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Institution

National Health and Family Planning Commission

GovernmentBeijing, China
About: National Health and Family Planning Commission is a government organization based out in Beijing, China. It is known for research contribution in the topics: Population & Kashin–Beck disease. The organization has 2379 authors who have published 1440 publications receiving 20078 citations. The organization is also known as: Ministry of Health of the People's Republic of China.

Papers published on a yearly basis

Papers
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Journal ArticleDOI
TL;DR: The latest studies describing the features and types of EGFR pathogenic mutations, currently established EGFR-tyrosine kinase inhibitors from the first to fourth generation, including their action mechanisms, acquired resistance, and clinical applications, and potential challenges and perspectives that current researchers should address are reviewed.
Abstract: Non-small cell lung carcinoma (NSCLC) is a malignant tumour with poor prognosis and high mortality. Platinum-based dual-agent chemotherapy is the main therapeutic regimen for this disease. In recent years, because of the introduction of molecular targeted therapy, various targeted therapeutic agents against epidermal growth factor receptor (EGFR) have been rapidly developed, which has become a research hotspot for NSCLC treatment. Here, we review the latest studies describing the features and types of EGFR pathogenic mutations, currently established EGFR-tyrosine kinase inhibitors from the first to fourth generation, including their action mechanisms, acquired resistance, and clinical applications, and potential challenges and perspectives that current researchers should address.

12 citations

Journal ArticleDOI
TL;DR: The results may help explain the mechanisms of interaction between mycotoxins and selenium following human chondrocyte damage and reveal the potential roles of environmental risk factors in cartilage lesions during KBD development.
Abstract: The combination of excess mycotoxin exposure and selenium deficiency has been widely considered as a cause of Kashin-Beck disease (KBD). The present study aimed to investigate the expression profiles of selenium-related genes in human chondrocytes after exposure to T-2 toxin and deoxynivalenol (DON) and to preliminarily identify the potential biological functions of the identified genes. Gene expression profiling was performed on human chondrocytes treated with 0.01 μg/ml T-2 toxin and 1.0 μg/ml DON by using Affymetrix Human Gene Arrays. The 1660 selenium-related genes were derived from the Comparative Toxicogenomics Database. Gene-term enrichment analysis was conducted by the DAVID gene annotation tool. Our results showed that 69 and 191 selenium-related genes were differentially expressed after T-2 toxin and DON treatment, respectively. Gene ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis showed that these identified genes were involved in various biological functions, such as the GO terms in response to oxidative stress, cell cycle arrest, and apoptotic process and the KEGG metabolic, FoxO signaling, and p53 signaling pathways. Our results may help explain the mechanisms of interaction between mycotoxins and selenium following human chondrocyte damage and reveal the potential roles of environmental risk factors in cartilage lesions during KBD development.

12 citations

Journal ArticleDOI
TL;DR: It is concluded that long-term passive smoking could potentially increase the exposure level of toxic metals including lead, silver, and mercury in women from the Shanxi and Hebei provinces of Northern China in this study, which is especially harmful for pregnant women and their unborn fetus.
Abstract: Tobacco smoke contains various toxic heavy metals that individuals are exposed to when they smoke. Despite the presence of heavy metals in tobacco smoke, the relationship between smoking and the accumulation of toxic metals in pregnant women after long-term exposure remains under discussion. We examined the association between long-term exposure to tobacco smoke and the accumulation of toxic metals in the hair of female participants. Our study recruited 252 women from the Shanxi and Hebei provinces of Northern China; these participants were self-reported non-active smokers, and had previously delivered healthy babies without birth defects. Scalp hair was collected and analyzed for nicotine and cotinine and five potentially toxic metals (specifically, silver, chromium, cadmium, mercury, and lead). Our results showed significant positive correlations between cotinine and four metals, including silver (r = 0.369, p < 0.001), cadmium (r = 0.185, p < 0.01), mercury (r = 0.161, p < 0.05), and lead (r = 0.243, p < 0.001). Significant positive correlations were also found between nicotine and three metals—specifically silver (r = 0.331, p < 0.001), cadmium (r = 0.176, p < 0.01), and lead (r = 0.316, p < 0.001). A logistic regression model showed significant associations between cotinine and potentially toxic metals including mercury, silver, and lead (with or without adjusting for potential confounders). We thus conclude that long-term passive smoking could potentially increase the exposure level of toxic metals including lead, silver, and mercury in our study, which are especially harmful for pregnant women and their unborn fetus.

12 citations

Journal ArticleDOI
TL;DR: It is reported that phospholipase D1 (PLD1) promotes the development of dendritic spines in hippocampal neurons and a positive role of PLD1 in synaptogenesis is indicated by inhibiting the ADAM10 mediated N-cadherin cleavage to provide new therapeutic clues for some neurological diseases.
Abstract: Synapses are the basic units of information transmission, processing and integration in the nervous system. Dysfunction of the synaptic development has been recognized as one of the main reasons for mental dementia and psychiatric diseases such as Alzheimer's disease and autism. However, the underlying mechanisms of the synapse formation are far from clear. Here we report that phospholipase D1 (PLD1) promotes the development of dendritic spines in hippocampal neurons. We found that overexpressing PLD1 increases both the density and the area of dendritic spines. On the contrary, loss of function of PLD1, including overexpression of the catalytically-inactive PLD1 (PLD1ci) or knocking down PLD1 by siRNAs, leads to reduction in the spine density and the spine area. Moreover, we found that PLD1 promotes the dendritic spine development via regulating the membrane level of N-cadherin. Further studies showed that the regulation of surface N-cadherin by PLD1 is related with the cleavage of N-cadherin by a member of the disintegrin and metalloprotease family-ADAM10. Taking together, our results indicate a positive role of PLD1 in synaptogenesis by inhibiting the ADAM10 mediated N-cadherin cleavage and provide new therapeutic clues for some neurological diseases.

12 citations

Journal ArticleDOI
TL;DR: This is the first report describing a novel Mab that recognizes a conserved epitope common to both PR RSV-1 and PRRSV-2 and provides valuable insights to guide futurePRRSV vaccine development.

12 citations


Authors

Showing all 2403 results

NameH-indexPapersCitations
Feng Zhang1721278181865
Yang Yang1712644153049
Lei Zhang135224099365
Jian Zhang107306469715
Wei Wang95354459660
Jie Li7684332221
Jing Liu73135127169
Haidong Kan7140544210
Wei Wang6667320023
Jin-Tai Yu6643920020
Qi Jin6433545892
Chuan Qin6032621708
Ji-Sheng Han6033913660
Ying Zhou6066314349
Jun Huang5744512176
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202314
202220
2021131
2020166
2019188
2018262