| Literature DB >> 19756181 |
S M Petersen-Jones1, J T Bartoe, A J Fischer, M Scott, S L Boye, V Chiodo, W W Hauswirth.
Abstract
PURPOSE: To compare self-complementary (sc) and single-stranded (ss) adeno-associated viral 2/5 (AAV2/5) vectors for retinal cell transduction in the dog when delivered by subretinal injection.Entities:
Mesh:
Substances:
Year: 2009 PMID: 19756181 PMCID: PMC2743804
Source DB: PubMed Journal: Mol Vis ISSN: 1090-0535 Impact factor: 2.367
Details of primary antibodies used for IHC
| Anti-GFP | Rabbit | Cells expressing GFP protein | 1:5,000 | Dr. Luc Berthiaume, University of Alberta, Alberta, Canada |
| Human Cone Arrestin | Rabbit | Cone photoreceptors | 1:100,000 | Dr. Cheryl Craft & Xuemei Zhu, Mary Allen Lab, Doheny Eye Institute, University of Southern California, Los Angeles, CA |
| Protein Kinase C alpha | Mouse | Rod bipolar cells | 1:200 | BD Biosciences, PharMingen, Rockville, MD |
| PSD95 | Mouse | Rod spherules and cone pedicles | 1:100 | Neuromab, University of California Davis, Davis, CA |
| Calbindin | Mouse | Horizontal cells | 1:1,000 | Swant Immunochemicals, Bellinzona, Switzerland |
| Calretinin | Rabbit | Horizontal cells | 1:1,000 | Swant Immunochemicals, Bellinzona, Switzerland. |
| GFAP | Rabbit | Astrocytes and reactive Müller glia | 1:2,000 | DakoCytomation, Carpinteria, CA |
Figure 1Comparison of GFP expression in scAAV2/5 and ssAAV2/5 injected eyes (dog 1). A: Pre-INJ shows the fundus appearance before subretinal injection. post-INJ images were taken immediately after subretinal injection and show the resulting retinal detachment. The images day 6 to day 54 were taken using identical fluorescein angiography settings. The lower images (day 6 and 11 for scAAV2/5 and day 6 to 54 for ssAAV2/5) were adjusted for brightness and contrast to the same degree. GFP expression in the scAAV2/5 injected eye was detectable from day 6 whereas in the ssAAV2/5 injected eye it was not apparent until day 32. GFP expression was stronger in the scAAV2/5 injected eye. B: Comparison of GFP fluorescence in retinal cross sections from the center of the injected regions of both eyes of dog 1 (obtained with identical microscope and camera settings). Scale bar equals 50 µm.
Figure 2Immunohistochemical investigation of retinal cell type expressing GFP. A to C are conventional fluorescent microscopy images and D to F are confocal microscopy images. A and B: Sections through the ssAAV2/5 injected eye from the peripheral retina away for the injection site (A) and through the injection site (B). C: A section through the injection site in a scAAV2/5 injected eye. D: A section through the injected region of a scAAV2/5 eye. The Z stack is shown on the right. Co-localization of hCAR immunoreactivity and GFP expression is present in some, but not all of the cone photoreceptors. Arrows indicate two hCAR positive cones that do not have observable endogenous GFP expression. E: The rod bipolar cells (which are PKC immunoreactive) are not expressing GFP. F: There is co-localization of GFP expression and PSD95 immunoreactivity in photoreceptor terminals. Abbreviations: ONL, outer nuclear layer ; INL, inner nuclear layer; GCL, ganglion cell layer, PKC, protein kinase C (rod bipolar cell marker); hCAR, human cone arrestin (a cone marker); GFP, green fluorescent protein; PSD95, post synaptic density protein 95 (a marker for rod and cone spherules). Scale bar equals 50 μm.
Figure 3AAV2/5-GFP transduction includes a few horizontal cells and Müller glia. A: The panel shows native GFP fluorescence (scAAV2/5-GFP-injected retina), calbindin and calretinin immunohistochemistry and a merge of all three. The arrow indicates a horizontal cell that is expressing GFP. B: The image on the left shows endogenous GFP expression; some inner retinal cells are expressing GFP (ssAAV2/5-GFP-injected retina). The image on the right shows immunohistochemistry using an anti-GFP antibody. The arrows indicate Müller cells that are expressing GFP. Scale bar equals 50 µm.
Figure 4Investigation of GFAP expression in the injected retina. The expression of GFAP was similar between transduced (lower panel) and non-transduced (upper panel) regions of scAAV2/5-injected eyes. The similarity in GFAP immunoreactivity between the injected and non-injected areas indicates that expression of GFP is not inducing glial cell reactivity. Scale bar equals 25 µm.