Prognosis of patients with graft failure is dismal, and re-transplantation is the sole option for long-term survival. Currently, there is no consensus concerning therapeutic options in patients with primary or secondary (within the 60 days post-transplantation) graft failure and finding a new donor within an acceptable delay is challenging. Literature is poor on the subject while the overall survival of such patients is about 30% at 1 year. This situation thus represents today a very challenging unmet medical need. Recently, haploidentical (haplo) related donor Stem Cell Transplantation (haplo-SCT) have improved dramatically outcomes using T-cell replete grafts with administration of post-transplantation cyclophosphamide (PTCy, which targets alloreactive T cells generated early after an HLA-mismatched transplant, sparing regulatory T cells and leaving unaffected the non-dividing hematopoietic stem cells) and standard post-transplant immune suppression with a calcineurin inhibitor (CNI) and mycophenolate mofetil. Our group re-transplanted a patient who experienced two consecutive graft failures and was successfully managed through a third haplo-SCT from her son using PTCy. We then retrospectively collected and analyzed data from 26 primary graft failure patients transplanted between 2011 and 2017 in 15 centers on behalf of French Society for Stem Cell Transplantation and Cell Therapy (SFGM-TC). The study population consisted mainly of patients with primary or secondary (within the 60 days post-transplantation) graft failure who underwent haplo-SCT and received PTCy as graft-versus-host-disease prophylaxis. The 1-year overall survival was about 60% suggesting that this approach might be a valid option in this particular poor clinical situation but now need validation through a phase II multicenter, national, prospective cohort study.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
OTHER
Masking
NONE
Enrollment
35
Conditioning regimen Fludarabine (30mg/m2/day from day -6 to day -4), Cyclophosphamide (14.5 mg/kg/day at day -6 and day -5) except for patients who received a total dose of Cyclophosphamide \>100mg/Kg during the first Bone Marrow Transplantation Total Body Irradiation (2 Gray on day -1). Source of stem cell source Peripheral blood stem cell Minimal target dose of 4.106 CD34+ cells/kg of recipient GvHD prophylaxis Cyclophosphamide 50 mg/Kg/day at D+3 and D+4 Ciclosporine from day+5 (residual 200 à 300ng/l) Mycophenolate mofetyl at 15mg/Kg x2/day from day+5 Prevention of EBV reactivation Rituximab : 150mg/m2 intravenously at Day+5 post Haplo-SCT Each infusion of Rituximab will be preceded by administration of anti-pyretic and an antihistaminic.
Overall Survival
Time frame: at one year
Graft failure incidence
Time frame: at 3 months
Neutrophils engraftment
3 consecutive days with neutrophiles \>0.5 G/L
Time frame: at day 100
Platelets engraftment
7 consecutive days with platelets \>20 G/L
Time frame: at day 100
Absolute numbers of neutrophils
Time frame: at 1 month
Absolute numbers of neutrophils
Time frame: at 2 months
Absolute numbers of neutrophils
Time frame: at 3 months
Absolute numbers of neutrophils
Time frame: at 6 months
Absolute numbers of neutrophils
Time frame: at 12 months
Absolute numbers of neutrophils
Time frame: through study completion, an average of 6 months
Absolute number of platelets
Time frame: at one month
Absolute number of platelets
Time frame: at 2 months
Absolute number of platelets
Time frame: at 3 months
Absolute number of platelets
Time frame: at 6 months
Absolute number of platelets
Time frame: at 12 months
Absolute number of platelets
Time frame: through study completion, an average of 6 months
Incidence of use of growth factors for poor hematopoietic reconstitution
Time frame: at 3 months
Acute GvHD incidence
Time frame: at 3 months
Chronic GvHD incidence
Time frame: at 24 months
Relapse incidence
Time frame: at 12 months
Relapse incidence
Time frame: at 24 months
Progression free survival
Time frame: at 12 months
Progression free survival
Time frame: at 24 months
Incidence of CMV infection
Time frame: at 12 months
Incidence of EBV infection
Time frame: at 12 months
Incidence of severe infections
Severe infections are defined as CTAE grade of 3 or 4
Time frame: at 3 months
Incidence of severe infections
Severe infections are defined as CTAE grade of 3 or 4
Time frame: at 6 months
Incidence of severe infections
Severe infections are defined as CTAE grade of 3 or 4
Time frame: at 12 months
Incidence of severe infections
Severe infections are defined as CTAE grade of 3 or 4
Time frame: at 24 months
Incidence of veino-occlusive disease (VOD)
Time frame: at 3 months
Severity of veino-occlusive disease (VOD)
Time frame: at 3 months
Non-relapse mortality
Time frame: at 24 months
Incidence of cardiac toxicities
Time frame: at 12 months
Overall survival
Time frame: at 24 months
Interval between first allo-SCT and rescue haplo-SCT
Time frame: at 60 days
Quality of life for adults
Quality of life will be assessed for adults using "European Organization for Research and Treatment of Cancer Quality of Life Questionnaire" EORTC QLQ-C30-V3 questionnaire.The QLQ-C30 is composed of both multi-item scales and single-item measures. All of the scales and single-item measures range in score from 0 to 100. A high scale score represents a higher response level.
