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Biomedical subjects

Masatsugu Nakamura

Publications and source records attributed to Masatsugu Nakamura.

At least 19 recordsLinked to original sources

Promotion of corneal epithelial wound healing by a tetrapeptide (SSSR) derived from IGF-1.

PURPOSE: A prior study showed that a tetrapeptide (FGLM-amide) derived from the carboxyl terminus of substance P (SP) and a 12-residue peptide corresponding to the C domain of insulin-like growth factor (IGF)-1 mimic the synergistic effect of the full-length molecules on corneal epithelial wound healing. To develop an effective treatment for persistent corneal epithelial defects, the current study was conducted to investigate the minimal sequence within the C domain of IGF-1 that is required for such synergism with SP or FGLM-amide. METHODS: The effects of IGF-1-derived peptides on corneal epithelial migration were evaluated with a rabbit corneal organ-culture system. RESULTS: A tetrapeptide (SSSR; Ser(33)-Ser-Ser-Arg) derived from the C domain of IGF-1 was sufficient for the synergistic promotion with FGLM-amide both of corneal epithelial migration in vitro and of wound closure in vivo. The activity of the SSSR peptide was sequence specific and its potency was similar to that of IGF-1. The SSSR peptide by itself also promoted corneal epithelial migration in vitro at higher concentrations. It was devoid, however, of both the mitogenic action of IGF-1 and the ability of the full-length molecule to induce neovascularization. CONCLUSIONS: The SSSR sequence mediates the synergistic effect of IGF-1 with SP on corneal epithelial wound healing. Clinical application of the SSSR peptide would be expected to be free of potentially deleterious side effects associated with treatment with full-length IGF-1. Local administration of the SSSR tetrapeptide, alone or in combination with FGLM-amide, is thus a potential new strategy for the treatment of nonhealing epithelial wounds.

Animals↗

Observation of the corneal flap interface with metal particles in a rabbit model.

PURPOSE: To observe changes, such as diffuse lamellar keratitis, at the corneal interface when metal particles from microkeratome blades were left in rabbit eyes. SETTING: Department of Ophthalmology, Tokyo Dental College, Suidobashi Hospital, Tokyo, Japan. METHODS: Following the creation of a corneal flap with microkeratome, metal particles from a microkeratome blade were placed at the corneal interface in 14 rabbit eyes. Microscopic and histopathologic changes were compared with those in the control eyes (n = 4), which did not receive any metal particles. Each examination was conducted at 3 days, 2 weeks, and 1 and 3 months postoperatively. The change in the depth of the metal particles was also measured. RESULTS: Slitlamp examination did not show an inflammatory reaction or corneal opacification in any eye (100%) with metal particles at the flap interfaces. Histopathologic examinations showed no obvious changes at the flap interfaces or around the metal particles in any eye. CONCLUSION: Inflammatory reactions, such as diffuse lamellar keratitis, do not appear to be induced by metal particles from the microkeratome blade itself.

Animals↗

Participation of p38 MAP kinase, but not p44/42 MAP kinase, in stimulation of corneal epithelial migration by substance P and IGF-1.

PURPOSE: Substance P and insulin-like growth factor-1 (IGF-1) synergistically promote corneal epithelial migration both in vitro and in vivo. The mechanism of this action was investigated. METHODS: The effects of various inhibitors and activators of intracellular signaling pathways on corneal epithelial migration were examined by measuring the length of the migration path in rabbit corneal blocks in culture. RESULTS: Inhibitors of signaling by p38 or p44/42 isoforms of mitogen-activated protein (MAP) kinase or of phosphatidylinositol (PI) 3-kinase reduced the extent of spontaneous migration of the corneal epithelium, whereas modulators of signaling by cyclic AMP- or cyclic GMP-dependent protein kinases had no effect. The inhibitors of p38 MAP kinase and of PI 3-kinase also abolished the stimulatory effect of substance P and IGF-1 on epithelial migration, whereas inhibitors of signaling by p44/42 MAP kinase or modulators of cyclic nucleotide-dependent signaling did not. CONCLUSIONS: These results suggest that various signal transduction systems participate in spontaneous corneal epithelial migration as well as in the combined effect of substance P and IGF-1 on this process. In particular, although both p38 and p44/42 isoforms of MAP kinase appear to regulate spontaneous corneal epithelial migration, the stimulatory effect of substance P and IGF-1 appears to be mediated by p38 MAP kinase but not by p44/42 MAP kinase.

