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Biomedical subjects

C J Murphy

Publications and source records attributed to C J Murphy.

At least 55 records · Page 3Linked to original sources

Effect of norepinephrine on proliferation, migration, and adhesion of SV-40 transformed human corneal epithelial cells.

PURPOSE: To determine the ability of norepinephrine to modulate proliferation, adhesion, and migration of SV-40 transformed human corneal epithelial cells. METHODS: Assays were performed using SV-40 transformed human corneal epithelial cells. For proliferation assays, cells were plated in 96-well plates coated with fibronectin and collagen (FNC). A dose-response curve was generated for norepinephrine in concentrations of 100 nM-100 microM. The cell number in each well was evaluated using the fluorochrome Calcein AM (an intracellular esterase cleavage substrate), and fluorescence was determined using an automated fluorescent plate reader. For cell adhesion, 25 x 10(-3) cells were plated onto FNC-coated 96-well plates, incubated in 10 nM-100 microM norepinephrine for 90 min, gently irrigated, and the remaining adherent cells quantitated. Cell migration was measured using blind-well migration chambers with a 10-microm pore size and FNC-coated filters. Cells (250 x 10(3)) were added to the upper chamber, incubated for 18 h in the presence of factors, after which time the cells that had migrated through the filter were quantitated. The toxicity of norepinephrine was evaluated using a standard Live/Dead assay employing the combined fluorochromes of ethidium homodimer (to indicate dead cells) and Calcein AM (to indicate viable cells). Varying concentrations of norepinephrine were added, and the cells incubated for 3 h and the fluorometric assay performed. RESULTS: Norepinephrine stimulated corneal epithelial cell proliferation and migration over a wide range of concentrations. It did not modulate cell adhesion and demonstrated cell toxicity only at the highest (supraphysiologic) concentration tested. CONCLUSIONS: Norepinephrine is normally found in the cornea and may be important in the maintenance of normal corneal homeostasis and in wound-healing processes.

Antigens, Polyomavirus Transforming↗

Lack of detectable interaction between HSV-1 and integrins or tachykinins.

Several viruses are known to utilize cellular integrin molecules to gain entry into cells. Because of the ability of herpes simplex virus type 1 (HSV-1) to disrupt cellular adhesion, as seen particularly in ocular infections, we examined the ability of several peptides, containing known integrin recognition sequences, to interfere with plaque formation of HSV-1 in epithelial cells. We also examined the possible involvement of tachykinins in virus entry. We did not detect any decrease in plaque formation by HSV-1 in the presence of Arg-Gly-Asp, Asp-Gly-Glu-Ala, or EILDV peptides or in the presence of monoclonal antibodies to the human beta1 or beta4 integrin subunit. Substance P or inhibitors of the NK1 or NK2 tachykinin receptors also had no inhibitory effects on HSV-1 plaque formation.

Amino Acid Sequence↗

Synergistic effect of substance P with epidermal growth factor on epithelial migration in rabbit cornea.

In order to investigate the role of neural regulation in corneal epithelial healing, we examined the effect of substance P (SP) on corneal epithelial migration using an organ culture system of rabbit corneas. We investigated the synergistic effects of SP with (1) growth factors: epidermal growth factor (EGF), basic fibroblast growth factor (bFGF), and transforming growth factor-beta(TGF-beta); (2) extracellular matrix proteins: fibronectin, vitronectin, laminin, and collagen type IV; and (3) cytokines: interleukin-1alpha (IL-1alpha), IL-1beta, and interleukin-6 (IL-6). Rabbit corneal blocks were cultured in the absence or presence of various reagents for 24 hr. The corneal blocks were then fixed, dehydrated, embedded in paraffin and stained by hematoxylin-eosin, and the length of the path of epithelial migration was measured. The addition of SP alone, at concentrations up to 50 microg ml-1, did not affect epithelial migration. EGF, fibronectin, vitronectin, collagen type IV, and IL-6 stimulated epithelial migration, but bFGF, TGF-beta, laminin, IL-1alpha, and IL-1betadid not. The stimulatory effect of EGF on the epithelial migration was enhanced by the presence of SP. This synergistic effect of SP and EGF on corneal epithelial migration was abolished by the addition of an SP antagonist or enkephalinase. Other neurotransmitters (vasoactive intestinal peptide, calcitonin gene-related peptide, acetylcholine chloride, norepinephrine, serotonin) and tachykinins (neurokinin A, neurokinin B, kassinin, eledoisin, physalaemin) were examined, but none exhibited a synergistic effect with EGF. Interestingly, EGF alone stimulated the incorporation of 3H-thymidine into corneal epithelial cells, but the addition of SP with EGF did not enhance this effect. These results demonstrate that SP enhanced the EGF stimulation of corneal epithelial migration in vitro in a specific manner, suggesting a possible role of SP as a modulator of epithelial wound healing.

