Biomedical Engineering Reference
In-Depth Information
61. Chamberlain G, Fox J, Ashton B, Middleton J (2007) Concise review: mesenchymal stem
cells: their phenotype, differentiation capacity, immunological features, and potential for
homing. Stem Cells 25(11):2739-2749
62. Javazon EH, Beggs KJ, Flake AW (2004) Mesenchymal stem cells: paradoxes of passaging.
Exp Hematol 32(5):414-425
63. DelaRosa O, Lombardo E, Beraza A, Mancheno-Corvo P, Ramirez C, Menta R, Rico L,
Camarillo E, Garcia L, Abad JL, Trigueros C, Delgado M, Buscher D (2009) Requirement
of IFN-gamma-mediated indoleamine 2,3-dioxygenase expression in the modulation of
lymphocyte
proliferation
by
human
adipose-derived
stem
cells.
Tissue
Eng
Part
A
15(10):2795-2806
64. Ryan JM, Barry F, Murphy JM, Mahon BP (2007) Interferon-gamma does not break, but
promotes the immunosuppressive capacity of adult human mesenchymal stem cells. Clin
Exp Immunol 149(2):353-363
65. Corcione A, Benvenuto F, Ferretti E, Giunti D, Cappiello V, Cazzanti F, Risso M, Gualandi
F, Mancardi GL, Pistoia V, Uccelli A (2006) Human mesenchymal stem cells modulate B-
cell functions. Blood 107(1):367-372
66. Asari S, Itakura S, Ferreri K, Liu CP, Kuroda Y, Kandeel F, Mullen Y (2009) Mesenchymal
stem cells suppress B-cell terminal differentiation. Exp Hematol 37(5):604-615
67. Ramasamy R, Fazekasova H, Lam EW, Soeiro I, Lombardi G, Dazzi F (2007)
Mesenchymal stem cells inhibit dendritic cell differentiation and function by preventing
entry into the cell cycle. Transplantation 83(1):71-76
68. Zhang W, Ge W, Li C, You S, Liao L, Han Q, Deng W, Zhao RC (2004) Effects of
mesenchymal stem cells on differentiation, maturation, and function of human monocyte-
derived dendritic cells. Stem Cells Dev 13(3):263-271
69. Fox JM, Chamberlain G, Ashton BA, Middleton J (2007) Recent advances into the
understanding of mesenchymal stem cell trafficking. Br J Haematol 137(6):491-502
70. Granero-Molto F, Weis JA, Miga MI, Landis B, Myers TJ, O'Rear L, Longobardi L, Jansen
ED, Mortlock DP, Spagnoli A (2009) Regenerative effects of transplanted mesenchymal
stem cells in fracture healing. Stem Cells 27(8):1887-1898
71. Granero-Molto F, Weis JA, Longobardi L, Spagnoli A (2008) Role of mesenchymal stem
cells in regenerative medicine: application to bone and cartilage repair. Expert Opin Biol
Ther 8(3):255-268
72. Lapidot T, Dar A, Kollet O (2005) How do stem cells find their way home? Blood
106(6):1901-1910
73. Habraken WJ, Wolke JG, Jansen JA (2007) Ceramic composites as matrices and scaffolds
for drug delivery in tissue engineering. Adv Drug Deliv Rev 59(4-5):234-248
74. Gladstone HB, McDermott MW, Cooke DD (1995) Implants for cranioplasty. Otolaryngol
Clin North Am 28(2):381-400
75. Lee SH, Shin H (2007) Matrices and scaffolds for delivery of bioactive molecules in bone
and cartilage tissue engineering. Adv Drug Deliv Rev 59(4-5):339-359
76. Middleton JC, Tipton AJ (2000) Synthetic biodegradable polymers as orthopedic devices.
Biomaterials 21(23):2335-2346
77. Eslaminejad MB, Mirzadeh H, Mohamadi Y, Nickmahzar A (2007) Bone differentiation of
marrow-derived mesenchymal stem cells using beta-tricalcium phosphate-alginate-gelatin
hybrid scaffolds. J Tissue Eng Regen Med 1(6):417-424
78. Zandi M, Mirzadeh H, Mayer C, Urch H, Eslaminejad MB, Bagheri F, Mivehchi H (2010)
Biocompatibility evaluation of nano-rod hydroxyapatite/gelatin coated with nano-HAp as a
novel scaffold using mesenchymal stem cells. J Biomed Mater Res A 92(4):1244-1255
79. Wang M (2006) Composite scaffolds for bone tissue engineering. Am J Biochem Biotechnol
2(2):80-84
80. Chajra H, Rousseau CF, Cortial D, Ronziere MC, Herbage D, Mallein-Gerin F, Freyria AM
(2008) Collagen-based biomaterials and cartilage engineering. Application to osteochondral
defects. Biomed Mater Eng 18(1 Suppl):S33-S45
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