Animals↗

Effects of various lubricants on corneal surface regularity in rabbits.

The aim of this study was to establish a method for analysis of tear film stability and thereby to investigate the effects of lubricants on corneal surface regularity and corneal epithelial damage in anesthetized rabbits with the eye held open. Saline-instilled and noninstilled eyes manifested a time-dependent increase in the corneal surface regularity index (SRI). In contrast, 0.1% hyaluronic acid (HA) prevented the increase in the SRI for up to 20 min after instillation. Methylene blue uptake into the damaged cornea was significantly greater in eyes that received saline than in those treated with HA. Whereas eyes instilled with 0.5% methylcellulose (MC) or 0.35% sodium carboxymethylcellulose (CMC) manifested an increase in the SRI similar to that apparent in those that received saline, 1.0% chondroitin sulfate (CS) prevented the increase in the SRI for up to 10 min after instillation. In conclusion, we have established a method for analysis of tear film stability in rabbits. Our results suggest that tear film stability is closely related to corneal surface damage and that topical instillation of 0.1% HA or 1.0% chondroitin sulfate warrants further investigation as a potential treatment for patients with dry eye.

Animals↗

Functional innervation in tissue engineered models for in vitro study and testing purposes.

The biotechnology industry is rapidly expanding and the emerging field of tissue engineering is projected to have a high impact in the near future. Recently the field of cellular, drug, and prosthetic delivery has melded with the field of tissue engineering to make simulated tissues. In addition to their roles as tissue substitutes for transplantation, these simulated tissues may provide more accurate models and environments for toxicology testing and the study of peripheral nerves. The current study demonstrates the importance of innervation, in general, for the function of engineered tissues. We observe that the presence of nerves in a tissue engineered (TE) human cornea model enhances the growth of the epithelium and the formation of its protective mucin layer. Innervation also confers protection to the epithelium from chemical insult, as determined by the level of post-treatment epithelial cell death. We demonstrate differential responses of the nerves to chemical stimuli by changes in intracellular sodium as measured by 2-photon microscopy. The 2-photon imaging techniques also allow for the visualization and study of the fine sensory axon fibers within the 3-dimensional tissue. This work demonstrates a role for innervation in the protective quality and function of the engineered tissue, and the potential to use the nerves themselves as indicators of the severity of an insult. These results are important to consider for the development of any optimized TE models for in vitro study and testing purposes.

Animals↗

Apafant, a potent platelet-activating factor antagonist, blocks eosinophil activation and is effective in the chronic phase of experimental allergic conjunctivitis in guinea pigs.

Platelet-activating factor (PAF) plays important roles in allergic reactions. In particular, there are many concerns about PAF, eosinophils, and the chronicity of allergic diseases. The purpose of the present studies is to elucidate the role of PAF in eosinophil activation at conjunctiva and to confirm the efficacy of Apafant (a potent PAF antagonist) ophthalmic solution in chronic experimental allergic conjunctivitis. Guinea pigs were actively immunized and allergic conjunctivitis was induced by repetitive instillation of 2.5% ovalbumin. PAF solution was topically applied and eosinophil activation was assessed by measuring the eosinophil peroxidase (EPO) activity in the tear fluid. Itch-scratching episodes and clinical symptoms scores were evaluated in the repetitive challenge conjunctivitis. From the instillation of PAF solution into guinea pig eyes, which were in a state of chronic allergic conjunctivitis, a significant increase in EPO activity was observed, and this increase was inhibited by pre-treatment with Apafant. In the repetitive challenge model, the animals treated with Apafant ophthalmic solution showed a significant reduction of clinical symptoms and the itch-scratch response in both the first and the second challenges. PAF has an activity, that induces mediator release from eosinophils in the conjunctival tissues and may be involved in the chronic phase of allergic conjunctivitis.

