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临床试验/NCT03767673
NCT03767673Unknown不适用

Examination of the Cardiorespiratory Performance Capacity and Pulmonary Microbiome in Patients Following Surgical Repair of Esophageal Atresia

Medical University of Graz2 个研究点 分布在 1 个国家目标入组 50 人开始时间: 2017年8月10日最近更新:
适应症
干预措施

试验速览

阶段
不适用
发起方
入组人数
50
试验地点
2
主要终点
Pulmonary microbiome (16S rDNA profiling) - Alpha diversity

研究概览

简要总结

The majority of the clinical research on esophageal atresia focuses on the upper gastrointestinal tract. However, the trachea and the lung are also affected in many of these children, so that a lifelong pulmonary impairment may result. The importance of respiratory function in the context of follow-up of these patients has therefore been increasingly recognized in recent years. Scientific work has shown significantly, that patients following esophageal atresia repair develop respiratory symptoms more frequently than the normal population. Mild impairment of the pulmonary function in adolescence and adulthood was demonstrated in some studies, but to date, there is no exact idea about the relationship between early childhood disease progression and later pulmonary impairment. Only a few scientific papers have dealt with the effect of impaired pulmonary function on the physical capacity of these adolescents and adults. Most of these studies show small case numbers, inconclusive stress tests, and divergent results.

The aim of this prospective study is to investigate the cardiopulmonary performance capacity and the pulmonary microbiome of adolescent and adult patients with corrected esophageal atresia and to compare the results with a control group. Another focus of the investigators is on the composition of the pulmonary microbiome of the participants. Changes of the pulmonary microbiome and the influence on the cardio-pulmonary performance capacity have not yet been investigated. Furthermore, it should be investigated whether the treatment measures and a complicated disease course in the neonatal period have long-term effects on lung function, exercise capacity and composition of the microbiome in the lungs.

研究设计

研究类型
Interventional
分配方式
Non Randomized
干预模型
Parallel
主要目的
Diagnostic
盲法
None

盲法说明

Control group: Age and sex matched healthy volunteers.

入排标准

年龄范围
12 Years 至 —(Child, Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Age from 12 years
  • Status post surgical correction of esophageal atresia with and without fistula
  • Granted consent

排除标准

  • Acute infections within the last 14 days
  • Other associated serious malformations
  • Acute, temporary respiratory complaints (cough, allergies etc.)
  • Physical and mental illnesses or disabilities that do not allow the examination to be carried out
  • non-granted consent

研究组 & 干预措施

Patients after esophageal atresia

Experimental

Patients older than 12 years following surgical repair of congenital esophageal atresia will be included after written informed consent. Patients will be subjected to spirometry to determine their age, weight (determined by Kilogram (kg) on a medical weight scale) and Vital Capacity before (initial Spirometry) and after (final Spirometry) exercise performance testing. Bicycle ergospirometer will be applied to determine the Maximum Oxygen Uptake and the Maximum Performance. Thereafter deep induced sputum will be harvested for measurements of the pulmonary microbiome (Pulmonary Microbiome 16S rDNA profiling).

干预措施: Initial Spirometry (Diagnostic Test)

Patients after esophageal atresia

Experimental

Patients older than 12 years following surgical repair of congenital esophageal atresia will be included after written informed consent. Patients will be subjected to spirometry to determine their age, weight (determined by Kilogram (kg) on a medical weight scale) and Vital Capacity before (initial Spirometry) and after (final Spirometry) exercise performance testing. Bicycle ergospirometer will be applied to determine the Maximum Oxygen Uptake and the Maximum Performance. Thereafter deep induced sputum will be harvested for measurements of the pulmonary microbiome (Pulmonary Microbiome 16S rDNA profiling).

干预措施: Final Spirometry (Diagnostic Test)

Patients after esophageal atresia

Experimental

Patients older than 12 years following surgical repair of congenital esophageal atresia will be included after written informed consent. Patients will be subjected to spirometry to determine their age, weight (determined by Kilogram (kg) on a medical weight scale) and Vital Capacity before (initial Spirometry) and after (final Spirometry) exercise performance testing. Bicycle ergospirometer will be applied to determine the Maximum Oxygen Uptake and the Maximum Performance. Thereafter deep induced sputum will be harvested for measurements of the pulmonary microbiome (Pulmonary Microbiome 16S rDNA profiling).

