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猪排卵期前后卵巢卵泡血管重塑:免疫组织化学和扫描电镜-铸型腐蚀研究

Blood vessel remodeling in pig ovarian follicles during the periovulatory period: an immunohistochemistry and SEM-corrosion casting study.

作者信息

Martelli Alessandra, Palmerini Maria Grazia, Russo Valentina, Rinaldi Carlo, Bernabò Nicola, Di Giacinto Oriana, Berardinelli Paolo, Nottola Stefania Annarita, Macchiarelli Guido, Barboni Barbara

机构信息

Department of Comparative Biomedical Sciences, University of Teramo, Piazza A, Moro, 45, 64100 Teramo, Italy.

出版信息

Reprod Biol Endocrinol. 2009 Jul 16;7:72. doi: 10.1186/1477-7827-7-72.

Abstract

BACKGROUND

The present research aims to describe the process of vascular readjustment occurring in pig ovary during the periovulatory phase (from LH surge to ovulation) that drives the transformation of the follicle, a limited blood supplied structure, into the corpus luteum, a highly vascularised endocrine gland required to maintain high levels of progesterone in pregnancy. The swine model was chosen because it is characterized by a long periovulatory window (about 40-44 hrs-similar to human) that permits to recover follicles at a precise endocrinological timing.

METHODS

By validated hormonal protocol (eCG+hCG), able to mimic the physiologic gonadotropin stimulation, preovulatory follicles (PreOFs, 60 h-eCG), follicles in the middle (early periovulatory follicles, EPerOFs, 18 h-hCG) or late (LPerOFs, 36 h-hCG) periovulatory phase were isolated from prepubertal gilts. To understand the angiogenic process, morphological/morphometrical analyses were performed by combining immunohistochemistry (IHC) and SEM of vascular corrosion casts (VCC) techniques.

RESULTS

PreOFs showed a vascular plexus with proliferating endothelial cells (EPI). This plexus was characterized by a dense inner capillary network, with angiogenic figures, connected to the outer network by anastomotic vessels (arterioles and venules of the middle network). EPerOFs decreased their EPI, blood vessel extension in the outer network, and evidenced a reduced compactness of blood vessels. In LPerOFs, a rapid neovascularization was associated to an intensive tissue remodeling: the follicle acquired an undulated aspect presenting arterioles/venules near the basal membrane, increased vascular extension by EPI, sprouting and non-sprouting angiogenesis.The analysis of vascular geometric relations and branching angles evidenced similar values at all stages.

CONCLUSION

These data allow us to hypothesize that EPerOFs are in a quiescent status. LPerOFs represent the "metamorphic" follicles that rapidly turn-on angiogenesis to sustain a successful corpus luteum formation. Particularly, it is interesting to underlie that the non-sprouting angiogenesis, typical of structures in rapid neovascularization, occurred only in the LPerOFs. Moreover, vascular geometric relations showed as blood vessel remodeling occurs with the "maximum output and the minimum energetic expense".This knowledge will allow to better understand the mechanisms regulating the reproductive success and to clarify the complex physiological angiogenic process in adult tissues.

摘要

背景

本研究旨在描述猪卵巢在排卵期(从促黄体生成素峰至排卵)发生的血管重新调整过程,该过程驱动卵泡(一种血液供应有限的结构)转变为黄体(一种高度血管化的内分泌腺,在妊娠期间需要维持高水平的孕酮)。选择猪模型是因为其排卵期窗口较长(约40 - 44小时,与人类相似),这使得能够在精确的内分泌时间回收卵泡。

方法

通过经过验证的激素方案(eCG + hCG),能够模拟生理性促性腺激素刺激,从青春期前小母猪中分离出排卵前卵泡(PreOFs,eCG后60小时)、排卵期中期卵泡(早期排卵期卵泡,EPerOFs,hCG后18小时)或晚期(LPerOFs,hCG后36小时)卵泡。为了解血管生成过程,通过结合免疫组织化学(IHC)和血管铸型扫描电镜(VCC)技术进行形态学/形态计量学分析。

结果

PreOFs显示出一个带有增殖内皮细胞(EPI)的血管丛。该血管丛的特征是内部有密集的毛细血管网络,伴有血管生成迹象,通过吻合血管(中间网络的小动脉和小静脉)与外部网络相连。EPerOFs的EPI减少,外部网络中的血管延伸减少,并显示出血管紧密性降低。在LPerOFs中,快速的新生血管形成与强烈的组织重塑相关:卵泡呈现出波浪状外观,在基底膜附近有小动脉/小静脉,通过EPI增加血管延伸,出现芽生和非芽生血管生成。血管几何关系和分支角度的分析表明在所有阶段都有相似的值。

结论

这些数据使我们能够假设EPerOFs处于静止状态。LPerOFs代表“变形”卵泡,其迅速开启血管生成以维持成功的黄体形成。特别值得注意的是,快速新生血管化结构典型的非芽生血管生成仅发生在LPerOFs中。此外,血管几何关系表明血管重塑是以“最大输出和最小能量消耗”发生的。这些知识将有助于更好地理解调节生殖成功的机制,并阐明成年组织中复杂的生理性血管生成过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/992d/2720392/f557ee4af01e/1477-7827-7-72-1.jpg

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