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用于人类代谢和传染病的稳定同位素生物标志物呼气试验:近期专利文献综述

Stable isotope biomarker breath tests for human metabolic and infectious diseases: a review of recent patent literature.

作者信息

Timmins Graham S

机构信息

a Department of Pharmaceutical Sciences, College of Pharmacy , University of New Mexico Health Sciences Center , Albuquerque , NM , USA.

出版信息

Expert Opin Ther Pat. 2016 Dec;26(12):1393-1398. doi: 10.1080/13543776.2016.1217995. Epub 2016 Aug 10.

Abstract

Stable isotope breath tests can rapidly and quantitatively report metabolic phenotypes and disease in both humans and microbes in situ. The labelled compound is administered and acted upon by human or microbial metabolism, producing a labelled gas that is detected in exhaled breath. Areas covered: This review details the unique advantages (and disadvantages) of phenotypic stable isotope based breath tests. A review of recent US patent applications and prosecutions since 2010 is conducted. Finally, current clinical trials, product pipelines and approved products are discussed. Expert opinion: Stable isotope breath tests offer new approaches for rapid and minimally invasive detection and study of metabolic phenotypes, both human and microbial. The patent literature has developed considerably in the last 6 years, with over 30 patent applications made. Rates of issuance remain high, although rejections citing 35 U.S.C. §101(subject matter eligibility), §102 (novelty), §103 (obviousness) and §112 (description, enablement and best mode) have occurred. The prior art is significantly greater for human metabolism than microbial, and may drive differing rates of future issuance. These biomarker and diagnostic tools can enable optimization of drug doses, diagnosis of metabolic disease and its progression, and detection of infectious disease and optimize its treatment.

摘要

稳定同位素呼吸测试能够快速且定量地报告人类和微生物原位的代谢表型及疾病情况。给予标记化合物后,其会受到人类或微生物代谢的作用,产生一种可在呼出气体中检测到的标记气体。涵盖领域:本综述详细介绍了基于表型稳定同位素的呼吸测试的独特优势(及劣势)。对2010年以来美国近期的专利申请及审查情况进行了回顾。最后,讨论了当前的临床试验、产品管线及获批产品。专家观点:稳定同位素呼吸测试为快速且微创地检测和研究人类及微生物代谢表型提供了新方法。在过去6年中,专利文献有了显著发展,已提交了30多项专利申请。尽管存在依据美国法典第35编第101条(主题适格性)、第102条(新颖性)、第103条(显而易见性)和第112条(描述、实施例及最佳实施方式)被驳回的情况,但授权率仍然很高。关于人类代谢的现有技术比微生物的要多得多,这可能导致未来不同的授权率。这些生物标志物和诊断工具能够实现药物剂量的优化、代谢疾病及其进展的诊断、传染病的检测及治疗优化。

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