干预措施: Pulmonary microbiome (16S rDNA profiling) (Diagnostic Test)

Patients after esophageal atresia

Experimental

Patients older than 12 years following surgical repair of congenital esophageal atresia will be included after written informed consent. Patients will be subjected to spirometry to determine their age, weight (determined by Kilogram (kg) on a medical weight scale) and Vital Capacity before (initial Spirometry) and after (final Spirometry) exercise performance testing. Bicycle ergospirometer will be applied to determine the Maximum Oxygen Uptake and the Maximum Performance. Thereafter deep induced sputum will be harvested for measurements of the pulmonary microbiome (Pulmonary Microbiome 16S rDNA profiling).

干预措施: Maximum oxygen uptake (Diagnostic Test)

Control group

Active Comparator

Age and sex matched adolescents will be recruited as control group and will be included after written informed consent. Adolescents will be subjected to spirometry to determine their age, weight (determined by Kilogram on a medical weight scale) and Vital Capacity before (initial Spirometry) and after (final Spirometry) exercise performance testing. Bicycle ergospirometer will be applied to determine the Maximum Oxygen Uptake and the Maximum Performance. Thereafter deep induced sputum will be harvested for measurements of the pulmonary microbiome (Pulmonary Microbiome 16S rDNA profiling).

干预措施: weight (Diagnostic Test)

Patients after esophageal atresia

Experimental

Patients older than 12 years following surgical repair of congenital esophageal atresia will be included after written informed consent. Patients will be subjected to spirometry to determine their age, weight (determined by Kilogram (kg) on a medical weight scale) and Vital Capacity before (initial Spirometry) and after (final Spirometry) exercise performance testing. Bicycle ergospirometer will be applied to determine the Maximum Oxygen Uptake and the Maximum Performance. Thereafter deep induced sputum will be harvested for measurements of the pulmonary microbiome (Pulmonary Microbiome 16S rDNA profiling).

干预措施: Maximum performance (Diagnostic Test)

Patients after esophageal atresia

Experimental

Patients older than 12 years following surgical repair of congenital esophageal atresia will be included after written informed consent. Patients will be subjected to spirometry to determine their age, weight (determined by Kilogram (kg) on a medical weight scale) and Vital Capacity before (initial Spirometry) and after (final Spirometry) exercise performance testing. Bicycle ergospirometer will be applied to determine the Maximum Oxygen Uptake and the Maximum Performance. Thereafter deep induced sputum will be harvested for measurements of the pulmonary microbiome (Pulmonary Microbiome 16S rDNA profiling).

干预措施: weight (Diagnostic Test)

Patients after esophageal atresia

Experimental

Patients older than 12 years following surgical repair of congenital esophageal atresia will be included after written informed consent. Patients will be subjected to spirometry to determine their age, weight (determined by Kilogram (kg) on a medical weight scale) and Vital Capacity before (initial Spirometry) and after (final Spirometry) exercise performance testing. Bicycle ergospirometer will be applied to determine the Maximum Oxygen Uptake and the Maximum Performance. Thereafter deep induced sputum will be harvested for measurements of the pulmonary microbiome (Pulmonary Microbiome 16S rDNA profiling).

干预措施: age (Other)

Control group

Active Comparator

Age and sex matched adolescents will be recruited as control group and will be included after written informed consent. Adolescents will be subjected to spirometry to determine their age, weight (determined by Kilogram on a medical weight scale) and Vital Capacity before (initial Spirometry) and after (final Spirometry) exercise performance testing. Bicycle ergospirometer will be applied to determine the Maximum Oxygen Uptake and the Maximum Performance. Thereafter deep induced sputum will be harvested for measurements of the pulmonary microbiome (Pulmonary Microbiome 16S rDNA profiling).