Administration, Topical↗

Role of the C domain of IGFs in synergistic promotion, with a substance P-derived peptide, of rabbit corneal epithelial wound healing.

PURPOSE: Insulin-like growth factors (IGFs) and either substance P (SP) or an SP-derived peptide (FGLM-amide) synergistically facilitate corneal epithelial wound healing in vitro and in vivo. The mechanism of this synergism and the clinical potential of these agents were further investigated by determination of the relevant functional domain of IGFs. METHODS: The effects of IGF-derived peptides on corneal epithelial cell migration were evaluated with the rabbit cornea in an organ culture system. Corneal epithelial wound closure in vivo was also evaluated in rabbits after epithelial debridement with n-heptanol. RESULTS: In the presence of FGLM-amide, peptides corresponding to the C domain of IGF-1 or -2 significantly promoted corneal epithelial migration in vitro to an extent similar to that apparent with the full-length molecules. In contrast, peptides corresponding to the D domain of these growth factors had no such effect. Mutation of serine-34 in the C domain of IGF-1 to alanine abolished the synergistic effect with FGLM-amide on corneal epithelial migration. The C peptide of proinsulin did not affect corneal epithelial migration in the absence or presence of FGLM-amide. The administration of eye drops containing both the C-domain peptide of IGF-1 and FGLM-amide significantly promoted corneal epithelial wound closure in vivo. CONCLUSIONS: The C domain of IGF-1 or -2, for which no biological function has previously been identified, is essential for the synergistic effect of these growth factors with SP on corneal epithelial migration.

Aged↗

Cellular and nerve regeneration within a biosynthetic extracellular matrix for corneal transplantation.

Our objective was to determine whether key properties of extracellular matrix (ECM) macromolecules can be replicated within tissue-engineered biosynthetic matrices to influence cellular properties and behavior. To achieve this, hydrated collagen and N-isopropylacrylamide copolymer-based ECMs were fabricated and tested on a corneal model. The structural and immunological simplicity of the cornea and importance of its extensive innervation for optimal functioning makes it an ideal test model. In addition, corneal failure is a clinically significant problem. Matrices were therefore designed to have the optical clarity and the proper dimensions, curvature, and biomechanical properties for use as corneal tissue replacements in transplantation. In vitro studies demonstrated that grafting of the laminin adhesion pentapeptide motif, YIGSR, to the hydrogels promoted epithelial stratification and neurite in-growth. Implants into pigs' corneas demonstrated successful in vivo regeneration of host corneal epithelium, stroma, and nerves. In particular, functional nerves were observed to rapidly regenerate in implants. By comparison, nerve regeneration in allograft controls was too slow to be observed during the experimental period, consistent with the behavior of human cornea transplants. Other corneal substitutes have been produced and tested, but here we report an implantable matrix that performs as a physiologically functional tissue substitute and not simply as a prosthetic device. These biosynthetic ECM replacements should have applicability to many areas of tissue engineering and regenerative medicine, especially where nerve function is required.

Animals↗

Innervated human corneal equivalents as in vitro models for nerve-target cell interactions.

A sensory nerve supply is crucial for optimal tissue function. However, the mechanisms for successful innervation and the signaling pathways between nerves and their target tissue are not fully understood. Engineered tissue substitutes can provide controllable environments in which to study tissue innervation. We have therefore engineered human corneal substitutes that promote nerve in-growth in a pattern similar to in vivo re-innervation. We demonstrate that these nerves (a) are morphologically equivalent to natural corneal nerves; (b) make appropriate contact with target cells; (c) can generate action potentials; (d) respond to chemical and physical stimuli; and (e) play an important role in the overall functioning of the bioengineered tissue. This model can be used for studying the more general topics of nerve ingrowth or regeneration and the interaction between nerves and their target cells and, more specifically, the role of nerves in corneal function. This model could also be used as an in vitro alternative to animals for safety and efficacy testing of chemicals and drugs.

Action Potentials↗

P2Y(2) receptor elicits PAS-positive glycoprotein secretion from rabbit conjunctival goblet cells in vivo.

