Price J M, Donahoe P K, Ito Y, Hendren W H
Am J Anat. 1977 Jul;149(3):353-75. doi: 10.1002/aja.1001490304.
The importance of a secretory product of the fetal testis, Müllerian Inhibiting Substance, in determining the fate of the Müllerian duct in the developing male fetus has been well documented. The present investigation has examined the mechanism of action of Müllerian Inhibiting Substance in the male rat fetus during the course of Müllerian duct degeneration. The action of Müllerian Inhibiting Substance mimics the general morphogenetic phenomenon of "programmed cell death," although important diferences were found compared to the majority of other studies of cell death. The initial morphological event in the degenerating Müllerian duct is an increase in lysosomes within the duct cells. Following loss of polarity and orientation, the duct cells are subsequently removed by invading macrophages from the surrounding mesenchyme. Concommitant with the differentiation of these macrophages, the adjacent mesenchyme assumes a characteristic whorled pattern around the degenerating Müllerian duct. Cytochemical localization of acid phosphatase confirmed the presence of newly formed lysosomes within the Müllerian duct cells and subsequently within the cytoplasm of the invading macrophages.
胎儿睾丸分泌产物——苗勒管抑制物质在决定发育中的雄性胎儿苗勒管的命运方面的重要性已得到充分证明。本研究在苗勒管退化过程中,对雄性大鼠胎儿体内苗勒管抑制物质的作用机制进行了研究。苗勒管抑制物质的作用模拟了“程序性细胞死亡”这一普遍的形态发生现象,尽管与大多数其他细胞死亡研究相比发现了重要差异。退化的苗勒管最初的形态学事件是管细胞内溶酶体增多。在极性和定向丧失后,管细胞随后被来自周围间充质的侵入性巨噬细胞清除。伴随着这些巨噬细胞的分化,相邻间充质在退化的苗勒管周围呈现出特征性的涡状模式。酸性磷酸酶的细胞化学定位证实了苗勒管细胞内以及随后侵入性巨噬细胞胞质内新形成的溶酶体的存在。