Stem Cell Processing (Stem Cells in Clinical Applications)

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Chen FH, Tuan RS (2008) Mesenchymal stem cells in arthritic diseases. Arthritis Research Ther
10:223
Clark WR (1999) A means to an end: the biological basis of aging and death. Oxford University
Press, New York
Conejero JA, Lee JA, Parrett BM et al (2006) Repair of palatal bone defects using osteogenically
differentiated fat-derived stem cells. Plast Reconstr Surg 117(3)
Dexheimer V, Mueller S, Braatz F et al (2011) Reduced reactivation from dormancy but maintained
lineage choice of human mesenchymal stem cells with donor age. PLoS One 6(8), e22980
Dominici M, Le Blanc K, Mueller I et al (2006) Minimal criteria for defi ning multipotent mesen-
chymal stromal cells. The International Society for Cellular Therapy position statement.
Cytotherapy 8(4):315–317
Evans CE, Galasko CSB, Ward C (1990) Effect of donor age on the growth in vitro of cells
obtained from human trabecular bone. J Orthop Res 8(2):234–237
Fossett E, Khan WS (2012) Optimising human mesenchymal stem cell numbers for clinical appli-
cation: a literature review. Stem Cell Int. Article ID: 465259
Fossett E, Khan WS, Longo UG, Smitham PJ (2012) The effect of age and gender on cell prolifera-
tion and cell surface characterisation of synovial fat pad derived mesenchymal stem cells.
J Orthop Res 30(7):1013–1018
Friedenstein AJ (1980) Stromal mechanisms of bone marrow: cloning in vitro and retransplanta-
tion in vivo. Haematol Blood Transfus 25:19–29
Friedenstein AJ, Piatetzky-Shapiro II, Petrakova KV (1966) Osteogenesis in transplants of bone
marrow cells. J Embryol Exp Morphol 16:381–390
Friedenstein AJ, Petrakova KV, Kurolesova AI et al (1968) Heterotopic of bone marrow. Analysis
of precursor cells for osteogenic and hematopoietic tissues. Transplantation 6:230–247
Friedenstein AJ, Chailakhjan RK, Lalykina KS (1970) The development of fi broblast colonies in
monolayer cultures of guinea-pig bone marrow and spleen cells. Cell Tissue Kinet 3:393–403
Friedenstein AJ, Deriglasova UF, Kulagina NN et al (1974) Precursors for fi broblasts in different
populations of hematopoietic cells as detected by the in vitro colony assay method. Exp
Hematol 2:83–92
Garcia-Pacheco JM, Oliver C, Kimatrai M et al (2001) Human decidual stromal cells express
CD34 and STRO-1 and are related to bone marrow stromal precursors. Mol Hum Reprod
7(12):1151–1157
Ho AD, Wagner W, Mahlknecht U (2005) Stem cells and ageing. EMBO Rep 6(S1):S35–S38
Itahana K, Dimri G, Campisi J (2001) Regulation of cellular senescence by p53. Eur J Biochem
268(10):2784–2791
Jiang Y, Mishima H, Sakai S et al (2008) Gene expression analysis of major lineage-defi ning fac-
tors in human bone marrow cells: effect of aging, gender, and age-related disorders. J Orthop
Res 26(7):910–917
Kanitkar M, Tailor HD, Khan WS (2011) The use of growth factors and mesenchymal stem cells
in orthopaedics. Open Orthop J 5(2):268–274
Khan WS, Adesida AB, Tew SR et al (2009) The epitope characterisation and the osteogenic dif-
ferentiation potential of human fat pad-derived stem cells is maintained with ageing in later
life. Injury 40(2):150–157
Khan WS, Adesida A, Tew SR, Longo UG, Hardingham TE (2012) Fat pad derived mesenchymal
stem cells as a potential source of cell-based adipose tissue repair strategies. Cell Prolif
45(2):111–120
Le BK, Ringden O (2005) Immunobiology of human mesenchymal stem cells and future use in
hematopoietic stem cell transplantation. Biol Blood Marrow Transplant 11(5):321–334
Mareschi K, Ferrero I, Rustichelli D et al (2006) Expansion of mesenchymal stem cells isolated
from pediatric and adult donor bone marrow. J Cell Biochem 97(4):744–754
Meunier P, Aaron J, Edouard C et al (1971) Osteoporosis and the replacement of cell populations
of the marrow by adipose tissue. A quantitative study of 84 iliac bone biopsies. Clin Orthop
Relat Res 80:147–154


5 The Effects of Ageing on Proliferation Potential, Differentiation Potential...

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