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The role of cremaster muscle in testicular descent in humans and animal models.

机译:提睾肌在人类和动物模型中睾丸下降中的作用。

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Testicular descent is a complex developmental process involving anatomical and hormonal regulation. The gubernaculum undergoes a "swelling reaction" during the transabdominal phase and is mainly under the control of Insulin-Like Peptide 3 (INSL-3) and Mullerian Inhibitory Substance/Anti-Mullerian Hormone (MIS/AMH). The second phase of testicular descent is regulated by androgens and calcitonin gene-related peptide (CGRP) release from the sensory nucleus of the genitofemoral nerve (GFN). In rodents, the active proliferation of the gubernacular tip and cremaster muscle, its rhythmic contraction, as well as the chemotactic gradient provided by the CGRP result in eventual migration of the testis into the scrotum. This review illustrates the structural aspects and hormonal control of cremaster muscle development to better understand the mechanism of testicular descent in normal rodents and humans, compared to diseased rodent models. The analysis showed the cremaster muscle is formed from mesenchymal differentiation of the gubernacular tip and is not a direct passive extension of internal oblique muscle. Cremaster muscle matures slower than other body muscles, and the persistence of immature myogenic proteins seen in cardiac muscle allows rhythmic contraction to guide the testis into the scrotum. Finally, remodelling of the cremaster muscle enables gubernacular eversion. Further understanding of the molecular regulators governing the structural and hormonal changes in the cremaster muscle may lead to new advances in the treatment of undescended testes.
机译:睾丸下降是一个复杂的发育过程,涉及解剖学和激素调节。瓜在腹经阶段经历“溶胀反应”,并且主要在胰岛素样肽3(INSL-3)和穆勒抑制物质/抗穆勒激素(MIS / AMH)的控制下。睾丸下降的第二阶段受雄激素和降钙素基因相关肽(CGRP)从生殖器股神经(GFN)的感觉核释放的调节。在啮齿动物中,耳鼻喉和提睾肌的活跃增殖,其节律性收缩以及CGRP提供的趋化梯度导致睾丸最终迁移到阴囊中。这篇综述阐述了患病变的啮齿动物模型中提睾肌发育的结构方面和激素控制,以更好地了解正常啮齿动物和人类睾丸下降的机制。分析表明,提睾肌是由下颌尖的间质分化形成的,不是内斜肌的直接被动延伸。 Cremaster肌肉的成熟速度比其他身体肌肉慢,并且在心肌中发现的未成熟的成肌蛋白的持续存在使节律性收缩将睾丸引导至阴囊。最后,提睾肌的重塑可以使眼睑外翻。对控制提睾肌中结构和激素变化的分子调节剂的进一步了解可能会导致未降睾丸治疗的新进展。

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