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NCT Number: NCT01962415

Reduced Intensity Conditioning for Non-Malignant Disorders Undergoing UCBT, BMT or PBSCT

The objective of this study is to evaluate the efficacy of using a reduced-intensity condition (RIC) regimen with umbilical cord blood transplant (UCBT), double cord UCBT, matched unrelated donor (MUD) bone marrow transplant (BMT) or peripheral blood stem cell transplant (PBSCT) in patients with non-malignant disorders that are amenable to treatment with hematopoietic stem cell transplant (HSCT). After transplant, subjects will be followed for late effects and for ongoing graft success.

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Key information

Conditions

Primary Immunodeficiency (PID) Adrenal Gland Diseases Adrenal Insufficiency Adrenoleukodystrophy Albinism Anemia Anemia, Aplastic Anemia, Diamond-Blackfan Anemia, Hemolytic Anemia, Hemolytic, Congenital Anemia, Hypoplastic, Congenital Anemia, Sickle Cell Arthritis Arthritis, Juvenile Autoimmune Diseases Autoimmune Lymphoproliferative Syndrome Blood Coagulation Disorders Blood Coagulation Disorders, Inherited Bone Diseases Bone Diseases, Developmental Bone Marrow Diseases Bone Marrow Failure Disorders Brain Diseases Brain Diseases, Metabolic Brain Diseases, Metabolic, Inborn Carbohydrate Metabolism, Inborn Errors Central Nervous System Diseases Chediak-Higashi Syndrome Chronic Disease Congenital Abnormalities Congenital Bone Marrow Failure Syndromes Congenital amegakaryocytic thrombocytopenia Congenital, Hereditary, and Neonatal Diseases and Abnormalities Connective Tissue Diseases Crohn Disease Cytopenia DNA Repair-Deficiency Disorders Death Death, Sudden Demyelinating Diseases Digestive System Diseases Disease Disease Attributes Dyskeratosis Congenita Endocrine System Diseases Eye Diseases Eye Diseases, Hereditary Gastroenteritis Gastrointestinal Diseases Gaucher Disease Genetic Diseases, Inborn Genetic Diseases, X-Linked Granulomatous Disease, Chronic Hematologic Diseases Hemic and Lymphatic Diseases Hemoglobinopathies Hemorrhagic Disorders Hereditary Anemias Hereditary Central Nervous System Demyelinating Diseases Hereditary Diffuse Leukoencephalopathy with Spheroids Heredodegenerative Disorders, Nervous System Histiocytosis Histiocytosis, Non-Langerhans-Cell Immune Dysregulation, Polyendocrinopathy, Enteropathy, X-Linked Syndrome Immune System Diseases Immunologic Deficiency Syndromes Immunoproliferative Disorders Infant Death Infant, Newborn, Diseases Inflammatory Bowel Diseases Inflammatory Conditions Inherited Metabolic Disorders (IMD) Intellectual Disability Intestinal Diseases Joint Diseases Juvenile Rheumatoid Arthritis (JRA) Leukocyte Disorders Leukocyte adhesion deficiency type 1 Leukodystrophy, Globoid Cell Leukodystrophy, Metachromatic Leukoencephalopathies Leukopenia Lipid Metabolism Disorders Lipid Metabolism, Inborn Errors Lipidoses Lymphatic Diseases Lymphohistiocytosis, Hemophagocytic Lymphopenia Lymphoproliferative Disorders Lysosomal Storage Diseases Lysosomal Storage Diseases, Nervous System Mannosidase Deficiency Diseases Metabolic Diseases Metabolism, Inborn Errors Mucinoses Mucopolysaccharidoses Mucopolysaccharidosis I Mucopolysaccharidosis II Musculoskeletal Diseases Nervous System Diseases Neurobehavioral Manifestations Neurologic Manifestations Nutritional and Metabolic Diseases Osteochondrodysplasias Osteopetrosis Osteosclerosis Pathologic Processes Pathological Conditions, Signs and Symptoms Peroxisomal Disorders Phagocyte Bactericidal Dysfunction Primary Immunodeficiency Diseases Red-Cell Aplasia, Pure Rheumatic Diseases Severe Combined Immunodeficiency Skin Abnormalities Skin Diseases Skin Diseases, Genetic Skin and Connective Tissue Diseases Sphingolipidoses Sudden Infant Death Sulfatidosis Syndrome Systemic Juvenile Idiopathic Arthritis (sJIA) Thalassemia Wiskott-Aldrich Syndrome X-Linked Intellectual Disability alpha-Mannosidosis beta-Thalassemia

