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J E Turner

Publications and source records attributed to J E Turner.

At least 19 recordsLinked to original sources

Effects of RPE-cell factors secreted from permselective fibers on retinal cells in vitro.

This study was undertaken to determine if retinal pigment epithelial (RPE) cells encased in permselective hollow fibers survive in a tissue culture environment and secrete a diffusible trophic factor(s) that may affect retinal cell survival in vitro. In this study, RPE cells were isolated from 6- to 8-day-old Long-Evans rats, then loaded into hollow fibers. The RPE-cell fibers were then cultured for at least one week in serum-containing medium. These RPE-cell fibers were subsequently co-cultured with cells isolated from retinas of day 2 Long-Evans rats in a defined medium. For at least 6 days in culture, opsin-positive cells were observed on the surface of larger flat cells. Over 80% of the small, round cells immunostained for opsin. However, opsin-immunostained cells were seldom seen in cultures with control fibers, that lacked RPE cells. In addition, conditioned medium collected from either the RPE-cell fibers or cultured RPE cells affected survival of opsin-positive retinal cells in culture in a manner similar to that of the RPE-cell fibers. Furthermore, selected growth factors such as epidermal, nerve and fibroblast growth factors, were unable to sustain retinal cell survival and affect morphological development as seen in RPE-CM supplemented cultures. In vivo companion developmental studies demonstrated that few opsin-positive cell bodies were observed in retinas of day 2 Long-Evans rats, the age corresponding to the stage of retinal cell isolation. In retinas of day 5 Long-Evans rats, the age corresponding to the end point of the in vitro assay, a dramatic increase in the number of opsin-immunostained cell bodies was noted, which corresponds to the developmental sequence also seen in culture. Light and electron microscopic examination revealed that the RPE cells cultured in the hollow tubes maintained an RPE-like structure for several months, in that these cells contained melanosomes and extended microvilli from their apical border and formed junctional complexes with adjacent cells. Results of this study confirm our earlier findings that RPE cells secrete an apparent novel factor(s) that affects retinal cell survival in vitro and, most significantly, the described encapsulation/secretion mechanism may provide a convenient method to deliver such factors for further in vivo testing of this phenomenon.

Animals

RPE conditioned medium stimulates photoreceptor cell survival, neurite outgrowth and differentiation in vitro.

In the present study we have investigated retinal pigment epithelium-photoreceptor cell interactions in vitro, and their contributions to photoreceptor cell survival and differentiation. Preparations enriched for intact photoreceptor cells from neonatal rat retina were grown in either serum-free medium supplemented with RPE-conditioned medium (RPE-CM) or in serum-free medium alone. A variety of substrate conditions were tested for the best neurite outgrowth. Cultures were monitored for 7 days by light and electron microscopy, as well as by opsin, vimentin and carbonic anhydrase-C immunocytochemistry. RPE-CM was found to stimulate both proliferation of flat cells and photoreceptor differentiation. The number of photoreceptors bearing neurites and their neurite length measurements showed significant differences between the RPE-CM group and the control group within 20 hr in culture. Elimination of contaminating flat cells by the addition of an antimitotic drug prevented photoreceptor cell morphological maturation; however, these cells survived as round cell bodies without processes for at least 10 days in the presence of RPE-CM and expressed opsin during this period. Conditioned medium from the flat-cell monolayers did not support photoreceptor differentiation or their survival. However, the presence of flat cells was a requisite to achieve any neurite outgrowth even in the presence of RPE-CM. In the absence of RPE-CM, neither photoreceptors nor flat cells survived or proliferated. Heat and trypsin treatment of the RPE-CM abolished all its growth-supporting activities which indicates its proteinaceous nature. This represents the first time in vitro that an RPE-derived factor(s) has been shown to be responsible for photoreceptor cell survival and differentiation.

Animals

Maintenance of opsin and S-antigen gene expression in RCS dystrophic rats following RPE transplantation.

