Shimizu Takashi, Iijima Koji, Ogawa Yoshinori, Miyazaki Hitoshi, Sasada Hiroshi, Sato Eimei
Laboratory of Animal Reproduction, Graduate School of Agricultural Science, Tohoku University, Sendai, Japan.
Fertil Steril. 2008 May;89(5 Suppl):1563-70. doi: 10.1016/j.fertnstert.2007.06.043. Epub 2007 Oct 1.
To examine the effect of vascular endothelial growth factor (VEGF) and growth differentiation factor-9 (GDF-9) on follicular development of the ovaries in immature female rats.
Superovulation and gene injection.
Animal reproduction laboratory in Tohoku University, Sendai, Japan.
ANIMAL(S): Wister-Imamichi female rats.
INTERVENTION(S): The ovulated oocytes from rats with injected VEGF and GDF-9 gene fragments were counted, and the ovaries removed from those rats were used in the histologic observation.
MAIN OUTCOME MEASURE(S): Follicular dynamics and angiogenesis after VEGF and GDF-9 gene fragments injection.
RESULT(S): A single injection of the VEGF gene led to the production of a large number of oocytes (approximately 110 oocytes) from an individual animal that was injected with the gene at 21 days after birth, and after mating most of the oocytes were fertilized. Direct ovarian injection of GDF-9 stimulated the development of medium-sized antral follicles. The number of ovulated oocytes after injection of the VEGF plus GDF-9 gene fragments was the same as with a single injection of the VEGF gene.
CONCLUSION(S): A single injection of the VEGF or GDF-9 gene stimulated follicular development, and injection of both genes did increase the number of ovulated oocytes from individual animals. An exogenous gene fragments injection promoted the maximum potential of ovarian function in immature female rats.
研究血管内皮生长因子(VEGF)和生长分化因子9(GDF-9)对未成熟雌性大鼠卵巢卵泡发育的影响。
超排卵和基因注射。
日本仙台东北大学动物繁殖实验室。
Wister-Imamichi雌性大鼠。
对注射VEGF和GDF-9基因片段的大鼠所排出的卵母细胞进行计数,并将这些大鼠的卵巢用于组织学观察。
注射VEGF和GDF-9基因片段后的卵泡动态变化和血管生成情况。
单次注射VEGF基因可使出生后21天注射该基因的个体动物产生大量卵母细胞(约110个卵母细胞),交配后大多数卵母细胞受精。直接向卵巢注射GDF-9可刺激中等大小窦状卵泡的发育。注射VEGF加GDF-9基因片段后排卵的卵母细胞数量与单次注射VEGF基因时相同。
单次注射VEGF或GDF-9基因可刺激卵泡发育,同时注射这两种基因可增加个体动物排卵的卵母细胞数量。注射外源基因片段可促进未成熟雌性大鼠卵巢功能的最大潜能。