» Articles » PMID: 26883567

Tissue-based Multiphoton Analysis of Actomyosin and Structural Responses in Human Trabecular Meshwork

Overview
Journal Sci Rep
Specialty Science
Date 2016 Feb 18
PMID 26883567
Citations 15
Authors
Affiliations
Soon will be listed here.
Abstract

The contractile trabecular meshwork (TM) modulates aqueous humor outflow resistance and intraocular pressure. The primary goal was to visualize and quantify human TM contractile state by analyzing actin polymerization (F-actin) by 2-photon excitation fluorescence imaging (TPEF) in situ. A secondary goal was to ascertain if structural extracellular matrix (ECM) configuration changed with contractility. Viable ex vivo human TM was incubated with latrunculin-A (Lat-A) or vehicle prior to Alexa-568-phalloidin labeling and TPEF. Quantitative image analysis was applied to 2-dimensional (2D) optical sections and 3D image reconstructions. After Lat-A exposure, (a) the F-actin network reorganized as aggregates; (b) F-actin-associated fluorescence intensity was reduced by 48.6% (mean; p = 0.007; n = 8); (c) F-actin 3D distribution was reduced by 68.9% (p = 0.040); (d) ECM pore cross-sectional area and volume were larger by 36% (p = 0.032) and 65% (p = 0.059) respectively and pores appeared more interconnected; (e) expression of type I collagen and elastin, key TM structural ECM proteins, were unaltered (p = 0.54); and (f) tissue viability was unchanged (p = 0.39) relative to vehicle controls. Thus Lat-A-induced reduction of actomyosin contractility was associated with TM porous expansion without evidence of reduced structural ECM protein expression or cellular viability. These important subcellular-level dynamics could be visualized and quantified within human tissue by TPEF.

Citing Articles

Advancements in high-resolution imaging of the iridocorneal angle.

Keller M, Gast T, King B Front Ophthalmol (Lausanne). 2024; 3:1229670.

PMID: 38983074 PMC: 11182319. DOI: 10.3389/fopht.2023.1229670.


Two-photon excitation fluorescence in ophthalmology: safety and improved imaging for functional diagnostics.

Kaushik V, Dabrowski M, Gessa L, Kumar N, Fernandes H Front Med (Lausanne). 2024; 10:1293640.

PMID: 38235268 PMC: 10791900. DOI: 10.3389/fmed.2023.1293640.


Fundamental Biomaterial Considerations in the Development of a 3D Model Representative of Primary Open Angle Glaucoma.

Lamont H, Masood I, Grover L, El Haj A, Hill L Bioengineering (Basel). 2021; 8(11).

PMID: 34821713 PMC: 8615171. DOI: 10.3390/bioengineering8110147.


Aqueous outflow regulation - 21st century concepts.

Johnstone M, Xin C, Tan J, Martin E, Wen J, Wang R Prog Retin Eye Res. 2020; 83:100917.

PMID: 33217556 PMC: 8126645. DOI: 10.1016/j.preteyeres.2020.100917.


Effects of Netarsudil on Actin-Driven Cellular Functions in Normal and Glaucomatous Trabecular Meshwork Cells: A Live Imaging Study.

Keller K, Kopczynski C J Clin Med. 2020; 9(11).

PMID: 33142742 PMC: 7693753. DOI: 10.3390/jcm9113524.


References
1.
Chu E, Gonzalez Jr J, Tan J . Tissue-based imaging model of human trabecular meshwork. J Ocul Pharmacol Ther. 2014; 30(2-3):191-201. PMC: 3991999. DOI: 10.1089/jop.2013.0190. View

2.
Pattabiraman P, Lih F, Tomer K, Rao P . The role of calcium-independent phospholipase A2γ in modulation of aqueous humor drainage and Ca2+ sensitization of trabecular meshwork contraction. Am J Physiol Cell Physiol. 2012; 302(7):C979-91. PMC: 3330734. DOI: 10.1152/ajpcell.00396.2011. View

3.
Santas A, Bahler C, Peterson J, Filla M, Kaufman P, Tamm E . Effect of heparin II domain of fibronectin on aqueous outflow in cultured anterior segments of human eyes. Invest Ophthalmol Vis Sci. 2003; 44(11):4796-804. DOI: 10.1167/iovs.02-1083. View

4.
Denk W, Strickler J, Webb W . Two-photon laser scanning fluorescence microscopy. Science. 1990; 248(4951):73-6. DOI: 10.1126/science.2321027. View

5.
Sabanay I, Gabelt B, Tian B, Kaufman P, Geiger B . H-7 effects on the structure and fluid conductance of monkey trabecular meshwork. Arch Ophthalmol. 2000; 118(7):955-62. View