Exposure to 1-bromopropane causes dose-dependent neurological abnormalities in workers.
- Author:
Wei-hua LI
1
;
Qiang-yi WANG
;
Gaku ICHIHARA
;
Yasuhiro TAKEUCHI
;
Xun-cheng DING
;
Zhi-jun ZHOU
Author Information
- Publication Type:Journal Article
- MeSH: Adult; Creatine Kinase; blood; Female; Humans; Hydrocarbons, Brominated; analysis; toxicity; Maximum Tolerated Dose; Neural Conduction; drug effects; Occupational Exposure; Tibial Nerve; physiopathology; Workplace
- From: Chinese Journal of Industrial Hygiene and Occupational Diseases 2010;28(7):488-493
- CountryChina
- Language:Chinese
-
Abstract:
OBJECTIVETo explore the dose-effect relationship between 1-bromopropane (1-BP) exposure and health effects in workers.
METHODSOccupational field investigations were conducted in 1-BP factories. Ambient 1-BP concentrations were detected with detection tube, and the 8 h time-weighted average individual exposure levels (TWA-8 h) were measured by passive sampler. Workers underwent questionnaire survey, neurological examination, nerve conduction velocity examination, vibration sensation test. routine blood test as well as blood biochemical test. According to TWA values or TWA x duration values, workers were divided into three dose groups for dose-effect relationship analysis. USEPA BMDS 2.1 software was applied to calculate 1-BP benchmark dose (BMD) and its 95% lower limit (BMDL).
RESULTSThe TWA-8h concentrations ranged from 0.35 to 535.19 mg/m3 (geo-mean 14.08 mg/m3). Dose-dependent analysis showed that the motor nerve distal latency (linear regression coefficient was 0.066 6), vibration sensation of toes (linear regression coefficient were 0.157 2 and 0.193 9), creatine kinase (linear regression coefficient was -1.05) and thyroid stimulating hormone levels (linear regression coefficient was 0.1024) of 1-BP exposed workers changed in a dose-dependent manner (P < 0.05). BMD calculation based on DL as 1-BP toxic effect endpoint showed that TWA-8h of the BMD values and BMDL values were 50.55 mg/m3 and 30.78 mg/m3, respectively.
CONCLUSION1-BP causes dose-dependent changes in tibial nerve DL, vibration sensation, CK and TSH levels.