Optimization of Intrabone Delivery of Hematopoietic Progenitor Cells in a Swine Model Using Cell Radiolabeling with [89]zirconium
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R. F. Hoyt | P. Choyke | R. Childs | N. Sato | O. Aras | S. Adler | T. Hunt | P. Eclarinal | J. Pantin | M. Y. Chen | R. Clevenger | M. Y. Chen
[1] K. Rezvani,et al. Fucosylation with fucosyltransferase VI or fucosyltransferase VII improves cord blood engraftment. , 2014, Cytotherapy.
[2] N. Milpied,et al. Definitive Setup of Clinical Scale Procedure for Ex Vivo Expansion of Cord Blood Hematopoietic Cells for Transplantation , 2012, Cell Transplantation.
[3] H. Tamaki,et al. Intrabone marrow transplantation of unwashed cord blood using reduced-intensity conditioning treatment: a phase I study. , 2012, Biology of blood and marrow transplantation : journal of the American Society for Blood and Marrow Transplantation.
[4] W. Mutschler,et al. Impact of Indium-111 Oxine Labelling on Viability of Human Mesenchymal Stem Cells In Vitro, and 3D Cell-Tracking Using SPECT/CT In Vivo , 2011, Molecular Imaging and Biology.
[5] D. Regan,et al. Comparison of cord blood thawing methods on cell recovery, potency, and infusion , 2010, Transfusion.
[6] G. V. van Dam,et al. Engraftment of syngeneic bone marrow is not more efficient after intrafemoral transplantation than after traditional intravenous administration. , 2010, Experimental hematology.
[7] S. Morbelli,et al. Contact with the bone marrow microenvironment readdresses the fate of transplanted hematopoietic stem cells. , 2010, Experimental hematology.
[8] S. Ikehara,et al. A successful haploidentical bone marrow transplantation method in rabbits: perfusion method plus intra-bone marrow-bone marrow transplantation. , 2010, Transplant immunology.
[9] E. Gluckman,et al. Double cord blood transplantation: extending the use of unrelated umbilical cord blood cells for patients with hematological diseases. , 2010, Best practice & research. Clinical haematology.
[10] Colleen Delaney,et al. Notch-mediated expansion of human cord blood progenitor cells capable of rapid myeloid reconstitution , 2010, Nature Medicine.
[11] Chao‐Ping Yang,et al. Transplantation of unrelated donor umbilical cord blood for nonmalignant diseases: a single institution's experience with 45 patients. , 2010, Biology of blood and marrow transplantation : journal of the American Society for Blood and Marrow Transplantation.
[12] Y. Sasaki,et al. In vivo dynamics of human cord blood-derived CD34− SCID-repopulating cells using intra-bone marrow injection , 2010, Leukemia.
[13] J. Frank,et al. In Vivo Transfer of Intracellular Labels from Locally Implanted Bone Marrow Stromal Cells to Resident Tissue Macrophages , 2009, PloS one.
[14] S. Savitz,et al. Pulmonary passage is a major obstacle for intravenous stem cell delivery: the pulmonary first-pass effect. , 2009, Stem cells and development.
[15] J. Wagner,et al. Intra-BM injection to enhance engraftment after myeloablative umbilical cord blood transplantation with two partially HLA-matched units , 2009, Bone Marrow Transplantation.
[16] R. Malekzadeh,et al. Cytotoxicity of 111In-oxine on mesenchymal stem cells: a time-dependent adverse effect , 2008, Nuclear medicine communications.
[17] R. Upton. Organ weights and blood flows of sheep and pig for physiological pharmacokinetic modelling. , 2008, Journal of pharmacological and toxicological methods.
[18] M. Gobbi,et al. Direct intrabone transplant of unrelated cord-blood cells in acute leukaemia: a phase I/II study. , 2008, The Lancet. Oncology.
[19] R Laforest,et al. Image quality with non-standard nuclides in PET. , 2008, The quarterly journal of nuclear medicine and molecular imaging : official publication of the Italian Association of Nuclear Medicine (AIMN) [and] the International Association of Radiopharmacology (IAR), [and] Section of the Society of....
