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Diss Factsheets

Toxicological information

Eye irritation

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Administrative data

Endpoint:
eye irritation: in vitro / ex vivo
Type of information:
experimental study
Adequacy of study:
key study
Study period:
The test was performed on 17 April 2015
Reliability:
1 (reliable without restriction)
Rationale for reliability incl. deficiencies:
other: Study conducted to GLP and in compliance with agreed protocols, with no or minor deviations from standard test guidelines and/or minor methodological deficiencies, which do no effect the quality of the relevant results.

Data source

Reference
Reference Type:
study report
Title:
Unnamed
Year:
2015
Report date:
2015

Materials and methods

Test guideline
Qualifier:
according to guideline
Guideline:
OECD Guideline 437 (Bovine Corneal Opacity and Permeability Test Method for Identifying Ocular Corrosives and Severe Irritants)
Deviations:
no
GLP compliance:
yes (incl. QA statement)

Test material

Constituent 1
Chemical structure
Reference substance name:
2,4-dihydro-5-methyl-2-phenyl-4-(phenylazo)-3H-pyrazol-3-one
EC Number:
224-330-1
Cas Number:
4314-14-1
Molecular formula:
C16H14N4O
IUPAC Name:
2,4-dihydro-5-methyl-2-phenyl-4-(phenylazo)-3H-pyrazol-3-one
Details on test material:
Purity: 99.2%

Test animals / tissue source

Species:
other: Freshly isolated bovine cornea (at least 9 month old donor cattle)
Strain:
not specified
Details on test animals or tissues and environmental conditions:
Source: Schlachthof Bensheim, 64625 Bensheim, Germany

Test system

Vehicle:
physiological saline
Amount / concentration applied:
The test item was tested as a 20% suspension (w/v) in saline.
Amount(s) applied (volume or weight with unit): 0.75 mL
Duration of treatment / exposure:
240 minutes
Number of animals or in vitro replicates:
3 corneae per group (test item, negative control, positive control)
Details on study design:

SCORING SYSTEM:
Opacity measurement
The opacitometer determines changes in the light transmission passing through the corneae, and displays a numerical opacity value. This value was recorded in a table. The opacitometer OP_KiT opacitometer (Electro Design, 63-Riom France) was calibrated as described in the manual and the opacity of each of the corneae was determined by reading each holder placed in the photoreceptor compartment for treated cornea.

For equilibration and prior to application of the test item or controls, the corneae in the holder were incubated in a vertical position for about one hour at 32 ± 1 °C in a water-bath. At the end of the incubation period, the basal opacity was determined (t0). After exposure of the corneae to the test groups, after rinsing and further incubation of the corneae for two hours, the opacity value was determined again (t240).

Permeability Determination
Following to the opacity readings, the permeability was measured as an indication of the integrity of the epithelial cell sheets. After the final opacity measurement was performed, the incubation medium will be removed from the anterior compartment and replaced by 1 mL of a 0.5% (w/v) sodium fluorescein solution in HBSS. Corneae were incubated again in a horizontal position for 90 ± 10 minutes in a water-bath at 32 ± 1 °C. Incubation medium from the posterior compartment were removed, well mixed and transferred into a 96 well plate and the optical density at 490 nm (OD490) was determined with a spectrophotometer (Versamax® Molecular Devices). The absorbance values will be determined using the software SoftMax Pro Enterprise (version 4.7.1).

DATA INTERPRETATION
Opacity
The change of opacity value of each treated cornea or positive and negative control corneae is calculated by subtracting the initial basal opacity from the post treatment opacity reading (t240 – t0), for each individual cornea.
The average change in opacity of the negative control corneae is calculated and this value is subtracted from the change in opacity of each treated cornea or positive control to obtain a corrected opacity.

Permeability
The corrected OD490 value of each cornea treated with positive control and test item is calculated by subtracting the average negative control cornea value from the original permeability value for each cornea.

IVIS Calculation
The following formula is used to determine the IVIS of the negative control:
IVIS = opacity value + (15 x OD490 value)
The following formula is used to determine the IVIS of the positive control and the test item:
IVIS = (opacity value – opacity value mean negative control) + (15 x corrected OD490 value)
The mean IVIS value of each treated group is calculated from the IVIS values.
Depending on the score obtained, the test item is classified into the following category according to OECD guideline 437:

IVIS: In vitro Irritancy Score (according to OECD 437):

≤ 3 No Category (according to GHS)
> 3; < 55 No prediction can be made
≥ 55 Serious eye damaging according to CLP/EPA/GHS (Cat 1)


Criteria for Determination of a Valid Test

The test will be acceptable if the positive control gives an IVIS that falls within two standard deviations of the current historical mean (updated every three months), and if the negative control responses result in opacity and permeability values that are less than the established upper limits for background opacity and permeability values for bovine corneae treated with the respective negative control.

Results and discussion

In vivo

Irritant / corrosive response data:
Relative to the negative control, the test item Fat Yellow 3 G caused slight increase of the corneal opacity but not of the permeability. The calculated mean IVIS a was 2.20 (threshold for serious eye damage: IVIS ≥ 55). According to OECD 437 the test item is not categorized.

Any other information on results incl. tables

Results after 240 Minutes Incubation Time


Test Group

Opacity value = Difference (t240-t0) of Opacity

Permeability at 490 nm (OD490)

IVIS

Mean IVIS

Proposedin vitroIrritancy Score

 

 

Mean

 

Mean

 

 

 

Negative Control

0

0.33

0.148

0.114

2.22

2.04

Not categorized

1

0.090

2.35

0

0.103

1.55

Positive Control

108.67

0.015

108.90

111.81

Category 1

110.67

0.033

111.17

114.67

0.047

115.38

Fat Yellow 3 G

2.67

-0.023

2.33

2.20

Not categorized

0.67

0.025

1.05

3.67

-0.029

3.24

*corrected values

Applicant's summary and conclusion

Interpretation of results:
study cannot be used for classification
Remarks:
Migrated information
Conclusions:
In conclusion, according to the current study and under the experimental conditions reported, Fat Yellow 3 G is not categorized (GHS).
Executive summary:

This in vitro study was performed to assess the corneal damage potential of Fat Yellow 3 Gbymeans of the BCOP assay using fresh bovine corneae.

After a first opacity measurement of the fresh bovine corneae (t0), the 20% (w/v) suspension in saline of the test item Fat Yellow 3 G, the positive, and the negative controls were applied to the corneae and incubated for 240 minutes at 32± 1 °C. After the incubation phase the test item, the positive, and the negative controls were each rinsed from the corneae andopacity was measured again (t240).

After the opacity measurements permeability of the corneae was determined by measuring spectrophotometrically the transfer of sodium fluorescein after incubation in a horizontal position for 90 minutes at 32 ± 1 °C.

With the negative control (saline) neither an increase of opacity nor permeability of the corneae could be observed (mean IVIS = 2.04).

The positive control (10% (w/v) Benzalkonium chloride in saline) showed clear opacity and distinctive permeability of the corneae (mean IVIS = 111.81) corresponding to a classification as serious eye damaging (CLP/EPA/GHS (Cat 1)).

Relative to the negative control, the test item Fat Yellow 3 G caused slight increase of the corneal opacity but not of the permeability. The calculated mean IVIS a was 2.20 (threshold for serious eye damage: IVIS ≥ 55). According to OECD 437 the test item is not categorized.