Stem Cells Research - Research, Transplants, Therapy, Benefits

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Volume 5 (2008), Issue 1 (January)

  1. Development of hematopoietic and endothelial cells from human embryonic stem cells: lessons from the studies using mouse as a model.
    ScientificWorldJournal, 7: 1950-64. [Abstract] [Full-text]
  2. BMPing off glioma stem cells.
    Cancer Cell, 13(1): 3-4. [Abstract] [Full-text]
  3. Directing human embryonic stem cells to generate vascular progenitor cells.
    Gene Ther, 15(2): 89-95. [Abstract] [Full-text]
  4. Molecular and biological properties of pluripotent embryonic stem cells.
    Gene Ther, 15(2): 74-81. [Abstract] [Full-text]
  5. Human mesenchymal stem cells: from basic biology to clinical applications.
    Gene Ther, 15(2): 109-16. [Abstract] [Full-text]
  6. Cancer stem cells with genetic instability: the best vehicle with the best engine for cancer.
    Gene Ther, 15(2): 136-42. [Abstract] [Full-text]
  7. Toward 'SMART' stem cells.
    Gene Ther, 15(2): 67-73. [Abstract] [Full-text]
  8. Genome-wide mapping and analysis of active promoters in mouse embryonic stem cells and adult organs.
    Genome Res, 18(1): 46-59. [Abstract] [Full-text]
  9. Local injection of stem cell factor (SCF) improves myocardial homing of systemically delivered c-kit + bone marrow-derived stem cells.
    Cardiovasc Res, 77(1): 143-50. [Abstract] [Full-text]
  10. Wnt5a-treated midbrain neural stem cells improve dopamine cell replacement therapy in parkinsonian mice.
    J Clin Invest, 118(1): 149-60. [Abstract] [Full-text]
  11. Preconditioning enhances cell survival and differentiation of stem cells during transplantation in infarcted myocardium.
    Cardiovasc Res, 77(1): 134-42. [Abstract] [Full-text]
  12. Induction of Functional Photoreceptor Phenotype by Exogenous Crx Expression in Mouse Retinal Stem Cells.
    Invest Ophthalmol Vis Sci, 49(1): 429-437. [Abstract] [Full-text]
  13. Stem cells and breast cancer.
    Histopathology, 52(1): 99-107. [Abstract] [Full-text]
  14. Neural precursors derived from human embryonic stem cells maintain long-term proliferation without losing the potential to differentiate into all three neural lineages, including dopaminergic neurons.
    J Neurochem, 104(2): 316-24. [Abstract] [Full-text]
  15. The role of DNA damage repair in aging of adult stem cells.
    Nucleic Acids Res, 35(22): 7557-65. [Abstract] [Full-text]
  16. Low joining efficiency and non-conservative repair of two distant double-strand breaks in mouse embryonic stem cells.
    DNA Repair (Amst), 7(2): 149-61. [Abstract] [Full-text]
  17. Overexpression of COUP-TF1 in murine embryonic stem cells reduces retinoic acid-associated growth arrest and increases extraembryonic endoderm gene expression.
    Differentiation. [Abstract] [Full-text]
  18. Some Dynamic Aspects of Hematopoietic Stem Cells.
    Stem Cell Rev. [Abstract] [Full-text]
  19. Adhesion Proteins, Stem Cells, and Arrhythmogenesis.
    Cardiovasc Toxicol. [Abstract] [Full-text]
  20. Mesenchymal stem cells transduced by vascular endothelial growth factor gene for ischemic random skin flaps.
    Plast Reconstr Surg, 121(1): 59-69. [Abstract] [Full-text]
  21. Improved viability of random pattern skin flaps through the use of adipose-derived stem cells.
    Plast Reconstr Surg, 121(1): 50-8. [Abstract] [Full-text]
  22. Comparison of gene expression profiles in erythroid-like cells derived from mouse embryonic stem cells differentiated in simple and co-culture systems.
