Nakamura A, Manasek F J
J Embryol Exp Morphol. 1981 Oct;65:235-56.
The structural roles of cardiac jelly components were examined in the early developing chick embryonic heart. Cardiac jelly matrix components were enzymically removed in situ by injecting nanogram quantities of enzymes directly into the cardiac jelly. Injection of ovine testicular hyaluronidase caused shrinkage and the heart became flaccid, but overall heart shape did not change. These responses were the result of enzymatic removal of glycosaminoglycan sugar moieties and were not due to lumenal collapse. Although purified collagenase did not cause any noticeable change, enzymes with non-specific proteolytic activity induced marked cardiac shape changes. In such hearts the dorsal mesocardium opened completely, and the myocardium as well as splanchnic mesoderm of foregut detached from their substrate and the entire heart region swelled. Consequently the shape of the heart was altered completely. The results suggested that in the normal condition the myocardial envelope was under an internal pressure due to the presence of glycosaminoglycans in the cardiac jelly space, and that some matrical non-collagenous protein components were essential to control the internal pressure. Therefore it is suggested that the internal pressure of cardiac jelly may be the direct driving force for the looping process and protein components of cardiac jelly may be important in directing the force for the morphogenetic process.
在鸡胚心脏早期发育过程中,对心胶成分的结构作用进行了研究。通过将纳克量的酶直接注入心胶,在心内原位酶解去除心胶基质成分。注射羊睾丸透明质酸酶会导致心脏收缩且变得松弛,但心脏整体形状不变。这些反应是酶解去除糖胺聚糖糖基的结果,并非由于管腔塌陷。尽管纯化的胶原酶未引起任何明显变化,但具有非特异性蛋白水解活性的酶会诱导明显的心脏形状改变。在这类心脏中,背侧心内膜完全打开,心肌以及前肠的脏壁中胚层与其基质分离,整个心脏区域肿胀。因此心脏形状完全改变。结果表明,在正常情况下,由于心胶空间中存在糖胺聚糖,心肌包膜承受内部压力,并且一些基质非胶原蛋白成分对于控制内部压力至关重要。因此,有人提出心胶的内部压力可能是心脏环化过程的直接驱动力,心胶的蛋白质成分可能在引导形态发生过程的力方面很重要。