We investigated in vivo whether UTP and ATP increased periodic acid and Schiff's reagent (PAS)-positive glycoprotein release from rabbit conjunctival goblet cells. Fifty microL of UTP or ATP at the concentrations of 0.003, 0.03, 0.3, 3.0, 8.5% (54 microM-154 mM) or saline were applied to rabbit eyes. Impression cytology was performed on the upper nasal bulbar conjunctiva and the cells were stained with PAS. To clarify purinergic receptor-mediated involvement in this response, suramin (1%; 7 mM), P2Y(2) antagonist and pyridoxal-phosphate-6-azophenyl-2',4'-disulphonic acid (PPADS, 0.01%; 167 microM), P2Y(1) antagonist were applied in the rabbit conjunctival sac for 10 min. before UTP or ATP application. Images of the specimens were taken with a digital camera mounted on a microscope and the PAS staining area was measured using an image analyzing system. UTP or ATP eye drop instillation transiently decreased the PAS staining area in a dose-dependent manner, but it gradually recovered after another 30 min. Saline instillation had no effect until 60 min. later. All of the agonists-induced declines were inhibited by pretreatment with 1% (7 mM) suramin but not 0.01% (167 microM) PPADS. UTP and ATP stimulate PAS-positive glycoprotein secretion via P2Y(2) receptor on goblet cells in the rabbit bulbar conjunctiva in vivo.

Adenosine Triphosphate↗

Potentiation by cyclic AMP of the stimulatory effect of epidermal growth factor on corneal epithelial migration.

PURPOSE: To provide insight into the mechanism by which epidermal growth factor (EGF) stimulates corneal epithelial migration, we investigated the possible interaction between EGF and cyclic AMP (cAMP) signaling pathways during epithelial migration with an organ culture system for the rabbit cornea. METHODS: Rabbit corneal blocks were cultured in the absence or presence of various agents for 24 hours and were then fixed, dehydrated, embedded in paraffin, sectioned, and stained with hematoxylin-eosin. The path length of epithelial migration was measured on light micrographs of the stained sections. RESULTS: Epidermal growth factor alone stimulated corneal epithelial migration in a dose-dependent manner. In contrast, neither of two cell-permeable cAMP analogs, dibutyryl cAMP and 8-bromo cAMP, affected epithelial migration at concentrations up to 1 mM. In the presence of EGF (10 ng/mL), however, each of the two cAMP derivatives increased the extent of epithelial migration in a concentration-dependent manner. Neither the adenylate cyclase activator forskolin nor the phosphodiesterase inhibitor 3-isobutyl-1-methylxanthine alone affected epithelial migration. However, each of these two agents potentiated the stimulatory effect of EGF on this process. The stimulatory effects of fibronectin, hyaluronan, and interleukin-6 on corneal epithelial migration were not modified by either dibutyryl cAMP or 3-isobutyl-1-methylxanthine. CONCLUSION: These results demonstrate that cAMP potentiates the stimulation of corneal epithelial migration by EGF in vitro, suggesting that endogenous cAMP might function as a modulator of epithelial wound healing promoted by this growth factor in vivo.

1-Methyl-3-isobutylxanthine↗

Collagen-poly(N-isopropylacrylamide)-based membranes for corneal stroma scaffolds.

PURPOSE: To investigate the feasibility of using the biocompatibility of collagen-based blended biomaterials as cell-delivery systems in ocular surface reconstruction in vivo. METHODS: Collagen-based composites that were blended with synthetic acrylamide-based polymers [poly(N-isopropylacrylamide), pNIPAAm] were transplanted into corneal pockets of white rabbits, with a 3-mm epithelial window. Epithelial cells were allowed to migrate onto the polymer. Transplanted eyes were examined daily for up to 30 days, after which animals were killed for histologic examination. Immunohistochemistry was performed for vimentin, alpha-smooth muscle actin (alpha-SMA), CD4, and CD8. Gold-chloride staining was performed to observe neuronal regrowth. Human amniotic membranes (AMs) and sham-operated corneas served as controls. All animals received topical antibiotics (levofloxacin) without the use of steroids or other immunosuppressive agents. RESULTS: The pNIPAAm polymer allowed smooth epithelialization of the cornea, which was similar to the epithelialization observed in sham controls and AM-transplanted eyes. Histology revealed that epithelium overlying the polymer was bundled into several layers, without the orientation observed with AM and sham controls. The polymer gradually thinned and was gradually replaced by host tissue. Vimentin- and alpha-SMA-positive cells were found in stromal pockets up to 1 month following polymer transplantation. These cells were responsible for slight subepithelial haze near the wound edge. CD4- and CD8-positive lymphocytes were also observed in the vicinity of the polymer. Gold-chloride staining showed nerve regrowth in the wound edge after 1 month and subepithelial branches after 3 months. CONCLUSION: Collagen-pNIPAAm blended polymers may be effective as biomaterials to be used in the early stages of lamellar stromal replacement

