Rady Children's Hospital - San Diego
San Diego, California, 92123, United States
NCT Number: NCT06377085
In this controlled dose-escalation study, we will study the initial safety, biological properties, and potential efficacy of 5-azacytidine (AZA). Our overarching aspiration is for AZA to evolve into an approved pharmacological treatment, fostering muscle growth and enhancing body movement, ultimately contributing to an improved quality of life in children with CP.
The main questions this study aims to answer are:
1. What is the optimal dose of AZA injection that can be used safely in children with CP? 2. Can the optimal safe dose of AZA improve the function of muscle-generating stem cells in children with CP?
Each participant will have up to five research visits over the course of the study duration, in which they will participate in: blood draws, pregnancy test(s) (if applicable), medical assessments, and a muscle biopsy during a surgery for muscle contractures.
Researchers will compare participants with four different dosages of AZA injections to those with four different dosages of placebo injections. A placebo is a look-alike substance that contains no active drug. They will see if a single injection of AZA at a standard concentration currently approved by the FDA to treat myelodysplastic syndromes, can also safely improve muscle growth and function in children with CP.
Interested in participating?
Request Info2 year–18 year
All sexes
Interventional
Phase 1
San Diego, California, 92123, United States
Cerebral palsy (CP) has an enduring impact on the development of the muscles after birth. Research showed that a drug that is currently approved by the FDA to treat myelodysplastic syndromes in adults and children, can be potentially adapted ("repurposed") to support muscle growth. In a controlled dose-escalation study, we will study the preliminary safety, biological properties, and efficacy of this drug, called 5-Azacytidine (AZA). Our hope and overarching expectations are that one day AZA will become a new approved pharmacological treatment to support muscle growth and improve body movement and quality of life in children with CP.
Research participants will have five study visits.
The amount of blood drawn at each time point will be approximately 3 mL, equating to 12 mL of blood total (less than a tablespoon). The purpose of the blood draws is to evaluate safety and biological efficacy of the study drug. The medical assessment will consist of range of motion assessment and wound check performed by the clinicians. These are the same assessments that the clinicians would typically do as part of usual care prior to and after surgery. The purpose of the medical assessment is to evaluate the efficacy of the study drug and ensure the surgical site is healing.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
a. Renal Function (Grade 0 - Normal): i. Creatinine: Within the normal range or ≤ 1.0 times the upper limit of normal (ULN).
ii. Glomerular filtration rate (GFR): No significant decrease. b. Liver Function (Grade 0 - Normal): i. Aspartate aminotransferase (AST) or alanine aminotransferase (ALT): Within the normal range or ≤ ULN.
ii. Total bilirubin: Within the normal range or ≤ 1.0 times ULN
Exclusion criteria
Placebo control group for the 10mg/m^2, one-time subcutaneous injection without the active treatment.
Placebo control group for the 20mg/m^2, one-time subcutaneous injection without the active treatment.
Placebo control group for the 35mg/m^2, one-time subcutaneous injection without the active treatment.
Placebo control group for the 75mg/m^2, one-time subcutaneous injection without the active treatment.
5-Azacytidine 10mg/m^2, one-time subcutaneous injection
5-Azacytidine 20mg/m^2, one-time subcutaneous injection
5-Azacytidine 35mg/m^2, one-time subcutaneous injection
5-Azacytidine 75mg/m^2, one-time subcutaneous injection
Time frame: Through study completion, an average of 2 years.
The percentage of patients experiencing DLT at the predefined dose level will be calculated.
This will determine the Maximum Tolerated Dose (MTD), which will be the highest dose level at which ≤ 33% of patients experience a DLT. DLT is defined as toxic effects, presumably related to AZA, considered unacceptable due to their severity and/or irreversibility, thereby limiting further dose escalation. Thus, the total number of toxicities and the DLT at each step of dose escalation and possible de-escalation will be reported. The scale for the primary endpoint is binary (occurrence of DLT or not). It is measured as a single endpoint, as it is focused on whether or not the predefined dose level causes DLT.
The currently recommended clinical dose is 75 mg/m2. For the present study, the following AZA concentrations will be evaluated: 10 mg/m2, 20 mg/m2, 35 mg/m2 and 75 mg/m2. For each dose, 3 experimental and 3 placebo subjects will be recruited.
Time frame: Through study completion, an average of 2 years.
Resident muscle-forming stem cells, called Satellite Cells, will be isolated from the muscle biopsy obtained from subjects and cultured in vitro. Satellite Cell Fusion Index quantifies the proportion of these stem cells that will fuse to form new muscle fibers in vitro (multinucleated structures called myotubes). It provides a measure of the efficiency of subjects' satellite cells to contribute to muscle growth, repair and regeneration.
Time frame: Through study completion, an average of 2 years.
Global DNA methylation analysis will be quantified (% tot DNA in ng) using DNA from Satellite Cell cultures and Blood Mononucleated Cells (isolated form blood) using an ELISA-based global DNA methylation kit.
Time frame: Through study completion, an average of 2 years.
Following Satellite Cell isolation, expansion in culture and DNA extractions, qualitative methylation analysis procedures will be conducted using an Infinium Human MethylationEPIC Beadchip array (Illumina Inc., CA), which targets over 850,000 DNA methylation sites at the dinucleotide (CpG) level throughout the entire genome.
Time frame: Through study completion, an average of 2 years.
ChIP-seq will facilitate the genome-wide profiling of changes in chromatin structure and transcription factor binding events in response to AZA treatment and muscle contracture development. This technique is particularly as it can identify alterations in DNA methylation patterns and histone modifications associated with Satellite Cell dysfunction and impaired muscle regeneration. Furthermore, ATAC-seq will offer a complementary approach to ChIP-seq by providing information on chromatin accessibility, which reflects regulatory elements such as enhancers and promoters involved in gene expression control.
Shirley Ryan AbilityLab
Other
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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