豚鼠精子粘附在固定的纤维连接蛋白基质上会改变其生理机能并提高存活率。

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-10-20 DOI:10.1093/biolre/ioae150
Coral Y Jorge-Cruz, Ana L Roa-Espitia, Enrique O Hernández-González
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引用次数: 0

摘要

输卵管峡部被认为是精子的储藏室,精子在这里存留,然后与排卵同步释放。整合素介导了这种相互作用,有人认为它们能调节精子的存活率和获能能力。保留在输卵管上皮细胞中的精子显示出特殊的特征:正常的形态、完整的顶体和质膜、无 DNA 断裂、低水平的细胞内 Ca2+ 和 Tyr 蛋白磷酸化。这项研究旨在确定精子粘附在固定纤连蛋白基质上的能力及其对精子活力和获能的影响。我们发现,豚鼠精子对固定的纤维粘连蛋白基质有很高的亲和力,但对由 1 型胶原蛋白或层粘蛋白组成的基质却没有亲和力。这种相互作用是由识别 RGD 结构域的整合素介导的。粘附在固定纤连蛋白基质上的精子维持在低获能状态:细胞内 Ca2+ 浓度、Tyr 蛋白磷酸化和 F-肌动蛋白水平较低。此外,精子的质膜和顶体保持完好,鞭毛也在跳动,Caspases 3/7 的活化程度较低。精子粘附在固定的纤维连接蛋白基质上,逐渐脱离,形成莲座状,不发生自发的顶体反应,但能发生黄体酮诱导的顶体反应。总之,精子粘附在固定的纤维粘连蛋白基质上会改变精子的生理状态,使精子保持稳定的获能状态,提高精子的存活率,这与输卵管上皮细胞粘附精子的情况类似。
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Guinea pig spermatozoa adhesion to an immobilized fibronectin matrix alters their physiology and increases their survival.

Isthmus is the region of the oviduct considered a reservoir for spermatozoa, where they are retained and then released synchronously with ovulation. Integrins mediate this interaction, and it is suggested that they regulate the viability and capacitation of spermatozoa. Spermatozoa retained in the oviductal epithelial cells show specific characteristics: normal morphology, intact acrosome and plasma membrane, no DNA fragmentation, and low levels of intracellular Ca2+ and protein phosphorylation at Tyr. This work aimed to define spermatozoa's ability to adhere to an immobilized fibronectin matrix and its effects on their viability and capacitation. We found that guinea pig spermatozoa showed a high affinity for adhering to an immobilized fibronectin matrix but not to those made up of type 1 collagen or laminin. This interaction was mediated by integrins that recognize the RGD domain. Spermatozoa adhered to an immobilized fibronectin matrix were maintained in a state of low capacitation: low levels of intracellular concentration of Ca2+, protein phosphorylation in Tyr and F-actin. Also, spermatozoa kept their plasma membrane and acrosome intact, flagellum beating, and showed low activation of caspases 3/7. The spermatozoa adhered to the immobilized fibronectin matrix, gradually detached, forming rosettes and did not undergo a spontaneous acrosomal reaction but were capable of experiencing a progesterone-induced acrosomal reaction. In conclusion, the adhesion of spermatozoa to an immobilized fibronectin matrix alters the physiology of the spermatozoa, keeping them in a steady state of capacitation, increasing their viability in a similar way to what was reported for spermatozoa adhered to oviductal epithelial cells.

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