Bohrer M P, Deen W M, Robertson C R, Troy J L, Brenner B M
J Gen Physiol. 1979 Nov;74(5):583-93. doi: 10.1085/jgp.74.5.583.
The influence of molecular configuration on the filtration of macromolecules across glomerular capillary walls was examined by comparing fractional clearances of two uncharged polysaccharides of distinctly different molecular configuration in the Munich-Wistar rat. The macromolecules employed were dextran, a slightly branched polymer of glucopyranose, and ficoll, a highly cross-linked copolymer of sucrose and epichlorohydrin. Differences in effective shape between these two polymers were determined from measurements of several physical properties of aqueous solutions containing either dextran or ficoll. It was found that dextran is best represented as a prolate ellipsoid with axial ratios of 4, 9, and 16 for molecules with Stokes-Einstein radii of 22, 32, and 40 A, respectively. On the other hand, ficoll is more closely approximated as spherical since the axial ratio was found to be between 1 and 2 for all molecular sizes. Fractional clearances of dextran and ficoll ranging in effective radius from 18 to 44 A were determined in each of seven Munich-Wistar rats. Fractional clearances of dextran were found to be greater than those of ficoll, the difference being significant for molecular radii ranging from 24 to 44 A. In addition, as shown previously for dextran, ficoll was found to be neither secreted nor reabsorbed by the renal tubules. These results, therefore, suggest that in addition to molecular size and charge, molecular configuration is also a determinant of the filtration of macromolecules across the glomerular capillary wall.
通过比较慕尼黑-威斯塔大鼠体内两种分子构型明显不同的不带电荷多糖的分数清除率,研究了分子构型对大分子物质通过肾小球毛细血管壁滤过的影响。所使用的大分子物质是葡聚糖(一种吡喃葡萄糖的轻度支链聚合物)和菲可(一种蔗糖与环氧氯丙烷的高度交联共聚物)。通过测量含有葡聚糖或菲可的水溶液的几种物理性质,确定了这两种聚合物有效形状的差异。结果发现,葡聚糖最好表示为长轴椭球体,对于斯托克斯-爱因斯坦半径分别为22、32和40埃的分子,其轴比分别为4、9和16。另一方面,菲可更接近球形,因为对于所有分子大小,其轴比都在1到2之间。在7只慕尼黑-威斯塔大鼠中,分别测定了有效半径在18至44埃之间的葡聚糖和菲可的分数清除率。发现葡聚糖的分数清除率大于菲可,对于分子半径在24至44埃之间的情况,差异具有显著性。此外,正如之前对葡聚糖的研究所示,发现菲可既不被肾小管分泌也不被肾小管重吸收。因此,这些结果表明,除了分子大小和电荷外,分子构型也是大分子物质通过肾小球毛细血管壁滤过的一个决定因素。