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首页> 外文期刊>Pharmaceutical research >Enhancement of insulin transport across primary rat alveolar epithelial cell monolayers by endogenous cellular factor(s).
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Enhancement of insulin transport across primary rat alveolar epithelial cell monolayers by endogenous cellular factor(s).

机译:内源性细胞因子增强胰岛素跨初级大鼠肺泡上皮细胞单层运输的能力。

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PURPOSE: To characterize factor(s) contained in apical medium of primary cultured rat alveolar epithelial type II cell-like monolayers (RAECM-II) that enhance insulin absorption across alveolar epithelial cells. MATERIALS AND METHODS: Primary rat alveolar epithelial cell monolayers cultured on Transwells in the presence and absence of 10 ng/ml keratinocyte growth factor for 6 days were dosed from the apical compartment with radiolabeled insulin in: newborn bovine serum-containing medium (SM), conditioned medium from apical compartment of rat alveolar epithelial type I cell-like monolayers (RAECM-I) (CMI), or conditioned medium from apical compartment of RAECM-II (CMII). At the end of 2 h incubation, basolateral medium was collected and amounts of transported radiolabeled insulin were determined using a gamma counter. In order to determine the molecular size range of the enhancing factor(s), CMII was centrifuged in 50 kDa molecular weight cut-off Centricon tubes, and both retentate and filtrate were used as separate dosing solutions. Heat denaturation and ammonium sulphate precipitation were used to determine if the involved factor(s) represent proteins or other smaller soluble factors. Transalveolar transport rates of a paracellular marker, (14)C-mannitol, and fluid-phase marker, horseradish peroxidase, were determined in the presence and absence of the factors. Effects of temperature (4, 16 and 37 degrees C) on radiolabeled insulin fluxes were also measured. RESULTS: Conditioned medium obtained from the apical compartment of RAECM-II, CMII, increased transport of insulin across the monolayers when compared to SM or CMI. The enhancing effect of CMII was retained in the precipitate following ammonium sulfate treatment and in the retentate after Centricon filtration. The enhancing effect of CMII was significantly decreased when heated at 80 degrees C for 15 min. CMII did not affect the transport of (14)C-mannitol or HRP, while its effect on insulin transport was decreased by 87% when temperature was lowered to 4 degrees C from 37 degrees C. CONCLUSIONS: Conditioned medium from type II cell-like monolayer cultures appears to contain protein factor(s) which seem to be involved in facilitating active transcellular transport of insulin across primary cultured RAECM-II.
机译:目的:鉴定原代培养的大鼠肺泡上皮II型细胞样单层细胞(RAECM-II)的根尖培养基中所含的因子,这些因子可增强胰岛素跨肺泡上皮细胞的吸收。材料与方法:在存在和不存在10 ng / ml角质形成细胞生长因子的情况下,在Transwells上培养的大鼠原肺泡上皮单层细胞连续6天从根尖隔室中注入放射性标记的胰岛素,剂量为:新生牛血清培养基(SM),来自大鼠肺泡上皮I型细胞样单层细胞(RAECM-I)(CMI)的顶室的条件培养基,或来自RAECM-II的顶室的条件培养基(CMII)。孵育2小时后,收集基底外侧培养基,并使用伽玛计数器确定放射性标记的胰岛素的转运量。为了确定增强因子的分子大小范围,将CMII在截留分子量为50 kDa的Centricon管中离心,并将截留液和滤液用作单独的定量溶液。使用热变性和硫酸铵沉淀来确定所涉及的因子是否代表蛋白质或其他较小的可溶性因子。在存在和不存在这些因素的情况下,测定了细胞旁标志物(14)C-甘露醇和液相标志物辣根过氧化物酶的肺泡转运速率。还测量了温度(4、16和37摄氏度)对放射性标记的胰岛素通量的影响。结果:与SM或CMI相比,从RAECM-II的根部腔室获得的条件培养基CMII增加了胰岛素跨单层的转运。 CMII的增强作用保留在硫酸铵处理后的沉淀物中和Centricon过滤后的截留物中。在80摄氏度下加热15分钟,CMII的增强作用显着降低。当温度从37摄氏度降至4摄氏度时,CMII不会影响(14)C-甘露醇或HRP的转运,但其对胰岛素转运的作用降低了87%。结论:来自II型细胞样的条件培养基单层培养物似乎包含蛋白质因子,这些蛋白因子似乎参与了胰岛素在初次培养的RAECM-II中的主动跨细胞运输。

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