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Microdesiccates produced from normal human tears display four distinctive morphological components
López Solís, Remigio; Traipe Castro, Leonidas; Salinas Toro, Daniela; Srur, Miguel; Toledo Araya, Héctor.
Affiliation
  • López Solís, Remigio; University of Chile. Faculty of Medicine-ICBM. Program of Cellular and Molecular Biology. Santiago. CL
  • Traipe Castro, Leonidas; University of Chile. Faculty of Medicine-ICBM. Program of Cellular and Molecular Biology. Santiago. CL
  • Salinas Toro, Daniela; University of Chile. Faculty of Medicine-ICBM. Program of Cellular and Molecular Biology. Santiago. CL
  • Srur, Miguel; University of Chile. Faculty of Medicine-ICBM. Program of Cellular and Molecular Biology. Santiago. CL
  • Toledo Araya, Héctor; University of Chile. Faculty of Medicine-ICBM. Program of Cellular and Molecular Biology. Santiago. CL
Biol. Res ; 46(3): 299-305, 2013. ilus, graf, tab
Article in English | LILACS | ID: lil-692198
Responsible library: CL1.1
ABSTRACT
Desiccation of human tears on glass surfaces results in fern-like crystalloids. This phenomenon has been associated with tear normality (Tear Ferning Test, TFT) and is used as a diagnostic aid to evaluate patients with Dry-Eye disease. However, TFT is focused on the assessment of only a minor fraction of desiccated tear samples and considers only the relative abundance and density of fern-like crystalloids. The aim of this study was to characterize morphologically entire desiccated micro volumes of tears from healthy donors. Tear samples were collected from 23 healthy young adult volunteers. Tear aliquots (1-3 μL) were allowed to dry on glass surfaces under ambient conditions of temperature (15-25°C) and relative humidity (40-45%). Dry samples were analyzed by dark-field microscopy. Morphometric data were acquired with Image J software. Tear volume was positively correlated with both area and time of desiccation. Morphological features of multiple microdesiccates produced from a single subject displayed striking similarities whereas tear microdesiccates from different healthy subjects displayed consistent differences but shared a common general design. This design may be mostly represented by the occurrence of four distinctive zones, named as zones I, II, III and Transition band. The main features of these zones are described.
Subject(s)


Full text: Available Collection: International databases Database: LILACS Main subject: Tears / Crystallization Limits: Adolescent / Female / Humans / Male Language: English Journal: Biol. Res Journal subject: Biology Year: 2013 Document type: Article / Project document Affiliation country: Chile Institution/Affiliation country: University of Chile/CL

Full text: Available Collection: International databases Database: LILACS Main subject: Tears / Crystallization Limits: Adolescent / Female / Humans / Male Language: English Journal: Biol. Res Journal subject: Biology Year: 2013 Document type: Article / Project document Affiliation country: Chile Institution/Affiliation country: University of Chile/CL
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