    Am J Hematol, 83(2): 109-15. [Abstract] [Full-text]
  23. The effects of cyclin-dependent kinase inhibitors on adipogenic differentiation of human mesenchymal stem cells.
    Biochem Biophys Res Commun, 366(3): 624-30. [Abstract] [Full-text]
  24. Calyculin A retraction of mature megakaryocytes proplatelets from embryonic stem cells.
    Biochem Biophys Res Commun, 366(3): 763-8. [Abstract] [Full-text]
  25. TSH stimulates adipogenesis in mouse embryonic stem cells.
    J Endocrinol, 196(1): 159-69. [Abstract] [Full-text]
  26. Nonviral vector gene modification of stem cells for myocardial repair.
    Mol Med, 14(1): 79-86. [Abstract] [Full-text]
  27. Mitochondrial-mediated apoptosis in neural stem cells exposed to manganese.
    Toxicol Sci, 101(2): 310-20. [Abstract] [Full-text]
  28. Generation of induced pluripotent stem cells without Myc from mouse and human fibroblasts.
    Nat Biotechnol, 26(1): 101-6. [Abstract] [Full-text]
  29. TGF-beta induces the differentiation of bone marrow stem cells into immature cardiomyocytes.
    Biochem Biophys Res Commun, 366(4): 1074-80. [Abstract] [Full-text]
  30. A novel cell delivery system using magnetically labeled mesenchymal stem cells and an external magnetic device for clinical cartilage repair.
    Arthroscopy, 24(1): 69-76. [Abstract] [Full-text]
  31. Neural stem cells, inflammation and NF-kappaB: basic principle of maintenance and repair or origin of brain tumours?
    J Cell Mol Med. [Abstract] [Full-text]
  32. Cancer Stem Cells: Implications for the progression and treatment of metastatic disease.
    J Cell Mol Med. [Abstract] [Full-text]
  33. The therapeutic potential of stem cells in heart disease.
    Cell Prolif, 41: 126-45. [Abstract] [Full-text]
  34. Stem cells and neurological diseases.
    Cell Prolif, 41: 94-114. [Abstract] [Full-text]
  35. Stem cells and genetic disease.
    Cell Prolif, 41: 85-93. [Abstract] [Full-text]
  36. General principles regarding the use of adult stem cells.
    Cell Prolif, 41: 78-84. [Abstract] [Full-text]
  37. Anthropological and ethical reflections on the production and use of embryonic stem cells.
    Cell Prolif, 41: 71-7. [Abstract] [Full-text]
  38. Induction of pluripotent stem cells from mouse fibroblasts by four transcription factors.
    Cell Prolif, 41: 51-6. [Abstract] [Full-text]
  39. Parthenotes as a source of embryonic stem cells.
    Cell Prolif, 41: 20-30. [Abstract] [Full-text]
  40. Alternative sources of pluripotent stem cells: altered nuclear transfer.
    Cell Prolif, 41: 7-19. [Abstract] [Full-text]
  41. Culture and Genetic Modification of Mouse Germline Stem Cells.
    Ann N Y Acad Sci, 1120: 59-71. [Abstract] [Full-text]
  42. Glial cell line-derived neurotrophic growth factor increases motility and survival of cultured mesenchymal stem cells and ameliorates acute kidney injury.
    Am J Physiol Renal Physiol, 294(1): F229-35. [Abstract] [Full-text]
  43. Adult neurogenesis requires Smad4-mediated bone morphogenic protein signaling in stem cells.
    J Neurosci, 28(2): 434-46. [Abstract] [Full-text]
  44. Mesenchymal Stem Cells in Acute Kidney Injury.
    Annu Rev Med, 59: 311-325. [Abstract] [Full-text]
  45. Human mesenchymal stem cells as a two-edged sword in hepatic regenerative medicine: engraftment and hepatocyte differentiation versus profibrogenic potential.
