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成年啮齿动物骨髓来源的细胞与卵子发生的替代途径。

Bone marrow derived cells and alternative pathways of oogenesis in adult rodents.

作者信息

Bukovsky Antonin, Ayala Maria E, Dominguez Roberto, Svetlikova Marta, Selleck-White Rachel

出版信息

Cell Cycle. 2007 Sep 15;6(18):2306-9. doi: 10.4161/cc.6.18.4707. Epub 2007 Jul 7.

Abstract

Oocyte generation in adult mouse ovaries by putative germ cells (PGCs) in bone marrow and peripheral blood has recently been proposed. It, however, remains unclear whether in laboratory rodents the PGCs reside in BM or the BM cells stimulate oogenesis from ovarian stem cells. We utilized immunoperoxidase staining to localize PGCs, oocytes, and BM derived cells in ovaries of adult (age 45-60 days) control and neonatally estrogenized rat females. In controls, BM derived cells accompanied emergence of PGCs from the ovarian surface epithelium (OSE) cells. The PGCs divided symmetrically, separated, and formed primordial follicles. A proportion (50%) of adult neonatally estrogenized rats lacked OSE. They exhibited occurrence of numerous BM derived cells and appearance of PGC precursors in the medulla. In juxtaposed deep ovarian cortex the emerging PGCs exhibited distinct pseudopodia and apparently migrated toward the mid cortex, where numerous primordial follicles were found. These observations indicate that BM derived cells accompany origination of PGCs from the OSE stem cells in normal adult rat females and from the medullary precursors in the adult neonatally estrogenized rats lacking OSE. An alternative origin of PGCs from the medullary region may explain why ovaries with destructed OSE are still capable of forming new primordial follicles.

摘要

最近有人提出,成年小鼠卵巢中的卵母细胞是由骨髓和外周血中的假定生殖细胞(PGCs)产生的。然而,在实验啮齿动物中,PGCs是存在于骨髓中,还是骨髓细胞刺激卵巢干细胞进行卵子发生,仍不清楚。我们利用免疫过氧化物酶染色法,在成年(45 - 60日龄)对照和新生期经雌激素处理的雌性大鼠卵巢中定位PGCs、卵母细胞和骨髓来源的细胞。在对照组中,骨髓来源的细胞伴随着PGCs从卵巢表面上皮(OSE)细胞中出现。PGCs进行对称分裂、分离,并形成原始卵泡。一部分(50%)成年新生期经雌激素处理的大鼠缺乏OSE。它们表现出大量骨髓来源的细胞出现,并且在髓质中出现PGC前体。在相邻的深部卵巢皮质中,新出现的PGCs表现出明显的伪足,并明显向皮质中部迁移,在那里发现了大量原始卵泡。这些观察结果表明,在正常成年雌性大鼠中,骨髓来源的细胞伴随着PGCs从OSE干细胞产生,而在缺乏OSE的成年新生期经雌激素处理的大鼠中,骨髓来源的细胞伴随着PGCs从髓质前体产生。PGCs从髓质区域的另一种起源可能解释了为什么OSE被破坏的卵巢仍然能够形成新的原始卵泡。

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