Animals↗

The artifact of retinoscopy revisited: comparison of refractive error measured by retinoscopy and visual evoked potential in the rat.

PURPOSE: The validity of retinoscopy in small eyes has not been clearly established due to uncertainty regarding the source of the ocular reflections assessed during this procedure. A widely cited model which proposes that their origin is the inner limiting membrane of the retina was evaluated in the rat by comparing refractive errors measured by retinoscopy to those measured by visual evoked potentials (VEPs). METHODS: Ten rats were refracted both by cycloplegic streak retinoscopy and by VEP while viewing 0.05 to 0.15 cpd square-wave gratings-reversed at 1.875 Hz. Spherical aberration of the rat eye was assessed as a potentially confounding variable in VEP refraction by sequential retinoscopic refractions across the rat's natural pupil through a 1.5-mm pinhole. RESULTS: All animals were moderately to highly hyperopic by both methods (range = +4.5 to +18.5 D). Spherical aberration was minimal (median = 3.5 D of overcorrected aberration). The median difference between retinoscopic refractions and those by VEP was not significant (+1.94 D more hyperopia by retinoscopy; p = 0.062, Wilcoxon signed rank) but was significantly less than the +9.64 D difference predicted by an inner limiting membrane model (upper 95% limit = +3.76 D). CONCLUSION: This suggests that the origin of the retinoscopic reflex is located in the outer retina rather than at the inner limiting membrane. Correction factors for retinoscopy in small eyes may be smaller than previously assumed.

Animals↗

Effect of optical defocus on visual acuity in dogs.

OBJECTIVE: To determine the effect of optical defocus (such as what develops in spontaneous myopia and subsequent to cataract extraction) on visual acuity in dogs. ANIMALS: 3 young adult male Beagles. PROCEDURE: The effect of optical defocus on visual acuity was determined by sweep visual evoked potential, using a within-subjects/repeated measures design in which each dog served as its own control. Dogs were positioned so that the eye being tested was 60 cm in front of the video display, and the target was centered on the area centralis. To create ametropia relative to the video screen, a series of concave and convex spherical lenses were placed 1 cm in front of the eye, and sweep visual evoked potential acuities were obtained. RESULTS: Maximal acuity was 7.0 to 9.5 cycles/degree. Defocusing by 2.0 diopters reduces Beagle grating acuity approximately 1 octave. Mimicking aphakia resulted in a marked depression of acuity to 0.7 cycles/degree or less. CONCLUSIONS: Even mild degrees of ametropia have appreciable impact on the resolving power of the canine visual system. CLINICAL RELEVANCE: Spontaneous myopia is encountered in dogs and may be associated with impaired visual performance attributable to a reduction in visual acuity. Previous reports indicate the possibility of myopia in dogs to have a heritable component. On the basis of our results, refractive correction of aphakia is advisable, and refractive screening of dogs with demanding visual tasks (eg, service dogs, field-trial Labrador Retrievers) is recommended.

Animals↗

Mechanisms of acute intraocular pressure increases after phacoemulsification lens extraction in dogs.

