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表面活性蛋白A对肺表面活性剂提取物及磷脂-载脂蛋白混合物生物物理活性的增强作用。

Enhancement of biophysical activity of lung surfactant extracts and phospholipid-apoprotein mixtures by surfactant protein A.

作者信息

Venkitaraman A R, Hall S B, Whitsett J A, Notter R H

机构信息

Department of Pediatrics, University of Rochester, New York 14642.

出版信息

Chem Phys Lipids. 1990 Dec;56(2-3):185-94. doi: 10.1016/0009-3084(90)90101-v.

Abstract

The effects of surfactant protein (SP)-A on the dynamic surface tension lowering and resistance to inhibition of dispersions of calf lung surfactant extract (CLSE) and mixtures of synthetic phospholipids combined with SP-B,C hydrophobic apoproteins were studied at 37 degrees C and rapid cycling rate (20 cycles/min). Addition of SP-A to CLSE, which already contains SP-B and -C, gave a slight improvement in the time course of surface tension lowering on an oscillating bubble apparatus in the absence of inhibitory protein molecules such as albumin or hemoglobin. However, when these proteins were present at concentrations of 10-50 mg/ml, SP-A substantially improved the resistance of CLSE to their inhibitory effects. The beneficial effect of SP-A required the presence of Ca2+ ions, and disappeared when EDTA was substituted for this divalent cation in the subphase. The effect was also retained when SP-A was heated to 50 degrees C prior to addition to CLSE, but was abolished by heating SP-A to 99 degrees C. Additional studies showed that similar improvements in resistance to inhibition were found when SP-A was added to synthetic mixtures of dipalmitoyl phosphatidylcholine (DPPC):egg phosphatidylglycerol (PG) (80:20 by weight) reconstituted with 1% SP-B or SP-B and -C, but not to phospholipid mixtures containing only SP-C. The requirements for SP-B and calcium for the beneficial effects of SP-A on surface activity suggest that the formation of ordered, larger phospholipid-apoprotein aggregates may be involved in the process. The finding that SP-A enhances the ability of CLSE and other surfactant mixtures containing SP-B to resist inhibition is an advantage that will need to be weighed against other factors such as increased antigenicity and heat sensitivity in therapeutic applications in surfactant replacement therapy.

摘要

在37℃和快速循环速率(20次循环/分钟)下,研究了表面活性蛋白(SP)-A对小牛肺表面活性剂提取物(CLSE)以及合成磷脂与SP-B、C疏水载脂蛋白混合物分散体降低动态表面张力和抗抑制能力的影响。向已含有SP-B和-C的CLSE中添加SP-A,在没有诸如白蛋白或血红蛋白等抑制性蛋白质分子的情况下,在振荡气泡装置上表面张力降低的时间进程略有改善。然而,当这些蛋白质以10 - 50mg/ml的浓度存在时,SP-A显著提高了CLSE对其抑制作用的抗性。SP-A的有益作用需要Ca2 +离子的存在,当在亚相中用EDTA替代这种二价阳离子时,该作用消失。当SP-A在添加到CLSE之前加热到50℃时,该作用也得以保留,但将SP-A加热到99℃则消除了该作用。额外的研究表明,当将SP-A添加到用1% SP-B或SP-B和-C重构的二棕榈酰磷脂酰胆碱(DPPC):鸡蛋磷脂酰甘油(PG)(重量比80:20)的合成混合物中时,也发现了类似的抗抑制能力的提高,但添加到仅含SP-C的磷脂混合物中则没有。SP-A对表面活性产生有益作用对SP-B和钙的需求表明,有序的、更大的磷脂 - 载脂蛋白聚集体的形成可能参与了这一过程。SP-A增强CLSE和其他含SP-B的表面活性剂混合物抗抑制能力这一发现是一个优势,但在表面活性剂替代疗法的治疗应用中,需要与其他因素如抗原性增加和热敏感性增加等进行权衡。

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