The effects of retinal pigment epithelium (RPE) transplantation in rescuing photoreceptor cells (PRC) were studied in RCS rats bearing the rdy mutation. RPE preparations from Long-Evans rats were transplanted into the subretinal space of post-natal (P) 17-19-day-old RCS rats. Age-matched RCS animals in the control group received injections of the transplantation vehicle buffer alone. The animals were killed at various post-natal ages after RPE transplantation. Immunocytochemical studies using antibodies to opsin and S-antigen indicated intact photoreceptor cells in the transplanted retinas. In contrast age-matched sham-injected animals did not show any rescue of photoreceptor cells at P90. Single RPE transplantation of 60,000 cells in each eye resulted in restoration of near normal mRNA levels for opsin, and S-antigen proteins. Comparisons of mRNA levels of two visual proteins using cDNA probes demonstrated a therapeutic effect of RPE transplantation in preventing a progressive decline in mRNA levels due to retinal degeneration. In contrast, P109 sham-injected controls showed no detectable mRNA levels for these proteins. In vitro protein synthesis in RPE-transplanted retinas implied further competence of these retinas. These data suggest that RPE transplantation not only rescues photoreceptors from degeneration, but more importantly, it allows normal transcription and translation in these cells rendering them capable of participating in the visual and signal transduction cascade.

Animals

Retinal pigment epithelial cell transplantation in RCS rats: normal metabolism in rescued photoreceptors.

Photoreceptor cells in Royal College of Surgeons (RCS) rats with inherited retinal dystrophy can be rescued by the transplantation of normal, wild-type retinal pigment epithelial (RPE) cells, if done before photoreceptor cell death. In the present study, we have examined several metabolic features of rescued photoreceptors and transplanted RPE cells at 2.3-3.3 months after transplantation. Rescued photoreceptors with a structurally normal RPE interface showed a rod outer segment renewal rate similar to that of normal control rats of 2.2 microns day-1, as measured in autoradiograms. Rod outer segment disc shedding had values indistinguishable from those in normal controls, as measured by the number of phagosomes in the transplanted RPE cells both during the burst of disc shedding soon after the onset of light in the morning and during the middle of the light cycle when disc shedding is low. The interphotoreceptor matrix, which is synthesized by both photoreceptors and the RPE, was distributed normally in the regions where normal-appearing photoreceptors were present underlying normal, transplanted RPE cells. Thus, the rescued photoreceptors show normal metabolic rates and normal interactions with the RPE in each of the parameters examined. These findings, combined with the previous demonstration of opsin and Na+,K(+)-ATPase expression by the rescued photoreceptors, support our interpretation that the surviving, normal-appearing photoreceptors may function normally. Moreover, transplantation of normal RPE cells reversed pathological changes in the photoreceptors that had already occurred by the time of transplantation.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Vitreoretinal surgical technique for transplanting retinal pigment epithelium in rabbit retina.

Transplantation of retinal pigment epithelial (RPE) cells has been proposed as a potential remedial procedure for previously untreatable retinal diseases. In this study, a vitreoretinal surgical technique was used to transplant pigmented RPE cells obtained from pigmented rabbits into the subretinal space of New Zealand White rabbits. At the time the animals were sacrificed, the retina was re-attached in all but 4 of the 24 experimental eyes. Histologically, by one week the transplanted RPE cells had formed a monolayer in patchy areas beneath the attached retina. By electron microscopy, RPE cells with prominent melanin granules were found attached to Bruch's membrane. Three weeks after transplantation, grafted RPE cells had formed apical microvilli and tight junctions with adjacent cells. The nucleus of the cells containing pigment had become oval, and their contact with Bruch's membrane appeared to be composed of bsal infoldings that were well formed. Our findings demonstrated the functional appearance of the transplanted RPE cells.

Animals

Measurement of products from X-irradiated glycylglycine in oxygen-free aqueous solutions.

The product yields in X-irradiated aqueous solutions of glycylglycine (0.05 M and 1.0 M) were measured under deoxygenated conditions. Comparison was made between the results obtained from X- and 60Co gamma-irradiated glycylglycine solutions reported by Garrison, Sokol, and Bennett-Corniea (Radiat. Res. 53, 376-384, 1973). The mechanisms proposed by Garrison et al. were tested by evaluating the stoichiometric relationships. The two intermediate radicals, deamination and H-abstraction radicals, were produced in the initial interactions of glycylglycine with reactive species (e-aq, OH, H) formed in H2O. Although the difference was fairly large at 0.05 M, the production of deamination radicals agreed well with the consumption of the radicals at 1.0 M. The production and the consumption of H-abstraction radicals were within the estimated experimental error in dilute solutions. Among all the products only the G value of aspartic acid decreased with increasing concentration of glycylglycine. This could be attributed to the fact that more acetylglycine is formed at the expense of aspartic acid at 1.0 M than at 0.05 M glycylglycine solutions. Competitive reactions involved with deamination radicals under conditions of homogeneously distributed reactants are discussed to elucidate the radiation chemistry of glycylglycine.

