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1.
IJRM-International Journal of Reproductive Biomedicine. 2013; 11 (2): 139-144
Dans Anglais | IMEMR | ID: emr-193219

Résumé

Background: aggressive embryo and receptive endometrium are necessary for successful implantation. On this time endometrium transformates to receptive state, which permits embryonic implantation. Studies about embryonic implantation and endometrial receptivity are always a hot spot in the field of reproductive medicine


Objective: to investigate the expression pattern of Meis1 during peri-implantation in mice endometrium


Materials and Methods: mice for experiment were raised in SPF environment. The mice were mated with a female/male ratio of 2:1. The female mice with detected plugs were regarded as pregnant day 1 [pd1]. Endometrial tissues were collected respectively on pd1, pd2, pd4, pd5 and pd6. Immunohistochemistry was used to detect the location of Meis1 in mice endometrium. The expression level of mRNA and protein of Meis1 were further detected using Quantitative PCR and Western blotting, respectively


Results: we found that Meis1 is located in the cytoplasm and membrane of endometrial glandule epithelium cells and the nucleus of endometrial stromal and decidual cells. Both Quantitative RT-PCR and western blotting showed that Meis1 expressed regularly in mice endometrium. Meis1 mRNA expressed weakly on pd1, then significantly increased on pd4 [p=0.018], and achieved to a peak on pd5 [p=0.0012], it showed a decrease trend on pd6. Meis1 protein expressed weakly on pd1 and pd2, then significantly increased on pd4 and pd5 [p=0.0019], it showed a decrease trend on pd6


Conclusion: meis1 is dynamically expressed in mice endometrium during peri-implantation. The time that Meis1 expression reaches its peak value is coincident with the implantation window, which implied that Meis1 is closely related with embryonic implantation

2.
Journal of Huazhong University of Science and Technology (Medical Sciences) ; (6): 430-436, 2010.
Article Dans Chinois | WPRIM | ID: wpr-349808

Résumé

The correlation of single nucleotide polymorphism (SNP) rs 10569304 on the second ex-pressed region of hole gene and congenital heart disease (CHD) of human being, and the effect of hole gene on CHD were investigated. 179 patients with CHD as CHD group and 183 healthy people as control group were selected in the case-control study. DNA was abstracted from the peripheral blood by phenol-chloroform method. Primer was designed for the flanking sequence of SNP rs10569304 on the second expressed region of hole gene. The genotype was identified by PCR de-generative acrylamide electrophoresis with amplification products. Then the three amplification products received sequencing. By chi-square test, the genotype frequency and allele frequency in CHD group and control group were analyzed. There was insertion-deletion (GCC/-) of SNP rs10569304 which corresponded to alleles of A and B in Southern Chinese people. The genotype fre-quency and allele frequency in control group and CHD group were met the Hardy-Weinberg equilib-rium. By chi-square test, in control group and CHD group, the genotype frequency of AA (insertion homozygous), AB (insertion-deletion heterozygous) and BB (deletion homozygous) was 21.31%, 54.09%, 24.59% and 16.75%, 46.36%, 36.87%, respectively. The distributional difference of geno-type frequency bad statistical significance (χ2=6.51, P<0.05);The allele frequency of A and B was 48.36% and 51.64% in control group, 39.94% and 60.06% in CHD group, respectively. The distribu-tional difference of allele frequency had statistical significance (χ2=5.20, P<0.05). Meanwhile, by contrast with the control group, the BB genotype frequency and B allele frequency in CHD group was higher, but the AA and AB frequency was lower. There was higher risk to suffer from CHD in-volving B allele. BB genotype had 1.907-fold increased risk of developing CHD according to AA genotype (P<0.05). It is concluded that there is insertion-deletion (GCC/-) of SNP rs10569304 in the Southern Chinese people, and the people whose hole gene involving BB genotype have higher risk to suffering from CHD.

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