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使用 (13)C 标记底物进行无创呼吸测试的解读——以 (13)C-美沙西汀为例的初步报告。

Interpretation of non-invasive breath tests using (13)C-labeled substrates--a preliminary report with (13)C-methacetin.

机构信息

Department of General, Visceral and Transplantation Surgery, Universitätsmedizin Berlin, Germany.

出版信息

Eur J Med Res. 2009;14(12):547-50. doi: 10.1186/2047-783x-14-12-547.

Abstract

Non-invasive breath tests can serve as valuable diagnostic tools in medicine as they can determine particular enzymatic and metabolic functions in vivo. However, methodological pitfalls have limited the actual clinical application of those tests till today. A major challenge of non-invasive breath tests has remained the provision of individually reliable test results. To overcome these limitations, a better understanding of breath kinetics during non-invasive breaths tests is essential. This analysis compares the breath recovery of a (13)C-methacetin breath test with the actual serum kinetics of the substrate. It is shown, that breath and serum kinetics of the same test are significantly different over a period of 60 minutes. The recovery of the tracer (13)CO(2) in breath seems to be significantly delayed due to intermediate storage in the bicarbonate pool. This has to be taken into account for the application of non-invasive breath test protocols. Otherwise, breath tests might display bicarbonate kinetics despite the metabolic capacity of the particular target enzyme.

摘要

非侵入性呼吸测试可以作为医学中非常有价值的诊断工具,因为它们可以在体内确定特定的酶和代谢功能。然而,直到今天,方法上的缺陷限制了这些测试的实际临床应用。非侵入性呼吸测试的一个主要挑战仍然是提供个体可靠的测试结果。为了克服这些限制,必须更好地了解非侵入性呼吸测试期间的呼吸动力学。本分析比较了(13)C-美西律呼吸测试的呼吸恢复与底物的实际血清动力学。结果表明,在 60 分钟的时间内,同一测试的呼吸和血清动力学有显著差异。示踪剂(13)CO(2)在呼吸中的恢复似乎由于中间储存在碳酸氢盐池中而明显延迟。在应用非侵入性呼吸测试方案时,必须考虑到这一点。否则,尽管特定靶酶的代谢能力,呼吸测试可能会显示碳酸氢盐动力学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4a6/3351941/4d7aff975ee5/2047-783X-14-12-547-1.jpg

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