首页> 外文期刊>Peritoneal dialysis international: Journal of the International Society for Peritoneal Dialysis >Semipermeability imparted by surface-active phospholipid in peritoneal dialysis.
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Semipermeability imparted by surface-active phospholipid in peritoneal dialysis.

机译:表面活性磷脂在腹膜透析中赋予的半透性。

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OBJECTIVE: It has previously been demonstrated that a lining of surface-active phospholipid (SAPL) is reversibly bound (adsorbed) to normal peritoneal mesothelium.The lining acts as a boundary lubricant and release (anti-stick) agent preserving mechanical Integrity of the epithelial surface. In a review of clinical trials on the use of SAPL (akin to "surfactant") to restore ultrafiltration (UF) in patients on peritoneal dialysis (PD), speculation is that, by adsorption, the SAPL lining might also be Imparting the semipermeability vital for UF. DESIGN: To evaluate the hypothesis, SAPL harvested from the spent dialysate of 5 patients with normal UF was deposited onto a porous, inert medium, and the resulting 7 "membranes" were clamped in an Ussing chamber used as an osmometer. RESULTS: With every "membrane," a clinical concentration of glucose (2.5%) was able to induce a statistically significant osmotic pressure when dialyzed against saline. We also demonstrated how synthetic SAPL--in the form of dipalmitoyl phosphatidylcholine (DPPC) and an admixture of DPPC with phosphatidylglycerol (PG) called artificial lung-expanding compound (ALEC)--mparts greater osmotic pressure In proportion to an Increasing glucose gradient. Our findings prove that human peritoneal SAPL has the physical capability to Impart semipermeability when adsorbed to a surface. COMMENT: As a lipid lining, adsorbed SAPL could also explain the high permeability of the natural membrane to lipophilic substances in PD. Administered as a very fine powder or as a solution in a lipid solvent, ALEC offers a potential treatment for restoring UF, if applied during the interdialytic Interval. In various physical forms, ALEC and DPPC have both been widely used for two decades with complete safety in the treatment of respiratory distress syndrome in newborns. The question of formulation of exogenous SAPL In restoring UF Is discussed as a complex physicochemical compromise between the higher surface activity of saturated phosphatidylcholine and its lower solubility in water.
机译:目的:以前已经证明表面活性磷脂(SAPL)的衬里可逆地结合(吸附)到正常的腹膜间皮上。衬里作为边界润滑剂和释放(抗粘)剂,保持上皮的机械完整性表面。在一项关于使用SAPL(类似于“表面活性剂”)恢复腹膜透析(PD)患者超滤(UF)的临床试验的综述中,推测是通过吸附,SAPL衬里也可能影响半透性。对于超滤。设计:为了评估这一假设,将从5名正常UF患者的用过的透析液中收获的SAPL沉积在多孔的惰性介质中,然后将7个“膜”夹在用作渗压计的Ussing室中。结果:对于每一种“膜”,当用盐水透析时,临床浓度的葡萄糖(2.5%)能够引起统计学上显着的渗透压。我们还证明了合成的SAPL(以二棕榈酰磷脂酰胆碱(DPPC)的形式以及DPPC与称为人工肺扩张化合物(ALEC)的磷脂酰甘油(PG)的混合物)如何随着葡萄糖梯度的增加成比例地增加渗透压。我们的发现证明,人腹膜SAPL吸附到表面时具有赋予Impart半透性的物理能力。评论:作为脂质衬里,吸附的SAPL还可以解释天然膜对PD中亲脂性物质的高渗透性。如果在透析间隔期间使用,则ALEC以极细的粉末或在脂质溶剂中的溶液形式给药,可为恢复超滤提供潜在的治疗方法。 ALEC和DPPC已以各种物理形式被广泛使用了二十年,在治疗新生儿呼吸窘迫综合征方面具有完全的安全性。在恢复超滤中外源SAPL的配制问题被讨论为饱和磷脂酰胆碱的较高表面活性与其在水中的较低溶解度之间的复杂物理化学折衷。

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