    Gut, 57(2): 223-31. [Abstract] [Full-text]
  46. Cotton wool-like nanocomposite biomaterials prepared by electrospinning: in vitro bioactivity and osteogenic differentiation of human mesenchymal stem cells.
    J Biomed Mater Res B Appl Biomater, 84(2): 350-62. [Abstract] [Full-text]
  47. MicroRNA-134 modulates the differentiation of mouse embryonic stem cells, where it causes post-transcriptional attenuation of Nanog and LRH1.
    Stem Cells, 26(1): 17-29. [Abstract] [Full-text]
  48. Myocardin a enhances telomerase activities in adipose tissue mesenchymal cells and embryonic stem cells undergoing cardiovascular myogenic differentiation.
    Stem Cells, 26(1): 202-11. [Abstract] [Full-text]
  49. Toll-like receptors on human mesenchymal stem cells drive their migration and immunomodulating responses.
    Stem Cells, 26(1): 99-107. [Abstract] [Full-text]
  50. Microenvironments engineered by inkjet bioprinting spatially direct adult stem cells toward muscle- and bone-like subpopulations.
    Stem Cells, 26(1): 127-34. [Abstract] [Full-text]
  51. Functional activity of the carboxyl-terminally extended oxytocin precursor Peptide during cardiac differentiation of embryonic stem cells.
    Stem Cells, 26(1): 45-54. [Abstract] [Full-text]
  52. Embryonic stem cells cultured in serum-free medium acquire bovine apolipoprotein B-100 from feeder cell layers and serum replacement medium.
    Stem Cells, 26(1): 72-8. [Abstract] [Full-text]
  53. Lysophosphatidic acid protects mesenchymal stem cells against hypoxia and serum deprivation-induced apoptosis.
    Stem Cells, 26(1): 135-45. [Abstract] [Full-text]
  54. Novel effectors of directed and Ngn3-mediated differentiation of mouse embryonic stem cells into endocrine pancreas progenitors.
    Stem Cells, 26(1): 3-16. [Abstract] [Full-text]
  55. Mesenchymal stem cells cooperate with bone marrow cells in therapy of diabetes.
    Stem Cells, 26(1): 244-53. [Abstract] [Full-text]
  56. Multipotent stem cells from umbilical cord: cord is richer than blood!
    Stem Cells, 26(1): 146-50. [Abstract] [Full-text]
  57. Oct-4 is critical for survival/antiapoptosis of murine embryonic stem cells subjected to stress: effects associated with Stat3/survivin.
    Stem Cells, 26(1): 30-4. [Abstract] [Full-text]
  58. Human mesenchymal stem cells inhibit neutrophil apoptosis: a model for neutrophil preservation in the bone marrow niche.
    Stem Cells, 26(1): 151-62. [Abstract] [Full-text]
  59. Human leukocyte antigen-G5 secretion by human mesenchymal stem cells is required to suppress T lymphocyte and natural killer function and to induce CD4+CD25highFOXP3+ regulatory T cells.
    Stem Cells, 26(1): 212-22. [Abstract] [Full-text]
  60. Loss of genomic imprinting in mouse parthenogenetic embryonic stem cells.
    Stem Cells, 26(1): 79-88. [Abstract] [Full-text]
  61. Immunosuppression by embryonic stem cells.
    Stem Cells, 26(1): 89-98. [Abstract] [Full-text]
  62. Toll-like receptors 3 and 4 are expressed by human bone marrow-derived mesenchymal stem cells and can inhibit their T-cell modulatory activity by impairing Notch signaling.
    Stem Cells, 26(1): 279-89. [Abstract] [Full-text]
  63. Stem cells ameliorate EAE via an indoleamine 2,3-dioxygenase (IDO) mechanism.
    J Neuroimmunol, 193(1): 12-23. [Abstract] [Full-text]
  64. Diet controls normal and tumorous germline stem cells via insulin-dependent and -independent mechanisms in Drosophila.
