestones
- Published - 10/2020
Publication status
ISSN
0717-9367Publication IDs
- Scopus: 85090609835
Abstract
In chronic liver disease, orthotopic transplantation is the only current therapeutic alternative but it is limited due to lack of donors. Trials with adult stem cells in acute liver damage show promising results. The aim of this work was to evaluate the effectiveness of human adipose stem cell (h-ASC) infusion in rats with chronic liver damage. Rats with thioacetamide-induced liver fibrosis were grouped into: group I control that did not receive thioacetamide and h-ASC, group II received thioacetamide and saline i.v., group III received thioacetamide and h-ASC 1 x 106/ kg i.v. via tail vein. Histological liver regeneration was evaluated by METAVIR index, while Macrophagocytus stellatus (Kupffer cells), stellate cells a-SMA+ and collagen I+ cells by immunohistochemistry; functional damage was evaluated by blood levels of the analytes Aspartate Aminotransferase (AST), Alanine Aminotransferase (ALT), Alkaline Phosphatase (ALP), Urea and Blood Urea Nitrogen (BUN) and hemogram. The results show attenuation of structural liver damage evidenced by decreased nodules, degree of histologic injury on Metavir score, and decreased Macrophagocytus stellatus, a-SMA+ cells and type I+ collagen cells; functionally there is moderate reduction of AST, ALT, urea, BUN and moderate decrease of white cells but favorable effect on mean corpuscular volume and mean corpuscular hemoglobin. Eight weeks after infusion there is a small population of h-ASC in the liver. In conclusion, intravenous infusion of h-ASC in rats reduces functional and structural damage of hepatic fibrosis with low persistence of h-ASC in the liver parenchyma. To our knowledge this is the first work that evaluates the effect of h-SC in the model of chronic murine liver damage and the persistence of transplanted cells.
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