Objective: To explore the influence of gender of chromosomal translocation carriers on the occurrence of embryonic chromosomal aberrations.
Methods: A retrospective study was carried out. Data were collected from 235 couples carrying reciprocal translocations (1163 blastocysts) and 70 couples carrying Robertsonian translocations (351 blastocysts). The preimplantation genetic testing for structural rearrangement (PGT-SR) analysis of 1514 blastocysts were completed through next generation sequencing (NGS).
Results: After adjusting the confounding factors such as female age, AMH, ovarian stimulation regimen, and Gn dosage, the results showed that the risk for blastocyst chromosomal abnormalities was 0.41 [OR(95%CI), 1.41(1.06, 1.87), P < 0.05] times higher in female reciprocal translocation carriers and 1.02 [OR(95%CI), 2.02 (1.20, 3.40), P < 0.01] times higher in female Robertsonian translocation carriers compared with male carriers, respectively. Compared with male carriers, the risk of blastocyst chromosomal abnormalities was increased by 0.67 times [OR(95%CI), 1.67 (1.10, 2.56), P < 0.05] in female reciprocal translocation carriers over 30 years old and 1.06 times [OR(95%CI), 2.06 (1.02, 4.15), P = 0.0434, P < 0.05] in female Robertsonian translocation carriers between 25 and 30 years old.
Conclusion: Compared with male carriers, female carriers of reciprocal or Robertsonian translocations have a higher risk for producing embryos with chromosomal abnormalities, and their age may also be a risk factor.
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http://dx.doi.org/10.3760/cma.j.cn511374-20210907-00728 | DOI Listing |
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Department of Nutrition, Second Military Medical University, Shanghai, China.
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Department of Endocrinology, the First Medical Center of Chinese PLA General Hospital, Beijing100039, China.
Angew Chem Int Ed Engl
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Constructor University Bremen gGmbH, School of Science, Campus Ring 1, 28759, Bremen, GERMANY.
Compartmentalized models with coupled catalytic networks are considered as "protocells" in the context of research related to the origin of life. To model the kinetics of a simple cellular uptake-metabolism process, we use a compartmentalized protocell system that combines liposome-encapsulated intravesicular reporter pairs with co-encapsulated enzymes to monitor the membrane transport of a substrate (analyte uptake) and its subsequent enzymatic reaction inside the vesicles (metabolism to the product). The intravesicular chemosensing ensembles consist of the macrocycles cucurbit[7]uril or p-sulfonatocalix[4]arene and matching fluorescent dyes to set up suitable reporter pairs.
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State Key Laboratory of Meat Quality Control and Cultured Meat Development, MOST; Key Laboratory of Meat Processing, MARA; Jiangsu Collaborative Innovation Center of Meat Production, Processing and Quality Control, College of Food Science and Technology, Nanjing Agricultural University, China. Electronic address:
In this study, we examined the bioavailability and functionality of rosmarinic acid and β-carotene in beef sausages using Caco-2 cell models. Digesta from enriched sausages showed high antioxidant activity, with 89.2% DPPH and 87.
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