Skip to content

Safety and Efficacy Study in Subjects With Leber Congenital Amaurosis

A Safety and Efficacy Study in Subjects With Leber Congenital Amaurosis (LCA) Using Adeno-Associated Viral Vector to Deliver the Gene for Human RPE65 to the Retinal Pigment Epithelium (RPE) [AAV2-hRPE65v2-301]

Status
Active, not recruiting
Phases
Phase 3
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT00999609
Enrollment
31
Registered
2009-10-22
Start date
2012-10-31
Completion date
2030-01-31
Last updated
2025-04-23

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

Conditions

Inherited Retinal Dystrophy Due to RPE65 Mutations, Leber Congenital Amaurosis

Keywords

Adeno-associated virus, AAV, Leber congenital amaurosis, RPE65, Gene therapy, Gene transfer, voretigene neparvovec-rzyl, Retinitis pigmentosa

Brief summary

The study is a Phase 3, open-label, randomized controlled trial of gene therapy intervention by subretinal administration of AAV2-hRPE65v2 (voretigene neparvovec-rzyl). At least twenty-four subjects, three years of age or older, will be recruited. The intervention group will receive AAV2-hRPE65v2 at either The Children's Hospital of Philadelphia or University of Iowa to determine if it improves visual and retinal function in individuals with RPE65 gene mutations.

Detailed description

Leber congenital amaurosis (LCA) is a disease where part of the eye (the retina) is severely diseased. Usually it is detected in affected people within the first few months of life, as there is significantly poor vision at birth. Cells in the retina are lost over time in people with LCA, which typically leads to total blindness. There are no pharmacological treatments available. This study will focus on the form of LCA caused by changes (mutations) in DNA that makes a certain protein (called the 65 kDa retinal pigment epithelium (RPE)-specific protein, or RPE65). This can be confirmed by a special method of testing (molecular testing) to verify the presence of RPE65 gene mutations. This study uses a gene therapy vector made from an adeno-associated virus (AAV) called AAV2-hRPE65v2 (voretigene neparovec-rzyl). Gene therapy refers to the incorporation of new DNA into cells with the goal of supplying a therapeutic gene or a gene that is missing or not functioning in the cell. The AAV parts of the gene therapy vector work as a delivery vehicle for providing the normal human RPE65 gene to the cells of the retina. An earlier Phase 1 clinical study of AAV2-hRPE65v2 was conducted based on the demonstration of safety and effectiveness of the vector in animals with a similar eye disease. The earlier Phase 1 clinical study was a dose-escalation study primarily designed to evaluate safety in humans, and tested three doses of the vector in twelve children and adults. The safety of injecting into the second eye was also evaluated. The results from these earlier Phase 1 studies showed an acceptable safety profile. This study will deliver AAV2-hRPE65v2 vector (voretigene neparvovec-rzyl) to at least sixteen intervention group subjects, age three or older; subjects will receive the vector in both eyes via subretinal injections during surgeries (on separate days). The purpose of this research study is to assess the efficacy and safety of the AAV2-hRPE65v2 gene therapy vector (voretigene neparvovec-rzyl) as a possible treatment for LCA due to RPE65 gene mutations. The control group of at least eight subjects will be able to cross-over to the intervention group after one year, provided they still meet all eligibility criteria.

Interventions

Subretinal administration of gene therapy vector AAV2-hRPE65v2 (1.5E11 vector genomes per eye) to both eyes via surgical procedures on separate days.

Sponsors

Children's Hospital of Philadelphia
CollaboratorOTHER
University of Iowa
CollaboratorOTHER
Spark Therapeutics, Inc.
Lead SponsorINDUSTRY

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
3 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Willingness to adhere to protocol and long-term follow-up as evidenced by written informed consent or parental permission and subject assent (where applicable). * Diagnosis of LCA due to RPE65 mutations; molecular diagnosis is to be performed, or confirmed, by a CLIA-approved laboratory. * Age three years old or older. * Visual acuity worse than 20/60 (both eyes) and/or visual field less than 20 degrees in any meridian as measured by a III4e isopter or equivalent (both eyes). * Sufficient viable retinal cells as determined by non-invasive means, such as optical coherence tomography (OCT) and/or ophthalmoscopy. Must have either: 1) an area of retina within the posterior pole of \>100 µm thickness shown on OCT; 2) ≥ 3 disc areas of retina without atrophy or pigmentary degeneration within the posterior pole; or 3) remaining visual field within 30 degrees of fixation as measured by a III4e isopter or equivalent. * Subjects must be evaluable on mobility testing (the primary efficacy endpoint) to be eligible for the study. Evaluable is defined as: 1) The ability to perform mobility testing within the luminance range evaluated in the study. Individuals must receive an accuracy score of ≤ 1 during screening mobility testing at 400 lux or less to be eligible; individuals with an accuracy score of \> 1 on all screening mobility test runs at 400 lux, or those who refuse to perform mobility testing at screening, will be excluded. 2) The inability to pass mobility testing at 1 lux. Individuals must fail screening mobility testing at 1 lux to be eligible; individuals that pass one or more screening mobility test runs at 1 lux will be excluded.

