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S-antigen localization in developing rds mouse retina.

The morphology of the photoreceptor cell and localization of the cytoplasmic soluble protein, S-antigen, in the retina of the developing retinal degeneration slow (rds) mutant mouse (2-505 postnatal days) were studied by improved immunocytochemical and freeze-substitution methods. Anti-S-antigen antibody labeling was observed first in the postnatal 10-day retina under light microscope. Labeling signals increased progressively to a maximum level in 20 days, and then decreased gradually to an undetectable level by 505 postnatal days. By electron microscopic immunocytochemical methods, S-antigen was detected first in the photoreceptor cells at 3 postnatal days, and increased with development. It was located in the entire cytoplasm of the photoreceptor cell including the rudimentary outer segment, but degenerated and disappeared by 505 postnatal days. S-antigen was also present in the membranous vesicles budding off from the photoreceptor membrane to the subretinal space. The rds photoreceptor cell seems to lose other soluble proteins together with these vesicles. From these results and other published data, we speculate that the degeneration of the photoreceptor cells may be the secondary effects of the loss of a large amount of soluble and membrane proteins following the malfunction of membrane. Recent reports show the rds mouse must have a gene defect in the membrane component such as peripherin or the 39 kDa protein.

Animals↗

Development of the glutamate system in rabbit retina.

We have investigated two characteristics of the glutamate system in the developing rabbit retina. 1) Glutamate immunoreactivity was observed at birth within developing processes of four cell types; two of which, photoreceptors and ganglion cells, are known to be glutamatergic in the adult. Two other cell types, type A horizontal cells and amacrine cells, are immunoreactive to both glutamate and GABA at birth, suggesting that endogenous pools of glutamate in GABAergic neurons serve as precursor for GABA synthesis. Thus it appears that endogenous glutamate pools are present within neurons prior to synaptogenesis as part of the early expression of either the glutamate or GABA transmitter phenotype. 2) Analysis of 3H-glutamate metabolism during retinal development showed that rapid conversion of glutamate to glutamine does not occur until the second postnatal week, coincident with the expression of Muller (glial) cell activity. In the absence of glial metabolism in the neonate, extracellular concentrations of glutamate remain relatively high and are likely to have major effects on neuronal maturation.

Aging↗

The subcellular localization of Otx2 is cell-type specific and developmentally regulated in the mouse retina.

Recent evidence implicates homeodomain-containing proteins in the specification of cell fates in the central nervous system. Here we report that in the embryonic mouse eye Otx2, a paired homeodomain transcription factor, was found in retinal pigment epithelial cells and a restricted subset of retinal neurons, including ganglion cells. In the postnatal and adult eye, however, both the cellular and subcellular distribution of the Otx2 protein were cell type-specific. Otx2 was detected only in the nuclei of retinal pigment epithelial and bipolar cells, but was present in the cytoplasm of rod photoreceptors. Immunohistochemical studies of retinal explants and transfected cell lines both suggested that the retention of Otx2 in the cytoplasm of immature rods is a developmentally regulated process. The differential distribution of Otx2 in the cytoplasm of rods and the nucleus of other cell types, suggests that subcellular localization of this transcription factor may participate cell fate determination during specific phases of retinal development.

3T3 Cells↗

Inherited retinal dystrophy in the rat.

Retinal dystrophies, known in man, dog, mouse, and rat, involve progressive loss of photoreceptor cells with onset during or soon after the developmental period. Functional (electroretinogram), chemical (rhodopsin analyses) and morphological (light and electron microscopy) data obtained in the rat indicated two main processes: (a) overproduction of rhodopsin and an associated abnormal lamellar tissue component, (b) progressive loss of photoreceptor cells. The first abnormality recognized was the appearance of swirling sheets or bundles of extracellular lamellae between normally developing retinal rods and pigment epithelium; membrane thickness and spacing resembled that in normal outer segments. Rhodopsin content reached twice normal values, was present in both rods and extracellular lamellae, and was qualitatively normal, judged by absorption maximum and products of bleaching. Photoreceptors attained virtually adult form and ERG function. Then rod inner segments and nuclei began degenerating; the ERG lost sensitivity and showed selective depression of the a-wave at high luminances. Outer segments and lamellae gradually degenerated and rhodopsin content decreased. No phagocytosis was seen, though pigment cells partially dedifferentiated and many migrated through the outer segment-debris zone toward the retina. Eventually photoreceptor cells and the b-wave of the ERG entirely disappeared. Rats kept in darkness retained electrical activity, rhodopsin content, rod structure, and extracellular lamellae longer than litter mates in light.

