[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"trial:NCT07015684":3,"trial-entities:NCT07015684":169,"trial-summary:NCT07015684":173},{"id":4,"nct_id":4,"org_study_id":5,"brief_title":6,"official_title":7,"overall_status":8,"completion_date":9,"status_verified_date":10,"last_update_date":11,"start_date":12,"sponsor_name":13,"lead_sponsor_class":14,"has_dmc":15,"brief_summary":16,"detailed_description":17,"conditions":18,"keywords":20,"study_type":31,"primary_purpose":32,"phases":33,"enrollment_info":35,"interventions":38,"primary_outcomes":78,"secondary_outcomes":83,"sex":128,"minimum_age":129,"maximum_age":130,"healthy_volunteers":131,"eligibility_criteria":132,"std_ages":139,"locations":142,"central_contacts":160,"overall_officials":164,"references":167,"see_also_links":168},"NCT07015684","AAAV1172","131I-apamistamab-based Conditioning for Hematopoietic Stem Cell Transplant (HSCT) in Advanced Sickle Cell Disease (SCD)","Open-label, Single-Center, Phase 1 Study to Estimate the Minimum Effective Dose (MED) of 131I-apamistamab for Non-myeloablative Conditioning in Patients With Severe Sickle Cell Disease","RECRUITING","2032-03-12","2026-06","2026-06-10","2025-04-28","Columbia University","OTHER",true,"The purpose of this study is to find the smallest amount of the 131 I-apamistamab needed for preparing patients with severe sickle cell disease (SCD) for a bone marrow transplant. This is the first time 131 I-apamistamab is being used for advanced Sickle Cell Disease (SCD) in the setting of allogeneic stem cell transplant. 131 I-apamistamab is an investigational product. This means that 131 I-apamistamab has not been approved by the Food and Drug Administration (FDA) for medical use in patients.\n\nThe study treatment that is given before the transplant is called the conditioning regimen. In this study, the investigators are adding a drug called 131 I-apamistamab instead of the conditioning regimen typically given before a stem cell transplant.","The purpose of this study is to research the minimum effective dose (MED) of 131 I-apamistamab conditioning for hematopoietic stem cell transplantation for patients with advanced SCD. 131 Iapamistamab is an investigational product. This means that 131 I-apamistamab has not been approved by the Food and Drug Administration (FDA) for medical use in patients.\n\nThe study treatment that is given before the transplant is called the conditioning regimen. In this study, investigators are adding 131 I-apamistamab instead of the conditioning regimen typically given before a stem cell transplant.\n\nThe current standard of care conditioning for allogeneic stem cell transplant in SCD is a combination of chemotherapy, total body irradiation and an antibody called Campath. This study is being done to see if the stem cell transplant for SCD can still be effective by eliminating total body irradiation from the conditioning as it has potential long term side effects such as secondary cancers, infertility, early cataracts and lung toxicity.\n\nThis is a single center, Phase I, dose finding study to estimate the MED of hematopoietic stem cell transplantation for patients with advanced sickle cell disease using 131I-apamistmab-based nonmyeloablative conditioning. The study will enroll 24 patients who are 12-50 years of age with sickle cell anemia (Hb SS, SC, or Sβ0 thalassemia) and have an available HLA-matched sibling donor.",[19],"Sickling Disorder Due to Hemoglobin S",[21,22,23,24,25,26,27,28,29,30],"severe sickle cell disease","severe SCD","sickle cell disease","sickle cell","advanced SCD","advanced sickle cell disease","anemia","sickle cell disorders","hemoglobin S (HbS) Disease","Hemoglobin S Disease","INTERVENTIONAL","TREATMENT",[34],"PHASE1",{"count":36,"type":37},24,"ESTIMATED",[39,47,54,60,67,72],{"type":40,"name":41,"description":42,"armGroupLabels":43,"otherNames":45},"DRUG","131I-apamistmab","131I-apamistamab is a drug construct consisting of the apamistamab monoclonal antibody (mAb) and radioactive isotope iodine 131 (131I). The study drug will be