Stem Cells · 2008 · 35 citations · 40 references
Rat umbilical cord matrix (RUCM) cells are stem-cell-like cells and have been shown to reduce neuronal loss in the selectively vulnerable brain regions after cardiac arrest (CA). Here, we investigate whether this protection is mediated by the RUCM cells' modulation of the postischemia inflammation responses, which have long been implicated as a secondary mechanism of injury following ischemia. Brain sections were examined immunohistochemically for glial fibrillary acidic protein (GFAP), vimentin, and nestin as markers for astroglia and reactive astrogliosis, Ricinus Communis Agglutinin-1 (RCA-1) as a marker for microglia, and Ki67 as a marker for cell proliferation. Rats were randomly assigned to six experimental groups: (1) 8-minute CA without treatment, (2) 8-minute CA pre-treated with culture medium injection, (3) 8-minute CA pre-treated with RUCM cells, (4) sham-operated CA, (5) medium injection without CA, and (6) RUCM cell transplantation without CA. Groups 1-3 have significantly higher Ki67(+) cell counts and higher GFAP(+) immunoreactivity in the hippocampal Cornu Ammonis layer 1 (CA1) region compared to groups 4-6, irrespective of treatment. Groups 1 and 2 have highly elevated GFAP(+), vimentin(+), and nestin(+) immunoreactivity, indicating reactive astrogliosis. Strikingly, RUCM cell treatment nearly completely inhibited the appearance of vimentin(+) and greatly reduced nestin(+) reactive astrocytes. RUCM cell treatment also greatly reduced RCA-1 staining, which is found to strongly correlate with the neuronal loss in the CA1 region. Our study indicates that treatment with stem-cell-like RUCM cells modulates the inflammatory response to global ischemia and renders neuronal protection by preventing permanent damage to the selectively vulnerable astrocytes in the CA1 region. Disclosure of potential conflicts of interest is found at the end of this article.
40
Juha Yrjänheikki, Tiina Tikka, Riitta Keinänen et al. · Proceedings of the National Academy of Sciences · 1999 · 1K citations · Full text
Cerebrovascular Disease, Pharmacotherapy, Focal Cerebral Ischemia +23
Matrix Cells from Wharton's Jelly Form Neurons and Glia
Kathy E. Mitchell, Mark L. Weiss, Brianna M. Mitchell et al. · Stem Cells · 2003 · 633 citations · Full text
Protective Role of Reactive Astrocytes in Brain Ischemia
Li-Zhen Li, Andrea Lundkvist, Daniel Andersson et al. · Journal of Cerebral Blood Flow & Metabolism · 2007 · 499 citations · Full text