软骨
等电点
渗透(战争)
体外
圆周率
分子质量
软骨细胞
生物化学
生物物理学
化学
医学
生物
解剖
酶
工程类
运筹学
作者
Peter L. E. M. van Lent,W B van den Berg,Joost Schalkwijk,L.B.A. van de Putte,Liduine van den Bersselaar
出处
期刊:PubMed
[National Institutes of Health]
日期:1987-08-01
卷期号:14 (4): 798-805
被引量:44
摘要
The interaction of several globular proteins with intact murine hyaline articular cartilage was studied in vitro. Proteins with molecular weights from 12 to 440 kDa and isoelectric points (pI) from 4.5 to 10 were tested for the ability to penetrate and persist in cartilage. Native proteins were modified for a range of pI. Using radiolabeled proteins we showed that retention of proteins in cartilage is a function of their pI. At pI 8.5-9 all proteins showed a sharp increase in cartilage when incubated at physiologic pH. The molecular weight of a protein and its charge is a determining factor for penetration of cartilage. By autoradiography highly cationic proteins up to 150 kDa (IgG) readily penetrated cartilage. Immunofluorescence confirmed these findings. Cationic catalase (240 kDa) showed superficial penetration, but penetration of cationic ferritin (440 kDa) was not demonstrated, suggesting that 240 to 440 kDa represents the upper range for penetration. Small anionic proteins (cytochrome-c; pI less than 4.5; 12 kDa) penetrate in small quantities but do not persist, whereas larger anionic proteins (IgG; pI less than 4.5; 150 kDa) cannot penetrate at all. Our data help define the properties of proteins that are able to interact with cartilage matrix and chondrocytes.
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