OBJECTIVE: To investigate the mechanisms by which intraocular pressure (IOP) increases acutely after phacoemulsification (PE) lens extraction in clinically normal dogs. ANIMALS: 24 young adult dogs. PROCEDURE: Intraocular pressure was monitored for up to 24 hours after unilateral intercapsular PE in 17 clinically normal, adult dogs. In 8 of these dogs, use of 2% hydroxypropyl methylcellulose (HPMC) aided capsulorhexis. Mean volume of irrigation, PE time, and power were constant between groups. After surgery, dogs were randomized then euthanatized, and eyes were examined grossly and histologically at 0 (n = 4), 3 (n = 7), and 24 hours (n = 6) after PE. Seven additional dogs underwent anterior chamber decompression alone (n = 4) or served as morphologic controls (n = 3). RESULTS: Intraocular pressure peaked by postoperative hour 3 at 49.9 +/- 5.0 mm of Hg and normalized by 24 hours. Use of HPMC did not affect the peak or duration of IOP increase. Blood refluxed into the collecting channels and corneoscleral trabecular meshwork in operated eyes. Computer-aided morphologic analysis indicated significant (P < 0.001) reduction in ciliary cleft cross-sectional surface area and width immediately after PE, but not after anterior chamber decompression alone. Cleft collapse was significantly (P < 0.02) greater at 24 than at 3 hours, despite return of IOP to control values by 24 hours. Plasmoid aqueous also was found in the meshwork. CONCLUSIONS AND CLINICAL RELEVANCE: Sudden, large increases in IOP with few overt clinical signs may occur immediately after lens extraction in dogs. Such increases risk compromising the corneal incision and may damage the optic nerve, thereby complicating lens extraction. Structural alterations in the trabecular meshwork persist after IOP has normalized in 24 hours and may contribute to genesis of glaucoma in the late postoperative period.

Analysis of Variance↗

[Neurotrophic keratopathy--studies on substance P and the clinical significance of corneal sensation].

Neurotrophic keratopathy, which often follows damage to the trigeminal nerve, is clinically characterized by various types of epithelial disorders and melting of corneal stroma. To understand both the pathology of neurotrophic keratopathy and the physiological significance of corneal sensation, we investigated both the cellular and molecular functions of a sensory neurotransmitter, substance P, in corneal epithelial cells. Our findings prompted us to try a new mode of treatment for neurotrophic keratopathy. Substance P, a member of the tachykinin family, is an 11-amino-acid peptide. In an organ culture system using rabbit corneas, substance P alone had no effect on corneal epithelial migration. In the presence of insulin-like growth factor-1 (IGF-1), however, substance P synergistically facilitated corneal epithelial migration in proportion to the concentration of substance P or of IGF-1. Other neurotransmitters (acetylcholine, norepinephrine, serotonin etc.) or tachykinins (neurokinin A, eledoisin etc.) did not show this synergistic effect with IGF-1. Among receptors for the tachykinin family (NK-1, NK-2, or NK-3) only the NK-1 receptor system was involved in the synergistic effect of substance P and IGF-1 on corneal epithelial migration. IGF-1 affected neither the binding constant nor the number of sites of substance P receptors in corneal epithelial cells, suggesting that the synergistic effect was not regulated at the receptor level. Various extracellular signals activate the intracellular signal transduction system, thus amplifying specific biological functions. We found that the addition of inhibitors of protein kinase C or tyrosine kinase clearly inhibited the synergistic effect of substance P and IGF-1 on corneal epithelial migration, demonstrating that protein kinase C and tyrosine kinase are involved in the synergistic effect. During corneal epithelial wound healing, epithelial cells must attach to a provisional, extracellular fibronectin matrix. We previously reported that interleukin 6 and epidermal growth factor (EGF) facilitate corneal epithelial wound healing by activating the expression of fibronectin receptor (integrin). Reverse transcription-polymerase chain reaction (RT-PCR) revealed that substance P and IGF-1 increased expression of mRNA for integrins alpha 5 and beta 1 in cultured corneal epithelial cells and also increased the number of cells that attached to a fibronectin matrix. These findings strongly suggest that substance P and IGF-1 synergistically increase corneal epithelial migration by activating the expression of integrin. Tachykinins share a five amino acid sequence, phenylalanine-free amino acid-glycine-leucine-methionine amide (FXGLM), at the C-terminus. Studying substance P, we found that a four amino acid sequence at the C-terminus, FGLM, was the minimum amino acid sequence for the synergistic effect on corneal epithelial migration. Structurally similar tetrapeptides mimicking other members of the tachykinin family isoleucine-glycine-leucine-methionine amide (IGLM), valine-glycine-leucine-methionine amide (VGLM), tyrosine-glycine-leucine-methionine amide (YGLM), and the tripeptide glycine-leucine-methionine amide (GLM) did not have any synergistic effect with IGF-1. Based on these findings in vitro, we investigated the effect of eye drops containing substance P plus IGF-1 or FGLM plus IGF-1 on the epithelial wound closure of rabbit corneas in vivo. Both combinations significantly facilitated corneal epithelial wound closure. In a clinical setting, the administration of substance P plus IGF-1 effectively treated corneal epithelial defects in a patient with Riley-Day syndrome, a disease in which corneal epithelial defects persist because of loss of corneal sensation and hypolacrimation. In a patient with neurotrophic keratopathy due to trigeminal nerve paralysis following surgery, eye drops containing FGLM plus IGF-1 eliminated superficial punctate staining. (ABSTRACT TRUNCATED)

