Plant-derived angiogenin fusion protein’s cytoprotective effect on trabecular meshwork damage induced by Benzalkonium chloride in mice

Author:

Jeong Jae Hoon123,Lee Soo Jin4,Ko Kisung5,Lee Jeong Hwan5ORCID,Lyu Jungmook36,Park Moon Hyang7,Kang Jaeku28ORCID,Kim Jae Chan4

Affiliation:

1. Department of Ophthalmology, Konyang University Hospital, Daejeon, South Korea

2. Myunggok Medical Research Institute, Konyang University, Daejeon, South Korea

3. Myunggok Eye Research Institute, Konyang University, Daejeon, South Korea

4. Department of Ophthalmology, Chung-Ang University Hospital, Seoul, South Korea

5. Therapeutic Protein Engineering Lab/College of Medicine, Chung-Ang University, Seoul, South Korea

6. Department of Medical Science, Konyang University, Daejeon, South Korea

7. Department of Pathology, Konyang University Hospital, Daejeon, South Korea

8. Department of Pharmacology/College of Medicine, Konyang University, Daejeon, South Korea

Abstract

Background Benzalkonium chloride (BAK), commonly used in glaucoma treatment, is an eye drop preservative with dose-dependent toxicity. Previous studies have observed the multi-functional benefits of angiogenin (ANG) against glaucoma. In our study, we evaluated ANG’s cytoprotective effect on the trabecular meshwork (TM) damage induced by BAK. Additionally, we developed a plant-derived ANG fusion protein and evaluated its effect on TM structure and function. Methods We synthesized plant-derived ANG (ANG-FcK) by fuzing immunoglobulin G’s Fc region and KDEL to conventional recombinant human ANG (Rh-ANG) purified from transgenic tobacco plants. We established a mouse model using BAK to look for degenerative changes in the TM, and to evaluate the protective effects of ANG-FcK and Rh-ANG. Intraocular pressure (IOP) was measured for 4 weeks and ultrastructural changes, deposition of fluorescent microbeads, type I and IV collagen, fibronectin, laminin and α-SMA expression were analyzed after the mice were euthanized. Results TM structural and functional degeneration were induced by 0.1% BAK instillation in mice. ANG co-treatment preserved TM outflow function, which we measured using IOP and a microbead tracer. ANG prevented phenotypic and ultrastructure changes, and that protective effect might be related to the anti-fibrosis mechanism. We observed a similar cytoprotective effect in the BAK-induced degenerative TM mouse model, suggesting that plant-derived ANG-FcK could be a promising glaucoma treatment.

Funder

Konyang University Myunggok Research Fund

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference29 articles.

1. Detrimental effect of preservatives in eyedrops: implications for the treatment of glaucoma;Baudouin;Acta Ophthalmologica,2008

2. In vitro and in vivo experimental studies on trabecular meshwork degeneration induced by benzalkonium chloride (an American Ophthalmological Society thesis);Baudouin;Transactions of the American Ophthalmological Society,2012

3. A new safety concern for glaucoma treatment demonstrated by mass spectrometry imaging of benzalkonium chloride distribution in the eye, an experimental study in rabbits;Brignole-Baudouin;PLOS ONE,2012

4. Mechanisms of benzalkonium chloride toxicity in a human trabecular meshwork cell line and the protective role of preservative-free tafluprost;Chang;Clinical and Experimental Ophthalmology,2015

5. Localisation and quantification of benzalkonium chloride in eye tissue by TOF-SIMS imaging and liquid chromatography mass spectrometry;Desbenoit;Analytical and Bioanalytical Chemistry,2013

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