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The application of strip meniscometry to the evaluation of tear volume in mice (本文)

新澤, 恵 慶應義塾大学

2021.03.23

概要

PURPOSE. Strip meniscometry quantitatively measures the volume of tears in the tear meniscus and has been reported to diagnose dry eyes in clinical settings conveniently, easily, and rapidly. In this study, we used a modified strip meniscometry to assess the applicability of measuring the tear volume in mice in experimental settings.

METHODS. Dry eye was induced in 11 9-week-old C57BL/6J wild-type male mice (11 right eyes) by exposing them to an air fan inside a small compartment for 5 hours for 2 consecutive days. Tear function tests, including the SMTube for mice (SMTM) for tear volume evaluation, break- up time, fluorescein staining score, and lissamine green staining score, were performed. The correlation between SMTM and other tear function parameters was assessed.

RESULTS. The mean SMTM value was 3.89 6 0.603 mm before and 3.09 6 0.625 mm after dry environment exposure (P ¼ 0.0078*). The Spearman’s correlation by rank test showed a strong positive correlation between SMTM and tear film break-up time and a strong linear negative correlation with fluorescein and lissamine green values.

CONCLUSIONS. The SMTM was capable of rapidly measuring the minimum tear volume in mice and correlated well with tear function parameters and appears to be a promising new modality in the evaluation of dry eyes in mice.

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参考文献

1. Dogru M, Ishida K, Matsumoto Y, et al. Strip meniscometry: a new and simple method of tear meniscus evaluation. Invest Ophthalmol Vis Sci. 2006;47:1895–1901.

2. Ibrahim OM, Dogru M, Ward SK, et al. The efficacy, sensitivity, and specificity of strip meniscometry in conjunction with tear function tests in the assessment of tear meniscus. Invest Ophthalmol Vis Sci. 2011;52:2194–2198.

3. Shinzawa M, Dogru M, Miyasaka K, et al. Application of CASIA SS-1000 optical coherence tomography tear meniscus imaging in testing the efficacy of new strip meniscometry in dry eye diagnosis. Eye Contact Lens. 2018;44:S44–S49.

4. Lee KW, Kim JY, Chin HS, et al. Assessment of the tear meniscus by strip meniscometry and keratograph in patients with dry eye disease according to the presence of meibomian gland dysfunction. Cornea. 2017;36:189–195.

5. Ibrahim OM, Dogru M, Kojima T, et al. OCT assessment of tear meniscus after punctal occlusion in dry eye disease. Optom Vis Sci. 2012;89:E770–E776.

6. Kojima T, Matsumoto Y, Ibrahim OM, et al. Evaluation of a thermosensitive atelocollagen punctal plug treatment for dry eye disease. Am J Ophthalmol. 2014;157:311–317.e1.

7. Ishikawa S, Takeuchi M, Kato N. The combination of strip meniscometry and dry eye-related quality-of-life score is useful for dry eye screening during health checkup: cross-sectional study. Medicine. 2018;97:e12969.

8. Rajaei SM, Ansari Mood M, Asadi F, et al. Strip meniscometry in dogs, cats, and rabbits. Vet Ophthalmol. 2018;21:210–213.

9. Stern ME, Pflugfelder SC. What we have learned from animal models of dry eye. Int Ophthalmol Clin. 2017;57:109–118.

10. Dursun D, Wang M, Monroy D, et al. A mouse model of keratoconjunctivitis sicca. Invest Ophthalmol Vis Sci. 2002; 43:632–638.

11. Stewart P, Chen \, Farley W, et al. Effect of experimental dry eye on tear sodium concentration in the mouse. Eye Contact Lens. 2005;31:175–178.

12. Nakamura S, Shibuya M, Nakashima H, et al. D-beta- hydroxybutyrate protects against corneal epithelial disorders in a rat dry eye model with jogging board. Invest Ophthalmol Vis Sci. 2005;46:2379–2387.

13. Simsek C, Kojima T, Dogru M, et al. Alterations of murine subbasal corneal nerves after environmental dry eye stress. Invest Ophthalmol Vis Sci. 2018;59:1986–1995.

14. Schrader S, Mircheff AK, Geerling G. Animal models of dry eye. Dev Ophthalmol. 2008;41:298–312.

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