| Literature DB >> 29884405 |
Manjit S Mehat1, Venki Sundaram1, Caterina Ripamonti2, Anthony G Robson3, Alexander J Smith4, Shyamanga Borooah5, Martha Robinson6, Adam N Rosenthal7, William Innes8, Richard G Weleber9, Richard W J Lee1, Michael Crossland1, Gary S Rubin1, Baljean Dhillon5, David H W Steel10, Eddy Anglade11, Robert P Lanza11, Robin R Ali12, Michel Michaelides1, James W B Bainbridge13.
Abstract
PURPOSE: Transplantation of human embryonic stem cell (hESC)-derived retinal pigment epithelial (RPE) cells offers the potential for benefit in macular degeneration. Previous trials have reported improved visual acuity (VA), but lacked detailed analysis of retinal structure and function in the treated area.Entities:
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Year: 2018 PMID: 29884405 PMCID: PMC6195794 DOI: 10.1016/j.ophtha.2018.04.037
Source DB: PubMed Journal: Ophthalmology ISSN: 0161-6420 Impact factor: 12.079
Participants and Dosing
| Participant number | Age (yr) | hESC-RPE dose | Sex | Study eye | Baseline Visual Acuity ETDRS LogMAR | Genotype Pathogenic variants on ABCA4 gene | |
|---|---|---|---|---|---|---|---|
| Study eye | Control eye | ||||||
| P1 | 34 | 50 000 | M | OD | 1.29 | 1.23 | c.768G>T (p.?) |
| P2 | 44 | M | OS | 1.36 | 1.39 | c.4918C>T (p.Arg1640Trp) | |
| P3 | 46 | M | OS | 1.33 | 1.33 | c.2588G>C (p.Gly863Ala) | |
| P4 | 41 | 100 000 | M | OS | 1.39 | 1.35 | c.4139C>T (p.Pro1380Leu) |
| P5 | 51 | M | OD | 1.37 | 1.39 | c.454C>T (p.Arg152*) | |
| P6 | 44 | F | OD | 1.84 | 1.84 | c.161G>A (p.Cys54Try) | |
| P7 | 40 | 150 000 | M | OD | 1.84 | 1.36 | c.666_678del (p.Lys223fs) |
| P8 | 53 | M | OS | 1.27 | 1.23 | c.2588G>C (p.Gly863Ala) | |
| P9 | 40 | M | OS | 1.39 | 1.33 | c.634C>T (p.Arg212Cys) | |
| P10 | 50 | 200 000 | M | OS | 1.25 | 1.19 | c.1906C>T (p.Gln636*) |
| P11 | 45 | M | OS | 1.39 | 1.39 | c.5461-10T>C | |
| P12 | 45 | M | OS | 1.09 | 1.10 | c.2588G>C (p.Gly863Ala) | |
Figure 1Fundus photographs of recipient eyes at 12 months after transplantation. In each image, the retinotomy site is indicated by the green dot, and the area of subretinal administration is outlined by the dotted black line. P = patient.
Figure 2Fundus photographs, OCT images, and fundus autofluorescence images in (A) patient 4 and (B) patient 10. A, In patient 4, fundus images demonstrating the time-course of hyperpigmentation (Ai, Aiv, and Avii) are presented with corresponding OCT line scans, at lower and higher magnification. A progressive increase in optical signal evident in the outer retina consistent with the continued presence of transplanted cells. B, In patient 10, images demonstrating the time-course of hyperpigmentation (Bi, Bii, and Biii) are presented with the associated fundus autofluorescence images demonstrating reduced signal consistent with masking of endogenous autofluorescence.
Figure 3Microperimetry images showing topography of retinal sensitivity. The retinal sensitivities at test loci in each study eye, measured by microperimetry (Nidek MP-1) at baseline and 12 months, are superimposed on the respective fundus image. Each is presented with a corresponding topographic contour map to illustrate the hill of vision of retinal sensitivity, constructed by interpolation of sensitivities at the test loci using Visual Field Modelling and Analysis (VFMA) software. The blue line outlines the area of recipient retina administered human embryonic stem cell-derived retinal pigment epithelial cell suspension. P = patient; K = thousand.
Figure 4Boxplots showing the change in retinal sensitivity from the baseline (mean of 3 baseline tests) as measured by microperimetry (Nidek MP-1) for each test locus at month 12. Loci were stratified into 3 groups: outside the transplantation area (solid green dots), within the transplantation and associated with subretinal hyperpigmentation (solid blue dots), or within the transplantation area and without subretinal hyperpigmentation (solid orange dots). Using a selection tool on the Visual Field Modelling and Analysis (VFMA) software, volumetric sensitivity within regions of retinal pigmentation were extracted from regions of pigmentation and nonpigmentation. The boxplots show the median value, quartiles, and range. hESC = human embryonic stem cell; K = thousand; P = patient; RPE = retinal pigment epithelial.