Suppr超能文献

促胰液素刺激的外分泌胰腺对非电解质的通透性。

The permeability of the secretin stimulated exocrine pancreas to non-electrolytes.

作者信息

Dewhurst D G, Hadi N A, Hutson D, Scratcherd T

出版信息

J Physiol. 1978 Apr;277:103-14. doi: 10.1113/jphysiol.1978.sp012263.

Abstract
  1. A method of measuring the permeability of the pancreas by determining the apparent reflexion coefficient (sigmaA) is described, in the isolated pancreas secreting maximally under the influence of secretin. The principle is to add a non-electrolyte to the perfusate which will create an osmotic gradient (RTsigmadeltaC) counter to that of active transport and reduce the secretion rate. This is compared with the effect of an equal concentration (0.1 M) of sucrose (RTdeltaC; sigma = 1). The apparent reflection coefficient is obtained by dividing the percentage reduction in the secretion rate due to the test molecule with that due to sucrose. 2. Sucrose when added to the perfusate inhibits pancreatic secretion. For every 10 mM increase in sucrose concentration, the secretion rate was inhibited by 7.1%. It has been estimated that an osmotic gradient of 131 m-osmole/kg water will cause zero flow rate. This is a measure of the pressure required to counteract the local osmotic gradient set up by active transport, it is equivalent to about 3.4 atm. 3. Non-electrolytes with molecular volumes greater than about 85 cm3 mole-1 are relatively impermeable, below this value they enter the pancreatic juice with increasing ease as the molecular volume decreases. 4. SigmaA for a number of compounds has been measured: urea 0.17; ethanediol 0.27; thiourea 0.51; glycerol 0.69; creatinine 0.81; erythritol 0.91; arabinose 0.96; xylose 0.98; sorbitol 0.98. 5. The addition of non-electrolytes to the perfusate had effects on pancreatic secretion which were a function of sigmaA. For molecules with sigmaA lying between 0.81 and 1.0 an osmotic load of 0.1 M increased both the concentration of sodium plus potassium and the concentration of chloride plus bicarbonate by about 50 m-mole/l. Whereas the cation change is almost exclusively one of sodium that of the anions was preferentially an increase in chloride. For compounds with sigmaA lying between 0 and 0.81 the concentration of sodium plus potassium was proportional to sigmaA. 6. A number of compounds have been described which inhibit pancreatic secretion, other than by an osmotic effect. These include acetaldehyde, thioglycerol, nicotinamide, ribose, dihydroxyacetone, and glyceraldehyde. 7. It is concluded that the pancreas is more permeable than the gall-bladder of rabbit, fish and bullfrog, the proximal tubule of the kidney of rat and the small intestine of bullfrog, but is probably similar to that of small intestine of guinea-pig and man.
摘要
  1. 本文描述了一种在促胰液素影响下胰腺最大程度分泌的离体胰腺中,通过测定表观反射系数(σA)来测量胰腺通透性的方法。其原理是向灌注液中添加一种非电解质,该非电解质会产生一个与主动转运的渗透梯度相反的渗透梯度(RTσΔC),并降低分泌速率。将此与等浓度(0.1M)蔗糖(RTΔC;σ = 1)的作用进行比较。表观反射系数通过将测试分子导致的分泌速率降低百分比除以蔗糖导致的降低百分比来获得。2. 向灌注液中添加蔗糖会抑制胰腺分泌。蔗糖浓度每增加10mM,分泌速率就会被抑制7.1%。据估计,131m - 渗摩尔/千克水的渗透梯度将导致零流速。这是抵消主动转运建立的局部渗透梯度所需压力的一种度量,相当于约3.4个大气压。3. 分子体积大于约85cm³/mol的非电解质相对不易透过,低于此值时,随着分子体积减小,它们进入胰液的难度逐渐降低。4. 已测量了多种化合物的σA:尿素0.17;乙二醇0.27;硫脲0.51;甘油0.69;肌酐0.81;赤藓醇0.91;阿拉伯糖0.96;木糖0.98;山梨醇0.98。5. 向灌注液中添加非电解质对胰腺分泌有影响,这种影响是σA的函数。对于σA在0.81至1.0之间的分子,0.1M的渗透负荷使钠加钾的浓度以及氯加碳酸氢根的浓度都增加了约50mmol/L。阳离子变化几乎完全是钠的变化,而阴离子变化则优先表现为氯的增加。对于σA在0至0.81之间的化合物,钠加钾的浓度与σA成正比。6. 除了渗透作用外,还有多种化合物被描述为可抑制胰腺分泌。这些化合物包括乙醛、硫代甘油、烟酰胺、核糖、二羟基丙酮和甘油醛。7. 得出的结论是,胰腺的通透性高于兔、鱼和牛蛙的胆囊、大鼠肾脏的近端小管以及牛蛙的小肠,但可能与豚鼠和人的小肠相似。

相似文献

引用本文的文献

本文引用的文献

1
On the preparation of secretin and pancreozymin.关于促胰液素和缩胆囊素的制备。
J Physiol. 1949 Dec;110(3-4):367-76. doi: 10.1113/jphysiol.1949.sp004445.
3
On the permeability of the pancreatic duct membrane.关于胰管膜的通透性
Biochim Biophys Acta. 1970 Dec 1;219(2):493-5. doi: 10.1016/0005-2736(70)90230-0.
4
8
Molecular forces governing non-electrolyte permeation through cell membranes.支配非电解质透过细胞膜的分子力。
Proc R Soc Lond B Biol Sci. 1969 Mar 18;171(1028):273-316. doi: 10.1098/rspb.1969.0022.
9
An electrical method of measuring non-electrolyte permeability.一种测量非电解质渗透性的电学方法。
Proc R Soc Lond B Biol Sci. 1969 Mar 18;171(1028):203-25. doi: 10.1098/rspb.1969.0020.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验