Exclusion criteria

* Unable or unwilling to meet requirements of the study, including receiving bilateral subretinal vector administrations. * Any prior participation in a study in which a gene therapy vector was administered. * Participation in a clinical study with an investigational drug in the past six months. * Use of retinoid compounds or precursors that could potentially interact with the biochemical activity of the RPE65 enzyme; individuals who discontinue use of these compounds for 18 months may become eligible. * Prior intraocular surgery within six months. * Known sensitivity to medications planned for use in the peri-operative period. * Pre-existing eye conditions or complicating systemic diseases that would preclude the planned surgery or interfere with the interpretation of study. Complicating systemic diseases would include those in which the disease itself, or the treatment for the disease, can alter ocular function. Examples are malignancies whose treatment could affect central nervous system function (for example: radiation treatment of the orbit; leukemia with CNS/optic nerve involvement). Subjects with diabetes or sickle cell disease would be excluded if they had any manifestation of advanced retinopathy (e.g., macular edema or proliferative changes). Also excluded would be subjects with immunodeficiency (acquired or congenital) as there could be susceptibility to opportunistic infection (such as CMV retinitis). * Individuals of childbearing potential who are pregnant or unwilling to use effective contraception for four months following vector administration. * Individuals incapable of performing mobility testing (the primary efficacy endpoint) for reason other than poor vision, including physical or attentional limitations. * Any other condition that would not allow the potential subject to complete follow-up examinations during the course of the study or, in the opinion of the investigator, makes the potential subject unsuitable for the study. * Subjects will not be excluded based on their gender, race, or ethnicity.

Design outcomes

Primary

MeasureTime frameDescription
Multi-luminance Mobility Testing (MLMT), BilateralOne year (change from baseline)The MLMT measures changes in functional vision, as assessed by the ability to navigate a course accurately and at a reasonable pace at different levels of environmental illumination. MLMT was assessed using both eyes at 1 or more of 7 levels of illumination, ranging from 400 lux (a brightly lit office) to 1 lux (a moonless summer night). Each light level was assigned a score code ranging from 0 to 6. A higher score indicated that a subject was able to pass the MLMT at a lower light level. A score of -1 was assigned to those who could not pass MLMT at 400 lux. The MLMT of each subject was videotaped and assessed by independent graders. The MLMT score was determined by the lowest light level at which the subject was able to pass the MLMT. The MLMT score change was defined as the difference between the score at Baseline and the score at Year 1. A positive MLMT score change from Baseline to Year 1 visit indicated that the subject was able to complete the MLMT at a lower light level.

Secondary

MeasureTime frameDescription
Full-field Light Sensitivity Threshold (FST) Testing: White LightOne year (change from baseline)Measures the light sensitivity of the entire visual field by recording the luminance at which a subject reliably reports seeing the dimmest flash.
Multi-luminance Mobility Testing (Monocular)One year (change from baseline)The MLMT measures changes in functional vision, as assessed by the ability to navigate a course accurately and at a reasonable pace at different levels of environmental illumination. MLMT was assessed using the first eye at 1 or more of 7 levels of illumination, ranging from 400 lux (a brightly lit office) to 1 lux (a moonless summer night). Each light level was assigned a score code ranging from 0 to 6. A higher score indicated that a subject was able to pass the MLMT at a lower light level. A score of -1 was assigned to those who could not pass MLMT at 400 lux. The MLMT of each subject was videotaped and assessed by independent graders. The MLMT score was determined by the lowest light level at which the subject was able to pass the MLMT. The MLMT score change was defined as the difference between the score at Baseline and the score at Year 1. A positive MLMT score change from Baseline to Year 1 visit indicated that the subject was able to complete the MLMT at a lower light level.
Visual AcuityOne year (change from baseline)Measurement of the sharpness of vision, determined by the ability to read letters on a standardized chart from a specified distance.

Countries

United States

Participant flow

Participants by arm

ArmCount
Intervention
Bilateral subretinal injection of voretigene neparvovec-rzyl (AAV2-hRPE65v2), 1.5x 10e11 vg in a total volume of 0.3ml per eye, administered no fewer than 6 days apart
21
Control
Control group did not receive voretigene neparvovec-rzyl. The control group became eligible to receive voretigene neparvovec-rzyl 1 year after their baseline evaluations, provided they still met all eligibility criteria.
10
Total31

