An electron microscopic observation of a corneal lenticule removed 14 months after epikeratoplasty because of refractive error and an unused lenticule was carried out to determine the presence of long-spacing collagen. In the removed lenticule, long-spacing collagen, which is often described as the product of the keratocytes migrating from the host corneal stroma, was observed near a keratocyte. However, long-spacing collagen was also observed in the unused lenticule. In this specimen, keratocytes had been destroyed by freezing so that the secretion of long-spacing collagen by keratocytes should have been negligible. Thus, it seemed that long-spacing collagen could exist naturally in the corneal lenticule as well as be newly formed by migrating keratocytes. In addition, we examined four corneas from patients ranging from 2 months to 91 years of age with no past history of corneal diseases or disorders. Long-spacing collagen was seen in the corneal stromas of the aged persons, but not in those of the younger. In the corneas of the 78-year- and 91-year-old, a different appearance from the usual long-spacing collagen was also seen in the collagen fibrils which showed a slightly shorter periodicity resembling experimentally formed 100 nm periodic fibrils in mice. Long-spacing collagen is a common component of normal human corneal stroma and its occurrence seems to correlate with the age-related changes of the tissue.
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Subcell Biochem
September 2022
Department of Chemistry, Hunter College of the City University of New York, New York, NY, USA.
The diverse and complex functions of collagen during the development of an organism are closely related to the polymorphism of its supramolecular structures in the extracellular matrix. SLS (segment-long-spacing) is one of the best understood alternative structures of collagen. SLS played an instrumental role in the original studies of collagen more than half a century ago that laid the foundation of nearly everything we know about collagen today.
View Article and Find Full Text PDFInt J Retina Vitreous
October 2021
Department of Neuroscience, Psychology, Drug Research and Child Health, University of Florence, Largo Brambilla, 3, 50134, Florence, Italy.
Background: To report a clinical case of a patient affected with choroideremia (CHM) who underwent macular surgery for a macular hole (MH) with Lamellar Hole-associated Epiretinal Proliferation (LHEP).
Case Presentation: We have described a 48-year-old male patient affected with CHM who developed MH with LHEP over a 7-year follow-up. The patient was referred to the Regional Center for Hereditary Retinal Degenerations of the Eye Clinic in Florence (Italy) in April 2012.
Jpn J Ophthalmol
January 2018
Kyorin Eye Center, Kyorin University School of Medicine, 6-20-2 Shinkawa, Mitaka, Tokyo, Japan.
Purpose: To evaluate the ultrastructure of the internal limiting membranes (ILMs) excised during vitrectomy from highly myopic eyes with myopic traction maculopathy (MTM). The clinical findings before and after the vitrectomy were compared.
Methods: Seven eyes of 7 patients with macular retinoschisis were studied.
Methods Mol Biol
May 2018
Institute of Zoology, University of Mainz, Mainz, Germany.
Techniques and protocols for the in vitro formation of collagen type I fibrils and the extensive biochemical variation of the fibrillogenesis conditions are presented. In all cases, the incubation and fibrillogenesis product can be readily monitored by transmission electron microscopic study of negatively stained specimens. Representative TEM data is presented and discussed within the context of the products of the fibrillogenesis protocols, from which the extensive biochemical and structural possibilities of this integrated approach can be appreciated.
View Article and Find Full Text PDFInvest Ophthalmol Vis Sci
April 2017
University of Iowa Carver College of Medicine, Department of Ophthalmology and Visual Sciences, Iowa City, Iowa, United States 2Iowa Lions Eye Bank, Coralville, Iowa, United States 3Cornea Research Center, University of Iowa, Iowa City, Iowa, United States.
Purpose: To characterize changes in the energy-producing metabolic activity and morphologic ultrastructure of corneal endothelial cells associated with diabetes mellitus.
Methods: Transplant suitable corneoscleral tissue was obtained from donors aged 50 to 75 years. We assayed 3-mm punches of endothelium-Descemet membrane for mitochondrial respiration and glycolysis activity using extracellular flux analysis of oxygen and pH, respectively.
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