Effects of ginkgo biloba tablets on liver injury in patients with coal-burning-borne arsenism based on DNA damage and repair inhibition / 中华地方病学杂志
Chinese Journal of Endemiology
; (12): 7-13, 2022.
Article
en Zh
| WPRIM
| ID: wpr-931484
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WPRO
ABSTRACT
Objective:To investigate the role of DNA damage and repair inhibition in the effect of ginkgo biloba on liver injury in patients with coal-burning-borne arsenism.Methods:In March 2017, the investigation was conducted in Jiaole village arsenic poisoning area in Yuzhang Town, Xingren County, Guizhou Province. According to the "Diagnosis of Endemic Arsenicosis" (WS/T 211-2015) and the "Diagnostic Criteria of Occupational Toxic Hepatopathy" (GBZ 59-2010), 52 patients with arsenism were selected as the ginkgo biloba intervention group, and 49 cases of arsenism patients as intervention control group. Ginkgo biloba tablets were given orally for 3 months (1 tablet/time, 3 times/d) according to the commonly used clinical methods, and no other drugs were given to all subjects during the intervention period. The intervention control group was given placebo in the same way as that of ginkgo biloba intervention group. A total of 41 residents who did not burn high arsenic coal 12 km away with no abnormal liver function were selected as normal control group. Physical examinations were performed before the intervention and at the end of the intervention at 3 months. After receiving signed informed consent, morning urine and peripheral venous blood samples were collected to detect urinary arsenic content by inductively coupled plasma mass spectrometry (ICP-MS); liver function biochemical indexes [albumin (ALB), albumin/globulin (A/G), cholinesterase (CHE), total bile acid (TBA)] were determined by automatic biochemical analyzer, DNA damage by single-cell gel electrophoresis assay, and the expression of miR-145 (repair inhibition index) by qRT-PCR.Results:There were 116 subjects, 41 in normal control group, 39 in ginkgo biloba intervention group and 36 in intervention control group. In ginkgo biloba and intervention and intervention control groups, there was no significant difference in age, gender, smoking habits and drinking compared with normal control group ( P > 0.05). Urinary arsenic content, TBA level, DNA damage degree [comet tail DNA percentage (TailDNA%) and olive tail moment (OTM)] and plasma miR-145 expression level [(38.75 ± 19.09) μg/g Cr, (11.13 ± 1.55) μmol/L, 8.50 ± 0.88, 7.43 ± 0.68, 5.78 ± 0.75, respectively] in ginkgo biloba intervention group patients before intervention were higher than those in normal control group [(11.62 ± 5.33) μg/g Cr, (5.36 ± 0.87) μmol/L, 5.24 ± 0.33, 4.71 ± 0.29, 2.05 ± 0.27, respectively], the differences were statistically significant ( P < 0.05); the levels of ALB, A/G and CHE were significantly lower than those in normal control group ( P < 0.05). After the intervention of ginkgo biloba, urinary arsenic content, TBA level, DNA damage degree (TailDNA% and OTM) and plasma miR-145 expression level in patients were significantly lower than those before the intervention ( P < 0.05); the levels of ALB, A/G and CHE were significantly higher than those before the intervention ( P < 0.05). There was no significant difference in the above indexes before and after intervention in the intervention control group ( P > 0.05). The results of correlation analysis between DNA damage degree, miR-145 and liver function indexes after the intervention of ginkgo biloba showed that, DNA damage degree (TailDNA% and OTM) was negatively correlated with the levels of ALB, A/G and CHE ( r = - 0.34, - 0.33, - 0.48, - 0.31, - 0.31, - 0.42, P < 0.05), and positively correlated with the level of TBA ( r = 0.49, 0.48, P < 0.05); miR-145 was negatively correlated with the levels of ALB, A/G and CHE ( r = - 0.26, - 0.23, - 0.38, P < 0.05), which was positively correlated with the level of TBA ( r = 0.32, P < 0.05); and DNA damage degree was positively correlated with the expression of miR-145 ( r = 0.65, 0.52, P < 0.05). Conclusion:Ginkgo biloba tablets can alleviate the liver damage caused by arsenic through coal burning, and the mechanism of this process is related to its inhibition of miR-145 expression and reduction of DNA damage.
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WPRIM
Tipo de estudio:
Clinical_trials
Idioma:
Zh
Revista:
Chinese Journal of Endemiology
Año:
2022
Tipo del documento:
Article