倍他米松改善了实验性母体哮喘中新生羔羊的肺成熟。

IF 2.6 4区 医学 Q2 PHYSIOLOGY
Joshua L. Robinson, Andrea J. Roff, Sarah J. Hammond, Jack R. T. Darby, Ashley S. Meakin, Stacey L. Holman, Andrew Tai, Tim J. M. Moss, Catherine G. Dimasi, Sarah M. Jesse, Michael D. Wiese, Andrew N. Davies, Beverly S. Muhlhausler, Robert J. Bischof, Megan J. Wallace, Vicki L. Clifton, Janna L. Morrison, Michael J. Stark, Kathryn L. Gatford
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引用次数: 0

摘要

母体哮喘与新生儿肺部疾病的发病率增加有关,与对照组相比,哮喘母羊的胎儿表面活性物质产生细胞较少,表面活性物质蛋白 B 基因(SFTPB)表达较低。产前倍他米松能增加早产儿肺表面活性物质的产生,因此我们在实验性母体哮喘中测试了这种疗法。母羊对屋尘螨过敏原过敏,并通过每两周一次的过敏原肺挑战诱发哮喘表型;对照组接受生理盐水治疗。患有哮喘的怀孕母羊在妊娠 138 天和 139 天(足月 = 150 天)随机接受产前生理盐水(哮喘)或 12 毫克肌肉注射倍他米松(哮喘+倍他米松)。羔羊在妊娠 140 天时剖腹产,并在采集组织前通气 45 分钟。对照组羔羊(n = 16,11 只母羊)和哮喘母羊羔羊(n = 14,9 只母羊)的肺功能和结构相似。与对照组(P = 0.003)或哮喘母羊(P = 0.008)相比,哮喘+β母羊羔羊(n = 12,8 只母羊)的肺动态顺应性更高。表面活性蛋白基因 SFTPA(P = 0.048)和 SFTPB(P = 0.008)在羔羊肺中的表达。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Betamethasone improved near-term neonatal lamb lung maturation in experimental maternal asthma

Betamethasone improved near-term neonatal lamb lung maturation in experimental maternal asthma

Maternal asthma is associated with increased rates of neonatal lung disease, and fetuses from asthmatic ewes have fewer surfactant-producing cells and lower surfactant-protein B gene (SFTPB) expression than controls. Antenatal betamethasone increases lung surfactant production in preterm babies, and we therefore tested this therapy in experimental maternal asthma. Ewes were sensitised to house dust mite allergen, and an asthmatic phenotype induced by fortnightly allergen lung challenges; controls received saline. Pregnant asthmatic ewes were randomised to receive antenatal saline (asthma) or 12 mg intramuscular betamethasone (asthma+beta) at 138 and 139 days of gestation (term = 150 days). Lambs were delivered by Caesarean section at 140 days of gestation and ventilated for 45 min before tissue collection. Lung function and structure were similar in control lambs (n = 16, 11 ewes) and lambs from asthma ewes (n = 14, 9 ewes). Dynamic lung compliance was higher in lambs from asthma+beta ewes (n = 12, 8 ewes) compared to those from controls (P = 0.003) or asthma ewes (P = 0.008). Lung expression of surfactant protein genes SFTPA (P = 0.048) and SFTPB (P < 0.001), but not SFTPC (P = 0.177) or SFTPD (P = 0.285), was higher in lambs from asthma+beta than those from asthma ewes. Female lambs had higher tidal volume (P = 0.007), dynamic lung compliance (P < 0.001), and SFTPA (P = 0.037) and SFTPB gene expression (P = 0.030) than males. These data suggest that betamethasone stimulates lung maturation and function of near-term neonates, even in the absence of impairment by maternal asthma.

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来源期刊
Experimental Physiology
Experimental Physiology 医学-生理学
CiteScore
5.10
自引率
3.70%
发文量
262
审稿时长
1 months
期刊介绍: Experimental Physiology publishes research papers that report novel insights into homeostatic and adaptive responses in health, as well as those that further our understanding of pathophysiological mechanisms in disease. We encourage papers that embrace the journal’s orientation of translation and integration, including studies of the adaptive responses to exercise, acute and chronic environmental stressors, growth and aging, and diseases where integrative homeostatic mechanisms play a key role in the response to and evolution of the disease process. Examples of such diseases include hypertension, heart failure, hypoxic lung disease, endocrine and neurological disorders. We are also keen to publish research that has a translational aspect or clinical application. Comparative physiology work that can be applied to aid the understanding human physiology is also encouraged. Manuscripts that report the use of bioinformatic, genomic, molecular, proteomic and cellular techniques to provide novel insights into integrative physiological and pathophysiological mechanisms are welcomed.
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