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  • 1
    In: Blood, American Society of Hematology, Vol. 138, No. Supplement 1 ( 2021-11-05), p. 3892-3892
    Abstract: Introduction. Prevention of graft-versus-host disease (GvHD) following allogeneic hematopoietic cell transplantation (AHCT) remains a major challenge. The combination of methotrexate (MTX) and a calcineurin inhibitor has been the standard regimen for prophylaxis in patients receiving matched sibling donor (MSD) or matched unrelated donor (MUD) transplants for the past few decades. However, over 50% of patients undergoing AHCT still develop acute or chronic GvHD or even both, causing high rates of morbidity and mortality. Moreover, calcineurin inhibitors also have untoward toxic side effects. High dose post-transplant cyclophosphamide (PTCy), initially introduced for GvHD prevention in the setting of haploidentical transplantation, has now been studied in MSD and MUD transplants. We adopted a novel approach to prevent GvHD using a short course of PTCy and bortezomib. We hypothesized that such combination is safe and effective and omits the need for calcineurin or m-TOR inhibitors. Study Design. We report the outcomes of a prospective cohort of patients who received PTCy and bortezomib for GvHD prevention following MSD or MUD transplants. Twenty-eight patients were treated in a phase I-II trial and their clinical outcomes were previously reported (al-Homsi AS et al, BBMT 2019). Most of the remaining patients were treated on an extension trial. GvHD prevention consisted of PTCy 50 mg/kg IV on day +3 and +4, and bortezomib 1.3mg/m 2 IV 6 hours after transplant and again 72 hours after. Patients receiving MUD transplants also received rabbit ATG (thymoglobulin®) 5mg/kg total IV fractionated on day -4 to -2. All patients received peripheral blood grafts and standard supportive care as per Institutional policy. G-CSF was administered routinely until neutrophil engraftment. Results. Fifty-eight patients are included in this analysis. Median age was 60 (range 22-78) years. Fifty-three percent of patients were male. Underlying malignancies consisted of myeloid and lymphoid malignancies in 79.3% and 20.6%, respectively. Acute myeloid leukemia (50%) and myelodysplastic syndromes (24.1%) were the most common diseases. At transplant, disease risk index was low, intermediate, high and very high in 19.0%, 48.3%, 31.0% and 1.7% of patients, respectively. Median Pretransplant Assessment of Mortality Score (PAM) was 16.7 (5.4-29.4). Grafts were from MSD in 24.1% or MUD in 75.9% of patients. Recipient (R)/Donor (D) CMV status at transplant was as follows: R+/D+: 43%; R+/D-: 21%; R-/D+: 14% and R-/D-: 22%. Conditioning regimens consisted of reduced intensity fludarabine and busulfan in all but 2 patients who were conditioned with myeloablative fludarabine and busulfan. Overall, the regimen was remarkably well tolerated. Median times to neutrophil and platelet engraftment were 16 (13-28) and 26 (15-57) days respectively. No patient experienced primary graft failure. CMV and EBV reactivation rates were 46.6% and 24%. Cumulative incidences of grade II-IV and grade III-IV acute GVHD were 35% (95% CI: 22%-47%) and 15% (95% CI: 7%-25%) at day +120, respectively. Cumulative incidence of chronic GvHD was 14% at 1 year . Overall, 34% of patients required immunosuppression with systemic steroids after day +4 either for grade III-IV acute or chronic GvHD. Disease relapse rate was 26%. One-year cumulative incidence of transplant-related mortality was 14% (95% CI: 6%-25%). Median overall survival was 30.7 (95% CI: 15.7-not yet reached) months. One-year overall survival was 72% (95% CI: 57%-82%). One-year composite GvHD (acute and chronic) free and relapse free survival (GRFS) was 41.6% (95% CI: 28.9%-54%). Conclusion. PTCy and bortezomib combination for GvHD prophylaxis following MSD and MUD transplants is well tolerated and effective. It offers an alternative regimen to calcineurin and m-TOR inhibitor-containing regimens and may be preferred in certain settings including patients with limited resources, poor medication compliance, and with impaired renal function. A comparison of this cohort to a matched control group of patients receiving methotrexate and cyclosporine for GvHD prevention is ongoing. Disclosures Abdul-Hay: Amgen: Membership on an entity's Board of Directors or advisory committees; Servier: Other: Advisory Board, Speakers Bureau; Jazz: Other: Advisory Board, Speakers Bureau; Abbvie: Consultancy; Takeda: Speakers Bureau. Al-Homsi: Celyad: Other: Advisory Board; Daichii Sanyko: Consultancy. OffLabel Disclosure: Cyclophosphamide and Bortezomib are used for GvHD prevention
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
