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1.
Journal of Preventive Medicine ; (12): 687-691, 2023.
Article Dans Chinois | WPRIM | ID: wpr-980306

Résumé

Objective@#To investigate the trends in incidence of malignant tumors in Xiaoshan District, Hangzhou City from 2015 to 2020, so as to provide the evidence for improving the control strategy for malignant tumors. @*Methods@#Data on incidence of malignant tumors in Xiaoshan District from 2015 to 2020 were collected through Hangzhou Municipal Chronic Disease Monitoring Management System. The crude incidence, Chinese population-standardized incidence, world population-standardized incidence, cumulative incidence for 0 to 74 years, and truncated age-standardized incidence for 35 to 64 years of malignant tumors were calculated, and the trends in incidence of malignant tumors were analyzed using average annual percent change (AAPC). @*Results@#The crude incidence, Chinese population-standardized incidence, world population-standardized incidence, cumulative incidence for 0 to 74 years, and truncated age-standardized incidence for 35 to 64 years of malignant tumors were 476.95/105, 333.30/105, 257.01/105, 28.30% and 425.79/105 in Xiaoshan District from 2015 to 2020, which all appeared a tendency towards a rise (AAPC=4.36%, 3.82%, 3.99%, 3.79% and 5.20%, all P<0.05). The crude incidence, Chinese population-standardized incidence, world population-standardized incidence, cumulative incidence for 0 to 74 years, and truncated age-standardized incidence for 35 to 64 years of malignant tumors were 491.47/105, 313.31/105, 251.51/105, 28.78% and 338.82/105 among men, and both the crude incidence and truncated age-standardized incidence for 35 to 64 years appeared a tendency towards a rise (AAPC=3.00% and 1.73%, both P<0.05), while the crude incidence, Chinese population-standardized incidence, world population-standardized incidence, cumulative incidence for 0 to 74 years, and truncated age-standardized incidence for 35 to 64 years of malignant tumors were 462.98/105, 348.46/105, 262.13/105, 27.74% and 504.91/105 among women, which all appeared a tendency towards a rise (AAPC=5.77%, 5.72%, 5.79%, 5.65% and 7.48%, all P<0.05). The incidence of malignant tumors appeared a tendency towards a rise with age, and the crude incidence of malignant tumors showed a tendency towards a rise among people at ages of 15 to 44 years and 45 to 64 years (AAPC=9.85% and 4.88%, both P<0.05). Lung cancer, thyroid cancer, colorectal cancer, breast cancer and gastric cancer were the five most common cancers, accounting for 59.63% of all malignant tumors, and the incidence of lung cancer, thyroid cancer, colorectal cancer and breast cancer all showed a tendency towards a rise (AAPC=5.90%, 13.01%, 4.60% and 4.47%, all P<0.05). @*Conclusions @#The incidence of malignant tumors showed a tendency towards a rise in Xiaoshan District from 2015 to 2020. The rise in the incidence of malignant tumor was higher in females than in males, and malignant tumors tended to develop at a young age. Lung cancer, thyroid cancer, colorectal cancer, breast cancer and gastric cancer are major malignancies that threaten human health in Xiaoshan District.

2.
J Biosci ; 2012 Dec; 37 (6): 1029-1039
Article Dans Anglais | IMSEAR | ID: sea-161775

Résumé

Lysophosphatidyl acyltransferase (LPAT) is the important enzyme responsible for the acylation of lysophosphatidic acid (LPA), leading to the generation of phosphatidic acid (PA) in plant. Its encoding gene is an essential candidate for oil crops to improve oil composition and increase seed oil content through genetic engineering. In this study, a fulllength AhLPAT4 gene was isolated via cDNA library screening and rapid amplification of cDNA ends (RACE); our data demonstrated that AhLPAT4 had 1631 nucleotides, encoding a putative 43.8 kDa protein with 383 amino acid residues. The deduced protein included a conserved acyltransferase domain and four motifs (I–IV) with putative LPA and acyl-CoA catalytic and binding sites. Bioinformatic analysis indicated that AhLPAT4 contained four transmembrane domains (TMDs), localized to the endoplasmic reticulum (ER) membrane; detailed analysis indicated that motif I and motifs II–III in AhLPAT4 were separated by the third TMD, which located on cytosolic and ER luminal side respectively, and hydrophobic residues on the surface of AhLPAT4 protein fold to form a hydrophobic tunnel to accommodate the acyl chain. Subcellular localization analysis confirmed that AhLPAT4 was a cytoplasm protein. Phylogenetic analysis revealed that AhLPAT4 had a high homology (63.7–78.3%) with putative LPAT4 proteins from Glycine max, Arabidopsis thaliana and Ricinus communis. AhLPAT4 was ubiquitously expressed in diverse tissues except in flower, which is almost undetectable. The expression analysis in different developmental stages in peanut seeds indicated that AhLPAT4 did not coincide with oil accumulation.

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