    Dev Biol, 313(2): 700-12. [Abstract] [Full-text]
  65. Enhanced green fluorescent protein-expressing human mesenchymal stem cells retain neural marker expression.
    J Neuroimmunol, 193(1): 59-67. [Abstract] [Full-text]
  66. beta(1)- and beta(2)-adrenoceptor responses in cardiomyocytes derived from human embryonic stem cells: comparison with failing and non-failing adult human heart.
    Br J Pharmacol. [Abstract] [Full-text]
  67. The CMV early enhancer/chicken beta actin (CAG) promoter can be used to drive transgene expression during the differentiation of murine embryonic stem cells into vascular progenitors.
    BMC Cell Biol, 9(1): 2. [Abstract] [Full-text]
  68. Impaired generation of mature neurons by neural stem cells from hypomorphic Sox2 mutants.
    Development, 135(3): 541-57. [Abstract] [Full-text]
  69. The interaction of Nogo-66 receptor with Nogo-p4 inhibits the neuronal differentiation of neural stem cells.
    Neuroscience, 151(1): 74-81. [Abstract] [Full-text]
  70. Bone marrow-derived mesenchymal stem cells for treatment of heart failure: is it all paracrine actions and immunomodulation?
    J Cardiovasc Med (Hagerstown), 9(2): 122-128. [Abstract] [Full-text]
  71. Mobilization of Ph chromosome-negative peripheral blood stem cells in a child with chronic myeloid leukemia after imatinib-induced complete molecular remission.
    Pediatr Blood Cancer, 50(3): 639-41. [Abstract] [Full-text]
  72. In vitro expansion of immature melanoblasts and their ability to repopulate melanocyte stem cells in the hair follicle.
    J Invest Dermatol, 128(2): 408-20. [Abstract] [Full-text]
  73. Immunomodulation and neuroprotection with mesenchymal bone marrow stem cells (MSCs): a proposed treatment for multiple sclerosis and other neuroimmunological/neurodegenerative diseases.
    J Neurol Sci, 265(1): 131-5. [Abstract] [Full-text]
  74. Optimization and integration of expansion and neural commitment of mouse embryonic stem cells.
    Biotechnol Appl Biochem, 49: 105-12. [Abstract] [Full-text]
  75. Immunomodulation by neural stem cells.
    J Neurol Sci, 265(1): 102-4. [Abstract] [Full-text]
  76. Autologous bone marrow stem cells--properties and advantages.
    J Neurol Sci, 265(1): 59-62. [Abstract] [Full-text]
  77. Autologous mesenchymal bone marrow stem cells: practical considerations.
    J Neurol Sci, 265(1): 111-5. [Abstract] [Full-text]
  78. Human embryonic stem cells: an experimental and therapeutic resource for neurological disease.
    J Neurol Sci, 265(1): 84-8. [Abstract] [Full-text]
  79. Repair of osteochondral defects with a construct of mesenchymal stem cells and a polydioxanone/poly(vinyl alcohol) scaffold.
    Biotechnol Appl Biochem, 49: 155-64. [Abstract] [Full-text]
  80. How to trace stem cells for MRI evaluation?
    J Neurol Sci, 265(1): 122-6. [Abstract] [Full-text]
  81. Systemic delivery of adult stem cells improves cardiac function in spontaneously hypertensive rats.
    Clin Exp Pharmacol Physiol, 35(2): 113-9. [Abstract] [Full-text]
  82. Proliferation and neurogenesis of neural stem cells enhanced by cerebral microvascular endothelial cells.
    Microsurgery, 28(1): 54-60. [Abstract] [Full-text]
  83. Treatment of pulmonary metastatic tumors in mice using lentiviral vector-engineered stem cells.
    Cancer Gene Ther, 15(2): 73-84. [Abstract] [Full-text]
  84. Osteogenic Differentiation of Human Adipose Tissue-Derived Stem Cells Is Modulated by the miR-26a Targeting of the SMAD1 Transcription Factor.