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    Publisher: American Society of Hematology
    Publication Date: 2021
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  • 2
    In: Blood, American Society of Hematology, Vol. 138, No. Supplement 1 ( 2021-11-05), p. 3906-3906
    Abstract: The introduction of post-transplant cyclophosphamide (PTCy) has circumvented the need for T-cell depletion following haploidentical stem cell transplantation (SCT). By expanding the donor pool for patients from certain ethnic minorities, this has addressed to some degree an important health care disparity issue in SCT. However, a recent registry study showed increased incidence GvHD and inferior outcomes in patients receiving haploidentical SCT with PTCy, tacrolimus and mycophenolate mofetil for GvHD prevention as opposed to matched unrelated donor SCT with PTCy-based GvHD prevention. Seeking to improve the results of GvHD prevention in the setting of haploidentical SCT, we examined a combination of PTCy, abatacept and a short course of tacrolimus (CAST). Abatacept is a recombinant soluble fusion protein composed of the extracellular domain of cytotoxic T-lymphocyte associated antigen-4 (CTLA-4) fused to the Fc region of IgG1. Abatacept blocks CD28-CD80I86 axis and prevents T-cell co-stimulation. In early studies, abatacept has shown promising results when added to methotrexate and tacrolimus in matched and mismatched donor SCT. We initiated a phase Ib-II clinical trial for patients with hematological malignancies undergoing haploidentical SCT. Patients received G-CSF mobilized peripheral blood grafts from related haploidentical donors. GvHD prevention consisted of PTCy 50mg/kg IV on day +3 and +4 with forced hydration, abatacept 10mg/kg IV on day +5, +14 and +28 and tacrolimus. Tacrolimus was started on day +5 at 0.02mg/kg/day by continuous IV and adjusted thereafter to maintain a trough level of 5-12ng/mL. Tacrolimus taper was planned to begin on day +60 and complete by day +90 in the absence of GvHD. All patients received standard supportive care including levofloxacin until neutrophil engraftment, posaconazole until day +75, acyclovir for 1 year and, if CMV positive by serology, letermovir until day +100. Pneumocystis Jiroveci prophylaxis was started after neutrophil engraftment and continued until 6 months post-transplant. G-CSF was administered routinely until neutrophil engraftment. Since September 2020, 19 patients were enrolled. Three patients are too early in their post-transplant course and were excluded from this analysis. Patients' characteristics are summarized in the table. All but 2 patients received cryopreserved products. Median times to ANC and platelet engraftment were 18.5 days (14-30) and 28.5 (16-61). All 16 patients achieved full whole blood donor chimerism by day +30. There was no secondary graft failure. With a median follow-up was 149.5 days (41-308) with 10 patients having & gt;120 days and 8 & gt;180 days of follow-up, 4 patients developed skin acute GvHD (all grade I). No patient developed grade II-IV acute GvHD. Two patients developed skin chronic GvHD (limited, both moderate). Both cases were diagnosed following COVID-19 vaccination. Fifteen patients completed tacrolimus taper by day +90. Two patients received systemic steroids, one for treatment of cGvHD. The remaining patients required no further immunosuppressive therapy beyond day +90. CMV activation rate was 25%. One patient had EBV reactivation and required preemptive therapy with 2 weekly rituximab doses. There were no cases of adenovirus, HHV-6 virus or BK virus reactivation. Four patients developed renal insufficiency (3 in the setting of acute sepsis and 1 with thrombotic microangiopathy, which resolved after tapering off tacrolimus. One patient with adult T-cell leukemia/lymphoma relapsed and died. All other patients are alive and well. In summary, our preliminary results suggest that CAST with shortened course of tacrolimus is feasible and seems to offer very promising outcomes with low rates of acute GvHD. The study is accruing actively and the results of a larger cohort with longer follow-up will be presented at the meeting. If confirmed, by improving the outcomes of haploidentical SCT, this regimen may further address a health care disparity issue, offering almost every patient in need of allogeneic SCT an alternative donor option with equal outcomes. Figure 1 Figure 1. Disclosures Al-Homsi: Daichii Sanyko: Consultancy; Celyad: Other: Advisory Board. Abdul-Hay: Abbvie: Consultancy; Servier: Other: Advisory Board, Speakers Bureau; Jazz: Other: Advisory Board, Speakers Bureau; Takeda: Speakers Bureau; Amgen: Membership on an entity's Board of Directors or advisory committees. OffLabel Disclosure: Abatacept - off label use as GvHD prevention Cyclophosphamide - off label use as GvHD prevention
