| Literature DB >> 32821501 |
Arie L Marcovich1,2, Jurriaan Brekelmans1,3, Alexander Brandis1,4, Ilan Samish1, Iddo Pinkas1,5, Dina Preise1, Keren Sasson1, Ilan Feine1, Alexandra Goz1,2, Mor M Dickman3, Rudy M M A Nuijts3, Avigdor Scherz1.
Abstract
Purpose: To evaluate the riboflavin (RF) concentration and distribution in the corneal stroma and the risk for endothelial photodamage during corneal crosslinking (CXL) following 10- and 30-minute impregnation.Entities:
Keywords: corneal collagen cross-linking; endothelial safety; keratoconus; riboflavin
Mesh:
Substances:
Year: 2020 PMID: 32821501 PMCID: PMC7409014 DOI: 10.1167/tvst.9.6.4
Source DB: PubMed Journal: Transl Vis Sci Technol ISSN: 2164-2591 Impact factor: 3.283
Figure 1.Assembled (A) and disassembled (B) views of the specially designed cuvette for measuring trans-corneal absorption spectra of a corneal button with a corneal button impregnated with RF in the cuvette spacer between two glass holders.
Figure 2.In vivo cross-corneal penetration of RF in saline solution across rabbit corneas. No signal was detected from a de-epithelialized cornea incubated with saline solution for 30 minutes (A). Likewise, no signal was detected from the intact cornea with the epithelium on (B). Rabbit corneas were exposed to RF in saline solution for (C) 10 minutes and (D) 30 minutes. The graphs represent the trans-corneal fluorescence signal as averaged over 50 lines of the fluorescence image.
Figure 3.In vivo corneal penetration of RF-D500 after impregnation for 10 (A) and 30 (B) minutes. The normalized intensity graphs depict the distribution of RF-D500 concentration across the corneal sagittal slice. The graph was normalized to give the same thickness (400 µm) in the two panels. The exponential trend line for panel (A) is y = 0.045*e-0.11*X555 + 0.005.
Figure 4.Anterior chamber concentrations of RF following 10 and 30 minutes of RF-D500 impregnation. (A) Different concentrations of RF in solution were used to construct a calibration curve (B) using the spectrum peak at 446 nm. The equation was set to pass at (0,0). (C) Spectra of the anterior chamber humor drawn from rabbits after the de-epithelialized cornea was incubated, under anesthesia, for 10 (right eye, denoted “R”) and 30 minutes (left eye, denoted “L”) of impregnation with RF-D500. The numbers in the inset legend refer to the rabbit number to enable comparison of the spectra between the two eyes. Eyes of an untreated rabbit served as a control. (D) Averages for the data presented in panel (C). Error bars represent the standard error.
Figure 5.Trans-corneal absorption spectra (A). Ex vivo de-epithelialized trans-corneal absorption spectrum following 10 (blue) and 30 (red) minutes of RF impregnation and the absorption of the cornea without impregnation (gray). (B) The absorption spectra of the two impregnation durations after deducting the contribution of the native cornea. Averaging was conducted for five and seven eyes for the two spectra, respectively. Error bars represent the standard error.
Figure 6.Cell survival of in vitro RF/UVA treated HCEC-12. Bars were normalized to the average luminescence reading of nine wells containing no RF and receiving no UVA irradiation. Error bars represent the standard deviation. Mean endothelial cell survival corresponding to the 10 minutes (blue dashed box) and 30 minutes (red dashed box) are highlighted.