Title of article
Differentiation of Mesenchymal Stem Cells Towards Nephrogenic Lineage and Their Enhanced Resistance to Oxygen Peroxide-induced Oxidative Stress
Author/Authors
Tayyeb, Asima School of Biological Sciences - University of the Punjab Lahore, Lahore, Pakistan , Shahzad, Naveed School of Biological Sciences - University of the Punjab Lahore, Lahore, Pakistan , Ali, Gibran Center of Excellence in Molecular Biology - University of the Punjab Lahore, Lahore, Pakistan
Pages
9
From page
271
To page
279
Abstract
Introduction. Mesenchymal stem cells (MSCs) have been publicized
to ameliorate kidney injury both in vitro and in vivo. However,
very less is known if MSCs can be differentiated towards renal
lineages and their further application potential in kidney injuries.
Materials and Methods. The present study developed a conditioning
system of growth factors fibroblast growth factor 2, transforming
growth factor-β2, and leukemia inhibitory factor for in vitro
differentiation of MSCs isolated from different sources towards
nephrogenic lineage. Less invasively isolated adipose-derived
MSCs were also compared to bone marrow-derived MSCs for
their differentiation potential to induce renal cell. Differentiated
MSCs were further evaluated for their resistance to oxidative stress
induced by oxygen peroxide.
Results. A combination of growth factors successfully induced
differentiation of MSCs. Both types of differentiated cells showed
significant expression of pronephrogenic markers (Wnt4, Wt1, and
Pax2) and renal epithelial markers (Ecad and ZO1). In contrast,
expression of mesenchymal stem cells marker Oct4 and Vim were
downregulated. Furthermore, differentiated adipose-derived MSCs
and bone marrow-derived MSCs showed enhanced and comparable
resistance to oxygen peroxide-induced oxidative stress.
Conclusions. Adipose-derived MSC provides a promising alternative
to bone marrow-derived MSC as a source of autologous stem cells
in human kidney injuries. In addition, differentiated MSCs with
further in vivo investigations may serve as a cell source for tissue
engineering or cell therapy in different renal ailments.
Keywords
senescence , stem cell , differentiation , adipose tissue
Journal title
Iranian Journal of Kidney Diseases (IJKD)
Serial Year
2017
Record number
2517617
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