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    ISSN: 0006-4971 , 1528-0020
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    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2021
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  • 3
    In: Blood, American Society of Hematology, Vol. 136, No. Supplement 1 ( 2020-11-5), p. 40-41
    Abstract: Background CYAD-01 is a T-cell product engineered to express a chimeric antigen receptor (CAR) based on the NKG2D receptor (NKG2D CAR) which binds 8 ligands (MICA/B, ULBP1-6) over-expressed by a large variety of malignancies, including acute myeloid leukemia (AML) and myelodysplastic syndrome (MDS). The phase I THINK study (NCT03018405) evaluated the safety and clinical activity of multiple injections of CYAD-01 infused every 2 weeks, without preconditioning chemotherapy, in 13 relapsed/refractory (r/r) AML and MDS patients. While an encouraging objective response rate according to ELN2017 (AML) or revised IPSS (MDS) and reduction in bone marrow blasts were seen with good safety profile, the responses were short-lived (≤ 3 months - see ASH 2019, poster 3826). To enhance CAR T-cell persistence, we evaluated a weekly dose schedule without preconditioning (THINK study) or the addition of cyclophosphamide and fludarabine (CyFlu) as a preconditioning regimen prior to CAR T-cell infusion (phase I DEPLETHINK study, NCT03466320). Aim To further increase persistence and potency of the T-cell product, optimization of the previously used mAb manufacturing process was performed by shortening the duration of production along with modification of PI3K inhibitor. This optimized manufacturing process (termed "OptimAb") aimed to generate CYAD-01 cells with a higher frequency of early memory T-cells with high cytokine secretion upon activation, as compared to the original "mAb" process. Results As compared to the previous mAb manufacturing process, the OptimAb manufacturing process generates a product that secretes higher levels of IFN-γ upon co-culture with tumor cells and contains a higher frequency of CD62L+ T-cells in vitro, characteristic of an early memory phenotype. In an in vivo aggressive AML (THP-1) model, CYAD-01 OptimAb displayed a strong improvement in long-term anti-tumor activity as compared to the CYAD-01 mAb at the same dose chosen to have a minimal anti-tumor activity (stress-test dose, see figure). Based on these results, both THINK and DEPLETHINK clinical studies were amended to evaluate the OptimAb process. As of August 2020, 5 patients have been treated with multiple infusions of the OptimAb CYAD-01 as standalone treatment at the dose of 3x108 cells/infusion in the small expansion segment of the THINK study. 7 patients were treated with a single infusion of OptimAb CYAD-01 administered after a CyFlu preconditioning in the dose-escalation segment at the doses of 3x108 cells/infusion or 1x109 cells/infusion in the DEPLETHINK study. To date, the results demonstrate the safety and tolerability for CYAD-01 OptimAb with or without a prior lymphodepletion in patients with r/r AML and MDS. Preliminary data of the clinical and pharmacokinetics evaluation of CYAD-01 manufactured with the improved OptimAb process, as compared with the mAb process at the same dose, in two Phase I studies will be provided at the time of presentation. Conclusion/summary The autologous CYAD-01, a first generation NKG2D CAR T-cell product is currently investigated in r/r AML/MDS patients, a difficult to target disease due in part to the absence of truly AML-specific surface antigens, its rapid clinical progression and the absence of disease control by the CyFLu preconditioning. CYAD-01 manufactured using an optimized process, OptimAb, aims to improve CAR T-cell persistence and clinical responses. The data analysis of the same CAR-T product with different manufacturing processes, with or without preconditioning chemotherapy, will provide the medical community with clinical and scientific insights to guide the future of this therapeutic modality. Figure Disclosures Sallman: Agios, Bristol Myers Squibb, Celyad Oncology, Incyte, Intellia Therapeutics, Kite Pharma, Novartis, Syndax: Consultancy; Celgene, Jazz Pharma: Research Funding. Al-Homsi:Celyad: Membership on an entity's Board of Directors or advisory committees. Pollyea:Janssen: Consultancy; 47: Consultancy, Research Funding; Amgen: Consultancy; Genentech: Consultancy; Novartis: Consultancy; Karyopharm: Consultancy; Syndax: Consultancy; Syros: Consultancy; Abbvie: Consultancy, Research Funding; Daiichi Sankyo: Consultancy; Takeda: Consultancy; Pfizer: Consultancy; Celgene/BMS: Consultancy; Agios: Consultancy; Glycomimetics: Other. Wang:Abbvie: Consultancy; Pfizer: Speakers Bureau; Genentech: Consultancy; Stemline: Speakers Bureau; PTC Therapeutics: Consultancy; Macrogenics: Consultancy; Astellas: Consultancy; Bristol Meyers Squibb (Celgene): Consultancy; Jazz Pharmaceuticals: Consultancy. Demoulin:Celyad Oncology: Current Employment. Sotiropoulou:Celyad Oncology: Current Employment. Alcantar-Orozco:Celyad Oncology: Current Employment. Breman:Celyad Oncology: Current Employment. Dheur:Celyad Oncology: Current Employment. Braun:Celyad Oncology: Current Employment. Lonez:Celyad Oncology: Current Employment. Gilham:Celyad Oncology: Current Employment. Flament:Celyad Oncology: Current Employment. Lehmann:Celyad Oncology: Current Employment.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
