首页> 外文期刊>Pesquisa Veterinaria Brasileira >Porcine follicular fluid concentration of free insulin-like growth factor-I collected from different diameter ovarian follicles
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Porcine follicular fluid concentration of free insulin-like growth factor-I collected from different diameter ovarian follicles

机译:从不同直径的卵巢卵泡收集的猪卵泡液中游离胰岛素样生长因子-I的浓度

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摘要

The study aimed to quantify the concentrations of free IGF-I in serum and fluid of ovarian follicles in pre-pubertal gilts and describe the ovarian morphology by measuring the size of the ovaries and counting the number of surface follicles. Ovaries (n=1,000) from pre-pubertal gilts were obtained immediately after slaughter. A total of 10 samplings were performed, with ovaries obtained from 50 females for each collection. The follicles situated on the surface of each ovary were classified as small (SFs, 2 to 5mm in diameter) or large (LFs 6 to 10mm in diameter) and the follicular fluid was obtained by follicle aspiration. The collection of serum samples was performed after the gilts exsanguination using sterile tubes. From the pool of serum and follicular fluid obtained from 50 females, the concentration of free IGF-I was determined in each sample using an enzyme immunoassay kit (ELISA). The description of ovarian morphometry was performed in 100 ovaries from randomly selected gilts. The larger and smaller lengths of ovaries were measured, and the total number of SFs and LFs present on the surface of each ovary were also counted. The IGF-I concentration was greater (P<0.05) in LFs (170.92+/-88.29 ng/mL) compared with SFs (67.39+/-49.90ng/ mL) and serum (73.48+/-34.63ng/mL). The largest and smallest length of the ovaries was 26.0+/-3.0 and 19.0mm+/-2.0mm, respectively. The number of SFs (70.86+/-25.76) was greater (P<0.01) than LFs (6.54+/-5.26). The study concluded that LFs present greater levels of IGF-I when compared with SFs and blood, which is related to increased activity of the LFs and its differentiation to ovulation. In addition, ovaries of pre-pubertal gilts have a higher number of SFs compared to LFs. Therefore, our study demonstrated unique data regarding the physiological concentration of free IGF-I in ovarian follicles, that can be used in future research to evaluate the addition of this hormone in the in vitro production media of porcine embryos with the goal to improve the technique efficiency.
机译:该研究旨在量化青春期前小母猪卵巢卵泡血清和体液中游离IGF-I的浓度,并通过测量卵巢大小和计数表面卵泡数目来描述卵巢形态。宰杀后立即从青春期前的小母猪中取出卵巢(n = 1,000)。总共进行了10次采样,每个样本均从50名雌性中获得卵巢。将位于每个卵巢表面的卵泡分为小(SF,直径2至5mm)或大(LF,直径6至10mm),并通过卵泡抽吸获得卵泡液。在小母猪放血后,使用无菌试管收集血清样品。使用酶免疫测定试剂盒(ELISA),从50名女性的血清和卵泡液库中确定游离IGF-1的浓度。卵巢形态测定的描述是从随机选择的后备母猪的100个卵巢中进行的。测量卵巢的较大和较小长度,并且还计数每个卵巢表面上存在的SF和LF总数。与SFs(67.39 +/- 49.90ng / mL)和血清(73.48 +/- 34.63ng / mL)相比,LFs(170.92 +/- 88.29 ng / mL)中的IGF-I浓度更高(P <0.05)。卵巢的最大和最小长度分别为26.0 +/- 3.0和19.0mm +/- 2.0mm。 SF的数目(70.86 +/- 25.76)比LF的数目(6.54 +/- 5.26)大(P <0.01)。该研究得出的结论是,与SF和血液相比,LF呈现更高的IGF-I水平,这与LF的活性增加以及其向排卵的分化有关。此外,青春期前小母猪卵巢的SF数量比LF小。因此,我们的研究证明了有关卵巢卵泡中游离IGF-I的生理浓度的独特数据,可用于将来的研究中,以评估猪胚胎体外生产培养基中这种激素的添加,以改善该技术效率。

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