乳糖13c -脲醛呼气试验在测定马口腔运输时间中的应用。

D G M Sutton, T Preston, S Love
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引用次数: 6

摘要

进行研究的原因:应用乳糖(13)c -脲醛呼气试验(LUBT)测量马的口腔运输时间(OCTT)以前没有报道。无创评估OCTT的能力,并探讨其与胃排空率和小肠运输的关系,将具有临床和研究价值。目的:1)评估健康马的LUBT,并比较诱导和非诱导试验方案。2)应用一种新的双稳定同位素呼气试验(乳糖(13)c -脲和(13)c -辛酸)用于胃肠道运输测量。假设:LUBT将允许马OCTT的量化,并且如体外实验所示,事先给药乳糖(12)c -脲可提高测试效果。双示踪呼吸试验将允许同时测量胃排空,OCTT和小肠运输时间。方法:采用标准试验饲料和试验方案,对3匹健康成熟马进行诱导和非诱导lubt试验。联合LUBT和(13)c -辛酸呼吸试验((13)C-OABT)在4个个体中进行,每隔一周进行4次。对呼气同位素恢复进行建模,以便生成胃排空数据、小肠运输时间和盲肠运输参数。结果:LUBT诱导方案显著提高了呼气(13)CO(2)的速率和大小。诱导LUBT对OCTT、盲肠滞后期(t(lag))和盲肠t(1/2)的平均±s.d.值分别为3.24±0.65 h、5.62±1.22 h和6.31±1.21 h。双稳定同位素测试导致15/16试验中呼气(13)CO(2)产生2个离散峰,从中可以计算胃t(1/2), OCTT和小肠运输(SBT)参数。结论:诱导LUBT提供了一种可靠的无创测量马OCTT的方法,可以与(13)C-OABT配对,进一步提供小肠运动的信息。
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Application of the lactose 13C-ureide breath test for measurement of equine orocaecal transit time.

Reasons for performing study: Application of the lactose (13) C-ureide breath test (LUBT) for measurement of equine orocaecal transit time (OCTT) has not been reported previously. The ability to assess OCTT noninvasively, and to investigate its relationship to gastric emptying rate and small intestinal transit, would be of both clinical and research value.

Objectives: 1) Assessment of the LUBT in healthy horses, with comparison of induced versus noninduced test protocols. 2) Application of a new dual stable isotope breath test (lactose (13) C-ureide and (13) C-octanoic acid) for gastrointestinal transit measurement.

Hypothesis: The LUBT will allow quantification of equine OCTT, and test efficacy will be enhanced by prior administration of lactose (12) C-ureide as shown in vitro. The dual tracer breath test will permit simultaneous measurement of gastric emptying, OCTT and small bowel transit times.

Methods: Induced and noninduced LUBTs were performed in 3 healthy mature horses in randomised order using a standard test meal and protocol. Combined LUBT and (13) C-octanoic acid breath tests ((13) C-OABT) were performed in 4 individuals on 4 occasions at weekly intervals. Expiratory isotopic recovery was modelled to allow generation of gastric emptying data, small bowel transit times and caecal transit parameters.

Results: The induction protocol for the LUBT increased the rate and magnitude of expiratory (13) CO(2) significantly. Mean ± s.d. values for OCTT, caecal lag phase (t(lag) ) and caecal t(1/2) using the induced LUBT were 3.24 ± 0.65 h, 5.62 ± 1.22 h and 6.31 ± 1.21 h, respectively. Dual stable isotope tests resulted in the production of 2 discrete peaks in expiratory (13) CO(2) in 15/16 tests from which gastric t(1/2), OCTT and small bowel transit (SBT) parameters could be calculated.

Conclusions: The induced LUBT provides a reliable noninvasive measure of equine OCTT and can be paired with the (13) C-OABT to provide further information about small intestinal motility.

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