Vinay P, Gougoux A, Lemieux G
Am J Physiol. 1981 Oct;241(4):F403-11. doi: 10.1152/ajprenal.1981.241.4.F403.
A suspension of cortical tissue fragments prepared by collagenase digestion of renal cortex obtained from fed and chronically acidotic (NH4Cl) rats was separated into four bands on a Percoll density gradient. By microscopic examination, vital staining with trypan blue, and histologic staining technique (periodic acid-Schiff) the F4 band was shown to contain only (greater than 98%) proximal tubules, whereas the F1 band was significantly enriched (70%) with distal tubules contaminated by glomeruli and short segments of proximal tubules. Intra/extracellular ratios for PAH of 15 were measured in the F4 band and of 2 in F1 band. ATP was 1.4 and 2.8 mumol/g in the F4 and F1 bands, respectively, and was stable for at least 60 min. The proximal F4 band was shown to be gluconeogenic (L-glutamine or L-lactate 2.5 mM as substrate) and to adapt to metabolic acidosis. The distal F1 band was shown to be glycolytic (glucose 2.5 mM) with no changes with acid-base status. All fractions were shown to metabolize glutamine, but the metabolic fate of this amino acid was different in proximal and distal structures. A F4/F1 activity ratio for the proximal cytoplasmic phosphoenolpyruvate carboxykinase enzyme of 2.6 and 4.3 was observed in normal and acidotic rats, respectively. In contrast, a F4/F1 ratio of 0.13 and 0.22 was observed for the distal cytoplasmic hexokinase enzyme. This preparation, therefore, allows the metabolism of a homogeneous population of proximal tubular fragments to be studied and can be used to obtain information on enzyme location within the nephron.
通过胶原酶消化从喂食且长期处于酸中毒状态(氯化铵诱导)的大鼠肾脏皮质获取的皮质组织碎片悬浮液,在Percoll密度梯度上被分离成四条带。通过显微镜检查、台盼蓝活体染色和组织学染色技术(过碘酸-希夫反应)发现,F4带仅包含(大于98%)近端小管,而F1带则显著富集(70%)远端小管,同时混有肾小球和近端小管的短节段。在F4带中测得PAH的细胞内/细胞外比率为15,在F1带中为2。F4带和F1带中的ATP含量分别为1.4和2.8 μmol/g,并且至少在60分钟内保持稳定。近端F4带显示具有糖异生作用(以2.5 mM的L-谷氨酰胺或L-乳酸作为底物),并能适应代谢性酸中毒。远端F1带显示具有糖酵解作用(以2.5 mM葡萄糖作为底物),且不受酸碱状态变化的影响。所有组分均显示能代谢谷氨酰胺,但该氨基酸在近端和远端结构中的代谢命运有所不同。在正常和酸中毒大鼠中,近端细胞质磷酸烯醇式丙酮酸羧激酶的F4/F1活性比率分别为2.6和4.3。相比之下,远端细胞质己糖激酶的F4/F1比率分别为0.13和0.22。因此,该制备方法能够用于研究同质群体近端小管碎片的代谢情况,并可用于获取有关酶在肾单位内定位的信息。