Cobalt Radioisotopes

[Scanning electron microscopic observation of the corneal endothelium in the Royal College of Surgeons rat].

The pathologic change in the cell surface of the corneal endothelium of the Royal College of Surgeons (RCS) rat is reported. Scanning electron microscopy (SEM) of 1-month-old RCS rat revealed several mushroom-like microvilli on the endothelial surface. In the 3-month-old RCS rat, the corneal endothelium had numerous filamentous microvilli, and some of the corneal endothelial cells had cytoplasmic edema. In the 6-month-old RCS rat, SEM showed numerous slender microvilli on the surface of corneal endothelium. These endothelial changes could be caused by the toxic substances generated from the degenerating retina.

Animals

[Iris degeneration in the Royal College of Surgeons rat].

The pathologic changes in the iris epithelial cells of the Royal College of Surgeons (RCS) rat are reported. Light microscopy demonstrated progressive thinning of the iris tissue of the RCS rat after 3 month of age. Transmission electron microscopy showed cellular degenerative changes in both the anterior and the posterior iris epithelium. It is possible that these changes in the iris are the result of the same type of genetically determined defect of the retinal pigment epithelial cells that characterizes this animal model for retinal degeneration.

Animals

[A comparative study of distribution of 70 kD stress protein in the retina between the normal and retinal dystrophic rat].

The immunolocalization of 70 kD stress protein (SP70) was investigated in the retinal tissues of normal Sprague-Dawley (SD) rat and that of the Royal College of Surgeons (RCS) rat with inherited retinal dystrophy. From postnatal day 2 to 15, SP70 was present in the maturing retinal tissues of both rat strains. In the RCS rat retina of postnatal day 22, at the onset of retinal degeneration, SP70 was expressed in the retinal pigment epithelium (RPE). At postnatal day 40, immunostaining for SP70 was considerably reduced in the degenerating RCS retina. In the RCS retina at postnatal day 90, immunostaining for SP70 was completely lost except for the ganglion cells and the inner plexiform layers. These results suggested that, at the onset of retinal degeneration, the RCS retina may have a state of metabolic stress, which induced SP70 expression in the RPE. At the end stage of retinal degeneration, the immunostaining for SP70 was lost, suggesting the lack of production of SP70 in the degenerated retinal tissue.

Animals

[Distribution of 70 kD stress protein in the optic nerve. A comparative study between the normal and retinal dystrophic rat].

The immunolocalization of the 70 kD stress protein (SP70) was investigated and compared in the optic nerve of normal Sprague-Dawley (SD) rats and that of the Royal College of Surgeons (RCS) rat with inherited retinal dystrophy. At postnatal day 8, SP70 was present in the maturing glial cell bodies of both rat strains. At postnatal day 22, SP 70 was observed in the glial cell bodies and optic nerve fibers of both rat strains. At postnatal day 40 RCS rat, SP70 was diminished in the optic nerve fibers and glial cell bodies but was increased in the glial cell nuclei. This suggests that axonal transportation of SP70 from the retina may be reduced following retinal degeneration. In the SD optic nerve, the normal distribution of immunostaining for SP70 was preserved. Stress proteins are thought to play an important role in cellular development and survival mechanisms. It was suggested that optic nerve was damaged by the retinal degeneration in the RCS rat.

Animals

Ciliary body degeneration in the Royal College of Surgeons dystrophic rat.