Animals↗

Retinal haemorrhages and convulsions.

AIMS: To evaluate the incidence of retinal haemorrhages after convulsions in children. PATIENTS AND METHODS: All children who required hospital admission after an episode of convulsions were included in the study. Complete neurological and ocular examinations, including ophthalmoscopy, were undertaken within 48 hours of hospital admission. RESULTS: Thirty three children were examined according to the protocol and their seizures were classified by a paediatric neurologist. Despite the fact that some of the children also vomited or underwent cardiopulmonary resuscitation, none of the 33 children developed retinal haemorrhages. CONCLUSIONS: Convulsions rarely (if ever) give rise to retinal haemorrhages. The finding of retinal haemorrhages should stimulate a detailed assessment to exclude non-accidental injury, whatever the nature of the associated or antecedent events.

Adolescent↗

Inhibitory effects of neurocan and phosphacan on neurite outgrowth from retinal ganglion cells in culture.

PURPOSE: Neurocan and phosphacan are nervous tissue-specific chondroitin sulfate proteoglycans (CSPGs) that are highly expressed in postnatal rat retina. To elucidate potential roles of neurocan and phosphacan on neurite outgrowth from retinal ganglion cells (RGCs), in vitro experiments were conducted with purified RGCs. METHODS: Neurocan and phosphacan were purified from postnatal rat brain by DEAE-column chromatography and subsequent gel chromatography. RGCs were obtained from postnatal rat retinas by a two-step immunopanning procedure using an anti-Thy 1,1 antibody and an anti-macrophage antibody. Neurite outgrowth from RGCs was examined on poly-L-lysine (PLL)-conditioned plates, and PLL-conditioned plates treated with neurocan or phosphacan. RESULTS: Compared with PLL-conditioned plates, neurocan and phosphacan inhibited neurite outgrowth from RGCs at 48 and 72 hours after seeding. When chondroitin sulfate side chains linked to the core proteins were digested by chondroitinase ABC, the inhibitory effect remained, indicating that the core proteins are related to the effect. Furthermore, the digestion of chondroitin sulfate side chains linked to phosphacan core protein significantly promoted the inhibitory effect of phosphacan on neurite outgrowth from RGCs. CONCLUSIONS: Neurocan and phosphacan, which are highly expressed in postnatal rat retina, inhibit neurite outgrowth from postnatal rat RGCs, indicating that these proteoglycans may be inhibitory factors against neurite outgrowth from RGCs during retinal development.

Animals↗

Fibroblast growth factor stimulates photoreceptor differentiation in vitro.

Dissociated newborn rat retinal cells were maintained in monolayer culture for periods of up to 11 d. When grown in the absence of exogenous growth factors, 1-2% of the total neuronal population expressed opsin (the photopigment that is specific for maturing photoreceptors). Addition of a single dose of 10 ng/ml basic fibroblast growth factor (bFGF) to the culture medium induced an average increase of sixfold in the numbers of neurons expressing opsin. This supplementation had little effect on the total number of differentiated neurons or of glial cells when measured at the same time points. Furthermore, another specific class of retinal neurons, the amacrine cells, showed no changes following exposure to this growth factor. Two other growth factors known to exert neurotrophic effects, epidermal and nerve growth factor, were without effect. The effect of bFGF was dose dependent, with highly significant differences being observed with as little as 100 pg/ml, and with 700 pg/ml eliciting half-maximal stimulation; maximal effects were observed at 10 ng/ml. Induction of opsin expression by low concentrations of bFGF was blocked completely by an antiserum directed specifically against bFGF, but not by preimmune serum immunoglobulins. This increase in the number of photoreceptors expressing opsin following exposure to bFGF could have been due to either increased cell survival, increased proliferation of progenitor cells, or increased differentiation of immature photoreceptors. There was no increase in overall cell survival under the experimental conditions used, and double labeling immunocytochemistry combined with autoradiographic analysis of 3H-thymidine uptake showed that proliferation of neuronal precursors was not enhanced by the addition of bFGF. In contrast to these observations, cultures established from older (postnatal day 3) retina revealed large numbers of opsin-expressing photoreceptors in all culture plates, with or without added growth factors. This reduction in the stimulatory effects of bFGF with increasing postnatal age is consistent with the period of sensitivity being limited to the cycling of neuronal precursors. It is possible that a bFGF-like molecule is secreted by neighboring cells such as the retinal pigmented epithelium, to participate in retinal development and differentiation. To our understanding, this molecule is the first protein identified to influence specifically the differentiation of photoreceptor cells.