    J Bone Miner Res, 23(2): 287-95. [Abstract] [Full-text]
  85. Islet-Like Clusters Derived from Mesenchymal Stem Cells in Wharton's Jelly of the Human Umbilical Cord for Transplantation to Control Type 1 Diabetes.
    PLoS ONE, 3(1): e1451. [Abstract] [Full-text]
  86. Human Adipose Stem Cells: A Potential Cell Source for Cardiovascular Tissue Engineering.
    Cells Tissues Organs. [Abstract] [Full-text]
  87. Differentiation of human embryonic stem cells induces condensation of chromosome territories and formation of heterochromatin protein 1 foci.
    Differentiation, 76(1): 24-32. [Abstract] [Full-text]
  88. Human autologous plasma-derived clot as a biological scaffold for mesenchymal stem cells in treatment of orthopedic healing.
    J Orthop Res, 26(2): 176-83. [Abstract] [Full-text]
  89. A placebo controlled, dose-ranging, safety study of allogenic mesenchymal stem cells injected by endomyocardial delivery after an acute myocardial infarction.
    Eur Heart J, 29(2): 251-9. [Abstract] [Full-text]
  90. Bulk vitrification of human embryonic stem cells.
    Hum Reprod, 23(2): 358-64. [Abstract] [Full-text]
  91. Transplantation of cells from eye-like structures differentiated from embryonic stem cells in vitro and in vivo regeneration of retinal ganglion-like cells.
    Graefes Arch Clin Exp Ophthalmol, 246(2): 255-65. [Abstract] [Full-text]
  92. Leucine-rich amelogenin peptide induces osteogenesis in mouse embryonic stem cells.
    Biochem Biophys Res Commun, 367(1): 1-6. [Abstract] [Full-text]
  93. Maternal embryonic leucine zipper kinase is a key regulator of the proliferation of malignant brain tumors, including brain tumor stem cells.
    J Neurosci Res, 86(1): 48-60. [Abstract] [Full-text]
  94. Viscoelastic properties of human mesenchymally-derived stem cells and primary osteoblasts, chondrocytes, and adipocytes.
    J Biomech, 41(2): 454-64. [Abstract] [Full-text]
  95. Astrocytes enhance long-term survival of cholinergic neurons differentiated from human fetal neural stem cells.
    J Neurosci Res, 86(1): 35-47. [Abstract] [Full-text]
  96. Cytokine-pretreatment of CD34(+) cord blood stem cells in vitro reduces long-term cell engraftment in NOD/SCID mice.
    Eur J Cell Biol, 87(2): 69-80. [Abstract] [Full-text]
  97. In vitro clonal analysis of murine pluripotent stem cells isolated from skeletal muscle and adipose stromal cells.
    Exp Hematol, 36(2): 224-34. [Abstract] [Full-text]
  98. Bcl2 enhances induced hematopoietic differentiation of murine embryonic stem cells.
    Exp Hematol, 36(2): 128-39. [Abstract] [Full-text]
  99. A biomarker-based mathematical model to predict bone-forming potency of human synovial and periosteal mesenchymal stem cells.
    Arthritis Rheum, 58(1): 240-50. [Abstract] [Full-text]
  100. A large-scale proteomic analysis of human embryonic stem cells.
    BMC Genomics, 8: 478. [Abstract] [Full-text]
  101. Neural stem cells reduce brain injury after unilateral carotid ligation.
    Pediatr Neurol, 38(2): 86-92. [Abstract] [Full-text]
  102. Refreezing of cord blood hematopoietic stem cells for allogenic transplantation: in vitro and in vivo validation of a clinical phase I/II protocol in European and Italian Good Manufacturing Practice conditions.
    Exp Hematol, 36(2): 235-43. [Abstract] [Full-text]
  103. Of lineage and legacy: the development of mammalian hematopoietic stem cells.
    Nat Immunol, 9(2): 129-36. [Abstract] [Full-text]
  104. Another notch in stem cell biology: Drosophila intestinal stem cells and the specification of cell fates.
    Bioessays, 30(2): 107-9. [Abstract] [Full-text]
  105. Human bone marrow mesenchymal stem cells in vivo.
    Rheumatology (Oxford), 47(2): 126-31. [Abstract] [Full-text]
  106. A lentiviral vector with a short troponin-I promoter for tracking cardiomyocyte differentiation of human embryonic stem cells.