Acrylic Resins↗

Restoration of corneal epithelial barrier function and wound healing by substance P and IGF-1 in rats with capsaicin-induced neurotrophic keratopathy.

PURPOSE: To investigate the effects of topical application of the combination of substance P (SP) and insulin-like growth factor (IGF)-1 on corneal epithelial barrier function and epithelial wound closure in rats with capsaicin-induced neurotrophic keratopathy. METHODS: Neonatal rats were injected subcutaneously with a single dose of capsaicin to induce neurotrophic keratopathy. Corneal epithelial barrier function was evaluated with an anterior fluorophotometer. Tear fluid secretion was measured by the Schirmer test. Corneal epithelial wound healing was determined by measurement of the size of the epithelial defect after debridement of the entire epithelium. The combination of SP (1 mM) and IGF-1 (1 micro g/mL) in phosphate-buffered saline was administered in eye drops six times daily. RESULTS: Corneal epithelial barrier function was impaired and corneal epithelial wound healing was delayed in rats injected with capsaicin. The application of eye drops containing the combination of SP and IGF-1 to capsaicin-injected rats resulted in a significant improvement in corneal epithelial barrier function compared with that apparent in capsaicin-injected animals that received eye drops containing vehicle alone. Such treatment with SP and IGF-1 also significantly increased the rate of corneal epithelial wound closure in capsaicin-injected animals. CONCLUSIONS: Topical application of the combination of SP and IGF-1 improved both corneal epithelial barrier function and epithelial wound healing in an animal model of neurotrophic keratopathy.

Administration, Topical↗

Effects of substance P and IGF-1 in corneal epithelial barrier function and wound healing in a rat model of neurotrophic keratopathy.

PURPOSE: To establish a rat model of neurotrophic keratopathy and to examine the effects of the combination of substance P (SP) and insulin-like growth factor (IGF)-1 on corneal epithelial barrier function and wound healing in this model. METHODS: Corneal denervation was achieved by thermocoagulation of the ophthalmic branch of the trigeminal nerve. A modified Schirmer test was performed without topical anesthesia. Corneal epithelial barrier function was assessed by measurement of fluorescein permeability with an anterior fluorophotometer. Epithelial wound healing was evaluated by measurement of the area of the defect at various times after removal of the entire epithelium. Eye drops containing both 1 mM SP and IGF-1 (1 micro g/mL) were administered six times daily. RESULTS: The Schirmer test result in eyes subjected to trigeminal denervation was lower than that in control eyes. The fluorescein permeability of the corneal epithelium of denervated eyes was increased relative to that of control eyes. Furthermore, trigeminal denervation induced a delay in corneal epithelial wound healing. Application of eye drops containing SP and IGF-1 to denervated corneas restored the fluorescein permeability of the corneal epithelium to control levels and abolished the delay in epithelial wound healing. CONCLUSIONS: A rat model of neurotrophic keratopathy, characterized by reduced tear secretion, loss of corneal sensation, impaired epithelial barrier function, and delayed epithelial wound healing, was established by trigeminal denervation. Treatment with both SP and IGF-1 improved corneal epithelial barrier function and stimulated corneal epithelial wound healing in this model.

Animals↗

Differential regulation of collagen degradation by rabbit keratocytes and polymorphonuclear leukocytes.