干预措施: Initial Spirometry (Diagnostic Test)

Control group

Active Comparator

Age and sex matched adolescents will be recruited as control group and will be included after written informed consent. Adolescents will be subjected to spirometry to determine their age, weight (determined by Kilogram on a medical weight scale) and Vital Capacity before (initial Spirometry) and after (final Spirometry) exercise performance testing. Bicycle ergospirometer will be applied to determine the Maximum Oxygen Uptake and the Maximum Performance. Thereafter deep induced sputum will be harvested for measurements of the pulmonary microbiome (Pulmonary Microbiome 16S rDNA profiling).

干预措施: Final Spirometry (Diagnostic Test)

Control group

Active Comparator

Age and sex matched adolescents will be recruited as control group and will be included after written informed consent. Adolescents will be subjected to spirometry to determine their age, weight (determined by Kilogram on a medical weight scale) and Vital Capacity before (initial Spirometry) and after (final Spirometry) exercise performance testing. Bicycle ergospirometer will be applied to determine the Maximum Oxygen Uptake and the Maximum Performance. Thereafter deep induced sputum will be harvested for measurements of the pulmonary microbiome (Pulmonary Microbiome 16S rDNA profiling).

干预措施: Pulmonary microbiome (16S rDNA profiling) (Diagnostic Test)

Control group

Active Comparator

Age and sex matched adolescents will be recruited as control group and will be included after written informed consent. Adolescents will be subjected to spirometry to determine their age, weight (determined by Kilogram on a medical weight scale) and Vital Capacity before (initial Spirometry) and after (final Spirometry) exercise performance testing. Bicycle ergospirometer will be applied to determine the Maximum Oxygen Uptake and the Maximum Performance. Thereafter deep induced sputum will be harvested for measurements of the pulmonary microbiome (Pulmonary Microbiome 16S rDNA profiling).

干预措施: Maximum oxygen uptake (Diagnostic Test)

Control group

Active Comparator

Age and sex matched adolescents will be recruited as control group and will be included after written informed consent. Adolescents will be subjected to spirometry to determine their age, weight (determined by Kilogram on a medical weight scale) and Vital Capacity before (initial Spirometry) and after (final Spirometry) exercise performance testing. Bicycle ergospirometer will be applied to determine the Maximum Oxygen Uptake and the Maximum Performance. Thereafter deep induced sputum will be harvested for measurements of the pulmonary microbiome (Pulmonary Microbiome 16S rDNA profiling).

干预措施: Maximum performance (Diagnostic Test)

Control group

Active Comparator

Age and sex matched adolescents will be recruited as control group and will be included after written informed consent. Adolescents will be subjected to spirometry to determine their age, weight (determined by Kilogram on a medical weight scale) and Vital Capacity before (initial Spirometry) and after (final Spirometry) exercise performance testing. Bicycle ergospirometer will be applied to determine the Maximum Oxygen Uptake and the Maximum Performance. Thereafter deep induced sputum will be harvested for measurements of the pulmonary microbiome (Pulmonary Microbiome 16S rDNA profiling).

干预措施: age (Other)

结局指标

主要结局

Pulmonary microbiome (16S rDNA profiling) - Alpha diversity

时间窗: 1 year

Determination of alpha diversity (Chao1 Test) at the genus level of deep induced Sputum by 16S rDNA profiling. Comparison of Alpha diversity (Chao1 Analysis) between patients after repair of esophageal atresia and age and sex matched healthy controls.

Pulmonary microbiome (16S rDNA profiling) - Beta diversity

时间窗: 1 year

Determination of beta diversity (unweighted UniFrac test) at the genus level of deep induced Sputum by 16S rDNA profiling. Comparison of beta-diversity (Unweighted UniFrac Analysis) between patients after repair of esophageal atresia and age and sex matched healthy controls.

Pulmonary microbiome (16S rDNA profiling) - relative bacterial abundance

时间窗: 1 year

Determination of relative bacterial abundance (in per Cent) at the genus level of deep induced Sputum by 16S rDNA profiling. Comparison of relative bacterial abundance (Mann-Whitney-U-Test) between patients after repair of esophageal atresia and age and sex matched healthy controls.

次要结局

  • Maximum oxygen uptake (ergospirometer)(1 year)
  • Maximum Performance (ergospirometer)(1 year)
  • Vital capacity (spirometry)(1 year)

研究者

发起方
Medical University of Graz
申办方类型
Other
责任方
Sponsor

研究点 (2)

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