    Gene Ther, 15(3): 161-70. [Abstract] [Full-text]
  107. Microarray analyses of transdifferentiated mesenchymal stem cells.
    J Cell Biochem, 103(2): 413-33. [Abstract] [Full-text]
  108. Persistence of a chimerical phenotype after hepatocyte differentiation of human bone marrow mesenchymal stem cells.
    Cell Prolif, 41(1): 36-58. [Abstract] [Full-text]
  109. Knocking-down the expression of nucleostemin significantly decreases rate of proliferation of rat bone marrow stromal stem cells in an apparently p53-independent manner.
    Cell Prolif, 41(1): 28-35. [Abstract] [Full-text]
  110. Human CD34+ stem cells produce bone nodules in vivo.
    Cell Prolif, 41(1): 1-11. [Abstract] [Full-text]
  111. Expression of Pcp4 gene during osteogenic differentiation of bone marrow mesenchymal stem cells in vitro.
    Mol Cell Biochem, 309(1): 143-50. [Abstract] [Full-text]
  112. CD133+ neural stem cells in the ependyma of mammalian postnatal forebrain.
    Proc Natl Acad Sci U S A, 105(3): 1026-31. [Abstract] [Full-text]
  113. Down-regulation of Wnt signaling could promote bone marrow-derived mesenchymal stem cells to differentiate into hepatocytes.
    Biochem Biophys Res Commun, 367(2): 342-8. [Abstract] [Full-text]
  114. Reconstruction of Large Cranial Defects in Nonimmunosuppressed Experimental Design With Human Dental Pulp Stem Cells.
    J Craniofac Surg, 19(1): 204-210. [Abstract] [Full-text]
  115. Breast Cancer Cell-Derived Fibroblast Growth Factor 2 and Vascular Endothelial Growth Factor Are Chemoattractants for Bone Marrow Stromal Stem Cells.
    Ann Surg, 247(2): 310-314. [Abstract] [Full-text]
  116. Characterization of the Apical Papilla and Its Residing Stem Cells from Human Immature Permanent Teeth: A Pilot Study.
    J Endod, 34(2): 166-171. [Abstract] [Full-text]
  117. Meningeal cells induce dopaminergic neurons from embryonic stem cells.
    Eur J Neurosci, 27(2): 261-8. [Abstract] [Full-text]
  118. Bone Marrow-derived Mesenchymal Stem Cells Decrease Acute Graft-versus-Host Disease after Allogeneic Hematopoietic Stem Cells Transplantation.
    Immunol Invest, 37(1): 29-42. [Abstract] [Full-text]
  119. Characterization and transformation potential of "Synthetic" astrocytes differentiated from murine embryonic stem cells.
    Glia, 56(4): 457-70. [Abstract] [Full-text]
  120. Therapeutic benefits by human mesenchymal stem cells (hMSCs) and Ang-1 gene-modified hMSCs after cerebral ischemia.
    J Cereb Blood Flow Metab, 28(2): 329-40. [Abstract] [Full-text]
  121. Molecular and Cellular Basis of Regeneration and Tissue Repair : Planarians, a tale of stem cells.
    Cell Mol Life Sci, 65(1): 16-23. [Abstract] [Full-text]
  122. Expression of serum amyloid A transcripts in human bone tissues, differentiated osteoblast-like stem cells and human osteosarcoma cell lines.
    J Cell Biochem, 103(3): 994-1004. [Abstract] [Full-text]
  123. Angiogenic CXC chemokine expression during differentiation of human mesenchymal stem cells towards the osteoblastic lineage.
