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1.
Journal of Public Health and Preventive Medicine ; (6): 7-11, 2023.
Artículo en Chino | WPRIM | ID: wpr-965173

RESUMEN

Objective To analyze the relationship between dietary and lifestyle inflammatory scores and metabolic syndrome, diabetes mellitus, cardiovascular disease, non-alcoholic fatty liver disease, tumor and other common metabolic diseases, and to explore the impact of dietary and lifestyle inflammatory potential on metabolic diseases, so as to provide new ideas for the diagnosis, treatment and prevention of metabolic diseases. Methods Databases such as CNKI, Wanfang , and PubMed were searched, and literatures related to the dietary and lifestyle inflammatory scores (DLIS) and metabolic diseases were reviewed . Results Seven articles showed that dietary and lifestyle inflammation scores had a positive correlation with metabolic diseases, and two articles showed that only lifestyle inflammatory scores had a positive correlation with metabolic diseases. Conclusion Dietary and lifestyle inflammatory scores may be positively correlated with metabolic diseases, but some results are still controversial. Further studies are needed to prove the correlation between DLIS and metabolic diseases.

2.
Journal of Public Health and Preventive Medicine ; (6): 116-121, 2023.
Artículo en Chino | WPRIM | ID: wpr-998538

RESUMEN

Exposure to fine particulate (PM2.5) has become a serious environmental risk factor threatening public health. A large number of epidemiological studies have shown that PM2.5 exposure is significantly associated with cardiovascular health.  At present, studies have found that PM2.5 components are associated with the incidence and death of cardiovascular metabolic diseases (hypertension, diabetes, coronary heart disease, stroke, etc.), which may be due to the different components of PM2.5 in different regions, which have different effects on cardiovascular health.  This article reviews the effects of different components of PM2.5 on cardiovascular metabolic diseases based on their sources and pathogenesis. The limitations of the effects of PM2.5 components on cardiovascular metabolic diseases are also discussed.

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