patient-specific and will be manufactured for dosing on a specific date. The antibody dose will be at least 0.5mg\u002Fkg, however the final antibody amount may be higher if necessary based on the target radioactivity level. The 131I-apamistamab study drug requires patient details such as height, weight, a calculation to determine weight for use in calculating antibody amount for the dose. 131I-apamistmab will be given via intravenous (IV) infusion.",[44],"131I-apamistmab-based nonmyeloablative conditioning",[46],"Iodine (131I) apamistamab",{"type":40,"name":48,"description":49,"armGroupLabels":50,"otherNames":51},"Sirolimus","Sirolimus is a macrocyclic lactone produced by Streptomyces hygroscopicus. It is an immunosuppressant agent. Sirolimus is to be given orally either as tablet or solution form. Dosage will be adjusted to a therapeutic target of 10-15 ng\u002FmL in first 6 months post-transplant and 5-10 ng\u002FmL after 6 months.",[44],[52,53],"Rapamycin","Rapamune",{"type":40,"name":55,"description":56,"armGroupLabels":57,"otherNames":58},"Campath","Campath is a recombinant DNA-derived humanized monoclonal antibody that is directed against the 21-28 kD cell surface glycoprotein, CD52. CD52 is expressed on the surface of normal and malignant B and T lymphocytes, NK cells, monocytes, macrophages, and tissues of the male reproductive system. Campath will be given via IV at a total dose of 1 mg per kilogram of body weight.",[44],[59],"Alemtuzumab",{"type":61,"name":62,"description":63,"armGroupLabels":64,"otherNames":65},"RADIATION","Total Body Irradiation","Radiation dose is 3Gy (Gy is a radiation unit of measurement). Radiation source and dose rates will be according to institutional practice. Total Body Irradiation (TBI) may be delivered from either linear accelerator or Cobalt sources.",[44],[66],"TBI",{"type":68,"name":69,"description":70,"armGroupLabels":71},"PROCEDURE","Exchange Transfusion","Patient will undergo a red blood cell (RBC) exchange transfusion to achieve a Hemoglobin S (HgbS) level \\\u003C 20% prior to starting therapy to prevent the development of a vaso-occlusive Crisis (VOC).",[44],{"type":61,"name":73,"description":74,"armGroupLabels":75,"otherNames":76},"Planar gamma imaging","Dosimetric imaging will be performed using quantitative planar gamma camera acquisition. Planar gamma imaging is a technique used in medical imaging to take pictures of the inside of the body, particularly to look at how certain organs or tissues are functioning. This allows the study doctor to evaluate how the study drugs are absorbed into the body.",[44],[77],"therapeutic radiation",[79],{"measure":80,"description":81,"timeFrame":82},"Graft failure rate","Graft failure defined as having had a primary or secondary graft failure by 42 days after blood stem cell (PB) transplantation. Primary graft failure is defined as failure to achieve an absolute neutrophil count (ANC) of \\>500\u002F μL by 42 days after blood stem cell (PB) transplantation or a total donor chimerism of \\>5%. Secondary graft failure is defined as cytopenias after initial engraftment (ANC \\\u003C500\u002FμL) and a total donor cell chimerism decreasing to less than 5%.","42 days after blood stem cell (PB) transplantation",[84,88,92,95,98,102,105,109,112,116,119,122,125],{"measure":85,"description":86,"timeFrame":87},"Event-free survival (EFS) Rate","Event-free survival is defined as the time from treatment initiation to the occurrence of primary graft failure, death, Graft-versus-Host Disease (GVHD) Grade III-IV, whichever comes first. Patients without events will be censored at the time of last follow-up assessment.","Duration of study, up to 7 years",{"measure":89,"description":90,"timeFrame":91},"Time to engraftment of Neutrophils","Time to neutrophil engraftment is defined as the first of 3 measurements on consecutive days when the patient has an absolute neutrophil count of 500\u002FμL after conditioning.","Up to 7 years",{"measure":93,"description":94,"timeFrame":91},"Time to engraftment of Platelets","Time to platelet