Baseline characteristics

CharacteristicControlInterventionTotal
Age, Continuous15.9 years
STANDARD_DEVIATION 9.5
14.7 years
STANDARD_DEVIATION 11.8
15.1 years
STANDARD_DEVIATION 10.9
Age, Customized
Age Group
<10 years old
4 Participants9 Participants13 Participants
Age, Customized
Age Group
≥10 years old
6 Participants12 Participants18 Participants
Ethnicity (NIH/OMB)
Hispanic or Latino
1 Participants5 Participants6 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
9 Participants16 Participants25 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants
Multi-luminance Mobility Test (MLMT), bilateral, passing at a lux level of < 125 or ≥ 125 lux
Lowest passing light level of < 125 lux
4 Participants12 Participants16 Participants
Multi-luminance Mobility Test (MLMT), bilateral, passing at a lux level of < 125 or ≥ 125 lux
Lowest passing light level of ≥ 125 lux
6 Participants9 Participants15 Participants
Race (NIH/OMB)
American Indian or Alaska Native
1 Participants2 Participants3 Participants
Race (NIH/OMB)
Asian
2 Participants3 Participants5 Participants
Race (NIH/OMB)
Black or African American
0 Participants2 Participants2 Participants
Race (NIH/OMB)
More than one race
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants
Race (NIH/OMB)
White
7 Participants14 Participants21 Participants
Sex: Female, Male
Female
6 Participants12 Participants18 Participants
Sex: Female, Male
Male
4 Participants9 Participants13 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
0 / 210 / 10
other
Total, other adverse events
13 / 201 / 9
serious
Total, serious adverse events
2 / 200 / 9

Outcome results

Primary

Multi-luminance Mobility Testing (MLMT), Bilateral

The MLMT measures changes in functional vision, as assessed by the ability to navigate a course accurately and at a reasonable pace at different levels of environmental illumination. MLMT was assessed using both eyes at 1 or more of 7 levels of illumination, ranging from 400 lux (a brightly lit office) to 1 lux (a moonless summer night). Each light level was assigned a score code ranging from 0 to 6. A higher score indicated that a subject was able to pass the MLMT at a lower light level. A score of -1 was assigned to those who could not pass MLMT at 400 lux. The MLMT of each subject was videotaped and assessed by independent graders. The MLMT score was determined by the lowest light level at which the subject was able to pass the MLMT. The MLMT score change was defined as the difference between the score at Baseline and the score at Year 1. A positive MLMT score change from Baseline to Year 1 visit indicated that the subject was able to complete the MLMT at a lower light level.

Time frame: One year (change from baseline)

ArmMeasureValue (MEAN)Dispersion
InterventionMulti-luminance Mobility Testing (MLMT), Bilateral1.8 Score Change in Light LevelsStandard Deviation 1.1
ControlMulti-luminance Mobility Testing (MLMT), Bilateral0.2 Score Change in Light LevelsStandard Deviation 1
Secondary

Full-field Light Sensitivity Threshold (FST) Testing: White Light

Measures the light sensitivity of the entire visual field by recording the luminance at which a subject reliably reports seeing the dimmest flash.

Time frame: One year (change from baseline)

ArmMeasureValue (MEAN)Dispersion
InterventionFull-field Light Sensitivity Threshold (FST) Testing: White Light-2.08 log10(cd.s/(m^2))Standard Error 0.29
ControlFull-field Light Sensitivity Threshold (FST) Testing: White Light0.04 log10(cd.s/(m^2))Standard Error 0.44
Secondary

Multi-luminance Mobility Testing (Monocular)

The MLMT measures changes in functional vision, as assessed by the ability to navigate a course accurately and at a reasonable pace at different levels of environmental illumination. MLMT was assessed using the first eye at 1 or more of 7 levels of illumination, ranging from 400 lux (a brightly lit office) to 1 lux (a moonless summer night). Each light level was assigned a score code ranging from 0 to 6. A higher score indicated that a subject was able to pass the MLMT at a lower light level. A score of -1 was assigned to those who could not pass MLMT at 400 lux. The MLMT of each subject was videotaped and assessed by independent graders. The MLMT score was determined by the lowest light level at which the subject was able to pass the MLMT. The MLMT score change was defined as the difference between the score at Baseline and the score at Year 1. A positive MLMT score change from Baseline to Year 1 visit indicated that the subject was able to complete the MLMT at a lower light level.

Time frame: One year (change from baseline)

ArmMeasureValue (MEAN)Dispersion
InterventionMulti-luminance Mobility Testing (Monocular)1.9 Score Change in Light LevelsStandard Deviation 1.2
ControlMulti-luminance Mobility Testing (Monocular)0.2 Score Change in Light LevelsStandard Deviation 0.6
Secondary

Visual Acuity

Measurement of the sharpness of vision, determined by the ability to read letters on a standardized chart from a specified distance.

Time frame: One year (change from baseline)

ArmMeasureValue (MEAN)Dispersion
InterventionVisual Acuity-0.16 LogMARStandard Error 0.07
ControlVisual Acuity0.01 LogMARStandard Error 0.1

Source: ClinicalTrials.gov · Data processed: Mar 9, 2026