Literature DB >> 22404870

An automatic wash method for dimethyl sulfoxide removal in autologous hematopoietic stem cell transplantation decreases the adverse effects related to infusion.

Andrés Sánchez-Salinas1, Valentín Cabañas-Perianes, Miguel Blanquer, María Juliana Majado, Carmen Luisa Insausti, Jorge Monserrat, Maria Victoria Sánchez-Ibáñez, Pilar Menchón, Ana García-Hernández, Joaquín Gómez-Espuch, Alfonso Morales, José M Moraleda.   

Abstract

BACKGROUND: Products cryopreserved with dimethyl sulfoxide (DMSO) in stem cell transplant (SCT) often cause many adverse effects during their infusion (major cardiovascular events, dyspnea … even death). These are especially frequent in pediatric patients. We tested if a fully automated and closed wash procedure (Sepax S-100, Biosafe) allowed us to maintain the absolute CD34+ cell number, cell viability, and engraftment potential, decreasing the untoward reactions. STUDY DESIGN AND METHODS: Forty-six washes of DMSO cryopreserved peripheral blood hematopoietic progenitor (HP) apheresis were studied. Blood aliquots were taken both after thawing and after washing to assess the total nucleated and CD34+ cell counts, as well as cell viability. The washed products were infused in 26 autologous SCTs (ASCTs). Results were compared with the 53 previous SCTs performed without DMSO removal.
RESULTS: After washing there were no significant differences between the pre- and postwashing CD34+ cell counts (p=0.08) or viability (p=0.68). No significant differences were observed between washed and nonwashed infusions in relation to the day of the neutrophil (p=0.46) and platelet (p=0.26) engraftment. One adverse event, abdominal pain, occurred during the washed cells infusions. When compared with the 14 untoward reactions that took place during the nonwashed HP infusions, significance was reached (p=0.00043).
CONCLUSIONS: The automatic method described is effective in terms of CD34+ cell recovery and viability in ASCT. Moreover, Sepax decreased significantly the untoward reactions during the infusion.
© 2012 American Association of Blood Banks.

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Year:  2012        PMID: 22404870     DOI: 10.1111/j.1537-2995.2012.03585.x

Source DB:  PubMed          Journal:  Transfusion        ISSN: 0041-1132            Impact factor:   3.157


  6 in total

1.  Adverse reactions during stem cell infusion in children treated with autologous and allogeneic stem cell transplantation.

Authors:  T H Truong; R Moorjani; D Dewey; G M T Guilcher; N L Prokopishyn; V A Lewis
Journal:  Bone Marrow Transplant       Date:  2016-01-11       Impact factor: 5.483

2.  Essential requirements for setting up a stem cell processing laboratory.

Authors:  T Leemhuis; D Padley; C Keever-Taylor; D Niederwieser; T Teshima; F Lanza; C Chabannon; P Szabolcs; A Bazarbachi; M B C Koh
Journal:  Bone Marrow Transplant       Date:  2014-06-16       Impact factor: 5.483

3.  Automated washing of autologous hematopoietic stem cell grafts after thawing does not impair engraftment.

Authors:  B Calmels; A Drezet; C Huynh; A Autret; A-M Stoppa; R Bouabdallah; D Coso; C Malenfant; C Lemarié; C Chabannon
Journal:  Bone Marrow Transplant       Date:  2014-06-02       Impact factor: 5.483

4.  Standing surface acoustic wave (SSAW)-based cell washing.

Authors:  Sixing Li; Xiaoyun Ding; Zhangming Mao; Yuchao Chen; Nitesh Nama; Feng Guo; Peng Li; Lin Wang; Craig E Cameron; Tony Jun Huang
Journal:  Lab Chip       Date:  2015-01-07       Impact factor: 6.799

5.  Dimethyl Sulfoxide Leads to Decreased Osteogenic Differentiation of Stem Cells Derived from Gingiva via Runx2 and Collagen I Expression.

Authors:  Hyunjin Lee; Jun-Beom Park
Journal:  Eur J Dent       Date:  2019-10-01

Review 6.  Autologous Stem Cell Transplantation in Multiple Myeloma: Where Are We and Where Do We Want to Go?

Authors:  Sonia Morè; Laura Corvatta; Valentina Maria Manieri; Francesco Saraceni; Ilaria Scortechini; Giorgia Mancini; Alessandro Fiorentini; Attilio Olivieri; Massimo Offidani
Journal:  Cells       Date:  2022-02-10       Impact factor: 6.600

  6 in total

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