    J Cell Biochem, 103(3): 812-24. [Abstract] [Full-text]
  124. Mesenchymal stem cells inhibit natural killer-cell proliferation, cytotoxicity, and cytokine production: role of indoleamine 2,3-dioxygenase and prostaglandin E2.
    Blood, 111(3): 1327-33. [Abstract] [Full-text]
  125. Live imaging of emerging hematopoietic stem cells and early thymus colonization.
    Blood, 111(3): 1147-56. [Abstract] [Full-text]
  126. Junctional adhesion molecule-A, JAM-A, is a novel cell-surface marker for long-term repopulating hematopoietic stem cells.
    Blood, 111(3): 1167-72. [Abstract] [Full-text]
  127. Clinical stem-cell sources contain CD8+CD3+ T-cell receptor-negative cells that facilitate bone marrow repopulation with hematopoietic stem cells.
    Blood, 111(3): 1735-8. [Abstract] [Full-text]
  128. Strontium can increase some osteoblasts without increasing hematopoietic stem cells.
    Blood, 111(3): 1173-81. [Abstract] [Full-text]
  129. Intrauterine transplantation of human fetal mesenchymal stem cells from first-trimester blood repairs bone and reduces fractures in osteogenesis imperfecta mice.
    Blood, 111(3): 1717-25. [Abstract] [Full-text]
  130. Comparison of osteogenesis of human embryonic stem cells within 2D and 3D culture systems.
    Scand J Clin Lab Invest, 68(1): 58-67. [Abstract] [Full-text]
  131. ISHAGE-based single-platform flowcytometric analysis for measurement of absolute viable T cells in fresh or cryopreserved products: CD34/CD133 selected or CD3/CD19 depleted stem cells, DLI and purified CD56(+)CD3 (-) NK cells.
    Int J Hematol, 87(1): 98-105. [Abstract] [Full-text]
  132. Role of Polycomb-group genes in sustaining activities of normal and malignant stem cells.
    Int J Hematol, 87(1): 25-34. [Abstract] [Full-text]
  133. Characterization of Adult Neural Stem Cells and Their Relation to Brain Tumors.
    Cells Tissues Organs. [Abstract] [Full-text]
  134. Differential proteome of bone marrow mesenchymal stem cells from osteoarthritis patients.
    Osteoarthritis Cartilage. [Abstract] [Full-text]
  135. Subtractive gene expression profiling of articular cartilage and mesenchymal stem cells: serpins as cartilage-relevant differentiation markers.
    Osteoarthritis Cartilage, 16(1): 48-60. [Abstract] [Full-text]
  136. Chondroitin sulfate based niches for chondrogenic differentiation of mesenchymal stem cells.
    Matrix Biol, 27(1): 12-21. [Abstract] [Full-text]
  137. Derivation and analysis of a system modeling the chemotactic movement of hematopoietic stem cells.
    J Math Biol, 56(5): 579-610. [Abstract] [Full-text]
  138. Decreased surfactant protein B expression in mice derived completely from embryonic stem cells.
    In Vitro Cell Dev Biol Anim, 44(1): 10-6. [Abstract] [Full-text]
  139. Autophagy as an ultrastructural marker of heavy metal toxicity in human cord blood hematopoietic stem cells.
    Sci Total Environ, 392(1): 50-8. [Abstract] [Full-text]
  140. Development of a human adipocyte model derived from human mesenchymal stem cells (hMSC) as a tool for toxicological studies on the action of TCDD.
    Biol Chem, 389(2): 169-77. [Abstract] [Full-text]
  141. A comparison of rabbit mesenchymal stem cells and anterior cruciate ligament fibroblasts responses on combined silk scaffolds.
