1.Analyzing the current situation of occupational health technical service institutions in Guangdong Province
Zuofei XIE ; Junyi HUANG ; Chuan WU ; Zuokan LIN ; Wenjie ZHANG ; Weifeng RONG
China Occupational Medicine 2025;52(4):421-425
Objective To investigate the technical capacity and service quality of occupational health technical service institutions (hereinafter referred to as "occupational health institutions") in Guangdong Province. Methods All occupational health institutions in Guangdong Province that had valid occupational health service qualifications and within the validity period were included for analysis. Data on basic information, employed personnel, and results of professional technical capacity assessments across occupational health institutions were obtained through the Guangdong Provincial Occupational Health Technical Quality Control Center. Results A total of 99 institutions with 2 732 technical staff were included in this study. Occupational health institutions in Guangdong Province were mainly distributed in the Pearl River Delta region, accounting for 87.9% (87/99) of the total. The number of public and private health institutions was 23 and 76, accounted for 23.2% and 76.8% respectively. In terms of technical personnel, the percentage of individuals worked in public or private health institutions was 24.1% and 75.9%, respectively. Personnel titles were predominantly intermediate level and no title, accounting for 38.7% and 26.4%, respectively. Individuals with a bachelor′s degree or above accounted for 67.4%. Engineering and other professionals accounted for 35.4% and 30.5%, respectively. Private institutions undertook 97.3% of testing and evaluation workload related to occupational hazard in the province. The number of occupational health institutes acquiring category Ⅰ and Ⅱ service license were 97 and 13. Among institutions participating in inter-laboratory comparisons, the overall pass rates for quantitative items were 95.5% in public and 70.3% in private institutions, while the pass rates for qualitative items were 100.0% and 94.5%, respectively. Conclusion Occupational health institutions in Guangdong Province face issues such as imbalanced regional distribution, uneven development, and insufficient technical competence and testing capacity of professional personnel. Health authorities at all levels should continue to strengthen supervision and quality control to solidify the technical foundation and comprehensively enhance service capacity and quality.
2.SDAEC Method and its Application in Batch Effect Removal for Single Cell mRNA Sequence
Wenjie WANG ; Kang LI ; Hongyu XIE
Chinese Journal of Health Statistics 2024;41(4):501-506
Objective To propose a deep stacked denoising auto encoder embedded cluster(SDAEC)algorithm and apply it to single cell mRNA sequence(scRNA-seq)data to remove the batch effect,and further to evaluate the performance of its batch effect removal.Methods Based on the characteristics of high dimension,high sparsity and high non-linear error of single-cell data,the algorithm of single cell Louvain clustering was embedded into stacked denoising auto encoder(SDAE)algorithm,and formed a SDAEC algorithm,which was used to batch effect removal for scRNA-seq data.SDAEC algorithm was utilized to scRNA-seq data of actual ovarian cancer tissue for batch effect removal,t-distributed stochastic neighbor embedding(tSNE),k-nearest-neighbor batch-effect test(kBET),adjusted rand index(ARI),normalized mutual information(NMI)and average silhouette width(ASW)were used to evaluate the performance of removing batch effect.Results The performance of SDAEC was better than Combat,mutual nearest neighbors(MNN),maximum mean discrepancy distribution-matching residual networks(MMD-ResNet)and zero-inflated negative binomial-based wanted variation extraction(ZINB-WaVE)in removing batch effect of scRNA-seq.Conclusion SDAEC algorithm can remove the batch effect of scRNA-seq data and improve the validity of downstream analysis of scRNA-seq data.