PURPOSE: Both activated keratocytes and infiltrated polymorphonuclear leukocytes (PMNs) contribute to corneal ulceration by degrading stromal collagen. The regulation of such collagen degradation by inflammatory cytokines was investigated with rabbit keratocytes and PMNs cultured in three-dimensional collagen gels. METHODS: Rabbit keratocytes or PMNs were cultured for 24 h in three-dimensional gels of type I collagen in the presence of plasminogen and various concentrations of either interleukin (IL)-1alpha, IL-6, IL-8, or tumor necrosis factor-alpha (TNF-alpha). Degradation of collagen during culture was assessed by measurement of released hydroxyproline. RESULTS: IL-1alpha increased the amount of collagen degraded by keratocytes or PMNs in a dose-dependent manner, whereas IL-6 had no effect on collagen degradation by either cell type. IL-8 increased the extent of collagen degradation by PMNs but not that by keratocytes, and TNF-alpha promoted collagen degradation by keratocytes but not that by PMNs. CONCLUSION: Inflammatory cytokines regulate collagen degradation by rabbit keratocytes and PMNs in culture in a differential manner, and therefore may contribute to the roles of these cells in corneal ulceration.

Animals↗

INS365 suppresses loss of corneal epithelial integrity by secretion of mucin-like glycoprotein in a rabbit short-term dry eye model.

P2Y2 receptor agonists, like UTP and ATP, stimulate mucin secretion from goblet cells in vitro. Therefore, mucin stimulants could be good candidates for the treatment of dry eye syndrome because mucin increases the tear film stability and protects against desiccation of ocular surface. INS365 is a more stable P2Y2 receptor agonist than UTP. In the present study, we evaluated, in normal rabbit eyes, its effectiveness to release mucin from goblet cells and to protect the corneal damage induced by desiccation. For mucin secretion, impression cytology was performed following the instillation of INS365 solution or saline into the conjunctival sac. The specimens were stained with periodic acid and Schiff (PAS) reagent, and then the staining area was calculated using computer software. INS365 dose-dependently decreased the PAS staining area of conjunctival goblet cells from 2 to 15 min post-application. Furthermore, we utilized the rabbit short-term dry eye model to evaluate if INS365 eyedrops could protect against any of the damage produced by blockage of blinking with ocular speculum. INS365 significantly suppressed corneal damage at concentrations of more than 0.1% w/v. These results suggest that this P2Y2 agonist is a good candidate for the treatment of dry eye disease.

Animals↗

Effect of gefarnate on the ocular surface in squirrel monkeys.

PURPOSE: To investigate the ability of gefarnate (geranyl farnesylacetate) to stimulate goblet cell function in the primate eye after a mild alkali injury of the tarsal conjunctiva. METHODS: A bilateral injury was created on the conjunctival surface of the lower eye lid of squirrel monkeys by means of a 30-second application of a 4-mm diameter piece of filter paper wetted with 0.5% NaOH. Gefarnate drops (1%) were administered to one eye of each monkey and vehicle alone in the contralateral eye six times a day, 5 days a week for 4 weeks. Slit-lamp biomicroscopy, impression cytology staining of the ocular surface, fluorescein and rose bengal staining, and Western blot for mucin were performed before injury and weekly thereafter. Light microscopy was used to evaluate the lower conjunctiva. RESULTS: Topical application of gefarnate was not associated with any adverse ocular surface effects. Goblet cell repopulation after injury was significantly greater in the gefarnate-treated eyes compared with the vehicle-treated eyes. In the gefarnate-treated eyes, tear mucin content was significantly greater at 1 week after injury. Fluorescein staining was significantly reduced at 3 weeks after injury, and rose bengal staining was significantly reduced in the area of the wound at 2 weeks in the gefarnate-treated eyes compared with the vehicle-treated eyes; at other times, conjunctival staining in the two groups of eyes was not significantly different. CONCLUSIONS: Gefarnate promotes goblet cell repopulation and increases mucin production after a conjunctival injury. No adverse affects of the treatment were found. Thus, this agent may be useful in conditions that diminish goblet cell function.

Animals↗