[20] Habib Zaidi,et al. PET versus SPECT: strengths, limitations and challenges , 2008, Nuclear medicine communications.
[21] S. Ikehara,et al. Prevention of graft‐versus‐host disease by intrabone marrow injection of donor T cells: involvement of bone marrow stromal cells , 2008, Clinical and experimental immunology.
[22] S. Okazaki,et al. Analyses of Very Early Hemopoietic Regeneration After Bone Marrow Transplantation: Comparison of Intravenous and Intrabone Marrow Routes , 2007, Stem cells.
[23] 大前 麻理子. Long-term maintenance of donor-derived hematopoiesis by intra-bone marrow-bone marrow transplantation , 2007 .
[24] O. Kollet,et al. How do stem cells find their way home? , 2005, Blood.
[25] Todd E DeFor,et al. Transplantation of 2 partially HLA-matched umbilical cord blood units to enhance engraftment in adults with hematologic malignancy. , 2005, Blood.
[26] L. Xia,et al. Surface fucosylation of human cord blood cells augments binding to P-selectin and E-selectin and enhances engraftment in bone marrow. , 2004, Blood.
[27] S. Ikehara,et al. Successful allogeneic leg transplantation in rats in conjunction with intra-bone marrow injection of donor bone marrow cells1 , 2003, Transplantation.
[28] J. Wagner,et al. Rapid and complete donor chimerism in adult recipients of unrelated donor umbilical cord blood transplantation after reduced-intensity conditioning. , 2003, Blood.
[29] J. Dick,et al. Rapid myeloerythroid repopulation after intrafemoral transplantation of NOD-SCID mice reveals a new class of human stem cells , 2003, Nature Medicine.
[30] K. Ando,et al. A highly sensitive strategy for SCID-repopulating cell assay by direct injection of primitive human hematopoietic cells into NOD/SCID mice bone marrow. , 2003, Blood.
[31] H. Nakauchi,et al. Successful multilineage engraftment of human cord blood cells in pigs after in utero transplantation , 2003, Transplantation.
[32] S. Ikehara,et al. SCID-repopulating cell activity of human cord blood-derived CD34- cells assured by intra-bone marrow injection. , 2003, Blood.
[33] J Wagner,et al. Transplantation of unrelated donor umbilical cord blood in 102 patients with malignant and nonmalignant diseases: influence of CD34 cell dose and HLA disparity on treatment-related mortality and survival. , 2002, Blood.
[34] D. Heilman,et al. Analysis of engraftment, graft-versus-host disease, and immune recovery following unrelated donor cord blood transplantation. , 2000, Blood.
[35] M. Sykes,et al. Human–porcine receptor–ligand compatibility within the immune system: relevance for xenotransplantation , 1999, Xenotransplantation.
[36] P. Aspelin,et al. Intraosseous compared to intravenous infusion of allogeneic bone marrow , 1998, Bone Marrow Transplantation.
[37] J. Kearney,et al. AC133, a novel marker for human hematopoietic stem and progenitor cells. , 1997, Blood.
[38] N. Kissoon,et al. INCIDENCE OF FAT AND BONE MARROW EMBOLISM WITH THE USE OF INTRAOSSEOUS INFUSION DURING CARDIO-PULMONARY RESUSCITATION. † 264 , 1996, Pediatric Research.
[39] M Al-Rubeai,et al. Estimation of disruption of animal cells by turbulent capillary flow , 1993, Biotechnology and bioengineering.
[40] J. Orlowski,et al. The safety of intraosseous infusions: Risks of fat and bone marrow emboli to the lungs , 1989 .
[41] P. Fontanarosa,et al. A comparative study of peripheral to central circulation delivery times between intraosseous and intravenous injection using a radionuclide technique in normovolemic and hypovolemic canines. , 1989, The Journal of emergency medicine.
[42] J. Schoffstall,et al. Intraosseous crystalloid and blood infusion in a swine model. , 1989, The Journal of trauma.
[43] A. S. Wiener,et al. Transplantation , 1963 .
[44] A. A. Samwick,et al. INTRAMEDULLARY (STERNAL) TRANSFUSION OF HUMAN BONE MARROW: PRELIMINARY REPORT , 1940 .