Aging↗

Growth behavior of retinotectal axons in live zebrafish embryos under TTX-induced neural impulse blockade.

The growth dynamics of individual DiO-labeled retinal axons deprived of normal neural impulse activity by TTX was monitored in the tectum of living zebrafish embryos with time-lapse video microscopy and compared with normal active axons. Growth cones of TTX-blocked axons advance intermittently with an average velocity similar to normal axons. While exploring their local environment, they are broadened and bear ruffling lamellipodia and filopodia, but become streamlined when advancing. The activity-deprived axons grow directly towards their retinotopic target sites in the tectum as do their normal counterparts and very rarely extend branches en route. Much like normal axons, TTX-blocked axons begin to branch and develop their terminal arbors only at their retinotopic target area. They emit and retract numerous short side branches over a period of several hours. The area they contact (the "exploration field") is of similar dimension as that of active axons, covering from 1% to 7.4% of the tectal neuropil surface, but the final arbors cover an area only one-half to one-sixth as large. TTX arbors are as small as arbors of normal active axons and retinotopically correct. Thus, the typical exploratory growth behavior of developing retinal axons in the tectum, the dynamics of terminal arbor formation at retinotopically correct sites, the dimension of the exploration field, and the shaping of the arbors in zebrafish embryos are unaffected by TTX-induced neural impulse blockade.

Animals↗

The final fates of neurogenin2-expressing cells include all major neuron types in the mouse retina.

The molecular mechanism underlying vertebrate retinal development is not well understood. To examine whether neurogenin2 (ngn2) expression determines cell fate in the retina, we mapped the final fates of cells that once expressed ngn2, using the conditional, binary CreER -LacZ system. We found LacZ+ cells in all 3 nuclear layers of the mouse retina and including all major types of neurons: photoreceptors, horizontal, bipolar, amacrine, and ganglion cells. The distribution of LacZ+ cells among the 3 nuclear layers closely resembled a theoretical distribution of total retinal cells. The temporal window in which each cell type was marked appeared nonrandom, and was similar to its birthdate and birth sequence. These data indicate that cells expressing ngn2 at some point in their life histories may later differentiate into a variety of cell types.

Amacrine Cells↗

Math3 and NeuroD regulate amacrine cell fate specification in the retina.

The basic helix-loop-helix genes Math3 and NeuroD are expressed by differentiating amacrine cells, retinal interneurons. Previous studies have demonstrated that a normal number of amacrine cells is generated in mice lacking either Math3 or NEUROD: We have found that, in Math3-NeuroD double-mutant retina, amacrine cells are completely missing, while ganglion and Müller glial cells are increased in number. In the double-mutant retina, the cells that would normally differentiate into amacrine cells did not die but adopted the ganglion and glial cell fates. Misexpression studies using the developing retinal explant cultures showed that, although Math3 and NeuroD alone only promoted rod genesis, they significantly increased the population of amacrine cells when the homeobox gene Pax6 or Six3 was co-expressed. These results indicate that Math3 and NeuroD are essential, but not sufficient, for amacrine cell genesis, and that co-expression of the basic helix-loop-helix and homeobox genes is required for specification of the correct neuronal subtype.

Amacrine Cells↗

Comparative immunolocalization of the plasma membrane calcium pump and calbindin D28K in chicken retina during embryonic development.

