| | | | | 生长分化因子-9和骨形态发生蛋白-15与卵巢反应性的相关性研究 | | | 赵淑云;乔杰;刘平;陈咏健;李键;严杰 | | | 目的探讨生长分化因子-9(growth differentiation factor-9,GDF-9)和骨形态发生蛋白-15(bone morphogenetic protein15,BMP-15)在卵母细胞和卵冠丘颗粒细胞(cumulus granulosa cell,CGC)的表达与人卵巢反应性的关系。方法应用免疫荧光结合激光共聚焦显微术检测31例卵巢中反应患者的34枚、23例高反应患者的29枚未成熟生发泡(germinal vesicle,GV)期卵母细胞GDF-9蛋白的表达,33例中反应患者的37枚、29例高反应患者的34枚第一次减数分裂中期(metaphase I,MI)的卵母细胞BMP-15蛋白的表达;应用免疫细胞化学方法检测两种蛋白在34例低反应、41例中反应和36例高反应患者第2次减数分裂中期(MII)CGC的表达。结果卵巢中、高反应组间卵母细胞GDF-9的表达差异无显著性,卵巢高反应组"卵母细胞"BMP-15表达强度为(39.19±8.84)显著高于中反应组(29.23±7.83,P<0.01),并与获卵数中度正相关,(r=0.492,P=0.002);卵巢不同反应组间CGC中GDF-9和BMP-15蛋白表达强度无统计学意义,但两种因子的表达呈中度正相关关系,(r=0.415,P=0.000)。结论卵巢高反应与卵母细胞BMP-15的表达升高有关;GDF-9和BMP-15共表达于CGC中,且具有同步性,并可能存在协同作用。 【作者单位】:北京大学第三医院妇产科;北京大学第三医院妇产科;北京大学第三医院妇产科;北京大学第三医院妇产科;北京大学第三医院妇产科;北京大学第三医院妇产科 100083;在职临床博士;贵阳医学院附属医院妇产科;100083;100083;100083;100083;100083 【关键词】:生长分化因子-9;骨形态发生蛋白-15;卵巢反应性 【基金】:985项目(2001CB5103)资助 【分类号】:R711.75 【DOI】:CNKI:SUN:FKLC.0.2007-06-018 【正文快照】: 近10多年的研究提示卵源性生长因子生长分化因子-9(growth differentiationfactor-9,GDF-9)和骨形态发生蛋白-15(bone morphogenetic pro-tein15,BMP-15)可能是卵泡发育的关键调控因子[1],这对卵母细胞被动调节的传统理论提出了挑战。近年,对两种卵泡发育异常性疾病-多囊卵巢综 | | | | | | 推荐 下载CAJ全文 下载PDF全文 | | | CAJViewer7.0阅读器支持所有CNKI文件格式,AdobeReader仅支持PDF格式 | | | | The associations between expression of GDF-9 and BMP-15 in oocytes and CGC and different ovarian responses | | | ZHAO Shuyun;QIAO Jie;LIU Ping;et al.(Department of Obstetrics and Gynecology;Peking University Third Hospital;Beijing 100083;China) | | | Objective To determine the relationship between the expression of GDF-9 and BMP-15 proteins in oocyte and cumulus granulosa cell (CGC) and different ovarian response.Methods Both germinal vesicle (GV) stage and metaphase I (MI) stage oocytes which were not suitable for intracytoplasmic sperm injection procedure from patients with normal and hyper response, who undergo in vitro fertilization treatment in our center. Using immunofluorescence and laser scanning confocal microscope, the protein expression of GDF-9 on GV-stage oocytes for 31 normal responders (34 oocytes) and 23 hyper-responders(29 oocytes) were analyzed. The expression of BMP-15 protein on MI stage oocytes for 33 normal responders (37 oocytes) and 29 hyper-responders (34 oocytes) also were examined. Using by immunocytochemistry, the protein expression of these two factors in MI-stage CGC of 34 poor responders, 41 normal responders and 36 hyper-responders were detected, respectively.Results Both of GDF-9 and BMP-15 evenly expressed in human oocyte cytoplasma.The expression of GDF-9 has shown no statistic difference among different responders. While the expressions of BMP-15 in oocytes for hyper-responders (39.19±8.84) were higher than that of poor responders (29.23±7.83), and were positively correlated to the number of oocytes retrieved, (r=0.492,P=0.002). Both of GDF-9 and BMP-15 were expressed in CGC cytoplasma, however, they do not demonstrate statistic differences among different responders. But the expression of GDF-9 were closely related with BMP-15 in CGC, (r=0.415,P=0.000).Conclusions The expression of BMP-15 protein in oocyte but not GDF-9 is closely related to hyper-ovarian response. Both GDF-9 and BMP-15 expressed synchronically in CGC. 【Keyword】:GDF-9;BMP-15;ovarian response |
| | | | | | 1 | Aaltonen J, LaitinenM P, Vuojolainen K, et al; Human growth differentiation factor 9 (GDF-9 ) and its novel homolog GDF9B are expressed in oocytes during early folliculogenesis [M];Journal of Clinical Endocrinology and Metabolism; 1999年 | | 2 | Galloway S M, Gregan S M, Wilson T, McNatty K P, Juengel J L,Ritvos O, Davis G H; BMP15 mutations and ovarian function [M];Molecular and Cellular Endocrinology; 2002年 | | 3 | Otsuka F; Bone morphogenetic protein 15 inhibits follicle-stimulating hormone (FSH) action by suppressing FSH receptor expression [M];Journal of Biological Chemistry; 2001年 | | 4 | Duffy DM; Growth differentiation factor-9 is expressed by the primate follicle throughout the periovulatory interval [M];Biol Reprod; 2003年 | | 5 | Gilchrist RB,Ritter LJ,Armstrong DT; Oocyte-somatic cell interac-tions during follicle development in mammals[J] [M];Anim Reprod Sci; 2004年 | | 6 | K.P. McNatty P. Smith L.G. Moore K. Reader S. Lun J.P. Hanrahan N.P. Groome M. Laitinen O. Ritvosd; Oocyte-expressed genes affecting ovulation rate [M];Molecular and Cellular Endocrinology; 2005年 | | 7 | Laissue P,Christin-Maitre S,Touraine P,et al; Mutations and sequence variants in GDF9and BMP15in patients with premature ovarian failure[J] [M];Eur J Endocrinol; 2006年 | | 8 | Yamamoto N, Christenson LK, Mcallister JM, et al; Growth differentiation factor-9 inhibits 3' 5’-adenosine monophos-phate-stimulated steroidogenesis in human granulose and theca cells [M];Clin Endicrinol Metab; 2002年 | | 9 | Kwee J,Schats R,McDonnell J,et al; The clomiphene citrate challenge test versus the exogenous follicle-sti mulating hor-mone ovarian reserve test as a single test for identification of low responders and hyperresponders to in vitro fertilization [M];Fertil Steril; 2006年 | | 10 | Otsuka F,Yao Z,Lee T,et al; Bone morphogenetic protein-15 Identification of target cells and biological functions [M]; J Biol Chem; 2000年 |
|
|
|