3.Research on quantitative evaluation of revise requirements of Specifications of Air Sampling for Hazardous Substances Monitoring in the Workplace (GBZ 159-2004)
Tuo LIU ; Xiaoshuang XIE ; Yang LU ; Peng QIN ; Wenjie LI ; Qiuhong ZHU
Chinese Journal of Industrial Hygiene and Occupational Diseases 2024;42(2):90-95
Objective:To conduct quantitative evaluation on the revise requirements of Specifications of Air Sampling for Hazardous Substances Monitoring in the Workplace (GBZ 159-2004) , clarify the problems and suggestions during its implementation for improvement, and provide a basis for the revision of the standard.Methods:From April to September 2021, stratified convenient sampling method was adopted and semi-open questionnaire was used to investigate the occupational health personnel in CDC, occupational prevention and control institutes, employers, third-party technical service institutions and universitie. The entropy weight of each index and the score based on entropy weight of GBZ 159 were calculated. Spearman rank correlation analysis was used to describe the correlation between the two indexes and radar chart was drawn for comprehensive evaluation.Results:A total of 151 questionnaires were received from the respondents, of which 147 were valid, with an effective recovery rate of 97.35%, involving 29 provinces, autonomous regions and municipalities. The median G scores of the necessity and urgency of GBZ 159 revision based on entropy weight were 2.84 and 3.17, respectively, and the difference was statistically significant ( M=-25.50, P<0.001) . The trend of the score G of necessity and urgency based on entropy weight was basically the same for all secondary items ( rs=0.9998, P<0.001) , and the score G of urgency based on entropy weight was higher than that of necessity. The highest score G of necessity and urgency based on entropy weight was "3.13 long time sampling", which were 7.56 and 8.23 respectively. This was followed by "3.12 short time sampling", which were 7.19 and 7.13 respectively. Conclusion:GBZ 159 has encountered some new problems and challenges in the implementation process, and some of its technical indicators have been out of line with the actual practice of occupational health at present. These are the two items that urgently needs to be revised and improved, such as "3.13 long time sampling" and "3.12 short time sampling" and other items need to be revised and improved.
4.Study on the implementation effect evaluation of Specifications of Air Sampling for Hazardous Substances Monitoring in the Workplace (GBZ 159-2004)
Tuo LIU ; Xiaoshuang XIE ; Yang LU ; Peng QIN ; Wenjie LI ; Qiuhong ZHU
Chinese Journal of Industrial Hygiene and Occupational Diseases 2024;42(2):136-140
Systematically evaluate the implementation of Specifications of Air Sampling for Hazardous Substances Monitoring (GBZ 159-2004) , so as to provide technical basis for the future standard revision. The semi-structured interview method was used to interview the industry experts from centers for disease control and prevention, occupational disease prevention and control hospitals/institutes, employers, third-party technical service institutions and universities, and the induction method was used to refine the topics and relevant suggestions. Some technical indicators of GBZ 159 are not suitable for the current actual work of occupational health, and need to be revised and improved urgently. The revised GBZ 159 should comply with the current situation of China's industrial development and the development of occupational health testing equipment in the new era, and improve the relevant technical requirements of sampling quality control.
5.Research on quantitative evaluation of revise requirements of Specifications of Air Sampling for Hazardous Substances Monitoring in the Workplace (GBZ 159-2004)
Tuo LIU ; Xiaoshuang XIE ; Yang LU ; Peng QIN ; Wenjie LI ; Qiuhong ZHU
Chinese Journal of Industrial Hygiene and Occupational Diseases 2024;42(2):90-95
Objective:To conduct quantitative evaluation on the revise requirements of Specifications of Air Sampling for Hazardous Substances Monitoring in the Workplace (GBZ 159-2004) , clarify the problems and suggestions during its implementation for improvement, and provide a basis for the revision of the standard.Methods:From April to September 2021, stratified convenient sampling method was adopted and semi-open questionnaire was used to investigate the occupational health personnel in CDC, occupational prevention and control institutes, employers, third-party technical service institutions and universitie. The entropy weight of each index and the score based on entropy weight of GBZ 159 were calculated. Spearman rank correlation analysis was used to describe the correlation between the two indexes and radar chart was drawn for comprehensive evaluation.Results:A total of 151 questionnaires were received from the respondents, of which 147 were valid, with an effective recovery rate of 97.35%, involving 29 provinces, autonomous regions and municipalities. The median G scores of the necessity and urgency of GBZ 159 revision based on entropy weight were 2.84 and 3.17, respectively, and the difference was statistically significant ( M=-25.50, P<0.001) . The trend of the score G of necessity and urgency based on entropy weight was basically the same for all secondary items ( rs=0.9998, P<0.001) , and the score G of urgency based on entropy weight was higher than that of necessity. The highest score G of necessity and urgency based on entropy weight was "3.13 long time sampling", which were 7.56 and 8.23 respectively. This was followed by "3.12 short time sampling", which were 7.19 and 7.13 respectively. Conclusion:GBZ 159 has encountered some new problems and challenges in the implementation process, and some of its technical indicators have been out of line with the actual practice of occupational health at present. These are the two items that urgently needs to be revised and improved, such as "3.13 long time sampling" and "3.12 short time sampling" and other items need to be revised and improved.