Time frame: at 3 months
Quality of life for adults
Quality of life will be assessed for adults using "European Organization for Research and Treatment of Cancer Quality of Life Questionnaire" EORTC QLQ-C30-V3 questionnaire.The QLQ-C30 is composed of both multi-item scales and single-item measures. All of the scales and single-item measures range in score from 0 to 100. A high scale score represents a higher response level.
Time frame: at 6 months
Quality of life for adults
Quality of life will be assessed for adults using "European Organization for Research and Treatment of Cancer Quality of Life Questionnaire" EORTC QLQ-C30-V3 questionnaire.The QLQ-C30 is composed of both multi-item scales and single-item measures. All of the scales and single-item measures range in score from 0 to 100. A high scale score represents a higher response level.
Time frame: at 12 months
Quality of life for adults
Quality of life will be assessed for adults using "European Organization for Research and Treatment of Cancer Quality of Life Questionnaire" EORTC QLQ-C30-V3 questionnaire.The QLQ-C30 is composed of both multi-item scales and single-item measures. All of the scales and single-item measures range in score from 0 to 100. A high scale score represents a higher response level.
Time frame: at 24 months
Quality of life for minors
Quality of life will be assessed for minor using The Pediatric Quality of Life Inventory™ (PedsQL™) The 36-item PedsQL™ Family Impact Module is a parent-report instrument designed to assess the impact of pediatric chronic health conditions on parents and the family. It includes 6 subscales measuring parents' self-reported functioning. The scale has five Likert response options, 'never', 'almost never', 'sometimes', 'often' and 'almost always' (corresponding to scores of 100, 75, 50, 25 and 0). Higher scores indicate better functioning
Time frame: at 3 months
Quality of life for minors
Quality of life will be assessed for minor using The Pediatric Quality of Life Inventory™ (PedsQL™) The 36-item PedsQL™ Family Impact Module is a parent-report instrument designed to assess the impact of pediatric chronic health conditions on parents and the family. It includes 6 subscales measuring parents' self-reported functioning. The scale has five Likert response options, 'never', 'almost never', 'sometimes', 'often' and 'almost always' (corresponding to scores of 100, 75, 50, 25 and 0). Higher scores indicate better functioning
Time frame: at 6 months
Quality of life for minors
Quality of life will be assessed for minor using The Pediatric Quality of Life Inventory™ (PedsQL™) The 36-item PedsQL™ Family Impact Module is a parent-report instrument designed to assess the impact of pediatric chronic health conditions on parents and the family. It includes 6 subscales measuring parents' self-reported functioning. The scale has five Likert response options, 'never', 'almost never', 'sometimes', 'often' and 'almost always' (corresponding to scores of 100, 75, 50, 25 and 0). Higher scores indicate better functioning
Time frame: at 12 months
Quality of life for minors
Quality of life will be assessed for minor using The Pediatric Quality of Life Inventory™ (PedsQL™) The 36-item PedsQL™ Family Impact Module is a parent-report instrument designed to assess the impact of pediatric chronic health conditions on parents and the family. It includes 6 subscales measuring parents' self-reported functioning. The scale has five Likert response options, 'never', 'almost never', 'sometimes', 'often' and 'almost always' (corresponding to scores of 100, 75, 50, 25 and 0). Higher scores indicate better functioning
Time frame: at 24 months
Proportion of patients with a donor chimerism of 90% or more
Time frame: at 1 month
Proportion of patients with a donor chimerism of 90% or more
Time frame: at 3 months
Proportion of patients with a donor chimerism of 90% or more
Time frame: at 6 months
Proportion of patients with a donor chimerism of 90% or more
Time frame: at 12 months
Immune reconstitution
Immune reconstitution will be defined by analyzing T, B, NK, regulatory T cell levels in the peripheral blood
Time frame: at 3 months post-transplantation
Immune reconstitution
Immune reconstitution will be defined by analyzing T, B, NK, regulatory T cell levels in the peripheral blood
Time frame: at 6 months post-transplantation
Immune reconstitution
Immune reconstitution will be defined by analyzing T, B, NK, regulatory T cell levels in the peripheral blood
Time frame: at 12 months post-transplantation
Immune reconstitution
Immune reconstitution will be defined by analyzing T, B, NK, regulatory T cell levels in the peripheral blood
Time frame: at 24 months post-transplantation
Iron overload estimation
Time frame: at 3 months
Iron overload estimation
Time frame: at 6 months
Iron overload estimation
Time frame: at 12 months
Iron overload estimation
Time frame: at 24 months
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