Mobilization and Collection of HSC
Author:
Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-030-02278-5_15
Reference18 articles.
1. Abrahamsen JF, Stamnesfet S, Liseth K, et al. Large-volume leukapheresis yields more viable CD34+ cells and colony-forming units than normal-volume leukapheresis, especially in patients who mobilize low numbers of CD34+ cells. Transfusion. 2005;45:248–53.
2. Cheng J, Schmitt M, Wuchter P, et al. Plerixafor is effective given either preemptively or as a rescue strategy in poor stem cell mobilizing patients with multiple myeloma. Transfusion. 2015;55:275–83.
3. Donmez A, Tombuloglu M, Gungor A, et al. Clinical side effects during peripheral blood progenitor cell infusion. Transfus Apher Sci. 2007;36:95–101.
4. Gertz MA. Current status of stem cell mobilization. Br J Haematol. 2010;150:647–62.
5. Giralt S, Costa L, Schriber J, et al. Optimizing autologous stem cell mobilization strategies to improve patient outcomes: consensus guidelines and recommendations. Biol Blood Marrow Transplant. 2014;20:295–308.
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1. Plerixafor in autologous stem cell transplantation: Does it affect engraftment kinetics?;Transfusion and Apheresis Science;2023-12
2. Mobilization-based engraftment of haematopoietic stem cells: a new perspective for chemotherapy-free gene therapy and transplantation;British Medical Bulletin;2023-07-17
3. Age, CD34+ cell dose, conditioning and pre‐transplant cytopenias can help predict transfusion support in lymphoma patients undergoing autologous stem cell transplantation;Vox Sanguinis;2023-06-25
4. Hematopoietic reconstitution dynamics of mobilized- and bone marrow-derived human hematopoietic stem cells after gene therapy;Nature Communications;2023-05-27
5. Genetic engineering meets hematopoietic stem cell biology for next-generation gene therapy;Cell Stem Cell;2023-05
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