Age range

2 month–55 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Phase 2

Primary location

UPMC Children's Hospital of Pittsburgh

Pittsburgh, Pennsylvania, 15224, United States

Location status: Recruiting

Location contact

Archana Ramgopal, DO

SUB_INVESTIGATOR

Paulina Horvei, MD

SUB_INVESTIGATOR

Randy Windreich, MD

SUB_INVESTIGATOR

Shawna McIntyre, RN

CONTACT

[email protected]

412-692-5552

About this study

For some non-malignant diseases (NMD; i.e., thalassemia, sickle cell disease, most immune deficiencies) a hematopoietic stem cell transplant may be curative by healthy donor stem cell engraftment alone. HSCT in patients with NMD differs from that in malignant disorders for two important reasons: 1) these patients are typically naïve to chemotherapy and immunosuppression. This may potentially lead to difficulties with engraftment. And 2) RIC with subsequent bone marrow chimerism may be beneficial even in mixed chimerism and result in decreased transplant-related mortality (TRM). Nevertheless, any previous organ damage, as a result of the underlying disease, may remain present after the HSCT.

For other diseases (metabolic disorders, some immunodeficiencies, etc.), a transplant is not curative. For these diseases, the main intent of the transplant is to slow down, or stop, the progress of the disease. In select few cases/diseases, the presence of healthy bone marrow derived cells may even prevent progression and prevent neurological decline.

Research funds are not available to assist with enrollment on this trial.

In this research study, instead of using the standard myeloablative conditioning, the study doctor is using RIC, in which significantly lower doses of chemotherapy will be used. The lower doses may not eradicate every stem cell in the patient's bone marrow, however, in the presented combination, the intention is to eliminate already formed immune cells and provide maximum growth advantage to healthy donor stem cells. This paves the way to successful engraftment of donor stem cells. Engrafting donor stem cells can outcompete, and donor lymphocytes could suppress, the patients' surviving stem cells. With RIC, the side effects on the brain, heart, lung, liver, and other organ functions are less severe and late toxic effects should also be reduced.

The purpose of this study is to collect data from the patients undergoing reduced-intensity conditioning before HSCT, and compare it to the standard myeloablative conditioning. It is expected there will be therapeutic benefits, paired with better survival rate, less organ toxicity and improved quality of life, following the RIC compared to the myeloablative regimen.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion:

  • A 4/6, 5/6 or 6/6 HLA matched related or unrelated UCB unit available that will deliver a pre-cryopreservation total nucleated cell dose of ≥ 3 x 10e7 cells/kg, or double unit grafts, each cord blood unit delivering at least 2 x 10e7 cells/kg OR an 8 of 8 or 7 of 8 HLA allele level matched unrelated donor bone marrow or peripheral blood progenitor graft.
  • Adequate organ function as measured by:
  • Creatinine ≤ 2.0 mg/dL and creatinine clearance ≥ 50 mL/min/1.73 m2.
  • Hepatic transaminases (ALT/AST) ≤ 4 x upper limit of normal (ULN).
  • Adequate cardiac function by echocardiogram or radionuclide scan (shortening fraction > 26% or ejection fraction > 40% or > 80% of normal value for age).
  • Pulmonary evaluation testing demonstrating CVC or FEV1/FVC of ≥ 50% of predicted for age and/or resting pulse oximeter ≥ 92% on room air or clearance by the pediatric or adult pulmonologist. For adult patients DLCO (corrected for hemoglobin) should be ≥ 50% of predicted if the DLCO can be obtained.
  • Written informed consent and/or assent according to FDA guidelines.
  • Negative pregnancy test if pubertal and/or menstruating.
  • HIV negative.
  • A non-malignant disorder amenable to treatment by stem cell transplantation, including but not limited to:
  • Primary Immunodeficiency syndromes including but not limited to:
  • Severe Combined Immune Deficiency (SCID) with NK cell activity
  • Omenn Syndrome
  • Bare Lymphocyte Syndrome (BLS)
  • Combined Immune Deficiency (CID) syndromes
  • Combined Variable Immune Deficiency (CVID) syndrome
  • Wiskott-Aldrich Syndrome
  • Leukocyte adhesion deficiency
  • Chronic granulomatous disease (CGD)
  • X-linked Hyper IgM (XHIM) syndrome
  • IPEX syndrome
  • Chediak - Higashi Syndrome
  • Autoimmune Lymphoproliferative Syndrome (ALPS)
  • Hemophagocytic Lymphohistiocytosis (HLH) syndromes
  • Lymphocyte Signaling defects
  • Other primary immune defects where hematopoietic stem cell transplantation may be beneficial
  • Congenital bone marrow failure syndromes including but not limited to:
  • Dyskeratosis Congenita (DC)
  • Congenital Amegakaryocytic Thrombocytopenia (CAMT)
  • Osteopetrosis
  • Inherited Metabolic Disorders (IMD) including but not limited to:
  • Mucopolysaccharidoses
  • Hurler syndrome (MPS I)
  • Hunter syndrome (MPS II)
  • Leukodystrophies
  • Krabbe Disease, also known as globoid cell leukodystrophy
  • Metachromatic leukodystrophy (MLD)
  • X-linked adrenoleukodystrophy (ALD)
  • Hereditary diffuse leukoencephalopathy with spheroids (HDLS)
  • Other inherited metabolic disorders
  • alpha mannosidosis
  • Gaucher Disease
  • Other inheritable metabolic diseases where hematopoietic stem cell transplantation may be beneficial.
  • Hereditary anemias
  • Thalassemia major
  • Sickle cell disease (SCD) - patients with sickle disease must have one or more of the following:
  • Overt or silent stroke
  • Pain crises ≥ 2 episodes per year for past year
  • One or more episodes of acute chest syndrome
  • Osteonecrosis involving ≥ 1 joints
  • Priapism
  • Diamond Blackfan Anemia (DBA)
  • Other congenital transfusion dependent anemias
  • Inflammatory Conditions
  • Crohn's Disease/Inflammatory Bowel Disease