We have studied the pathological changes of the ciliary body in Royal College of Surgeons (RCS) rats with an inherited retinal degeneration. Morphometric analyses were performed on sectioned ciliary bodies by a computerized morphometry system. Age-matched non-pigmented Sprague-Dawley (SD) rats were used as the control animals. The ciliary body of 26-day-old RCS dystrophic rats showed normal structure. However, the length and height of the pars plicata of the ciliary body became shorter and the area became smaller with increased age. Significant decreases in the values of these three parameters were observed between 26-day-old and 3-month-old RCS dystrophic rats. These parameters also showed significant differences when values of 3-month-old RCS dystrophic rats were compared to those of 3-month-old control SD rats. The same trends were observed in the ciliary body measurements in RCS dystrophic rats up to 1 year of age. Scanning electron microscopic examination demonstrated the progressive thinning of the pars plicata of the ciliary body with age in the RCS dystrophic rats. The total volume of the ciliary process of 6-month-old RCS dystrophic rats appeared to be one-half that of 26-day-old RCS dystrophic rats. Transmission electron microscopy revealed progressive cellular degenerative changes in the non-pigmented and pigmented ciliary epithelium of the RCS dystrophic rats. It was apparent that the pigmented ciliary epithelium had more severe degenerative changes than the non-pigmented ciliary epithelium. Immunostaining for Na+ + K+ ATPase of the ciliary epithelium was found to be less in the RCS dystrophic rats than in age-matched controls. This result suggests a possible dysfunction of ion transport in the ciliary body of the RCS dystrophic rats, which may account for their increased incidence of cataract formation. Although the mechanisms for the ciliary body degeneration in RCS dystrophic rats remain speculative, these findings add a new area of interest in this model of inherited retinal dystrophy.

Animals

Radiation damage to a biomolecule: new physical model successfully traces molecular events.

For the first time, a complete computer simulation of physical and chemical reactions at the molecular level has been used to calculate the yield of a chemical species resulting from irradiation of a biological molecule in aqueous solution. Specifically, when a solution of glycylglycine is irradiated anaerobically, an ammonia molecule is released by the action of a hydrated electron, which is produced by irradiation of water. In the computations, Monte Carlo techniques are used to simulate the statistical progression of molecular events as they are assumed to occur. These include the initial physical ionization and excitation of water molecules along a particle track in the liquid; the subsequent formation of free radicals and other species: and the random diffusion and chemical reactions of the species with each other, the solvent, and solute molecules. We have calculated and measured the yield of ammonia from irradiation of glycylglycine with 250 kVp x-rays as a function of glycylglycine concentration between 0.01 and 1.2 M. Excellent agreement is obtained between predicted and measured results. The literal simulation of events, combined with specific experimental measurements, offers a powerful new tool for studying mechanisms of radiation action and damage at the molecular level.

Ammonia

Development and distribution of opsin-like immunoreactivity in the dystrophic retinas of rdle mutant mice.

The opsin-like immunoreactivity in the retinas of C57BL/6J rdle mutant mice has been studied by light-microscopic immunocytochemistry. Positively labeled cells were found in the normal heterozygous and homozygous mutant mouse outer nuclear layer (ONL) as early as postnatal day 3 (PN3). Beginning at PN10, in the retinas of the homozygous mutant mice, labeled photoreceptor cells rapidly decreased in number and disappeared after PN42. In the decreased ONL, remaining opsin-positive cells were labeled at higher density than those of controls. The retinal pigment epithelium was also moderately labeled during the loss of opsin-positive photoreceptor cells. In addition, sparse opsin-immunoreactive cells were demonstrated in the inner nuclear layer (INL) in the retinas of both the mutant and non-dystrophic mice as early as PN10 and are presumed to be ectopic photoreceptor cells. However, these displaced photoreceptor cells disappeared by PN28 in mutants along the same time course as those in the ONL but were still present in the PN28 retina of controls and seemed to be more abundant at later adult ages. There was no difference in the developmental regulation of opsin in the heterozygous and normal controls.

Animals

Retinal ganglion cell response to axotomy and nerve growth factor antiserum in the regenerating visual system of the newt (Notophthalmus viridescens): an ultrastructural morphometric analysis.

