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An Open-label, Multidose Dose-escalation Study to Understand the Safety of CRISPR Gene-editing Therapy and Its Long-Lasting Effects in DMD Patients (MUSCLE)

An Investigator-initiated Clinical Study Evaluating the CRISPR-hfCas12Max Gene Editing Therapy in the Treatment of Duchenne Muscular Dystrophy (DMD)

Status
Active, not recruiting
Phases
Early Phase 1
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT06594094
Acronym
MUSCLE
Enrollment
4
Registered
2024-09-19
Start date
2024-11-06
Completion date
2027-06-02
Last updated
2026-08-03

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Duchenne Muscular Dystrophin (DMD)

Keywords

DMD, dystrophin, Gene-editing, HG302, CRISPR

Brief summary

Duchenne muscular dystrophin (DMD) is an X-linked, fatal muscle-wasting disease caused by mutations in the DMD gene encoding the dystrophin proteins, with symptom onset before age of 6 years in boys. These mutations abolish dystrophin production in the muscle, leading to dystrophin deficiency at the myofiber membrane, continued fiber degeneration, the need for assisted ventilation, respiratory inflammation, loss of walking ability in their teens, followed by respiratory and cardiac decline, and eventually premature death before the age of 30. Currently, there are only glucocorticoids for the standard supportive therapy of DMD, which can improve disease symptoms but do not change the outcome of the disease, Three antisense oligonucleotide (ASOs) medicines have been approved to treat DMD with exon 45-55 hotspot region mutations. However, they can only restore trace amounts of dystrophin protein, which is insufficient to bring real clinical benefits. Gene replacement therapy has been approved using adeno-associated virus (AAV) vectors to deliver the "mini-dystrophin" gene. Yet, mini-dystrophin gene-expression versions of truncated dystrophin functionality are sacrificed and limited. HG302 uses a single AAV vector to deliver the CRISPR/hfCas12Max DNA editing system in the human DMD exon 51 splice donor site. Preclinical studies have shown that a single intravenous injection of HG302 significantly restores dystrophin protein expression in muscle fibers and rescues their muscle function in humanized DMD mice to wild-type levels, with long-lasting and durable efficacy.

Interventions

GENETICHG302

Once intravenous injection; The duration of the study is about 110 weeks for each subject, including a 6 weeks screening period, enrollment visit, treatment visit, and 104 weeks follow-up period.

Sponsors

HuidaGene Therapeutics Co., Ltd.
Lead SponsorINDUSTRY

Study design

Allocation
NA
Intervention model
SEQUENTIAL
Primary purpose
TREATMENT
Masking
NONE

Intervention model description

Two dosing cohort: Low dose :2\ 3 subjects High dose: 2\ 3 subjects

Eligibility

Sex/Gender
MALE
Age
4 Years to 8 Years
Healthy volunteers
No

Inclusion criteria

* Males ≥ 4 and ≤8 years at the time of signing informed consent, with clinical diagnosis of DMD; * DMD gene mutation types are deletions in exons 52, 52-61, or 52-63; * Able to walk at least 10 meters independently; * Willing to cooperate with muscle biopsy test; * Acceptable hematology, clinical chemistry, and urine laboratory parameters.

Exclusion criteria

* Presence of active infection; * Presence of DMD-associated cardiomyopathy manifestations; * Respiratory insufficiency requiring invasive or non-invasive ventilation; * Serious infections such as pneumonia, pyelonephritis, or meningitis within 4 weeks prior to receiving trial drug infusion; * Prior central nervous system surgery within 6 months before enrolment; * Use of any investigational drug, or exon-skipping drug (whether investigational or not) 6 months prior to Screening; * Previous treatment with any gene therapy or cell therapy (e.g., stem cell transplantation); * Any other conditions that would not allow the potential subject to complete follow-up examinations during the study and would, in the opinion of the investigator, make the potential subject unsuitable for the study.

Design outcomes

Primary

MeasureTime frameDescription
Incidence and severity of systemic adverse events26 weeksNumber of adverse events (AEs), serious adverse events (SAEs), and dose-limiting toxicities (DLTs)

Secondary

MeasureTime frameDescription
Change from baseline in percentage of dystrophin positive fiber26 weeksTest percentage of dystrophin positive fiber to detection of dystrophin expression
Change from baseline in dystrophin fiber intensity26 weeksTest dystrophin fiber intensity to detection of dystrophin expression
Change from baseline in dystrophin expression in skeletal muscle (western blotting)26weeksTest dystrophin expression
Change from baseline in North Star Ambulatory Assessment scale and 6 minutes' walk test26 weeksNorth Star Ambulatory Assessment scale documents motor performance in children, with total score range from 0-34, the higher score means better motor performance; 6 minutes walk test measures walking endurance, allowing subjects to walk continuously for 6 minutes at the fastest possible pace.

Countries

China

Contacts

STUDY_DIRECTORStudy Director

HuidaGene Therapeutics Co., Ltd.

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Aug 4, 2026