鸡胚肺原间充质糖胺聚糖(GAG)分布的发育异质性。

E Becchetti, R Evangelisti, G Stabellini, A Pagliarini, E del Borrello, C Calastrini, P Carinci
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引用次数: 33

摘要

用组织化学方法研究了鸡胚肺发育过程中细胞外基质间充质成分的存在和分布(51/2/6 ~ 18孵化d)。人们的注意力主要集中在糖胺聚糖(GAG)上。形态学重建显示了三个主要阶段:第一阶段(5 1/2/6-8天),二级分支的形成;第二阶段(9-12天)为副支气管增生阶段,第三阶段(第13天)为空气毛细血管形成阶段。在第一阶段,透明质酸(HA)在中支气管周围占优势,但硫酸软骨素(CS)在二级分支中占优势。二阶支基膜对硫酸GAG呈强阳性。第二阶段,间质基质中CSA含量增加。这种增加是不规则的,在较老的区域(中支气管,二级分支)较小,而在较近的副支气管(延伸到雏形的外侧和背侧区域)较大。硫酸酸化GAG和糖蛋白(GP)的增加发生在基底膜。在第三阶段,GAGs均匀分布于间质间隔和小叶间血管网周围。该浓度随着GP浓度的增加而降低。一、二、三阶分支周围的基膜含有大量GP。间充质GAG发生在肺发育的每个阶段,与上皮的形态发生和分化有时间相关性。我们的研究结果提供了迄今为止尚未获得的必要信息。专门为阐明这种异质分布的发育意义而设计的实验研究可以根据这一信息进行解释。
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Developmental heterogeneity of mesenchymal glycosaminoglycans (GAG) distribution in chick embryo lung anlagen.

The presence and distribution of mesenchymal components in the extracellular matrix during lung development in the chick embryo (from 5 1/2/6 to 18 incubation days) has been examined histochemically. Attention is focused mainly on glycosaminoglycans (GAG). Morphological reconstructions show three main stages: first (5 1/2/6-8 days), formation of 2nd-order branching; second (9-12 days), proliferation of parabronchi and third (from 13th day on), formation of air capillaries. In the first phase, hyaluronic acid (HA) prevails around the mesobronchus, but chondroitin sulfate (CS) dominates the 2nd-order branches. Basement membranes of 2nd-order branches are strongly positive for sulphated GAG. In the second phase, CSA increases in the ground substance of mesenchyme. This increase is irregular, being smaller in older areas (mesobronchus, branches of 2nd order) and larger in the more recent parabronchi, which extend into the lateral and dorsal areas of the rudiment. An increase in both sulfated GAG and glycoprotein (GP) occurs in basement membranes. In the third phase, GAGs are uniformly distributed in the mesenchymal septa and around the interlobular vascular network. This concentration decreases while the GP concentration increases. Basement membranes around every branch of the 1st, 2nd, and 3rd orders possess large quantities of GP. Mesenchymal GAG occurs in every stage of lung development, temporally correlating with the morphogenesis and differentiation of epithelium. Our results provide necessary information, which has not been available so far. Experimental studies specifically designed to clarify the developmental significance of such a heterogeneous distribution may be interpreted in the light of this information.

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