Rare Incorporation of Bone Marrow‐Derived Cells Into Kidney After Folic Acid‐Induced Injury
- 2 January 2005
- journal article
- research article
- Published by Oxford University Press (OUP) in The International Journal of Cell Cloning
- Vol. 23 (1) , 44-54
- https://doi.org/10.1634/stemcells.2004-0111
Abstract
Results obtained in recent experiments suggest that bone marrow-derived cells (BMDCs) engraft into tissues and differentiate into various somatic cell types. However, it is unclear whether injury is required for the phenomenon to occur at appreciable frequencies. In this study we tested whether BMDCs engraft into kidneys and differentiate into renal cells in the absence or presence of toxic injury. Renal damage was induced by delivery of folic acid (FA) to bone marrow (BM)-recipient mice 1 or 9 months after bone marrow transplant, and kidneys were examined for donor-derived cells 2,4, or 8 weeks after injury. Donor-derived cells were abundant in the renal interstitium of injured kidneys and were detected in glomeruli of vehicle- and FA-treated mice. Most of these cells expressed the common leukocyte antigen CD45 and display morphological characteristics of white blood cells. No donor-derived renal tubule cells (RTCs) were detected in kidney sections of BM-recipient mice. However, in cell culture, a cluster of seven donor-derived cells of 4 x 10(6) RTCs examined (approximately 0.0002%) displayed morphological characteristics of RTCs. CD45+ cells of donor origin were also detected in glomeruli and glomerular outgrowths. Nested polymerase chain reaction analysis for the male-specific Sry gene in cultured RTCs and glomerular outgrowths confirmed the presence of donor-derived cells. These results suggest that BMDCs may incorporate into glomeruli as specialized glomerular mesangial cells; however, BMDCs rarely contribute to the repair of renal tubules in uninjured or FA-treated mouse kidneys.Keywords
This publication has 38 references indexed in Scilit:
- Bone marrow stem cells contribute to repair of the ischemically injured renal tubuleJournal of Clinical Investigation, 2003
- Hematopoietic Stem Cells Contribute to the Regeneration of Renal Tubules after Renal Ischemia-Reperfusion Injury in MiceJournal of the American Society of Nephrology, 2003
- Stem-cell “plasticity”: befuddled by the muddleCurrent Opinion in Hematology, 2003
- Fusion brings down barriersNature, 2003
- Hematopoietic origin of glomerular mesangial cellsBlood, 2003
- A role for extrarenal cells in the regeneration following acute renal failureKidney International, 2002
- Glomerulosclerosis is transmitted by bone marrow–derived mesangial cell progenitorsJournal of Clinical Investigation, 2001
- Bone marrow contributes to renal parenchymal turnover and regenerationThe Journal of Pathology, 2001
- Can stem cells cross lineage boundaries?Nature Medicine, 2001
- Turning Blood into Brain: Cells Bearing Neuronal Antigens Generated in Vivo from Bone MarrowScience, 2000