Exclusion:

  • Allogeneic hematopoietic stem cell transplant within the previous 6 months.
  • Any active malignancy or MDS.
  • Severe acquired aplastic anemia.
  • Uncontrolled bacterial, viral or fungal infection (currently taking medication and with progression of clinical symptoms).
  • Pregnancy or nursing mother.
  • Poorly controlled pulmonary hypertension.
  • Any condition that precludes serial follow-up.

Treatment and study plan

Hydroxyurea

Drug

Oral administration

Other names: hydroxycarbamide, Hydrea, Droxia

Alemtuzumab

Drug

Intravenous (IV) administration.

Other names: Campath

Fludarabine

Drug

IV administration

Other names: Fludara

melphalan

Drug

IV administration

Other names: Melphalan hydrochloride, Alkeran

Thiotepa

Drug

IV administration

Primary outcomes

  1. Post-transplant treatment-related mortality (TRM)

    Time frame: 1 year post-transplant

    The number of deaths related to the research intervention at day 100, 6 months, and 1 year post-transplant.

  2. Neurodevelopmental milestones

    Time frame: 1 year post-transplant

    Evaluation of the pace of attaining neurodevelopmental milestones after reduced-intensity conditioning as compared to myeloablative conditioning historical controls from the target population(s).

  3. Immune Reconstitution

    Time frame: 1 year post-transplant

    Evaluation of the pace of immune reconstitution.

  4. Severe opportunistic infections

    Time frame: 1 year post-transplant

    Evaluation of the incidence of severe opportunistic infections.

  5. GVHD occurrence

    Time frame: 1 year post-transplant

    Description of the incidence of acute graft versus host disease (GVHD) (II-IV) and chronic extensive GVHD.

Secondary outcomes

  1. Donor cell engraftment

    Time frame: 6 months post-transplant

    Determination of the feasibility of attaining robust donor cell engraftment (>50% donor chimerism at 6 months) following reduced-intensity conditioning (RIC) regimens prior to HSCT in the target population(s).

  2. Normal enzyme level

    Time frame: 1 year post-transplant

    Determination of the feasibility of attaining and sustaining normal enzyme levels in the target population(s).

  3. Neutrophil recovery

    Time frame: 1 year post-transplant

    Determination of the pace of neutrophil recovery.

  4. Platelet recovery

    Time frame: 1 year post-transplant

    Determination of the pace of platelet recovery.

  5. Grade 3-4 organ toxicity

    Time frame: 1 year post-transplant

    The number of grade 3-4 organ adverse events.

  6. Late graft failure

    Time frame: 1 year post-transplant

    Evaluation of the incidence of late graft failure.

Study contacts

Contact information is provided by the study sponsor or research team.

Paul Szabolcs, MD

CONTACT

[email protected]

412-692-5427

Shawna McIntyre, RN

CONTACT

[email protected]

412-692-5552

Sponsors and collaborators

Lead sponsor

Paul Szabolcs

Other

Registry information

Official study title

A Phase II Study of Reduced Intensity Conditioning in Pediatric Patients and Young Adults ≤55 Years of Age With Non-Malignant Disorders Undergoing Umbilical Cord Blood, Bone Marrow, or Peripheral Blood Stem Cell Transplantation

Acronym: HSCT+RIC

Important dates

Study start
2014
Primary completion
2026
Study completion
2027
First posted
Oct 14, 2013
Registry last updated
Dec 15, 2025

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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