engraftment will be defined as the first day of a minimum of 3 measurements on different days that the patient has achieved a platelet count \\> 50,000\u002FμL AND did not receive a platelet transfusion in the previous 7 days. The exception is the case in which a subject is given a platelet transfusion specifically to achieve a platelet threshold to allow an elective invasive procedure, such as a central catheter removal. Time from treatment initiation to successful donor cell engraftment defined as having achieved \\> 50% total Peripheral Blood Mononuclear Cells (PMC) donor cell chimerism upon successful engraftment at day +30 or upon meeting ANC and Plt engraftment whatever occurs first.",{"measure":96,"description":97,"timeFrame":91},"Incidence of Graft-versus-Host Disease (GVHD) of any grade","Incidence of acute and chronic GVHD of any grade as evaluated according to The Center for International Blood and Marrow Transplant Research (CIBMTR) and National Institutes of Health (NIH) criteria respectively.",{"measure":99,"description":100,"timeFrame":101},"Incidence of other transplant related toxicities","Incidence of other transplant related toxicities, including Veno-occlusive disease (VOD), Idiopathic pneumonia syndrome (IPS), Central nervous system (CNS) toxicity, or Posterior reversible encephalopathy syndrome (PRES).","12 Months Post Stem Cell Transplant",{"measure":103,"description":104,"timeFrame":101},"Incidence of significant transplant-related infections","Significant infections will be recorded including but not limited to bacterial or fungal sepsis, cytomegalovirus (CMV) reactivation with\u002Fwithout clinical disease, adenovirus infection, Epstein-Barr virus (EBV) reactivation with or without post-transplant lymphoproliferative disorder (PTLD), other significant viral reactivations or community-acquired viral infections and invasive mold infections.",{"measure":106,"description":107,"timeFrame":108},"Number of participants with donor chimerism >5%","Chimerism is a measure of the engraftment of donor cells within the recipient and is expressed as the percentage ratio between the number of donor cells and recipient cells. Chimerism will be determined by Short Tandem Repeat analysis.","100 days post-transplant and 1 year post transplant",{"measure":110,"description":111,"timeFrame":101},"Percentage of Participants who Achieve Immune Reconstitution","Peripheral blood quantitative assessment of CD3+, CD4+, CD8+, CD19+, and CD16+\u002F56+ lymphocytes will be assessed by flow cytometry. In addition, quantitative immunoglobulins will be measured for IgA, IgM and IgG. These will be performed at Day +60 (±10 days) as well as at 1 year (+\u002F- 2 weeks) and after long term follow up at the discretion of the investigator. Descriptive statistics will be used to describe the percentage of patients who are able to achieve reconstitution of important lymphocyte subsets and B cell function at the defined timepoint above.",{"measure":113,"description":114,"timeFrame":115},"Follicle-stimulating hormone (FSH) titer","To assess the impact of the conditioning on fertility, FSH titers will be measured.","At study inclusion and at 1 year post-transplant",{"measure":117,"description":118,"timeFrame":115},"Luteinizing hormone (LH) titer","To assess the impact of the conditioning on fertility, LH titers will be measured.",{"measure":120,"description":121,"timeFrame":115},"Anti-Müllerian Hormone (AMH) titer","To assess the impact of the conditioning on fertility, AMH titers will be measured",{"measure":123,"description":124,"timeFrame":115},"Testosterone titer","To assess the impact of the conditioning on fertility, testosterone titers will be measured.",{"measure":126,"description":127,"timeFrame":115},"Sperm titer","To assess the impact of the conditioning on fertility, sperm titers will be measured.","ALL","12 Years","50 Years",false,{"inclusion":133,"exclusion":137,"raw_text":138},[134,135,136],"Availability of an HLA-matched sibling donor","Patients with sickle cell anemia (Hb SS, Sβ0 thalassemia