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    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2020
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  • 4
    In: Blood, American Society of Hematology, Vol. 137, No. 4 ( 2021-01-28), p. 556-568
    Abstract: Social determinants of health, including poverty, contribute significantly to health outcomes in the United States; however, their impact on pediatric hematopoietic cell transplantation (HCT) outcomes is poorly understood. We aimed to identify the association between neighborhood poverty and HCT outcomes for pediatric allogeneic HCT recipients in the Center for International Blood and Marrow Transplant Research database. We assembled 2 pediatric cohorts undergoing first allogeneic HCT from 2006 to 2015 at age ≤18 years, including 2053 children with malignant disease and 1696 children with nonmalignant disease. Neighborhood poverty exposure was defined a priori per the US Census definition as living in a high-poverty ZIP code (≥20% of persons below 100% federal poverty level) and used as the primary predictor in all analyses. Our primary outcome was overall survival (OS), defined as the time from HCT until death resulting from any cause. Secondary outcomes included relapse and transplantation-related mortality (TRM) in malignant disease, acute and chronic graft-versus-host disease, and infection in the first 100 days post-HCT. Among children undergoing transplantation for nonmalignant disease, neighborhood poverty was not associated with any HCT outcome. Among children undergoing transplantation for malignant disease, neighborhood poverty conferred an increased risk of TRM but was not associated with inferior OS or any other transplantation outcome. Among children with malignant disease, a key secondary finding was that children with Medicaid insurance experienced inferior OS and increased TRM compared with those with private insurance. These data suggest opportunities for future investigation of the effects of household-level poverty exposure on HCT outcomes in pediatric malignant disease to inform care delivery interventions.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
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    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2021
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  • 5
    In: Blood Advances, American Society of Hematology, Vol. 6, No. 1 ( 2022-01-11), p. 339-357
    Abstract: The role of haploidentical hematopoietic cell transplantation (HCT) using posttransplant cyclophosphamide (PTCy) for acute lymphoblastic leukemia (ALL) is being defined. We performed a retrospective, multivariable analysis comparing outcomes of HCT approaches by donor for adults with ALL in remission. The primary objective was to compare overall survival (OS) among haploidentical HCTs using PTCy and HLA-matched sibling donor (MSD), 8/8 HLA-matched unrelated donor (MUD), 7 /8 HLA-MUD, or umbilical cord blood (UCB) HCT. Comparing haploidentical HCT to MSD HCT, we found that OS, leukemia-free survival (LFS), nonrelapse mortality (NRM), relapse, and acute graft-versus-host disease (aGVHD) were not different but chronic GVHD (cGVHD) was higher in MSD HCT. Compared with MUD HCT, OS, LFS, and relapse were not different, but MUD HCT had increased NRM (hazard ratio [HR], 1.42; P = .02), grade 3 to 4 aGVHD (HR, 1.59; P = .005), and cGVHD. Compared with 7/8 UD HCT, LFS and relapse were not different, but 7/8 UD HCT had worse OS (HR, 1.38; P = .01) and increased NRM (HR, 2.13; P ≤ .001), grade 3 to 4 aGVHD (HR, 1.86; P = .003), and cGVHD (HR, 1.72; P ≤ .001). Compared with UCB HCT, late OS, late LFS, relapse, and cGVHD were not different but UCB HCT had worse early OS (≤18 months; HR, 1.93; P & lt; .001), worse early LFS (HR, 1.40; P = .007) and increased incidences of NRM (HR, 2.08; P & lt; .001) and grade 3 to 4 aGVHD (HR, 1.97; P & lt; .001). Haploidentical HCT using PTCy showed no difference in survival but less GVHD compared with traditional MSD and MUD HCT and is the preferred alternative donor HCT option for adults with ALL in complete remission.
