
Lacrimal Gland, Tear Film and Dry Eye Syndromes Vol. 1 : Basic Science and Clinical Relevance
Basic Science and Clinical Relevance
By: David A. Sullivan, Christine Sullivan, International Conference on the Lacrimal
Hardcover | 1 December 1993
At a Glance
756 Pages
26.04 x 17.78 x 4.45
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| Regulation of Tear Secretion | p. 1 |
| The Anatomy and Innervation of Lacrimal Glands | p. 11 |
| Light and Electron Microscopic Morphology of Accessory Lacrimal Glands | p. 19 |
| Immunohistochemistry and Protein Secretion in the Rat Lacrimal Gland: A Morphophysiological Study | p. 25 |
| Carbonic Anhydrase and Acinar Cell Heterogeneity in Rat and Rabbit Lacrimal Glands | p. 31 |
| Basement Membrane Modulation of Stimulated Secretion by Lacrimal Acinar Cells | p. 37 |
| Galactose-Binding Sites in the Acinar Cells of the Human Accessory Lacrimal Gland | p. 45 |
| Thoughts on the Ductules of the Aging Human Lacrimal Gland | p. 49 |
| The Parenchyma Accompanying Major Extraglandular Ducts within the Rat Lacrimal Cord | p. 53 |
| Protein Secretion and the Identification of Neurotransmitters in the Isolated Pig Lacrimal Gland | p. 57 |
| Anti-Muscarinic Acetylcholine Receptor-Like Immunoreactivity in Lacrimal Glands | p. 61 |
| Innervation and Mast Cells of the Rat Lacrimal Gland: The Effects of Age | p. 67 |
| Immunogold Localization of Prolactin in Acinar Cells of Lacrimal Gland | p. 75 |
| Subcellular Organization of Ion Transporters in Lacrimal Acinar Cells: Secretagogue-Induced Dynamics | p. 79 |
| Effect of Acetylcholine on the Membrane Conductance of the Intralobular Duct Cells of the Rat Exorbital Lacrimal Gland | p. 87 |
| The Circadian Rhythm of Lacrimal Secretion and Its Parameters, Determined in a Group of Healthy Individuals, and Its Potential Diagnostic and Therapeutic Significance | p. 93 |
| Effects of Dihydrotestosterone and Prolactin on Lacrimal Gland Function | p. 99 |
| A Na:H Exchanger Subtype Mediates Volume Regulation in Bovine Corneal Epithelial Cells | p. 105 |
| Endocytosis and Exocytosis in Rabbit Lacrimal Gland Acinar Cells | p. 111 |
| The Inositol Phosphate-Calcium Signalling System in Lacrimal Gland Cells | p. 115 |
| Characterization of Rat Lacrimal Gland Protein Kinase C: Effects of Phorbol Esters and PKC Inhibitors on Histone Kinase Activity and Labelled Protein Discharge | p. 121 |
| Inhibition of Lacrimal Function by Selective Opiate Agonists | p. 127 |
| Second Messenger Modulation of IgG Secretion from Chicken Lacrimal Gland | p. 133 |
| Identification of Sigma Receptors in Lacrimocytes and Their Therapeutic Implication in Dry Eye Syndrome | p. 141 |
| Role of Protein Kinase C in [alpha][subscript 1]-Adrenergic and Cholinergic Agonist Stimulated Protein Secretion | p. 147 |
| The Role of Membrane Channels in IgG Secretion by Plasma Cells in the Chicken Lacrimal Gland | p. 151 |
| Binding Characteristics, Immunocytochemical Location and Hormonal Regulation of Androgen Receptors in Lacrimal Tissue | p. 157 |
| Regulation of Lacrimal Gland Immune Responses | p. 161 |
| The Lacrimal Antibody Response to Viral and Chlamydial Infections | p. 169 |
| Neural-Endocrine Control of Secretory Component Synthesis by Lacrimal Gland Acinar Cells: Specificity, Temporal Characteristics and Molecular Basis | p. 175 |
| Lymphocyte Adhesive Interaction with Lacrimal Gland Acinar Epithelium Involves Carbohydrate Recognition | p. 181 |
| Subclass Expression of IgA in Lacrimal Glands of Patients with Sjogren's Syndrome | p. 185 |
| Influence of the Endocrine Environment on Herpes Virus Infection in Rat Lacrimal Gland Acinar Cells | p. 189 |
| Sialodacryoadenitis Virus Infection of Rat Lacrimal Gland Acinar Cells | p. 193 |
| Growth Factor and Receptor Messenger RNA Production in Human Lacrimal Gland Tissue | p. 197 |
| Human Lacrimal Gland Secretes Proteins Belonging to the Group of Hydrophobic Molecule Transporters | p. 205 |
| Transcription of Message for Tumor Necrosis Factor-Alpha by Lacrimal Gland is Regulated by Corneal Wounding | p. 211 |