6.Study on the implementation effect evaluation of Specifications of Air Sampling for Hazardous Substances Monitoring in the Workplace (GBZ 159-2004)
Tuo LIU ; Xiaoshuang XIE ; Yang LU ; Peng QIN ; Wenjie LI ; Qiuhong ZHU
Chinese Journal of Industrial Hygiene and Occupational Diseases 2024;42(2):136-140
Systematically evaluate the implementation of Specifications of Air Sampling for Hazardous Substances Monitoring (GBZ 159-2004) , so as to provide technical basis for the future standard revision. The semi-structured interview method was used to interview the industry experts from centers for disease control and prevention, occupational disease prevention and control hospitals/institutes, employers, third-party technical service institutions and universities, and the induction method was used to refine the topics and relevant suggestions. Some technical indicators of GBZ 159 are not suitable for the current actual work of occupational health, and need to be revised and improved urgently. The revised GBZ 159 should comply with the current situation of China's industrial development and the development of occupational health testing equipment in the new era, and improve the relevant technical requirements of sampling quality control.
7.Study on the correlation between nonunion and TCM constitutions and exploration on the application of the concept of "prevention of disease"
Fei LIU ; Rui GONG ; Wenjie CHANG ; Chaolu WANG ; Wenpeng XIE ; Yongkui ZHANG
International Journal of Traditional Chinese Medicine 2024;46(7):846-853
Objective:To explore the disease characteristics and TCM constitutions of patients with nonunion; To analyze the risk factors of nonunion and its correlation with TCM constitution; To provide research ideas for the prevention and treatment of nonunion with TCM based on the concept of "prevention of disease".Methods:This study was an observational case-control study. 334 orthopedic patients who visited the Affiliated Hospital of Shandong University of Traditional Chinese Medicine from September 2020 to September 2022 were selected. 167 patients were collected according to the diagnostic criteria of nonunion, then 167 patients who met the criteria of fracture healing were included as the control group. General information and the classification of TCM constitutions of the patients were collected. The distribution rules of TCM constitution and patients' risk factors were statistically analyzed, and the correlation between the two was explored.Results:The unbalanced constitution was found in 126 cases (75.45%) in the bone nonunion group and 108 cases (62.87%) in the fracture healing group, with statistical significance ( χ2=4.63, P=0.032). The proportion of TCM constitutional types distributed among the patients with nonunion were in the following order: phlegm-dampness constitution, yang-deficiency constitution, mild constitution, qi-deficiency constitution, yin-deficiency constitution, damp-heat constitution, qi-stagnation constitution, blood-stasis constitution and inherited-special constitution. There was statistical significance between the nonunion group and the fracture healing group in the phlegm-dampness and yang-deficiency in men and yang-deficiency in women ( χ 2 values were 19.12, 4.96, 4.92, respectively, P<0.01 or P<0.05). Diabetes [ OR (95% CI): 2.672(1.067, 6.693), P=0.036], BMI≥24 [ OR (95% CI): 1.903 (1.182,3.063), P=0. 008], phlegm-dampness [ OR (95% CI): 3.099 (1.624,5.913), P=0.001] and yang-deficiency [ OR (95% CI): 2.424 (1.252,4.693), P=0.009] as independent risk factors for the development of nonunion in multifactorial logistic regression analysis. Conclusions:The proportion of unbalanced constitution in patients with nonunion is significantly higher than that in patients with fracture healing. Phlegm-dampness constitution and yang-deficiency constitution are independent risk factors for the development of nonunion. TCM constitutional types can be an important factor in the risk assessment of nonunion and the prevention and treatment of nonunion based on the concept of "prevention of disease" has a sound theoretical basis and wide application prospects.
8.Advances in the application of metabolomics technology in occupational health
Zuofei XIE ; Yiru QIN ; Wenjie ZHANG ; Lin ZHONG ; Banghua WU ; Weifeng RONG
China Occupational Medicine 2024;51(4):454-459
Metabolomics, including targeted metabolomics and non-targeted metabolomics, is a method to study endogenous small molecule metabolites in organisms. The process of metabolomics analysis generally includes sample collection and pre-treatment, sample detection, data preprocessing, metabolite identification, data statistical analysis, and others. At present, metabolomics technology has been applied to study toxicological mechanism of occupational hazards, early detection and diagnosis of occupational diseases, screening biomarkers of occupational exposure, and others. The application of metabolomics technology to explore the relationship between workers' metabolites and exposure to occupational hazardous, assess the potential impact of occupational exposure on workers' health, and search for ideal biomarkers or therapeutic targets is conducive to early warning and monitoring of occupational health hazards, and assistance in the early diagnosis and prognosis of occupational diseases.In the future, further research is needed in the field of occupational health using metabolomics to establish more complete and standardized workflows and experimental methods, combine big data technology to explore potential biomarkers, utilize metabolic information to provide precise occupational health services, and use artificial intelligence models for data mining and disease diagnosis in metabolomics.