    Type of Medium: Online Resource
    ISSN: 2473-9529 , 2473-9537
    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2022
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  • 6
    In: Blood Advances, American Society of Hematology, Vol. 4, No. 13 ( 2020-07-14), p. 3180-3190
    Abstract: There is a lack of large comparative study on the outcomes of reduced intensity conditioning (RIC) in acute myeloid leukemia (AML) transplantation using fludarabine/busulfan (FB) and fludarabine/melphalan (FM) regimens. Adult AML patients from Center for International Blood and Marrow Transplant Research who received first RIC allo-transplant between 2001 and 2015 were studied. Patients were excluded if they received cord blood or identical twin transplant, total body irradiation in conditioning, or graft-versus-host disease (GVHD) prophylaxis with in vitro T-cell depletion. Primary outcome was overall survival (OS), secondary end points were leukemia-free survival (LFS), nonrelapse mortality (NRM), relapse, and GVHD. Multivariate survival model was used with adjustment for patient, leukemia, and transplant-related factors. A total of 622 patients received FM and 791 received FB RIC. Compared with FB, the FM group had fewer transplant in complete remission (CR), fewer matched sibling donors, and less usage of anti-thymocyte globulin or alemtuzumab. More patients in the FM group received marrow grafts and had transplantation before 2005. OS was significantly lower within the first 3 months posttransplant in the FM group (hazard ratio [HR] = 1.82, P & lt; .001), but was marginally superior beyond 3 months (HR = 0.87, P = .05). LFS was better with FM compared with FB (HR = 0.89, P = .05). NRM was significantly increased in the FM group during the first 3 months of posttransplant (HR = 3.85, P & lt; .001). Long-term relapse was lower with FM (HR = 0.65, P & lt; .001). Analysis restricted to patients with CR showed comparable results. In conclusion, compared with FB, the FM RIC showed a marginally superior long-term OS and LFS and a lower relapse rate. A lower OS early posttransplant within 3 months was largely the result of a higher early NRM.
    Type of Medium: Online Resource
    ISSN: 2473-9529 , 2473-9537
    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2020
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  • 7
    In: Blood, American Society of Hematology, Vol. 136, No. Supplement 1 ( 2020-11-5), p. 27-28
    Abstract: Background Autologous CAR T-cell therapy targeting the B-cell maturation antigen (BCMA) has shown impressive objective response rates in patients with advanced multiple myeloma (MM). Clinical grade manufacturing of autologous CAR T-cells has limitations including vein-to-vein delivery time delay and potentially sub-optimal immunological capability of T-cells isolated from patients with advanced disease. Allogeneic CAR T-cell products, whereby cells from healthy third-party donors are used to generate an "off-the-shelf" CAR T-cell product, have the potential to overcome some of these issues. To circumvent the primary potential risk of graft-versus-host disease (GvHD) associated with the use of allogeneic T-cells, abrogation of the T-cell receptor (TCR) expression in the CAR T-cells, via gene editing, is being actively pursued. To avoid the potential safety risks and manufacturing challenges associated with gene editing, the allogeneic CYAD-211 CAR T-cell product exploits short hairpin RNA (shRNA) interference technology to down-regulate TCR expression thus avoiding the risk of life-threatening GvHD. Aim The aim is to generate a BCMA-specific allogeneic CAR T-cell product using a non-gene editing approach and study its activity both in vitro and in vivo. CYAD-211 combines a BCMA-specific CAR with a single optimized shRNA targeting the TCR CD3ζ subunit. Downregulation of CD3ζ impairs the TCR expression on the surface of the donor T-cells, preventing their reactivity with the normal host tissue cells and potential GvHD induction. Maintaining all the elements required for the therapy within a single vector (all-in-one vector) provides some significant manufacturing advantages, as a solitary selection step will isolate cells expressing all the desired traits. Results CYAD-211 cells produce high amounts of interferon-gamma (IFN-γ) during in vitro co-cultures with various BCMA-expressing MM cell lines (i.e., RPMI-8226, OPM-2, U266, and KMS-11). Cytotoxicity experiments confirmed that CYAD-211 efficiently kills MM cell lines in a BCMA-specific manner. The anti-tumor efficacy of CYAD-211 was further confirmed in vivo, in xenograft MM models using the RPMI-8226 and KMS-11 cell lines. Preclinical data also showed no demonstrable evidence of GvHD when