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短而简单的表面活性蛋白B和C类似物组合作为新型合成表面活性剂:体外和动物实验

A Combination of Short and Simple Surfactant Protein B and C Analogues as a New Synthetic Surfactant: In Vitro and Animal Experiments.

作者信息

Choi Yong Sung, Chung Sung Hoon, Bae Chong Woo

机构信息

Department of Pediatrics, Kyung Hee University School of Medicine, Seoul, Korea.

出版信息

Yonsei Med J. 2017 Jul;58(4):823-828. doi: 10.3349/ymj.2017.58.4.823.

Abstract

PURPOSE

Pulmonary surfactants for preterm infants contain mostly animal-derived surfactant proteins (SPs), which are essential for lowering surface tension. We prepared artificial pulmonary surfactants using synthetic human SP analogs and performed in vitro and in vivo experiments.

MATERIALS AND METHODS

We synthesized peptide analogues that resemble human SP-B (RMLPQLVCRLVLRCSMD) and SP-C (CPVHLKRLLLLLLLLLLLLLLLL). Dipalmitoylphosphatidylcholine (DPPC), phosphatidylglycerol (PG), and palmitic acid (PA) were added and mixed in lyophilized to render powdered surfactant. Synsurf-1 was composed of DPPC:PG:PA:SP-B (75:25:10:3, w/w); Synsurf-2 was composed of DPPC:PG:PA:SP-C (75:25:10:3, w/w); and Synsurf-3 was composed of DPPC:PG:PA:SP-B:SP-C (75:25:10:3:3, w/w). We performed in vitro study to compare the physical characteristics using pulsating bubble surfactometer and modified Wilhelmy balance test. Surface spreading and adsorption test of the surfactant preparations were measured. In vivo test was performed using term and preterm rabbit pups. Pressure-volume curves were generated during the deflation phase. Histologic findings were examined.

RESULTS

Pulsating bubble surfactometer readings revealed following minimum and maximum surface tension (mN/m) at 5 minutes: Surfacten® (5.5±0.4, 32.8±1.6), Synsurf-1 (16.7±0.6, 28.7±1.5), Synsurf-2 (7.9±1.0, 33.1±1.6), and Synsurf-3 (7.1±0.8, 34.5±1.0). Surface spreading rates were as follows: Surfacten® (27 mN/m), Synsurf-1 (43 mN/m), Synsurf-2 (27 mN/m), and Synsurf-3 (27 mN/m). Surface adsorption rate results were as follows: Surfacten® (28 mN/m), Synsurf-1 (35 mN/m), Synsurf-2 (29 mN/m), and Synsurf-3 (27 mN/m). The deflation curves were best for Synsurf-3; those for Synsurf-2 were better than those for Surfacten®. Synsurf-1 was the worst surfactant preparation. Microscopic examination showed the largest aerated area of the alveoli in the Synsurf-3 group, followed by Synsurf-1 and Surfacten®; Synsurf-2 was the smallest.

CONCLUSION

Synsurf-3 containing both SP-B and SP-C synthetic analogs showed comparable and better efficacy than commercially used Surfacten® in lowering surface tension, pressure-volume curves, and tissue aerated area of the alveoli.

摘要

目的

用于早产儿的肺表面活性剂大多含有动物源性表面活性蛋白(SPs),这些蛋白对于降低表面张力至关重要。我们使用合成的人SP类似物制备了人工肺表面活性剂,并进行了体外和体内实验。

材料与方法

我们合成了类似于人SP-B(RMLPQLVCRLVLRCSMD)和SP-C(CPVHLKRLLLLLLLLLLLLLLLL)的肽类似物。加入二棕榈酰磷脂酰胆碱(DPPC)、磷脂酰甘油(PG)和棕榈酸(PA)并混合冻干制成粉末状表面活性剂。Synsurf-1由DPPC:PG:PA:SP-B(75:25:10:3,w/w)组成;Synsurf-2由DPPC:PG:PA:SP-C(75:25:10:3,w/w)组成;Synsurf-3由DPPC:PG:PA:SP-B:SP-C(75:25:10:3:3,w/w)组成。我们进行了体外研究,使用脉动气泡表面张力仪和改良的Wilhelmy天平试验比较物理特性。测量了表面活性剂制剂的表面铺展和吸附试验。使用足月和早产兔幼崽进行体内试验。在呼气阶段生成压力-容积曲线。检查组织学结果。

结果

脉动气泡表面张力仪读数显示5分钟时的最小和最大表面张力(mN/m)如下:Surfacten®(5.5±0.4,32.8±1.6),Synsurf-1(16.7±0.6,28.7±1.5),Synsurf-2(7.9±1.0,33.1±1.6),和Synsurf-3(7.1±0.8,34.5±1.0)。表面铺展速率如下:Surfacten®(27 mN/m),Synsurf-1(43 mN/m),Synsurf-2(27 mN/m),和Synsurf-3(27 mN/m)。表面吸附速率结果如下:Surfacten®(28 mN/m),Synsurf-1(35 mN/m),Synsurf-2(29 mN/m),和Synsurf-3(27 mN/m)。呼气曲线以Synsurf-3最佳;Synsurf-2的曲线优于Surfacten®。Synsurf-1是最差的表面活性剂制剂。显微镜检查显示,Synsurf-3组肺泡的充气面积最大,其次是Synsurf-1和Surfacten®;Synsurf-2最小。

结论

含有SP-B和SP-C合成类似物的Synsurf-3在降低表面张力、压力-容积曲线和肺泡组织充气面积方面显示出与市售Surfacten®相当且更好的效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbdc/5447115/9dad9babb004/ymj-58-823-g001.jpg

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