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Intrinsic control of vascularization in developing cartilage rudiments

机译:内在控制软骨发育中的血管生成

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摘要

The vascularization of developing cartilage rudiments is temporally and spatially defined. By using an in vivo angiogenesis model, the chorioallantoic membrane (CAM) of the chick embryo and chick embryo cartilage rudiments, we conclude that the factors controlling the vascular invasion of cartilage rudiments are intrinsic. Intact rudiments, separate hypertrophic zones and separate rounded cell zones, when grafted onto the CAM, become vascularized in the same temporal and spatial manner as occurs in ovo. When grown as organ cultures prior to CAM grafting, rudiments still become vascularized in the same temporal and spatial manner. The integrity of the extracellular matrix and the presence of the periosteum are two physical factors regulating the control of vascularization. Removal of the periosteum from hypertrophic regions caused a cessation of the invasion. Insults to the matrix via brief enzymatic degradation of extracellular matrix components resulted in invasion and erosion of rounded cell zones at an earlier time than is ordinarily seen both in ovo and on the CAM.
机译:在时间和空间上定义了发育中的软骨瘤的血管形成。通过使用体内血管生成模型,鸡胚和鸡胚软骨残基的绒膜尿囊膜(CAM),我们得出结论,控制血管对软骨残基的侵袭的因素是内在的。当移植到CAM上时,完整的残基,分离的肥大区和分离的圆形细胞区,将以与卵内相同的时间和空间方式血管化。当在CAM移植之前作为器官培养物生长时,残渣仍会以相同的时空方式变为血管化。细胞外基质的完整性和骨膜的存在是调节血管形成控制的两个物理因素。从肥厚区域去除骨膜导致了浸润的停止。通过细胞外基质成分的短暂酶促降解对基质造成的损害导致圆形细胞区域的侵袭和侵蚀比在卵内和CAM中通常所见的时间更早。

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