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2. Lentiviral Hematopoietic Stem Cell Gene Therapy Corrects Murine Pompe Disease

3. Preclinical Efficacy and Safety Evaluation of Hematopoietic Stem Cell Gene Therapy in a Mouse Model of MNGIE

4. In vivo expansion of co-transplanted T cells impacts on tumor re-initiating activity of human acute myeloid leukemia in NSG mice.

6. SUL-109 Protects Hematopoietic Stem Cells from Apoptosis Induced by Short-Term Hypothermic Preservation and Maintains Their Engraftment Potential

7. Lentiviral Hematopoietic Stem Cell Gene Therapy Corrects Murine Pompe Disease

8. Preclinical Efficacy and Safety Evaluation of Hematopoietic Stem Cell Gene Therapy in a Mouse Model of MNGIE

9. Lentiviral Hematopoietic Stem Cell Gene Therapy in Inherited Immune and Lysoso- mal Enzyme Deficiencies

10. Efficacy Of Lentivirus-Mediated Gene Therapy In An Omenn Syndrome Recombination-Activating Gene 2 Mouse Model Is Not Hindered By Inflammation And Immune Dysregulation

11. Assessing the carcinogenic potential of low-dose exposures to chemical mixtures in the environment: the challenge ahead

12. Enhancement of mouse hematopoietic stem/progenitor cell function via transient gene delivery using integration-deficient lentiviral vectors

13. Pretransplant Mobilization with Granulocyte Colony-Stimulating Factor Improves B-Cell Reconstitution by Lentiviral Vector Gene Therapy in SCID-X1 Mice

14. 5-Androstene-3β,17β-diol Promotes Recovery of Immature Hematopoietic Cells Following Myelosuppressive Radiation and Synergizes With Thrombopoietin

15. Mobilization of hepatic mesenchymal stem cells from human liver grafts

16. Magselectofection: an integrated method of nanomagnetic separation and genetic modification of target cells

17. Correction of Murine SCID-X1 by Lentiviral Gene Therapy Using a Codon-optimized IL2RG Gene and Minimal Pretransplant Conditioning

18. Lentiviral gene therapy of murine hematopoietic stem cells ameliorates the Pompe disease phenotype

19. Gammaretrovirus-mediated correction of SCID-X1 is associated with skewed vector integration site distribution in vivo

20. Ectopic retroviral expression of LMO2, but not IL2R gamma, blocks human T-cell development from CD34+cells: implications for leukemogenesis in gene therapy

21. The potential for chemical mixtures from the environment to enable the cancer hallmark of sustained proliferative signalling

22. Lentiviral Stem Cell Gene Therapy for Pompe Disease

23. Overcoming promoter competition in packaging cells improves production of self-inactivating retroviral vectors

24. Human thymus contains multipotent progenitors with T/B lymphoid, myeloid, and erythroid lineage potential

25. Overestimation of hematopoietic stem cell frequencies in human liver grafts

26. Chance or necessity? Insertional mutagenesis in gene therapy and its consequences

27. New TPO treatment schedules of increased safety and efficacy: pre-clinical validation of a thrombopoiesis simulation model

28. Thrombopoietin is a major limiting factor for selective outgrowth of human umbilical cord blood cells in non-obese diabetic/severe combined immunodeficient recipient mice

29. Long-Term Effects of Irradiation Before Adulthood on Reproductive Function in the Male Rhesus Monkey1

31. Hypothermic storage of hematopoetic stem cells can be used as an alternative to short-term cryopreservation

32. Anniversary issue on gene and cell therapy in the Netherlands

33. Lentiviral Hematopoietic Stem Cell Gene Therapy in Inherited Metabolic Disorders

34. The Outcome of Local Radiation Injuries: 14 Years of Follow-up after the Chernobyl Accident

35. Single administration of thrombopoietin to lethally irradiated mice prevents infectious and thrombotic events leading to mortality

36. Lack of efficacy of thrombopoietin and granulocyte-macrophage colony-stimulating factor after total body irradiation and autologous bone marrow transplantation in Rhesus monkeys

37. Stimulation of mouse bone marrow cells with kit ligand FLT3 ligand, and thrombopoietin leads to efficient retrovirus-mediated gene transfer to stem cells, whereas interleukin 3 and interleukin 11 reduce transduction of short- and long-term repopulating ce

38. Efficient detection and selection of immature rhesus monkey and human CD34+ hematopoietic cells expressing the enhanced green fluorescent protein (EGFP)

39. Multilineage outgrowth of both malignant and normal hemopoietic progenitor cells from individual chronic myeloid leukemia patients in immunodeficient mice

40. Highly Efficient Transduction of the Green Fluorescent Protein Gene in Human Umbilical Cord Blood Stem Cells Capable of Cobblestone Formation in Long-Term Cultures and Multilineage Engraftment of Immunodeficient Mice

41. The Efficacy of Recombinant Thrombopoietin in Murine and Nonhuman Primate Models for Radiation‐Induced Myelosuppression and Stem Cell Transplantation

42. 279. Efficient and Safe Lentiviral Vector-Mediated Hematopoietic Stem Cell Gene Therapy in MNGIE Mice

43. A Single Dose of Thrombopoietin Shortly After Myelosuppressive Total Body Irradiation Prevents Pancytopenia in Mice by Promoting Short-Term Multilineage Spleen-Repopulating Cells at the Transient Expense of Bone Marrow–Repopulating Cells

44. Transplantation of Human Umbilical Cord Blood Cells in Macrophage-Depleted SCID Mice: Evidence for Accessory Cell Involvement in Expansion of Immature CD34+CD38−Cells

45. Enhanced Green Fluorescent Protein as Selectable Marker of Retroviral-Mediated Gene Transfer in Immature Hematopoietic Bone Marrow Cells

46. The Efficacy of Single-Dose Administration of Thrombopoietin With Coadministration of Either Granulocyte/Macrophage or Granulocyte Colony-Stimulating Factor in Myelosuppressed Rhesus Monkeys

47. Coexpression of Kit and the Receptors for Erythropoietin, Interleukin 6 and GM‐CSF on Hemopoietic Cells

48. Prevention of Thrombocytopenia by Thrombopoietin in Myelosuppressed Rhesus Monkeys Accompanied by Prominent Erythropoietic Stimulation and Iron Depletion

49. In Vivo Expansion of Co-Transplanted T Cells Impacts on Tumor Re-Initiating Activity of Human Acute Myeloid Leukemia in NSG Mice

50. Fluorouracil selectively spares acute myeloid leukemia cells with long- term growth abilities in immunodeficient mice and in culture

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