or severe SC) who are 12 - 50 years of age inclusive AND who have 1 or more of the following:","Adequate organ functions as defined as:",[],"Inclusion Criteria:\n\n* Availability of an HLA-matched sibling donor\n* Patients with sickle cell anemia (Hb SS, Sβ0 thalassemia or severe SC) who are 12 - 50 years of age inclusive AND who have 1 or more of the following:\n\n  1. Clinically significant neurologic event (stroke) or any neurological deficit lasting at least 24 hours. Stroke will be defined as a clinically significant neurologic event that is accompanied by an infarct on cerebral MRI or cerebral arteriopathy requiring chronic transfusion therapy.\n  2. History of two or more episodes of ACS in the 2-year period preceding enrollment despite supportive care measures (i.e. asthma therapy and\u002For hydroxyurea).\n  3. History of three or more severe vaso-occlusive pain crises per year in the 2-year period preceding enrollment despite the institution of supportive care measures (i.e. a pain management plan and\u002For treatment with hydroxyurea).\n  4. Administration of regular RBC transfusion therapy, defined as receiving 8 or more transfusions per year for 1 year or more to prevent vaso-occlusive clinical complications (i.e. pain, stroke, and ACS)\n  5. An echocardiographic finding of tricuspid valve regurgitant jet (TRJ) velocity \\> or equal to 2.7 m\u002Fsec or pulmonary hypertension diagnosed by right heart catherization.\n  6. Sickle hepatopathy defined as EITHER ferritin \\>1000mcg\u002FL OR direct bilirubin \\>0.4mg\u002Fdl but \\\u003C5xULN AND platelet count \\\u003C250,000\u002FuL at baseline\n* Adequate organ functions as defined as:\n\n  1. ECOG performance status of 2 or better\n  2. Cardiac function: LVEF of 40% or greater\n  3. Pulmonary Function: Pulse oximetry with a baseline oxygen saturation of 85% or greater and corrected DLCO of 40% or greater\n  4. Hepatic Function: Serum conjugated (direct) bilirubin less than 5x upper limit of normal for age as per local laboratory, ALT and AST less than 5 x upper limit of normal as per local laboratory. Patients whose hyperbilirubinemia is the result of hyperhaemolysis, or a sever drop in hemoglobin post blood transfusion are not excluded.\n  5. Absence of liver cirrhosis, bridging fibrosis and active hepatitis as documented by liver biopsy for patients with evidence of iron overload by serum ferritin or MRI. The histological grading and scale described by Ishak and colleagues (1995) will be used.\n\nDonor Eligibility and Selection Criteria\n\n1. Donor should be evaluated for eligibility to donate by an independent physician not directly caring for the patient on study protocol.\n2. Donor is willing to sign informed consent allowing the use of the PBSC product for the HSCT of the recipient.\n3. Donor cannot be pregnant or lactating and must agree to contraception until after the donation procedure is complete.\n4. Testing negative for HIV and viral hepatitis\n5. Free of Hb S (defined as Hb S less than 50%) and other hemoglobinopathies that are symptomatic or of clinical significance.\n6. Targeted minimum stem cell dose of 5.0 x 10e6 CD34 cells\u002FKg of recipient weight\n7. Fulfills standard criteria for eligibility as a donor for HSCT.\n\nNote: HSCT can be deleterious for the developing fetus and pregnant mother due to the conditioning regimen, GVHD prophylaxis and treatment. Agents used in this study such as cyclophosphamide are pregnancy risk factor category D. Sirolimus is pregnancy risk factor category C. Radiotherapy also used (TBI) is a well-known teratogenic agent. Should a woman become pregnant or suspect she is pregnant while she or her partner is participating in this study, she should inform her treating physician immediately. Men treated or enrolled on this protocol must also agree to use adequate contraception prior to the study and for at least 1 year post transplant.\n\nFinally, pregnancy and lactation restrictions and contraception requirements are also applicable to the donor. Filgrastim or other G-CSF analogous are pregnancy risk factor category C. The restriction lasts for 4 weeks after stem cell donation.