von Bonsdorff C H, Fuller S D, Simons K
EMBO J. 1985 Nov;4(11):2781-92. doi: 10.1002/j.1460-2075.1985.tb04004.x.
Madin-Darby canine kidney (MDCK) cells (strain I) grown on 0.45 micron pore size nitrocellulose filters formed monolayers which were highly polarized and had high transepithelial electrical resistance (greater than 3000 ohm X cm2). Morphometric analysis showed that the area of the basolateral surface domain was 7.6 times larger than that of the apical. The uptake of fluid-phase markers [3H]inulin and horseradish peroxidase (HRP) was studied from the apical and the basal side of the monolayer. Uptake of [3H]inulin was biphasic and the rate during the first 40 min corresponded to a fluid phase uptake of 20.5 X 10(-8) nl/min per cell from the basolateral side, and 1.0 X 10(-8) nl/min per cell from the apical side. Electron micrographs of the monolayers after HRP uptake showed that the marker was rapidly delivered into endosome-like vesicles and into multivesicular bodies. No labelling of the Golgi complex could be observed during 2 h of uptake. Evidence was obtained for the transport of fluid phase markers across the cell. HRP and fluorescein isothiocyanate-dextran crossed the monolayers in either direction at a rate corresponding to approximately 3 X 10(-8) nl of fluid/min/cell. Adding the transcytosis rate to the rate of fluid accumulation into the cell yielded a total basolateral endocytic rate which was 6-fold greater than the apical rate. When the uptake rates were normalized for membrane area the apical and basolateral endocytic rates were about equal per unit cell surface area.
在孔径为0.45微米的硝酸纤维素滤膜上生长的犬肾(MDCK)细胞(I株)形成了高度极化且具有高跨上皮电阻(大于3000欧姆×平方厘米)的单层细胞。形态计量分析表明,基底外侧表面区域的面积比顶端区域大7.6倍。从单层细胞的顶端和基底侧研究了液相标记物[3H]菊粉和辣根过氧化物酶(HRP)的摄取。[3H]菊粉的摄取是双相的,在前40分钟内,从基底外侧摄取的速率相当于每个细胞20.5×10(-8)纳升/分钟的液相摄取,从顶端摄取的速率为每个细胞1.0×10(-8)纳升/分钟。摄取HRP后单层细胞的电子显微镜照片显示,标记物迅速进入类似内体的囊泡和多泡体中。在摄取2小时内未观察到高尔基体复合体有标记。获得了液相标记物跨细胞转运的证据。HRP和异硫氰酸荧光素-葡聚糖以大约3×10(-8)纳升/分钟/细胞的速率在两个方向穿过单层细胞。将转胞吞速率与液体积累到细胞中的速率相加,得到总的基底外侧内吞速率,该速率比顶端速率大6倍。当摄取速率按膜面积进行归一化时,单位细胞表面积的顶端和基底外侧内吞速率大致相等。