Sorensen K K, Dahl L B, Smedsrod B
Department of Arctic Veterinary Medicine, Norwegian College of Veterinary Medicine, Tromso, Norway.
Cell Tissue Res. 1997 Oct;290(1):101-9. doi: 10.1007/s004410050912.
The fate of the major connective tissue polysaccharide hyaluronan, as it appears after release from the matrix, was studied in the Atlantic cod by use of subcutaneous administration of hyaluronan conjugated with fluorescein isothiocyanate (FITC) and labelled with 125I. After administration, the ligand was transported to the heart, which contained 58% of the recovered label after 22 h, whereas 36% remained at the injection site. Uptake in other organs was low. Results from intravenous co-injection studies showed that 125I-FITC-hyaluronan and native hyaluronan were in competition for uptake by the same receptor in cod heart. Fluorescence microscopy revealed that FITC-hyaluronan accumulated in spherical structures and discrete vesicles in endocardial endothelial cells lining the muscular trabeculae of both heart chambers. Immunoelectron microscopy showed that, in these cells, the ligand lined the limiting membrane of endosomes and filled the lumen of late endosomes or lysosomes. We conclude that, in the cod, heart endothelial cells are essential for the turnover of hyaluronan. Atrial endothelial cells were also able to ingest 2-microm latex beads, although these were far more effectively phagocytosed by head kidney macrophages. The present results strengthen the notion that the cod endocardium consists of specialized scavenger endothelial cells, resembling sinusoidal endothelial cells of salmonid kidney and mammalian liver. These cells should therefore be regarded as an important part of the cod reticulo-endothelial system.
利用皮下注射异硫氰酸荧光素(FITC)偶联并经¹²⁵I标记的透明质酸,对大西洋鳕鱼体内从基质释放后主要结缔组织多糖透明质酸的命运进行了研究。给药后,该配体被转运至心脏,22小时后心脏中含有58%回收的标记物,而36%仍留在注射部位。其他器官的摄取量较低。静脉共同注射研究结果表明,¹²⁵I - FITC - 透明质酸和天然透明质酸在鳕鱼心脏中竞争同一受体的摄取。荧光显微镜显示,FITC - 透明质酸积聚在两个心腔肌小梁内衬的心内膜内皮细胞的球形结构和离散小泡中。免疫电子显微镜显示,在这些细胞中,配体排列在内体的限制膜上,并填充晚期内体或溶酶体的腔。我们得出结论,在鳕鱼中,心脏内皮细胞对透明质酸的周转至关重要。心房内皮细胞也能够摄取2微米的乳胶珠,尽管这些乳胶珠被头肾巨噬细胞吞噬的效率要高得多。目前的结果强化了鳕鱼心内膜由特殊的清道夫内皮细胞组成的观点,类似于鲑鱼肾脏和哺乳动物肝脏的窦状内皮细胞。因此,这些细胞应被视为鳕鱼网状内皮系统的重要组成部分。