\n\nExclusion Criteria:\n\n1. Pulmonary dysfunction defined as DLCO (corrected for hemoglobin and alveolar volume) \\\u003C 40% of predicted OR baseline oxygen saturation of \\\u003C85% or PaO2 \\\u003C70.\n2. Severe cardiac dysfunction defined as ejection fraction \\\u003C35%.\n3. Impaired renal function defined as GFR \\\u003C40.\n4. Hepatic dysfunction defined as bridging (portal to portal) fibrosis or cirrhosis of the liver OR transaminases \\>5x ULN for age.\n5. Clinical stroke within 6 months of anticipated transplant\n6. Karnofsky performance score \\\u003C 50%\n7. HIV infection\n8. Uncontrolled viral, bacterial, fungal, or protozoal infection at the time of study enrollment.\n9. Have circulating HAMA noted on initial screening.\n10. Have received prior radiation to maximally tolerated levels to any critical normal organs\n11. Patients with unspecified chronic toxicity serious enough to detrimentally affect the patient's capacity to tolerate HSCT.\n12. Patients' unable to understand the nature and risks inherent in the HSCT process.\n13. History of non-compliance severe enough in the estimation of the treating team to preclude the patient from undergoing unrelated donor transplantation.\n14. Patient is pregnant or lactating.\n15. Inability to provide adequate transfusion support or increased risk immunohematological complications due presence of anti-RBC antibody against stem cell donor.\n16. Patients with any history of radiation therapy.",[140,141],"CHILD","ADULT",[143],{"facility":144,"status":8,"city":145,"state":145,"zip":146,"country":147,"contacts":148,"geoPoint":157},"Columbia University Irving Medical Center","New York","10032","United States",[149,154],{"name":150,"role":151,"phone":152,"email":153},"Research Nurse Navigator, RN","CONTACT","212-342-5162","cancerclinicaltrials@cumc.columbia.edu",{"name":155,"role":156},"Markus Y. Mapara, MD, PhD","PRINCIPAL_INVESTIGATOR",{"lat":158,"lon":159},40.71427,-74.00597,[161],{"name":162,"role":151,"phone":163,"email":153},"Central Nurse Navigator, RN","(212) 342 5162",[165],{"name":166,"affiliation":13,"role":156},"Markus Y Mapara, MD",[],[],{"nct_id":4,"conditions":170,"biomarkers":172},[171],"Sickle Cell Disease",[],{"nct_id":4,"found":15,"summary":174,"prompt_version":184},{"design":175,"status":176,"heading":177,"summary":178,"follow_up":179,"word_count":180,"commitments":181,"compensation":182,"drugs_mentioned":183},"This is a Phase I, single-center study aiming to find the minimum effective dose of 131I-apamistamab, with a planned enrollment of 24 participants.","completed","131I-apamistamab-based Conditioning for Advanced Sickle Cell Disease","This study is testing a new approach for preparing patients with severe sickle cell disease (SCD) for a bone marrow transplant. It uses a drug called 131I-apamistamab, which combines an antibody with a radioactive substance, instead of the usual conditioning treatment. The goal is to find the lowest effective dose of 131I-apamistamab. This is the first time 131I-apamistamab is being used for advanced SCD before a stem cell transplant. The study aims to see if this new method can be effective while potentially reducing long-term side effects associated with standard radiation. You may be able to join if you are 12-50 years old with severe sickle cell anemia and have an HLA-matched sibling donor, especially if you've had a stroke or other neurological event. The main goal is to see how many patients experience graft failure (when the transplanted cells don't take) 42 days after the transplant.","The primary endpoint for measuring success is graft failure rate, which is assessed 42 days after the blood stem cell transplant.",147,"Before starting therapy, you will undergo a red blood cell exchange transfusion. You will receive 131I-apamistamab, Sirolimus (an immunosuppressant taken orally), and Campath (an antibody), along with Total Body Irradiation.","Not stated in the trial record.",[],"v2"]