CYAD-211 was infused in NSG mice confirming efficient inhibition of TCR-induced activation. Following FDA acceptance of the IND application, IMMUNICY-1, a first-in-human, open-label dose-escalation phase I clinical study evaluating the safety and clinical activity of CYAD-211 for the treatment of relapsed or refractory MM patients to at least two prior MM treatment regimens, is scheduled to begin recruitment. IMMUNICY-1 will evaluate three dose-levels of CYAD-211 (3x107, 1x108 and 3x108 cells/infusion) administered as a single infusion after a non-myeloablative conditioning (cyclophosphamide 300 mg/m²/day and fludarabine 30 mg/m²/day, daily for 3 days) according to a classical Fibonacci 3+3 design. Description of the study design and preliminary safety and clinical data from the first cohort will be presented at ASH 2020. Conclusion CYAD-211 is the first generation of non-gene edited allogeneic CAR T-cell product based on shRNA technology. The IMMUNICY-1 clinical study seeks to provide proof of principle that single shRNA-mediated knockdown can generate fully functional allogeneic CAR T-cells in humans without GvHD-inducing potential. We anticipate that subsequent generations of this technology will incorporate multiple shRNA hairpins within a single vector system. This will enable the production of allogeneic CAR T-cells in which multiple genes of interest are modulated simultaneously thereby providing a platform approach that can underpin the future of this therapeutic modality. Figure 1 Disclosures Al-Homsi: Celyad: Membership on an entity's Board of Directors or advisory committees. Brayer:Janssen: Consultancy; Bristol-Myers Squibb, WindMIL Therapeutics: Research Funding; Bristol-Myers Squibb, Janssen, Amgen: Speakers Bureau. Nishihori:Novartis: Other: Research support to institution; Karyopharm: Other: Research support to institution. Sotiropoulou:Celyad Oncology: Current Employment. Twyffels:Celyad Oncology: Current Employment. Bolsee:Celyad Oncology: Current Employment. Braun:Celyad Oncology: Current Employment. Lonez:Celyad Oncology: Current Employment. Gilham:Celyad Oncology: Current Employment. Flament:Celyad Oncology: Current Employment. Lehmann:Celyad Oncology: Current Employment.
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    ISSN: 0006-4971 , 1528-0020
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    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2020
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  • 8
    In: Blood, American Society of Hematology, Vol. 134, No. Supplement_1 ( 2019-11-13), p. 3844-3844
    Abstract: CYAD-01 cells are engineered T-cells expressing a chimeric antigen receptor (CAR) based on the natural full-length human natural killer group 2D (NKG2D) receptor fused to the intracellular domain of CD3ζ. NKG2D binds to 8 ligands (MICA, MICAB, and ULBP1-6) over-expressed by a large variety of malignancies, including acute myeloid leukemia (AML) and myelodysplastic syndrome (MDS). Phase I DEPLETHINK study (NCT03466320) evaluates the safety and preliminary efficacy of a single CYAD-01 infusion (inf.) after lymphodepletion with cyclophosphamide and fludarabine in patients with relapsed or refractory (r/r) AML and MDS. A second cycle of 3 CYAD-01 infusions without preconditioning could be administered in absence of progressive disease (PD) following the 1st infusion. Three dose-levels (DLs; 1x108, 3x108 and 1x109 cells/inf.) are evaluated in the dose escalation segment. The first DL is also evaluated at two different intervals between preconditioning and CYAD-01 infusion (T7: seven days interval; T3: three days interval) in order to mitigate for any potential increased toxicity due to the administration of lymphodepletion. As of end of July 2019, 6 patients (4 AML and 2 MDS) were enrolled in the first 2 cohorts which evaluated DL1 (1x108 cells/inf. at T3 or T7) and 3 patients (3 AML) were enrolled in the cohort 3 evaluating DL2 (3x108 cells/inf. at T3). The blasts in the bone marrow of 8 out of 9 patients ranged between 3% and 48% at baseline. Of the 6 patients treated at DL1 (with lymphodepletion administered up to 7 or 3 days before first CYAD-01 infusion), 3 patients experienced grade (G) 1 toxicity (cytokine release syndrome or CRS and diarrhea), or G2 CRS (uncleaned database). The patient with G2 CRS following the first infusion also experienced G4 CRS and G3 CAR T-cell-related encephalopathy syndrome (CRES) during the second inf. at 3x109 cells/inf. One other patient experienced G1 CRS during the second cycle. At DL2, only 1 patient experienced G1 related AEs (diarrhea and CRS) after the first CYAD-01 infusion. Another patient experienced G3 CRS during the second cycle. All patients recovered with treatment