Animals↗

Effects of mydriatic agents in cockatoos, African gray parrots, and Blue-fronted Amazon parrots.

OBJECTIVE: To compare, in psittacines, the mydriatic effects of several topically applied curariform, sympathomimetic, and parasympatholytic drugs with and without the addition of surface-acting penetrating agents. DESIGN: Prospective, randomized controlled trial. ANIMALS: 10 adult cockatoos (Cacatua sulphurea subspecies), 2 adult African gray parrots (Psittacus erithacus), and 3 adult Blue-fronted Amazon parrots (Amazona aestiva). PROCEDURE: Three curariform drugs (d-tubocurarine, pancuronium, and vecuronium bromide) and 2 autonomic drugs (atropine and phenylephrine hydrochloride) were evaluated. Drugs were tested with and without the addition of a surface-acting penetrating agent, either saponin or benzalkonium chloride. The agent that resulted in the most significant change in pupillary diameter with the fewest systemic side effects in the cockatoos then was evaluated for its effects in the African gray parrots and the Blue-fronted Amazon parrots. During each drug trial, 1 eye was randomly selected to receive the control drug (0.9% NaCl), and the opposite eye was selected to receive the test drug. Each pupil was videotaped 5 (cockatoos only), 15, 30, 45, 60, and 75 minutes after treatment. Pupil diameters were measured by use of a computerized image analysis system. Data for pupil size were analyzed by means of repeated measures ANOVA. RESULTS: Vecuronium without the addition of a surface-acting penetrating agent produced the most consistent and greatest pupillary dilatation in all 3 species with the fewest systemic side effects. CLINICAL IMPLICATIONS: Vecuronium is potentially a clinically useful, topical mydriatic agent for use in avian species. Documented differences in the prevalence of systemic side effects between species suggests that caution should be applied when applying this drug bilaterally.

Animals↗

Synergistic effects of substance P with insulin-like growth factor-1 on epithelial migration of the cornea.

We find that substance P (SP) and insulin-like growth factor-1 (IGF-1) demonstrate a synergistic effect on the stimulation of rabbit corneal epithelial migration in an organ culture. The addition of either SP or IGF-1 alone did not affect epithelial migration, while the combination of SP and IGF-1 stimulated epithelial migration in a dose-dependent fashion. The synergistic effects of SP and IGF-1 on corneal epithelial migration were nulled by the addition of a SP antagonist or enkephalinase. Among neurotransmitters (vasoactive intestinal peptide, calcitonin gene-related peptide, acethylcholine chloride, norepinephrine, serotonin) or tachykinins (neurokinin A, neurokinin B, kassinin, eledoisin, physalaemin), only SP demonstrated a synergistic effect with IGF-1 on cellular migration. In contrast, the combination of SP and IGF-1 did not affect the incorporation of 3H-thymidine into corneal epithelial cells. The attachment of the corneal epithelial cells to fibronectin, collagen type IV, and laminin matrices increased after treatment of the cells with SP and IGF-1, but SP or IGF-1 by themselves did not affect the attachment of the cells to these extracellular matrix proteins. An identical synergistic effect on corneal epithelial migration was observed when an NK-1 receptor agonist was used in place of SP, suggesting the synergistic effect of SP and IGF-1 might be mediated through the NK-1 receptor system. These results suggest that the maintenance of the normal integrity of the corneal epithelium might be regulated by both humoral and neural factors.

Animals↗

Primary and secondary Toxoplasma gondii infection in normal and feline immunodeficiency virus-infected cats.