| Androgen Regulation of Secretory Component mRNA Levels in the Rat Lacrimal Gland | p. 219 |
| Vasoactive Intestinal Peptide Induces Primary Response Gene Expression in Lacrimal Gland | p. 225 |
| Composition and Biophysical Properties of the Tear Film: Knowledge and Uncertainty | p. 231 |
| Structure and Function of the Tear Film | p. 239 |
| Ocular Surface Changes Induced by Repeated Impression Cytology | p. 249 |
| Developmental Appearance of a Component of the Glycocalyx of the Ocular Surface Epithelium in the Rat | p. 255 |
| Mixing of the Tear Film under the Eyelids | p. 263 |
| Viscoelastic Properties of Human Tears and Polymer Solutions | p. 267 |
| Effect of Age on Human Tear Film Evaporation in Normals | p. 271 |
| Advances in Ocular Tribology | p. 275 |
| Effect of Systemic Ingestion of Vitamin and Trace Element Dietary Supplements on the Stability of the Pre-Corneal Tear Film in Normal Subjects | p. 285 |
| Patterns of Cytokeratin Expression in Impression Cytology Specimens from Normal Human Conjunctival Epithelium | p. 289 |
| Increase in Tear Film Lipid Layer Thickness Following Treatment of Meibomian Gland Dysfunction | p. 293 |
| Analysis and Function of the Human Tear Proteins | p. 299 |
| Tear Protein Composition and the Effects of Stimulus | p. 309 |
| Growth Factors in Human Tear Fluid and in Lacrimal Glands | p. 315 |
| Re-Examination of the Origin of Human Tear LDH | p. 321 |
| Tear Proteins and Enzymes in the Chimpanzee | p. 327 |
| Comparisons of Tear Proteins in the Cow, Horse, Dog and Rabbit | p. 331 |
| Tear Protein G Originates from Denatured Tear Specific Prealbumin as Revealed by Anti-TSP Antibody | p. 335 |
| Tear Lactoferrin Levels and Ocular Bacterial Flora in HIV Positive Patients | p. 339 |
| Vitronectin in Human Tears - Protection Against Closed Eye Induced Inflammatory Damage | p. 345 |
| Mucopolysaccharide Degrading Enzymes (MPDE) in the Tear Fluid: A New Diagnostic Test for Rapid Detection of Acute Ocular Infections | p. 351 |
| Tear Immunoglobulins and Lysozyme Levels in Corneal Ulcers | p. 355 |
| Mucus and Pseudomonas aeruginosa Adherence to the Cornea | p. 359 |
| Measurement of Human Tear Lysozyme Using a Novel Synthetic Substrate | p. 363 |
| Retrospective Use of Frozen Schirmer Strips for the Measurement of Tear Lysozyme | p. 367 |
| Rapid Measurement of Selected Tear Proteins in Health and Disease Using the Touch Tear Microassay System | p. 371 |
| The Tear Film: Pharmacological Approaches and Effects | p. 377 |
| Influence of Various Pharmaceutical Agents on Tear Flow as Assessed by Fluorophotometry | p. 385 |
| Neural Stimulation of Conjunctival Goblet Cell Mucous Secretion in Rats | p. 393 |
| Bioavailability of Prednisolone in Rabbits: Comparison of a High-Viscosity Gel and an Aqueous Suspension - Single- and Repeated Applications | p. 399 |
| Tear Film - Contact Lens Interaction | p. 403 |
| Electrophoretic Patterns of Human Denatured Tear Proteins and Glycoproteins from Normal Subjects and Soft Contact Lens Wearers | p. 411 |
| The Refractive Index of Tears in Normals and Soft Lens Wearers | p. 417 |
| The Role of Tear Deposits on Hydrogel Contact Lenses Induced Bacterial Keratitis: Pseudomonas aeruginosa Abhesives | p. 421 |
| The Closed-Eye Challenge | p. 427 |
| Dry Eye Therapy: Evaluation of Current Directions and Clinical Trials | p. 431 |
| Artificial Tear Issues | p. 437 |
| Evaluation of Effects of a Physiologic Artificial Tear on the Corneal Epithelial Barrier: Electrical Resistance and Carboxyfluorescein Permeability | p. 441 |
| Evaluation of a Physiological Tear Substitute in Patients with Keratoconjunctivitis Sicca | p. 453 |
| A Scanning Electron Micrographic Comparison of the Effects of Two Preservative-Free Artificial Tear Solutions on the Corneal Epithelium as Compared to a Phosphate Buffered Saline and a 0.02% Benzalkonium Chloride Control | p. 459 |
| A Unique Therapeutic Artificial Tear Formulation | p. 465 |
| Non-Sjogren Dry Eye: Pathogenesis, Diagnosis and Animal Models | p. 471 |