9.Metabolic profile analysis on urine of workers with occupational nickel exposure
Zuofei XIE ; Anping MA ; Wenjie ZHANG ; Lin ZHONG ; Jingjing QIU ; Zuokan LIN ; Yi SUN ; Weihui WANG ; Zhanhong YANG ; Liuqing ZHAO ; Yiru QIN ; Weifeng RONG
China Occupational Medicine 2024;51(5):488-495
Objective To analyze differential metabolites (DMs) in the urine of workers with occupational nickel exposure using non-targeted metabolomics, and to screen differential metabolic pathways. Methods A total of 30 nickel exposed workers were selected as the exposure group, and 30 administrative staff from the same factory were selected as the control group using the judgment sampling method. Urine samples of the individuals from the two groups were collected. The ultra-high performance liquid chromatography with quadrupole time-of-flight mass spectrometry and non-targeted metabolomics were used to detect and identify metabolites. The differential metabolic profiles were compared between workers of the two groups, and key differential metabolic pathways and potential biomarkers were screened. The association of DMs and urinary nickel level were evaluated by Spearman correlation coefficients. The sensitivity and specificity of biomarkers were assessed by receiver operating characteristic (ROC) curve analysis. Results A total of 418 metabolites were identified in the urine of worker in the exposure and control groups. The result of principal component analysis and orthogonal partial least squares analysis showed that there were 128 DMs in the urine of workers in the exposure group compared with the control group. These DMs were mainly enriched in glutathione metabolism, carnitine synthesis, and amino acid and nucleotide metabolism pathways, including glycine and serine metabolism. The result of correlation analysis and ROC curve analysis revealed that 4-methylcatechol, 4-vinylphenol sulfate, 2-hydroxyphenylacetone sulfate, 2-dodecylbenzenesulfonic acid, and decylbenzenesulfonic acid could be the potential biomarkers for nickel exposure (all area under the ROC curve >0.800). Conclusion There were significant differences in the urinary metabolic profiles of workers with occupational nickel exposure. The five DMs including 4-methylcatechol, 4-vinylphenol sulfate, 2-hydroxyphenylacetone sulfate, 2-dodecylbenzenesulfonic acid, and decylbenzenesulfonic acid. These DMs could be potential biomarkers of occupational nickel exposure.
10.Advances in rapid detection methods of biotoxins in blood
Wenjie ZHANG ; Yiru QIN ; Zuofei XIE ; Anping MA ; Jingjing QIU ; Zuokan LIN ; Jiaheng HE ; Zhanhong YANG ; Weifeng RONG ; Banghua WU
China Occupational Medicine 2024;51(5):575-580
Biotoxins, which include bacterial, fungal, marine, plant, and animal toxins, are widespread in living and occupational environments, posing potential threats to human health. Rapid detection of biotoxins in blood is crucial for preventing health hazards and enabling timely disease diagnosis and treatment. Biosensors and immunoassay technologies have critical advantages in the rapid detection of biotoxins in blood. Common biosensors, such as surface plasmon resonance biosensors and fluorescent biosensors, enhance sensitivity and reduce detection limits through signal amplification. Common immunoassay methods, such as colloidal gold immunochromatography, fluorescence immunochromatography, and chemiluminescence immunoassay, improve detection efficacy and sensitivity through specific antibody-antigen binding and nanotechnology. However, current rapid detection technologies of bitoxins in blood face challenges such as matrix interference and insufficient specificity, and they fall short in high-throughput detection of multiple toxins simultaneously. Future developments should focus on improving sample pretreatment, innovating signal amplification methods, enhancing specificity on recognition of elements, and designing portable detection devices and high-throughput platforms for simultaneous toxin analysis. These advancements aim to improve the sensitivity and reliability of detection methods, providing more accurate and convenient solutions for biotoxin detection in blood.

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