The aim of this clinical trials is to evaluate the safety and efficacy of intravitreal injection of GMP-compliant BM-MSC-derived sEVs in patients with retinitis pigmentosa.
Inherited retinal disease (IRD) is one of the leading causes of blindness in adolescents and adults, affecting 1 in 2,000 to 3,000 people globally. Recently, advances arose in the use of stem cells as treatment modalities for inherited retinal diseases, including retinitis pigmentosa (RP). The first step, production and characterization of GMP-compliant bone marrow mesenchymal stem cell (BM-MSC)-derived small extracellular vesicles (sEVs) has been performed according to the ethical clearance by the institutional review board of the Faculty of Medicine Siriraj Hospital Mahidol University (approval number Certificate of Approval (COA) no. Si 57112022, protocol number 44312565 (1RB1), dated August 8, 2022). In a prior study, the investigators have conducted a phase I clinical trial to assess the safety of intravitreal autologous MSC injection in 14 patients with advanced-stage RP. After follow-up periods ranging from 1.5 to 7 years, the investigators found that this intervention appeared to be safe and potentially effective. Nevertheless, several mild and one severe adverse event were observed, although all were manageable. Beside the primary outcome, safety of the MSCs, the investigators found statistically significant improvements in the best corrected visual acuity (BCVA) compared to baseline, although they returned to the baseline at 12 months. To minimize the unwanted effects and still maintain the benefit of the MSCs, the cell-free approach using the extracellular vesicles of MSCs is of interest. On the current study, the investigators would like to evaluate the safety and efficacy of intravitreal injection of GMP-compliant BM-MSC-derived sEVs in patients with retinitis pigmentosa.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
15
The procedure will be performed under topical anesthesia (0.5% tetracaine hydrochloride ophthalmic solution). The intravitreal injection will be performed by the retina specialist. Topical antiseptic (5% povidone iodine solution) will be applied on the periorbital and ocular surface. Eyelid speculum will be inserted to expose the injection area. It will include an intravitreal injection at the superotemporal quadrant (right eye) and superonasal quadrant (left eye), 3.5 to 4 mm posterior to the limbus. A 30-gauge needle will be used to deliver a 0.05 to 0.1 ml sEV suspension into the vitreous cavity. Indirect ophthalmoscopy will be performed immediately after the procedure to ensure no occlusion of the central retinal artery. The eye will be rinsed thoroughly by normal saline to wash out remaining antiseptic. The total duration for an intravitreal injection will be approximately 30 minutes.
Siriraj Hospital
Bangkok Noi, Bangkok, Thailand
RECRUITINGIncidence of treatment-emergent adverse events
To evaluate the safety of the intervention. The evaluations include the intraocular pressure in mmHg, cell value in number of cells in 0.5 cubic millimeter and flare value in photons per millisecond, anterior segment examination using slit lamp biomicroscopy, fundus evaluation using fundus photography, retinal assessment, and subjective complaints of study participants.
Time frame: 1 year
Ophthalmological parameters
To observe the efficacy of the intervention. The evaluations comprise the best corrected visual acuity (BCVA) in the Logarithm of the Minimum Angle of Resolution (LogMAR) score. The value "0" indicates "no loss", that is visual acuity equal to the reference standard (1.0, 20/20). Visual acuity better tans 1.0 (20/20) is represented by negative LogMAR values. LogMAR 1.0 is equivalent to 20/200. Blindness is defined as a best-corrected visual acuity worse than 1.3 LogMAR.
Time frame: 1 year
Ophthalmological parameters
contrast sensitivity test using the Stereo Optical Functional Vision Analyzer (FVA) to measure contrast sensitivity by generating a contrast sensitivity function curve that portrays sensitivity on the Y-axis and spatial frequency on the X-axis.
Time frame: 1 year
Ophthalmological parameters
sweep visual evoked potential in Snellen unit
Time frame: 1 year
Ophthalmological parameters
kinetic visual field test in degree field of vision at four quadrants (superior, nasal, inferior, temporal)
Time frame: 1 year
Ophthalmological parameters
optic disc and cup volume in cubic millimeter
Time frame: 1 year
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Ophthalmological parameters
retinal nerve fiber layer thickness in micron
Time frame: 1 year
Ophthalmological parameters
electrophysiology (electroretinography in microvolt, visual evoked potential in millisecond and microvolt, multifocal electroretinography in signal strength response)
Time frame: 1 year
Ophthalmological parameters
optical coherence tomography of the macula in micron
Time frame: 1 year
Ophthalmological parameters
optical coherence tomography angiography in percent of vessel flow density
Time frame: 1 year
Ophthalmological parameters
foveal avascular zone in square millimeter
Time frame: 1 year
Ophthalmological parameters
macular thickness in micron
Time frame: 1 year