One 3.0 mg dose of the nerve growth factor antiserum (anti-NGF) injected into the vitreous chamber of the eye at the time of optic nerve transection elicits significant changes in the normal newt (Notophthalmus viridescens) retinal ganglion cell body response to axotomy at 7 and 14 days postaxotomy (DPA). Light microscopic observations indicate that anti-NGF treatment significantly reduces the per cent of retinal ganglion cells demonstrating nuclear chromatin reactivity (ie., homogeneous to a more heterogeneous state) from 33.36 +/- 3.02 to 22.82 +/- 2.98%. In addition, the per cent of retinal ganglion cells demonstrating prominent nucleoli is dramatically decreased from 32.08 +/- 1.64 to 18.20 +/- 1.79% at 7 DPA. It is also important to note that the number of prominent nucleoli in the 7 DPA group is reduced to such an extent by anti-NGF treatment that the value is not significantly different from that of intact controls. Intact controls will routinely exhibit approximately half the number of prominent nucleoli that are normal for the untreated 7 DPA group. A definite dose-response relationship can be shown to exist between the per cent of nuclear reactive ganglion cells demonstrating prominent nucleoli and various anti-NGF concentrations at 14 DPA. There does not appear to be a dose-response relationship between various anti-NGF concentrations and the per cent of retinal ganglion cells demonstrating nuclear reactivity at 14 DPA. However, the degree of nuclear chromatin reactivity appears to be less at the higher anti-NGF concentrations (ie., greater than or equal to 3.0 mg/eye) at 14 DPA. Electron microscopic morphometric analysis reveals that anti-NGF treatment significantly reduces the cell perikaryal area at 7 and 14 DPA while the nuclear area remains unchanged. Therefore, there is a significant decrease in the cytoplasmic/nuclear ratios at both 7 and 14 DPA in response to anti-NGF treatment which appears more pronounced by 14 DPA. Anti-NGF treatment also significantly reduces the mitochondrial and nucleolar densities, as well as the nucleolar areas of cells at 7 and 14 DPA. There are no significant changes in Golgi field densities in response to anti-NGF treatment.

Animals

Retinal ganglion cell response to axotomy and nerve growth factor in the regenerating visual system of the newt (Notophthalmus viridescens): an ultrastructural morphometric analysis.

Nerve growth factor (NGF) treatment, given as a single 200 BU intraocular injection at the time of optic nerve transection, was found to significantly accelerate the retinal ganglion cell response to axotomy in the newt (Notophthalmus viridescens). In the control series the per cent of neurons in the retinal ganglion layer demonstrating nuclear reactivity (i.e. chromatin changes) reaches a peak by 14 days post axotomy (14 DPA), plateaus through 21 DPA and falls thereafter, returning to control levels by 90 DPA. NGF treatment is shown to significantly accelerate the entrance of responding retinal ganglion cells into the reactive nuclear phase between 1 and 7 DPA, and by 7 DPA nuclear reactivity has reached a peak, in contrast to 14 DPA for control values. Consequently, NGF treatment causes retinal ganglion cells to be in the nuclear reactive state a week longer than controls but reactivity diminishes after 21 DPA as in controls. Electron microscopic morphometric analysis further substantiates these observations by demonstrating that NGF treatment can elicit certain cellular organelle changes a week earlier (i.e. at 7 DPA) than they would normally occur (i.e. at 14 DPA) in response to axotomy. In addition to eliciting cellular hypertrophy at 7 DPA, NGF treatment significantly increases Golgi field densities in the neuronal perikaryal cytoplasm as well as a doubling of the number of nucleoli per nucleus and stimulating a significant increase in nucleolar cross-sectional areas. A dose-response relationship exists between the per cent of retinal ganglion cells demonstrating nuclear reactivity at 7 DPA and various NGF concentrations which compares favorably with the dose response study involving the number of regenerating axons per nerve cross-section at 14 DPA. Studies to determine if the NGF mediated responses were a specific effect elicited by this protein molecule or whether they are also produced by other peptides which share some properties in common with NGF demonstrate that only NGF is capable of eliciting these responses.

Animals

Pulse granuloma of the alveolar ridge.

Six examples of pulse granulomas of the alveolar ridge are presented. The lesion consists of a foreign-body granuloma containing identifiable particles of leguminous foods. The vegetable matter is introduced through an alveolar defect, usually a postextraction socket. Simple curettage is apparently adequate treatment to effect cure.

Adult