| Abnormalities of the Structure of the Superficial Lipid Layer on the In Vivo Dry-Eye Tear Film | p. 489 |
| Tear Osmolarity - a New Gold Standard? | p. 495 |
| Micropachometric Differentiation of Dry Eye Syndromes | p. 505 |
| Decreased Tear Secretion in Chernobyl Children: External Eye Disorders in Children Subjected to Long-Term Low-Dose Radiation | p. 513 |
| Lacrimal Dysfunction in Pediatric Acquired Immunodeficiency Syndrome | p. 517 |
| Keratoconjunctivitis Sicca in HIV-1 Infected Female Patients | p. 521 |
| The Increase of the Blink Interval in Ophthalmic Procedures | p. 525 |
| Changes in Tear Ion Concentrations in Dry-Eye Disorders | p. 529 |
| Quantitative Cellular Evaluation of Conjunctival Squamous Metaplasia in the Dry Eye Patient | p. 535 |
| Topical Anesthetic Induced Pain as a Diagnostic Tool for Keratoconjunctivitis Sicca (KCS) | p. 539 |
| Lacrimation Kinetics as Determined by a Schirmer-Type Technique | p. 543 |
| A Precise Method of Using Rose Bengal in the Evaluation of Dry Eye and the Detection of Changes in Its Severity | p. 549 |
| Dry Eye Syndromes: Treatment and Clinical Trials | p. 553 |
| Keratoprosthesis in End-Stage Dry Eye | p. 561 |
| Amylase in Mare Lacrimale in Patients with Submandibular Salivary Gland Transplantation to the Lacrimal Basin | p. 565 |
| A Subjective Approach to the Treatment of Dry Eye Syndrome | p. 571 |
| Simulation of Lacrimal Gland Output: a Tear Jet for Replacing Eye Moisture in Sjogren's Syndrome | p. 577 |
| Characteristics of a Canine Model of KCS: Effective Treatment with Topical Cyclosporine | p. 583 |
| Treatment of Severe Eye Dryness and Problematic Eye Lesions with Enriched Bovine Colostrum Lactoserum | p. 595 |
| The Efficiency of Short-Wave Diathermy and Laser Stimulation of the Lacrimal Gland in the Treatment of Dry Eye Syndrome | p. 601 |
| Effect of Collagen Punctal Occlusion on Tear Stability and Volume | p. 605 |
| Sjogren's Syndrome: Immunologic and Neuroendocrine Mechanisms | p. 609 |
| Murine Models of Sjogren's Syndrome | p. 623 |
| Utilization of the Non-Obese Diabetic (NOD) Mouse as an Animal Model for the Study of Secondary Sjogren's Syndrome | p. 631 |
| Expression of Granzyme A and Perforin in Lacrimal Gland of Sjogren's Syndrome | p. 637 |
| Epstein-Barr Virus and the Lacrimal Gland Pathology of Sjogren's Syndrome | p. 641 |
| Sjogren's Syndrome (SS) and Epstein-Barr Virus (EBV) Reactivation | p. 647 |
| Hypothesis for Autoantigen Presentation and T Cell Activation | p. 651 |
| Gingival Impression: A New Biological Test for Xerostomia in Diagnosis of Sjogren's Syndrome | p. 655 |
| Sjogren's Syndrome Diagnosis: A Comparison of Conjunctival and Gingival Impressions and Salivary Gland Biopsy | p. 661 |
| Correlation of Labial Salivary Gland Biopsies with Ocular and Oral Findings in Patients with Sjogren's Syndrome | p. 667 |
| A Comparative Study Between Tear Protein Electrophoresis and Accessory Salivary Gland Biopsy in Sjogren's Syndrome | p. 671 |
| Sjogren's Syndrome - Close to Cause and Cure? | p. 679 |
| Androgen-induced suppression of autoimmune disease in lacrimal glands of mouse models of Sjogren's syndrome | p. 683 |
| Effect of Sodium Sucrose-Sulfate on the Ocular Surface of Patients with Keratoconjunctivitis Sicca in Sjogren's Syndrome | p. 691 |
| Comparative Efficacy of Androgen Analogues in Suppressing Lacrimal Gland Inflammation in a Mouse Model (MRL/lpr) of Sjogren's Syndrome | p. 697 |
| National Sjogren's Syndrome Association | p. 701 |
| Sjogren's Syndrome Foundation Inc. | p. 705 |
| Advertisement: Lacrimedics, Inc. | p. 709 |
| Contributors | p. 711 |
| Index | p. 715 |
| Table of Contents provided by Blackwell. All Rights Reserved. |
ISBN: 9780306446764
ISBN-10: 0306446766
Series: Advances in Experimental Medicine and Biology
Published: 1st December 1993
Format: Hardcover
Language: English
Number of Pages: 756
Audience: General Adult
Publisher: Springer Nature B.V.
Country of Publication: US
Dimensions (cm): 26.04 x 17.78 x 4.45
Weight (kg): 1.16
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