including tocilizumab and, when indicated, steroids. At DL1, two out of 5 evaluable patients reached a stable disease (SD) at day (d) 36, allowing the initiation of the 2nd cycle. At DL2, one patient out of 3 reached SD. The DEPLETHINK study is currently enrolling at DL3 (T3). Preliminary correlative studies show that the area under the curve at d36 (AUC D1-D36) after a single infusion of CYAD-01 with prior lymphodepletion is better than without preconditioning. Furthermore, the T3 interval between the preconditioning and CYAD-01 provides better engraftment than the T7 interval. In conclusion, to date, the results demonstrate the safety and tolerability for CYAD-01 doses 1x108 and 3x108 cells/infusion with a prior lymphodepletion in patients with r/r AML and MDS. The T3 interval was therefore chosen for further CYAD-01 evaluations. The improved persistence of CYAD-01 with lymphodepletion, in particular 3 days before infusion, could lead to improved clinical responses. The study is ongoing and further data will be provided at the meeting. Disclosures Al-Homsi: Celyad: Membership on an entity's Board of Directors or advisory committees. Abdul-Hay:Takeda: Membership on an entity's Board of Directors or advisory committees, Speakers Bureau. Pollyea:Diachii Sankyo: Consultancy, Membership on an entity's Board of Directors or advisory committees; Pfizer: Consultancy, Membership on an entity's Board of Directors or advisory committees, Research Funding; Celyad: Consultancy, Membership on an entity's Board of Directors or advisory committees; Celgene: Consultancy, Membership on an entity's Board of Directors or advisory committees; Abbvie: Consultancy, Membership on an entity's Board of Directors or advisory committees, Research Funding; Agios: Consultancy, Membership on an entity's Board of Directors or advisory committees; Astellas: Consultancy, Membership on an entity's Board of Directors or advisory committees; Janssen: Consultancy, Membership on an entity's Board of Directors or advisory committees; Gilead: Consultancy, Membership on an entity's Board of Directors or advisory committees; Forty-Seven: Consultancy, Membership on an entity's Board of Directors or advisory committees; Takeda: Consultancy, Membership on an entity's Board of Directors or advisory committees. Lequertier:Celyad: Employment. Alcantar-Orozco:Celyad: Employment. Borghese:Celyad: Employment. Lonez:Celyad: Employment. Braun:Celyad: Employment. Renard:Celyad: Employment. Flament:Celyad: Employment.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
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    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2019
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  • 9
    In: Blood, American Society of Hematology, Vol. 124, No. 21 ( 2014-12-06), p. 3920-3920
    Abstract: Graft versus host disease (GvHD) remains a major barrier to the progress of blood and marrow transplantation and limits its wide applicability. Standard prophylactic regimens essentially targeting T lymphocytes are partially effective and burdensome. Cyclophosphamide (Cy) administered post-transplant selectively deletes alloreactive proliferating T cells, promotes expansion of regulatory T cells, and induces long-lasting depletion of intrathymic host-reactive T cells. It is an attractive option for prevention of GvHD and has already been used alone in matched related and unrelated donor transplants. However, despite a low incidence of chronic GvHD, acute GvHD still occurs in 50% of cases and is grade III-IV in 15% of cases. Dendritic cells (DCs) play a pivotal role in the early phase of GvHD. Proteasome inhibitors such as bortezomib (Bor) have a number of immunomodulatory effects including inhibition of DCs maturation and function. We therefore initiated a phase I feasibility study combining post-transplant Cy & Bor. Twelve patients with hematological malignancies undergoing peripheral blood allogeneic transplantation from matched related (n=6) or unrelated (n=6) donors have so far been enrolled. Disease risk index (DRI) was low in 4, intermediate in 3 and high or very high in 5. The conditioning regimen combined fludarabine and busulfan (total 6.4 mg/kg). Patients receiving graft from unrelated donors also received rabbit anti-thymocyte globulin at 5-8 mg/kg. The dose of Bor was escalated in standard fashion. Three patients in each of cohorts 1 and 2 received 0.7 and 1 mg/m2 respectively. The subsequent 6 patients received 1.3 mg/m2. All patients received 2 IV doses, 6 hours after graft infusion and 72 hours thereafter. Cy was given at 50 mg/kg IV on days +3 and +4. Steroids were not allowed after day 0. Engraftment was prompt in all patients. Median time to neutrophil