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Acute Toxicity: inhalation

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Administrative data

Endpoint:
acute toxicity: inhalation
Type of information:
experimental study
Adequacy of study:
key study
Study period:
not stated
Reliability:
2 (reliable with restrictions)
Rationale for reliability incl. deficiencies:
comparable to guideline study with acceptable restrictions
Cross-reference
Reason / purpose for cross-reference:
reference to same study
Reference
Endpoint:
short-term repeated dose toxicity: inhalation
Type of information:
experimental study
Adequacy of study:
supporting study
Study period:
not stated
Reliability:
2 (reliable with restrictions)
Rationale for reliability incl. deficiencies:
other: The study was not conducted according to guideline/s and GLP but the report contains sufficient data for interpretation of study results
Principles of method if other than guideline:
Two week aerosol study to set dose levels for a 13 week study. Study design appears to follow intent of OECD 412 but publication does not indicate that OECD 412 was followed.
GLP compliance:
not specified
Limit test:
no
Species:
rat
Strain:
Sprague-Dawley
Sex:
male/female
Route of administration:
inhalation: aerosol
Type of inhalation exposure:
nose only
Vehicle:
air
Remarks on MMAD:
MMAD / GSD: MMAD <1.5 um (respirable)
Analytical verification of doses or concentrations:
yes
Duration of treatment / exposure:
6 hours/day
Frequency of treatment:
5 days/week
Remarks:
Doses / Concentrations:
1000, 2000 and 4000 mg/m3
Basis:
nominal conc.
No. of animals per sex per dose:
10/sex/dose level
Control animals:
yes
Dose descriptor:
LOAEC
Effect level:
1 000 mg/m³ air (nominal)
Based on:
test mat.
Sex:
male/female
Basis for effect level:
other: based on local effects on the epithelium of the upper respiratory tract.
Critical effects observed:
not specified

ANALYSES:
- Actual dose level: 1000, 1930 and 3910 mg/m3 (98-100% of target)
- Homogeneity (uniformity): relative standard deviation 1.6-2.5% of mean value

TOXIC RESPONSE/EFFECTS BY DOSE LEVEL:
- Mortality: 2 males at 1000 mg/m3 and 1 male and 1 female at 2000 mg/m3
- Clinical signs: no treatment related effects
- Body weight gain: decreased in males and females at all concentrations (58-28% in females)
- Food consumption: no treatment related effects
- Clinical chemistry: glucose decreased in females at all concentrations (28-19%)
- Haematology: no treatment related effects
- Organ weights: no treatment related effects
- Gross pathology: no treatment related effects
- Histopathology: minimal to mild squamous metaplasia of the epiglottis in males and females at 0, 1000, 1930 and 3910 mg/m3 (1/10, 13/18, 16/19 and 13/14, respectively). Although a dose-related increase in the frequency of squamous metaplasia was not apparent, the frequency of mild metaplasia was greatest at the top dose (7 animals with minimal and 6 with mild).

STATISTICAL RESULTS: all effects mentioned showed statistical significance, except the decreased weight gain in males

Conclusions:
The LOAEL was 1000 mg/m3 based on local effects on the epithelium of the upper respiratory tract.
Executive summary:

The subacute toxicity of glycerol was examined following aerosol exposure. The LOAEL was 1000 mg/m3 based on local effects on the epithelium of the upper respiratory tract.

Data source

Reference
Reference Type:
publication
Title:
2-week and 13-week inhalation studies of aerosolized glycerol in rats
Author:
Renne R.
Year:
1992
Bibliographic source:
Inhal Toxicol 4:95-111

Materials and methods

Principles of method if other than guideline:
Two week aerosol study to set dose levels for a 13 week study. Study design appears to follow intent
of OECD 412 but publication does not indicate that OECD 412 was followed.
GLP compliance:
not specified
Limit test:
no

Test material

Constituent 1
Chemical structure
Reference substance name:
Glycerol
EC Number:
200-289-5
EC Name:
Glycerol
Cas Number:
56-81-5
Molecular formula:
C3H8O3
IUPAC Name:
propane-1,2,3-triol

Test animals

Species:
rat
Strain:
Sprague-Dawley
Sex:
male/female

Administration / exposure

Route of administration:
inhalation: aerosol
Type of inhalation exposure:
nose only
Vehicle:
air
Remark on MMAD/GSD:
MMAD / GSD: MMAD <1.5 um (respirable)
Analytical verification of test atmosphere concentrations:
yes
Duration of exposure:
6 h
Concentrations:
1000, 2000 and 4000 mg/m3
No. of animals per sex per dose:
10
Control animals:
yes

Results and discussion

Effect levelsopen allclose all
Sex:
male/female
Dose descriptor:
LC0
Effect level:
5 850 mg/m³ air
Based on:
test mat.
Exp. duration:
4 h
Remarks on result:
other: re-calculated from a 6 h exposure period
Sex:
male/female
Dose descriptor:
LC50
Effect level:
> 5 850 mg/m³ air
Based on:
test mat.
Exp. duration:
4 h
Remarks on result:
not determinable due to absence of adverse toxic effects
Mortality:
No mortality in any of the doses during the initial 6 h of exposure (day 1).

Mortality during the 14-day exposure period: 2 males at 1000 mg/m3 and 1 male and 1 female at 2000 mg/m3 (time of death not reported), all animals in the high concentration group survived the 14-day exposure period.
Clinical signs:
other: no treatment related effects
Body weight:
Body weight gain: decreased in males and females at all concentrations (58-28% in females)
Gross pathology:
no treatment related effects

Any other information on results incl. tables

The 14 day inhalation study without mortality which used a high dose of 3900 mg/m3 for 6 hr/day 5 d/wk.   Using Haber’s rule that purports that toxicity is a function of total exposure suggests that a 6 hr exposure to 3900 mg/m3 a value of 23400 mgxhr/m3 is derived.  This can then be used to derive the concentration that would yield the same outcome if only 4 hr exposure, 5850 mg/m3. 

Applicant's summary and conclusion

Interpretation of results:
GHS criteria not met
Conclusions:
The acute inhalation toxicity of glycerin was examined in rats. An inhalation LC50 was not determined as there were no mortalities at the highest tested concentration ( 5.85 mg/L) which was above the limit concentration of 5 mg/L for aerosols as defined by the OECD guideline 403.