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Molecular and cellular characterisation of highly purified stromal stem cells derived from human bone marrow

Journal of Cell Science · 2003 · Vol. 116(9) · pp. 1827–1835
Stan GronthosAndrew C.W. ZannettinoShelley HaySongtao ShiStephen E. GravesAngela KortesidisPaul J. Simmons

Abstract

Previous studies have provided evidence for the existence of adult human bone marrow stromal stem cells (BMSSCs) or mesenchymal stem cells. Using a combination of cell separation techniques, we have isolated an almost homogeneous population of BMSSCs from adult human bone marrow. Lacking phenotypic characteristics of leukocytes and mature stromal elements, BMSSCs are non-cycling and constitutively express telomerase activity in vivo. This mesenchymal stem cell population demonstrates extensive proliferation and retains the capacity for differentiation into bone, cartilage and adipose tissue in vitro. In addition, clonal analysis demonstrated that individual BMSSC colonies exhibit a differential capacity to form new bone in vivo. These data are consistent with the existence of a second population of bone marrow stem cells in addition to those for the hematopoietic system. Our novel selection protocol provides a means to generate purified populations of BMSSCs for use in a range of different tissue engineering and gene therapy strategies.

Mesenchymal stem cell researchRNA Interference and Gene DeliveryMicroRNA in disease regulationBiologyBone marrowStem cellStromal cellMesenchymal stem cellClinical uses of mesenchymal stem cellsHaematopoiesisCell biologyStem cell transplantation for articular cartilage repairAdult stem cell

MeSH terms

AdultAnimalsBone Marrow CellsCell DifferentiationCell DivisionCell SeparationColony-Forming Units AssayHumansOsteogenesisMice, SCIDStromal CellsAdipocytesHematopoietic Stem Cell TransplantationChondrogenesisGene Expression Profiling
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References
Marrow stromal stem cells
Journal of Cell Science · 1988 · 827 citations
Conditions controlling the proliferation of haemopoietic stem cells in vitro
Journal of Cellular Physiology · 1977 · 2,106 citations
Postnatal human dental pulp stem cells (DPSCs) <i>in vitro</i> and <i>in</i> <i>vivo</i>
Proceedings of the National Academy of Sciences · 2000 · 4,522 citations
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