The immunolocalization of the plasma membrane calcium pump (PMCA) was studied in 4-week-old chick retina in comparison with calbindin D28K (CaBP) immunostaining. We have demonstrated that the monoclonal anti-PMCA antibody SF10 from human erythrocyte plasma membrane cross-reacts with a Ca2+ pump epitope of the cells from the neural retina. The immunolocalization of both proteins was also studied during the embryonic development of the chicken retina. At age 4.5 days, the cells of the retina were faintly immunoreactive to PMCA and CaBP antibodies, but the lack of cellular aggregation and differentiation did not allow discrimination between the two proteins. A clear difference in the localization was seen from the tenth day of development through post-hatching with slight variation. PMCA localized mainly in the outer and inner plexiform layers, in some cells in the ganglion layer, in the nerve fiber layer and slightly in the photoreceptor cells. CaBP was intensely stained in cones, cone pedicles and some amacrine cells. The number of CaBP positive amacrine cells declined after hatching. A few ganglion cells and several nerve fibers were CaBP immunoreactive. The role of these proteins in the early stages of retinal development is unknown, but the results suggest that Ca2+ homeostasis in the retina is well regulated, probably to avoid excessive accumulation of Ca2+, which often leads to neurodegeneration.

Animals↗

Seeing more clearly: recent advances in understanding retinal circuitry.

Among 10 breakthroughs that Science announced at the end of 2002 was the discovery of a photosensing (melanopsin-containing) retinal ganglion cell (RGC) and its role in entraining the circadian clock. This breakthrough exemplifies the ultimate goal of neuroscience: to understand the nervous system from molecules to behavior. Light-sensing RGCs constitute one of a dozen discrete RGC populations coding various aspects of visual scenes by virtue of their unique morphology, physiology, and coverage of the retina. Interestingly, the function of the melanopsin-containing RGCs in entraining the circadian clock need not involve much retinal processing, making it the simplest form of processing in the retina. This review focuses on recent advances in our understanding of retinal circuitry, visual processing, and retinal development demonstrated by innovative experimental techniques. It also discusses the advantages of using the retina as a model system to address some of the key questions in neuroscience.

Animals↗

Developmental alteration of the expression and kinase activity of cyclin-dependent kinase 5 (Cdk5)/p35nck5a in the rat retina.

Neuronal Cdc2-like kinase has been purified from the bovine brain as a proline-directed serine/threonine kinase. This kinase is a heterodimer of Cdk5 and p35nck5a and influences neuronal maturation or sprouting in the normal brain. In this study, we showed the expression of Cdk5/p35nck5a kinase in the developing rat retina. The expression of Cdk5 and p35nck5a increased between 1 week and 3 weeks after birth. These expression levels were most prominent from 2 weeks to 3 weeks after birth and decreased after 4 weeks. The developmental change of Cdk5/p35nck5a kinase activity coincided with those of the expression of p35nck5a and Cdk5. An immunohistochemical study showed that Cdk5 was expressed in the ganglion cells and in some cells in the inner nuclear layer at an early stage. With retinal development, Cdk5 was expressed in the inner plexiform layer also. In the adult, the expression of Cdk5 was restricted to the inner plexiform layer and to some cells in the inner nuclear layer. These changes of localization in the developing retina were very close to those of B-50/GAP-43. On the other hand, the expression of p35nck5a was restricted to the soma of the neuron in the developing retina. This subcellular localization in the developing retina agreed with that in the developing rat brain. The expression levels of Cdk5 and p35nck5a in retina of rats raised from fetus to 3 weeks after birth in darkness were 36% and 40% respectively, of the baseline for control rats. Moreover, the kinase activity in rats raised in darkness was lower than that in control rats. These data suggest that Cdk5/p35nck5a may play a role in neuronal plasticity in the developing rat retina.

Animals↗

Cytomegalovirus retinitis after immune reconstitution.

Cytomegalovirus (CMV) infection is the most common opportunistic infection that affects the retina in HIV-positive patients; it typically occurs in the setting of severe immune suppression (CD4 count less than 50 cell/microL). We present a case report of an HIV-infected patient in whom recurrent CMV retinitis developed after HAART and apparent immune reconstitution (CD4 count of greater than 500 cells/microL). This case report underscores that CMV infection may occur despite high CD4 counts among patients who experience only partial immune reconstitution.

AIDS-Related Opportunistic Infections↗

Involvement of L-DNase II in nuclear degeneration during chick retina development.

