Palmoski M J, Masters B A, Flint O P, Ford S M, Oleson F B
Department of Investigative Toxicology, Pharmaceutical Research and Development Division, Bristol-Myers Squibb, Syracuse, NY 13221-4755, USA.
Toxicol In Vitro. 1992 Nov;6(6):557-67. doi: 10.1016/0887-2333(92)90068-3.
With the aim of developing a kidney cell culture system that can be used to assess renal toxicity in vivo, freshly isolated rabbit proximal tubules were plated on Millipore cellulose filters mounted in plastic inserts (Millicell-HA). DNA synthesis peaked on day 6 of culture and cells reached confluency by days 12-14. The integrity of the monolayer was confirmed by exclusion of [(14)C]inulin and cell viability demonstrated by linearity of protein synthesis over a 24-hr period. In confluent cultures, the organic anion, [(14)C]p-aminohippuric acid (PAH) and cation [(14)C]tetraethylammonium bromide (TEA) were shown to be transported from the basolateral to the apical side at a rate 5-6 times greater than that from the apical to basolateral side during the first 60 min of exposure. Probenecid decreased PAH transport by 60% and N-methylnicotinamide and quinine inhibited TEA transport by 40 and 56%, respectively. Uptake of [(14)C]alpha-methylglucopyranoside into the cells was three times greater when label was added to the apical side than when label was added to the basolateral side. Apical uptake of glucose was sodium dependent and inhibited by more than 90% with phloridzin. Thus, kidney proximal tubule cells in the filter insert culture system display functional polarity which appears to mimic function in vivo and may be useful for examining mechanisms of nephrotoxicity.
为了开发一种可用于评估体内肾毒性的肾细胞培养系统,将新鲜分离的兔近端小管接种在安装于塑料插入物(Millicell-HA)中的密理博纤维素滤膜上。DNA合成在培养第6天达到峰值,细胞在第12 - 14天达到汇合。通过排除[¹⁴C]菊粉确认单层的完整性,并通过24小时内蛋白质合成的线性来证明细胞活力。在汇合培养物中,有机阴离子[¹⁴C]对氨基马尿酸(PAH)和阳离子[¹⁴C]溴化四乙铵(TEA)在暴露的前60分钟内从基底外侧向顶侧转运的速率比从顶侧向基底外侧转运的速率高5 - 6倍。丙磺舒使PAH转运减少60%,N-甲基烟酰胺和奎宁分别使TEA转运抑制40%和56%。当将标记物添加到顶侧时,[¹⁴C]α-甲基吡喃葡萄糖苷进入细胞的量是添加到基底外侧时的三倍。葡萄糖的顶侧摄取是钠依赖性的,并且被根皮苷抑制超过90%。因此,滤膜插入物培养系统中的肾近端小管细胞表现出功能极性,这似乎模拟了体内功能,并且可能有助于研究肾毒性机制。