Normal and asymptomatic feline immunodeficiency virus (FIV)-infected adult cats were inoculated orally with Toxoplasma gondii tissue cysts to assess differences in clinical disease, T. gondii serologic test results, hematologic results, and oocyst shedding. There was no difference between FIV-naive and FIV-infected cats in terms of clinical illness and duration of oocyst shedding following primary exposure. Both groups of cats developed significant decreases in neutrophil counts following primary inoculation with T. gondii; FIV-infected cats that were neutropenic prior to inoculation with T. gondii developed the most profound decreases in neutrophil numbers. Both FIV-naive and FIV-infected cats became lymphopenic during acute T. gondii infection; however, only FIV-naive cats developed lymphocytosis in the recovery stage. FIV-infected cats had lower total CD4+ and higher total CD8+ T-lymphocyte counts than FIV-naive cats prior to inoculation with T. gondii, but changes in these lymphocyte subsets were similar between groups of cats during the first several weeks after inoculation. Toxoplasma gondii infection had neither an ameliorating nor enhancing effect on T-lymphocyte subset abnormalities in FIV-infected cats during acute or chronic infection. Both groups of cats developed comparable levels of T. gondii-specific IgM and IgG antibodies and T. gondii antigen-specific lymphocyte blastogenic responses following primary inoculation. Both groups of cats were fed T. gondii tissue cysts 66 wk following primary exposure and both groups were solidly immune as evidenced by a lack of oocyst shedding and only minor changes in IgM but not IgG antibodies.

Animals↗

Vision in dogs.

Compared with the visual system in human beings, the canine visual system could be considered inferior in such aspects as degree of binocular overlap, color perception, accommodative range, and visual acuity. However, in other aspects of vision, such as ability to function in dim light, rapidity with which the retina can respond to another image (flicker fusion), field of view, ability to differentiate shades of gray, and perhaps, ability to detect motion, the canine visual system probably surpasses the human visual system. This has made the dog a more efficient predator in certain environmental situations and permits it to exploit an ecological niche inaccessible to humans.

Animals↗

Mycobacterial keratitis in a parrot.

Histologic examination revealed acid-fast organisms in a granulomatous lesion involving the cornea of an eye of a Maximilian's Parrot. Disseminated mycobacteriosis was also diagnosed. Antemortem attempts at determining the cause of the corneal lesion had been unsuccessful. Ocular involvement in birds with avian tuberculosis is uncommon. The corneal lesion in the parrot was likely initiated by a dysfunctional third eyelid.

Animals↗

The mechanism of lenticular accommodation in chicks.

In the chick eye, accommodation for near objects is brought about by changes in the focal length of the lens and by changes in the corneal radius of curvature. Several different mechanisms of lenticular accommodation have been proposed for the avian eye. These include a role for the ciliary muscle, a role for the iris muscle, and a role for changes in intraocular pressure. We have studied accommodation in the chick eye using electrical stimulation of the Edinger-Westphal nucleus, electric-field stimulation of enucleated eyes, in vitro measurement of changes in back vertex distance of the lens, and histology. We present evidence showing that, in the chick eye, lenticular accommodation is induced primarily by a contraction of the muscle fibers at the peripheral edge of the iris. During accommodation, the peripheral muscle fibers of the iris contract to apply a force through the ciliary processes to the anterior equatorial surface of the lens. This increases the focal power of the lens. When accommodation is relaxed, the lens is returned to its unaccommodated state by the elasticity of the pectinate ligament and the ciliary body. Contractions of the posterior ciliary muscle and changes in intraocular pressure, forces that have previously been proposed to play major roles in lenticular accommodation, are shown to be of secondary importance only.

Accommodation, Ocular↗

Raptors lack lower-field myopia.

The presence of lower-field myopia (described in chickens, pigeons, quail and amphibians) allows these animals to keep the ground in focus while performing other visual tasks. A relationship has also been reported between the eye height and the degree of myopia observed. All of the animals reported in the literature to date are ground-foraging species. Using infrared neutralizing video retinoscopy and static photoretinoscopy we found a lower-field myopia to be absent in the barn owl (Tyto alba), Swainson's hawk (Buteo swainsonii), Cooper's hawk (Accipiter cooperi) and American kestrel (Falco sparverius). These findings suggest that the presence or absence of a lower-field myopia is a function of the visual ecology of the animal.

Animals↗