During the development of the neural retina, 50% of the neurons die physiologically by apoptosis. In the chick embryo, the apoptotic wave starts at E8 and ends at E18, with a peak at E11. The onset of apoptosis is accompanied by the activation of several degradative enzymes. Among these, the activation of the endonucleases leads to the degradation of the genomic DNA of the cell which is thought to be the final event in apoptosis. Here, we have investigated the endonucleases activated during apoptosis associated with retinal development. We have found that Ca2+-Mg2+-dependent endonucleases, as well as acid endonucleases are activated. The results obtained in vitro using purified nuclei from chicken retina indicate that the endonuclease activity resulting from the activation of L-DNase II, an acid DNase is responsible for most of the DNA degradation observed in these cells.

Animals↗

Changes in expression and distribution of lactate dehydrogenase isoenzymes in the developing chick retina.

We have investigated the expression and distribution of lactate dehydrogenase (LDH) isoenzymes in the developing and adult chicken retina. Non-denaturing polyacrylamide gel electrophoresis was used to follow the appearance and expression of the five main LDH isoenzymes in tissue homogenates. Immunohistochemistry was used to define the distribution of the aerobic heart type LDH and the anaerobic muscle type LDH in paraffin sections of embryonic and adult chick retina. The electrophoretic results show that the expression of the anaerobic isoenzyme increases in the retina as development proceeds. Immunoreactivity against the anaerobic isoenzyme localizes to the inner plexiform layer and other regions of the inner chick retina. The aerobic isoenzyme immunoreactivity is localized to the inner segments of the photoreceptor cells as well as the ganglion cell layer. Both antibodies bind weakly in other layers of the retina with the notable exception that the anaerobic protein does not localize in the photoreceptor cell inner segments. These results provide further evidence for the anaerobic nature of the adult inner retina. As retinal development proceeds, the expression of the anaerobic isoenzyme in the retina increases.

Animals↗

Analysis of the ABCR (ABCA4) gene in 4-aminoquinoline retinopathy: is retinal toxicity by chloroquine and hydroxychloroquine related to Stargardt disease?

PURPOSE: To determine if mutations in ABCR (ABCA4) are associated with chloroquine/hydroxychloroquine retinopathy. METHODS: DNA from eight patients with chloroquine or hydroxychloroquine retinopathy was studied. Controls were 80 individuals over age 65 years with normal retinal examinations. Ophthalmoscopy, color vision testing, visual fields, retinal photography, and fluorescein angiography were performed on the eight patients. Direct DNA sequencing of the exons and flanking intronic regions of the ABCR gene was completed for all patients. RESULTS: Clinical evaluation confirmed the diagnosis of chloroquine/hydroxychloroquine retinopathy and excluded Stargardt disease in each patient. Two patients had heterozygous ABCR missense mutations previously associated with Stargardt disease. None of the controls had these missense mutations. Three other patients had other missense polymorphisms. CONCLUSIONS: Some individuals who have ABCR mutations may be predisposed to develop retinal toxicity when exposed to chloroquine/hydroxychloroquine. We urge further study of a larger cohort of patients with chloroquine/hydroxychloroquine retinopathy.

ATP-Binding Cassette Transporters↗

GABA(A) receptor immunoreactivity is transiently expressed in the developing outer retina.

Extensive evidence has suggested a trophic role of gamma-aminobutyric acid (GABA) on developing cone photoreceptors in postnatal retina. In a previous study, we showed that GABA raises intracellular calcium levels in the developing cones via activation of GABA(A) receptors. Using confocal microscopy in conjunction with immunocytochemistry, we have now demonstrated that (1) GABA(A) receptor subunits are localized on cone cell bodies as well as on cone pedicles, indicating that GABA has a direct, rather than indirect, effect on cones and (2) the temporal expression of GABA(A) receptor subunits coincides with the developmental effects of GABA on cone synaptogenesis. An antibody against the beta 2/3 subunits of the GABA(A) receptor and a specific cone marker peanut-agglutinin lectin (PNA) were used to double-label wholemount neonatal retinal preparations. Results show that GABA(A) receptors are transiently expressed on cone photoreceptors in the early stages of postnatal retinal development. GABA (A)receptor immunoreactivity is clearly present on cone cell bodies and their processes and on other--as yet unidentified--elements (horizontal cells?) in the outer plexiform layer. Immunoreactivity decreases within cone photoreceptor somata after postnatal day 5, but persists in the processes of the outer plexiform layer until day 7. Our results provide support for the hypothesis that GABA acts as an important developmental regulator of cone photoreceptor maturation.

Animals↗