激素刺激禽类胚胎软骨体外生长的组织学和超微结构特征。

In Vitro Pub Date : 1984-04-01 DOI:10.1007/BF02618596
W M Burch, K S McCarty
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引用次数: 1

摘要

我们研究了鸡胚软骨在无血清培养基中培养后的组织学和超微结构特征,培养基中含有已知的刺激软骨体外生长的激素和生长因子。9 d鸡胚盆腔软骨分别在单独的BGJb (Fitton -Jackson修饰)培养基(对照)或含有以下培养基之一的培养基中孵育:N6单丁基环AMP 0.5 mM,福斯可林100微米,三碘甲状腺原氨酸(T3) 10 nM,胰岛素45 nM,或生长激素C 0.67 nM。孵育3 d后,用缓冲福尔马林固定软骨。每个处理组都有显著的生长(尺寸、湿重和干重增加)。n6 -单丁基cAMP处理后,软骨扁平的未成熟软骨细胞数量增加,细胞核大,核仁突出。forskolin处理的软骨的组织学和超微结构特征与n6 -单丁基cAMP处理的软骨没有区别。T3处理的软骨含有大的肥大软骨细胞,有明显的腔隙,这是成熟软骨的典型特征。T3处理的软骨有相当大的空泡形成和内质网扩张。胰岛素和生长抑素处理的软骨的组织学外观与对照软骨相似。因此,各种激素对体外胚胎软骨生长的影响可以区分为生长是由软骨细胞增生(环AMP介导)、成熟后的软骨细胞肥大(T3)还是增生和肥大(胰岛素和somatomedin-C)共同作用的结果。
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Hormonal stimulation of avian embryonic cartilage growth in vitro: histologic and ultrastructural features.

We studied the histologic and ultrastructural features of embryonic chick cartilage after the cartilage had been incubated in serum-free medium that contained hormones and growth factors known to stimulate in vitro cartilage growth. Pelvic cartilages from 9 d chick embryos were incubated in BGJb ( Fitton -Jackson modification) medium alone (control) or medium containing one of the following: N6 monobutyryl cyclic AMP 0.5 mM, forskolin 100 microM, triiodothyronine (T3) 10 nM, insulin 45 nM, or somatomedin C 0.67 nM. At the end of 3 d of incubation the cartilages were fixed in buffered formalin. Significant growth (increases in size, wet and dry weight) was seen with each treatment group. N6-Monobutyryl cAMP treated cartilage had an increased number of flattened immature chondrocytes with large nuclei and prominent nucleoli. The histologic and ultrastructural features of forskolin treated cartilage were indistinguishable from N6-monobutyryl cAMP treatment. The T3 treated cartilage contained large hypertrophic chondrocytes with prominent lacunar typical of mature cartilage. T3 treated cartilage had considerable vacuole formation and dilated endoplasmic reticulum. Insulin and somatomedin treated cartilage had histologic appearance similar to control cartilage. Thus, the effects of various hormones on embryonic cartilage growth in vitro can be separated as to whether growth is the result of chondrocytic hyperplasia (cyclic AMP mediated), chondrocytic hypertrophy with maturation (T3), or a combination of both hyperplasia and hypertrophy (insulin and somatomedin-C).

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