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Enzymatic vitreolysis using reengineered Vibrio mimicus–derived collagenase
PURPOSE: Collagen is a key player contributing to vitreoelasticity and vitreoretinal adhesions. Molecular reorganization causes spontaneous weakening of these adhesions with age, resulting in the separation of the posterior hyaloid membrane (PHM) from the retina in what is called complete posterior...
Autores principales: | , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Molecular Vision
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8056467/ https://www.ncbi.nlm.nih.gov/pubmed/33907368 |
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author | Santra, Mithun Sharma, Maryada Katoch, Deeksha Jain, Sahil Saikia, Uma Nahar Dogra, Mangat R. Luthra-Guptasarma, Manni |
author_facet | Santra, Mithun Sharma, Maryada Katoch, Deeksha Jain, Sahil Saikia, Uma Nahar Dogra, Mangat R. Luthra-Guptasarma, Manni |
author_sort | Santra, Mithun |
collection | PubMed |
description | PURPOSE: Collagen is a key player contributing to vitreoelasticity and vitreoretinal adhesions. Molecular reorganization causes spontaneous weakening of these adhesions with age, resulting in the separation of the posterior hyaloid membrane (PHM) from the retina in what is called complete posterior vitreous detachment (PVD). Incomplete separation of the posterior hyaloid or tight adherence or both can lead to retinal detachment, vitreomacular traction syndrome, or epiretinal membrane formation, which requires surgical intervention. Pharmacological vitrectomy has the potential of avoiding surgical vitrectomy; it is also useful as an adjunct during retinal surgery to induce PVD. Previously studied enzymatic reagents, such as collagenase derived from Clostridium histolyticum, are nonspecific and potentially toxic. We studied a novel collagenase from Vibrio mimicus (VMC) which remains active (VMA), even after deletion of 51 C-terminal amino acids. To limit the activity of VMA to the vitreous cavity, a fusion construct (inhibitor of hyaluronic acid-VMA [iHA-VMA]) was made in which a 12-mer peptide (iHA, which binds to HA) was fused to the N-terminus of VMA. The construct was evaluated in the context of PVD. METHODS: VMA and iHA-VMA were expressed in Escherichia coli, purified, and characterized with gelatin zymography, collagen degradation assay, fluorescamine-based assay, and cell-based assays. Two sets of experiments were performed in New Zealand albino rabbits. Group A (n = 10) received iHA-VMA, while group B (n = 5) received the equivalent dose of VMA. In both groups, saline was injected as a control in the contralateral eyes. Animals were monitored with indirect ophthalmoscopy, optical coherence tomography (OCT), and B-scan ultrasonography. Retinal toxicity was assessed with hematoxylin and eosin (H&E) staining of retinal tissue. RESULTS: The activity of iHA-VMA and VMA was comparable and 65-fold lower than that of C. histolyticum collagenase Type IV. In the iHA-VMA group, all the rabbits (n = 10) developed PVD, with complete PVD seen in six animals. No statistically significant histomorphological changes were seen. In the VMA group, four of the five rabbits developed complete PVD; however, retinal morphological changes were seen in two animals. CONCLUSIONS: iHA-VMA displays targeted action confined to the vitreous and shows potential for safe pharmacologic vitreolysis. |
format | Online Article Text |
id | pubmed-8056467 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | Molecular Vision |
record_format | MEDLINE/PubMed |
spelling | pubmed-80564672021-04-26 Enzymatic vitreolysis using reengineered Vibrio mimicus–derived collagenase Santra, Mithun Sharma, Maryada Katoch, Deeksha Jain, Sahil Saikia, Uma Nahar Dogra, Mangat R. Luthra-Guptasarma, Manni Mol Vis Research Article PURPOSE: Collagen is a key player contributing to vitreoelasticity and vitreoretinal adhesions. Molecular reorganization causes spontaneous weakening of these adhesions with age, resulting in the separation of the posterior hyaloid membrane (PHM) from the retina in what is called complete posterior vitreous detachment (PVD). Incomplete separation of the posterior hyaloid or tight adherence or both can lead to retinal detachment, vitreomacular traction syndrome, or epiretinal membrane formation, which requires surgical intervention. Pharmacological vitrectomy has the potential of avoiding surgical vitrectomy; it is also useful as an adjunct during retinal surgery to induce PVD. Previously studied enzymatic reagents, such as collagenase derived from Clostridium histolyticum, are nonspecific and potentially toxic. We studied a novel collagenase from Vibrio mimicus (VMC) which remains active (VMA), even after deletion of 51 C-terminal amino acids. To limit the activity of VMA to the vitreous cavity, a fusion construct (inhibitor of hyaluronic acid-VMA [iHA-VMA]) was made in which a 12-mer peptide (iHA, which binds to HA) was fused to the N-terminus of VMA. The construct was evaluated in the context of PVD. METHODS: VMA and iHA-VMA were expressed in Escherichia coli, purified, and characterized with gelatin zymography, collagen degradation assay, fluorescamine-based assay, and cell-based assays. Two sets of experiments were performed in New Zealand albino rabbits. Group A (n = 10) received iHA-VMA, while group B (n = 5) received the equivalent dose of VMA. In both groups, saline was injected as a control in the contralateral eyes. Animals were monitored with indirect ophthalmoscopy, optical coherence tomography (OCT), and B-scan ultrasonography. Retinal toxicity was assessed with hematoxylin and eosin (H&E) staining of retinal tissue. RESULTS: The activity of iHA-VMA and VMA was comparable and 65-fold lower than that of C. histolyticum collagenase Type IV. In the iHA-VMA group, all the rabbits (n = 10) developed PVD, with complete PVD seen in six animals. No statistically significant histomorphological changes were seen. In the VMA group, four of the five rabbits developed complete PVD; however, retinal morphological changes were seen in two animals. CONCLUSIONS: iHA-VMA displays targeted action confined to the vitreous and shows potential for safe pharmacologic vitreolysis. Molecular Vision 2021-04-01 /pmc/articles/PMC8056467/ /pubmed/33907368 Text en Copyright © 2021 Molecular Vision. https://creativecommons.org/licenses/by-nc-nd/3.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited, used for non-commercial purposes, and is not altered or transformed. |
spellingShingle | Research Article Santra, Mithun Sharma, Maryada Katoch, Deeksha Jain, Sahil Saikia, Uma Nahar Dogra, Mangat R. Luthra-Guptasarma, Manni Enzymatic vitreolysis using reengineered Vibrio mimicus–derived collagenase |
title | Enzymatic vitreolysis using reengineered Vibrio mimicus–derived collagenase |
title_full | Enzymatic vitreolysis using reengineered Vibrio mimicus–derived collagenase |
title_fullStr | Enzymatic vitreolysis using reengineered Vibrio mimicus–derived collagenase |
title_full_unstemmed | Enzymatic vitreolysis using reengineered Vibrio mimicus–derived collagenase |
title_short | Enzymatic vitreolysis using reengineered Vibrio mimicus–derived collagenase |
title_sort | enzymatic vitreolysis using reengineered vibrio mimicus–derived collagenase |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8056467/ https://www.ncbi.nlm.nih.gov/pubmed/33907368 |
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