    Biomaterials, 29(10): 1443-53. [Abstract] [Full-text]
  142. Iron oxide labelling of human mesenchymal stem cells in collagen hydrogels for articular cartilage repair.
    Biomaterials, 29(10): 1473-83. [Abstract] [Full-text]
  143. Dermal matrix as a carrier for in vivo delivery of human adipose-derived stem cells.
    Biomaterials, 29(10): 1431-42. [Abstract] [Full-text]
  144. Osteogenic differentiation of human mesenchymal stem cells on chargeable polymer-modified surfaces.
    J Biomed Mater Res A. [Abstract] [Full-text]
  145. Cell biology of stem cells: an enigma of asymmetry and self-renewal.
    J Cell Biol, 180(2): 257-60. [Abstract] [Full-text]
  146. Differential loss of histone H3 isoforms mono-, di- and tri-methylated at lysine 4 during X-inactivation in female embryonic stem cells.
    Biol Chem. [Abstract] [Full-text]
  147. Skin stem cells: rising to the surface.
    J Cell Biol, 180(2): 273-84. [Abstract] [Full-text]
  148. Acetylcholine inhibits long-term hypoxia-induced apoptosis by suppressing the oxidative stress-mediated MAPKs activation as well as regulation of Bcl-2, c-IAPs, and caspase-3 in mouse embryonic stem cells.
    Apoptosis, 13(2): 295-304. [Abstract] [Full-text]
  149. Effects of chondrogenic and osteogenic regulatory factors on composite constructs grown using human mesenchymal stem cells, silk scaffolds and bioreactors.
    J R Soc Interface. [Abstract] [Full-text]
  150. Human embryonic stem cells: preclinical perspectives.
    J Transl Med, 6(1): 7. [Abstract] [Full-text]
  151. Influence of hormones and hormone metabolites on the growth of schwann cells derived from embryonic stem cells and on tumor cell lines expressing variable levels of neurofibromin.
    Dev Dyn, 237(2): 513-24. [Abstract] [Full-text]
  152. High glucose induces adipogenic differentiation of muscle-derived stem cells.
    Proc Natl Acad Sci U S A, 105(4): 1226-31. [Abstract] [Full-text]
  153. Transient stress and stress enzyme responses have practical impacts on parameters of embryo development, from IVF to directed differentiation of stem cells.
    Mol Reprod Dev, 75(4): 689-97. [Abstract] [Full-text]
  154. Adhesion molecules and chemokines: the navigation system for circulating tumor (stem) cells to metastasize in an organ-specific manner.
    Clin Exp Metastasis, 25(1): 11-32. [Abstract] [Full-text]
  155. Properties of murine embryonic stem cells maintained on human foreskin fibroblasts without LIF.
    Mol Reprod Dev, 75(4): 614-22. [Abstract] [Full-text]
  156. Monolayer cell expansion conditions affect the chondrogenic potential of adipose-derived stem cells.
    Biotechnol Bioeng, 99(4): 986-95. [Abstract] [Full-text]
  157. Effects of Oxygen Concentration on the Proliferation and Differentiation of Mouse Neural Stem Cells In Vitro.
    Cell Mol Neurobiol. [Abstract] [Full-text]
  158. Anoxic preconditioning: A way to enhance the cardioprotection of mesenchymal stem cells.
    Int J Cardiol. [Abstract] [Full-text]
  159. IFN-gamma mediates the rejection of haematopoietic stem cells in IFN-gammaR1-deficient hosts.
    PLoS Med, 5(1): e26. [Abstract] [Full-text]
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  Issue 12 (December)

Volume 4 (2007)
  Issue 1 (January)
  Issue 2 (February)
  Issue 3 (March)
  Issue 4 (April)
  Issue 5 (May)
  Issue 6 (June)
  Issue 7 (July)
  Issue 8 (August)
  Issue 9 (September)
  Issue 10 (October)
  Issue 11 (November)
  Issue 12 (December)

Volume 5 (2008)
  Issue 1 (January)
  Issue 2 (February)
  Issue 3 (March)
  Issue 4 (April)
  Issue 5 (May)
  Issue 6 (June)
  Issue 7 (July)



Stem Cells Books

Essentials of Stem Cell Biology

Essentials of Stem Cell Biology