Itoh Hiroko, Nasu Kaei, Matsumoto Harunobu, Kawano Yasushi, Yoshimatsu Jun, Narahara Hisashi
Department of Obstetrics and Gynecology, Faculty of Medicine, Oita University, Oita, Japan.
Fertil Steril. 2006 Apr;85 Suppl 1:1097-102. doi: 10.1016/j.fertnstert.2005.10.023.
To evaluate the effect of hypoxia on the production of vascular endothelial growth factor (VEGF) and soluble fms-like tyrosine kinase-1 (sFlt-1) in the human fallopian tube.
The secretion of VEGF and sFlt-1 by cultured oviductal epithelial cells (OECs) and oviductal stromal fibroblasts (OSFs) in response to hypoxia was investigated.
Research laboratory at a medical school.
PATIENT(S): Normal oviducts obtained from seven premenopausal patients were used.
INTERVENTION(S): Oviductal epithelial cells and OSFs were incubated under normoxic (20% O2) or hypoxic (2% O2) conditions.
MAIN OUTCOME MEASURE(S): The concentrations of VEGF and sFlt-1 in the culture media of OECs and OSFs were measured by enzyme-linked immunosorbent assays.
RESULT(S): The secretion of both VEGF and sFlt-1 was detected in cultured OECs and OSFs and was found to have been stimulated under hypoxic conditions in these cells.
CONCLUSION(S): The present findings suggest that hypoxia in the local environment may stimulate oviductal vascular permeability by inducing the production of VEGF by oviductal cells. Simultaneous up-regulation of sFlt-1 secretion by these cells under hypoxic conditions may prevent excessive up-regulation of vascular permeability. The modulation of the bias of VEGF and sFlt-1 in the fallopian tubes may contribute to the normal and pathological processes of oviductal fluid secretion by regulating oviductal vascular permeability during the menstrual cycle.
评估缺氧对人输卵管中血管内皮生长因子(VEGF)和可溶性fms样酪氨酸激酶-1(sFlt-1)产生的影响。
研究培养的输卵管上皮细胞(OECs)和输卵管基质成纤维细胞(OSFs)在缺氧条件下VEGF和sFlt-1的分泌情况。
一所医学院的研究实验室。
使用从7名绝经前患者获取的正常输卵管。
将输卵管上皮细胞和OSFs在常氧(20% O₂)或缺氧(2% O₂)条件下孵育。
通过酶联免疫吸附测定法测量OECs和OSFs培养基中VEGF和sFlt-1的浓度。
在培养的OECs和OSFs中均检测到VEGF和sFlt-1的分泌,并且发现在这些细胞的缺氧条件下其分泌受到刺激。
目前的研究结果表明,局部环境中的缺氧可能通过诱导输卵管细胞产生VEGF来刺激输卵管血管通透性。在缺氧条件下这些细胞同时上调sFlt-1分泌可能会防止血管通透性过度上调。输卵管中VEGF和sFlt-1偏差的调节可能通过在月经周期中调节输卵管血管通透性来促进输卵管液分泌的正常和病理过程。