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1.
Indian J Occup Environ Med ; 27(1): 4-8, 2023.
Artículo en Inglés | MEDLINE | ID: mdl-37303997

RESUMEN

Background: This systematic review and meta-analysis study evaluates a relationship between occupational exposure to respirable crystalline silica and serum copper (Cu) levels as an indicator for early detection of silicosis. Materials and Methods: A systematic search was conducted, and the quality of results was evaluated in accordance with the guidelines of Preferred Reporting Items for Systematic Reviews and Meta-Analyses. The following databases were searched, including Web of Sciences, Scopus, and PubMed from inception until November 2021. The following keywords were selected for searching in the mentioned databases including, "copper" OR "serum copper" AND "silicosis". The mean (standard deviation [SD]) of Cu was extracted for both silicosis and non-silicosis subjects. The differences in mean effect size were pooled using the random-effect model. Heterogeneity and publication bias were evaluated using the I2 value and Begg's test and Egger's test, respectively. Results: A total of 159 studies were initially found, among which eight studies were included in the meta-analysis. Random-effect meta-analysis of these eight studies showed that silicosis patients had higher copper levels than the non-silicosis group with a pooled standardized mean difference (SMD) of 3.02 (95% confidence interval: 0.25, 5.78); I2 = 99.3%, P value < 0.001. The subgroup analysis showed that the corresponding figures in those with mean age >40 years and <40 years were 5.79 (2.06, 9.52) and -0.43 (-4.57, 3.70), respectively. Moreover, no publication bias was found in the analyses. Conclusions: The results of the present study demonstrated that silica exposure may be associated with increasing serum Cu levels.

2.
Saf Health Work ; 14(1): 118-123, 2023 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-36941929

RESUMEN

Background: Chronic exposure to silica is related with the provocation of an inflammatory response and oxidative stress mechanism. Vitamin D has multiple benefits in biological activities particularly respiratory system disease. Method: In this research, 20 male Wistar rats were randomly allocated into four groups (5 rats /group) as follow: Group1 received saline as (negative control) group. The group 2 received a single IT instillation of silica (positive control) group; the group 3 was co-administrated with single IT silica and Vitamin D (20 mg/kg/day) daily for a period of 90 days. The rats of group 4 received Vitamin D daily for a period of 90 days. Results: Silica significantly increased serum and lung total Oxidant Status (TOS). Meanwhile, silica reduced serum and lung total antioxidant capacity (TAC), GSH and tumor necrosis factor-α (TNF-a). Vitamin D treatment meaningfully reversed oxidative stress, antioxidants status and inflammatory response. Also, Vitamin D improved histopathological changes caused by silica. Conclusion: These findings indicate that Vitamin D exerts protective effects against silica-induced lung injury. It seems that Vitamin D has potential use as a therapeutic object for silica induced lung injure.

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