engraftment was 15.5 days (range 14-25). One patient failed to meet criteria for platelet engraftment. The patient had acyclovir-resistant herpes genitalis and CMV reactivation requiring protracted therapy with foscarnet. The remaining patients had a median time to platelet recovery of 28 days (range 15-109). All patients achieved full chimerism by day 20 except one who had residual CLL and did not reach full chimerism until day +119. No patient developed secondary graft failure. Two treatment-related deaths occurred on day +150 due to RSV pneumonitis and on day +200 due to acute sepsis. One patient with recurrent multiple myeloma after autologous transplantation died due to progressive disease. No other Common Toxicity Criteria grade 3 or 4 occurred in any patient. With a median follow-up of 21 months (range 1-27), the overall 2-year predicted disease free survival and overall survival were both 60%. Incidence of acute GvHD in 11 patients with follow-up 〉 100 days, was 64%: grade I 55%, grade II 9%, and grade III-IV 0%. GI and liver acute GvHD were not encountered. Only 4 patients received systemic steroids for acute GvHD; only one required 〉 20 mg/day of prednisone. One patient developed chronic GvHD of the liver (biopsy-proven). Another patient developed poor appetite and weight loss on day +138. Endoscopy showed gastric ulceration. No biopsy was obtained. Neither calcineurin nor m-TOR inhibitors were ever used. Two patients developed extensive HSV-genito-rectal ulcers; one had prior history of recurrent flares. When institutional guidelines were changed to start acyclovir at the beginning of conditioning as opposed to day +5, no other cases was noted. Seven patients developed CMV reactivation and required preemptive therapy only. One patient developed BK virus-induced hematuria and 1 patient developed CNS toxoplasmosis. In summary, the calcineurin and m-TOR inhibitor-free post-transplant Cy & Bor combination for GvHD prophylaxis is feasible and safe. Although the small number of patients prevents any definite conclusion, the absence of incidence of grade III-IV acute GvHD and the sparing of the GI tract and liver are promising. Furthermore, the completion of GvHD prophylaxis by day +4 without the need for close renal and drug level monitoring are both practical and appealing. Updated results with longer follow-up will be reported at the meeting. A confirmatory phase II study is underway. Disclosures Al-Homsi: Millennium Pharmaceuticals: Research Funding. Off Label Use: Bortezomib use for aGvHD prevention.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
    RVK:
    RVK:
    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2014
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    detail.hit.zdb_id: 80069-7
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  • 10
    In: Blood Advances, American Society of Hematology, Vol. 7, No. 14 ( 2023-07-25), p. 3604-3611
    Abstract: Reducing the incidence of graft-versus-host disease (GVHD) after haploidentical hematopoietic stem cell transplantation (HSCT) is warranted. Posttransplant cyclophosphamide (PTCy) is the main agent used for GVHD prevention in this setting. It remains unknown whether costimulation blockade can be safely combined with PTCy and enhance its efficacy. We performed a phase 1b-2 clinical trial to examine the combination of PTCy, abatacept, and a short course of tacrolimus (CAST) after peripheral blood haploidentical HSCT. The primary end point was the incidence of grades 2-4 acute GVHD by day +120. The study enrolled 46 patients with a median age of 60 years (range, 18-74 years). The cumulative incidences of grades 2-4 and 3 or 4 acute GVHD were 17.4% (95% confidence interval [CI], 9.2-32.9) and 4.4% (95% CI, 1.1-17.1), respectively. With a median follow-up of 15.3 months, the cumulative incidence of 1-year treatment-related mortality was 4.4% (95% CI, 1.1-17.1). The estimated 1-year moderate-to-severe chronic GVHD rate, relapse rate, progression-free survival, overall survival, and GVHD- and relapse-free survival were 15.9% (95% CI, 8-31.7), 11.7% (95% CI, 5-27.2), 84.1% (95% CI, 73.8-95.7), 85.9% (95% CI, 75.9-97.2), and 66.1% (95% CI, 53.4-81.8), respectively. Toxicities were similar to those expected in patients receiving haploidentical HSCT. This clinical trial showed that the CAST regimen is safe and effective in reducing the rate of grades 2-4 acute GVHD after haploidentical peripheral blood HSCT. This trial was registered at www.clinicaltrials.gov as #NCT04503616.
    Type of Medium: Online Resource
    ISSN: 2473-9529 , 2473-9537
    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2023
    detail.hit.zdb_id: 2876449-3
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