Literature DB >> 31595373

Mechanism of atopic cataract caused by eosinophil granule major basic protein.

Naoki Yamamoto1, Noriko Hiramatsu2,3, Sumito Isogai3, Masashi Kondo3, Kazuyoshi Imaizumi3, Masayuki Horiguchi4.   

Abstract

Atopic cataracts develop under the ages of 40 years, after which visual acuity rapidly declines. However, the mechanism underlying the development of atopic cataracts is not yet clear. We focused on the eosinophil granule major basic protein (MBP), which was detected in the aqueous humor of atopic cataracts previously, and which was cytotoxic. Specifically, we investigated its origin in this fluid and its effects on lens epithelial cells (LECs). MBP immunostaining was positive in atopic cataract-derived LECs, but negative in age-related cataract-derived LECs. MBP mRNA was not detected in either type of cataract, but protein was detected in the aqueous humor. Furthermore, the flare values associated with atopic cataracts were higher than those with age-related cataracts. When MBP was purified from eosinophils or recombinant MBP was added to LEC culture medium, cell viability decreased in a concentration-dependent manner, but an MBP antibody neutralized the cytotoxic effect of this protein towards these cells. These results were consistent with the flow of MBP into the aqueous humor from the blood due to a compromised blood-aqueous barrier. Thus, MBP could further penetrate the lens capsule and adhere to LECs, resulting in decreased cell viability and the development of atopic cataracts.

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Keywords:  Aqueous humor; Atopic cataract; Atopic dermatitis; Cytotoxicity; Eosinophil major basic protein; Lens epithelial cell

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Year:  2019        PMID: 31595373     DOI: 10.1007/s00795-019-00234-5

Source DB:  PubMed          Journal:  Med Mol Morphol        ISSN: 1860-1499            Impact factor:   2.309


  1 in total

1.  Morphological comparison between three-dimensional structure of immortalized human lens epithelial cells and Soemmering's ring.

Authors:  Noriko Hiramatsu; Noriaki Nagai; Masashi Kondo; Kazuyoshi Imaizumi; Hiroshi Sasaki; Naoki Yamamoto
Journal:  Med Mol Morphol       Date:  2021-01-17       Impact factor: 2.309

  1 in total

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