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正电子发射断层成像显示肺生理学和气溶胶沉积。

Lung physiology and aerosol deposition imaged with positron emission tomography.

机构信息

Department of Anesthesia (Bioengineering), MGH/Harvard, Fruit Street, Boston, MA 02114, USA.

出版信息

J Aerosol Med Pulm Drug Deliv. 2013 Feb;26(1):1-8. doi: 10.1089/jamp.2011.0944. Epub 2012 Aug 2.

Abstract

Physiological conditions and pathophysiological changes in the lungs may affect many applications in aerosol medicine and pulmonary drug delivery. In the diseased lung, spatial heterogeneity in function and structure may cause substantial changes in aerosol transport and local deposition among different lung regions. Non-uniform aerosol deposition affects airway or tissue pharmacological dosing, which could reduce the therapeutic effectiveness of inhalation therapy. This review article presents examples of pulmonary imaging using PET and PET-CT in lung physiology with an emphasis on their implications for aerosol medicine. Measurements of regional ventilation, perfusion, and ventilation/perfusion ratio, by imaging local kinetics of intravenously injected Nitrogen-13 in saline solution, and of pulmonary inflammation, by assessing the regional uptake of the radiotracer (18)F-FDG, are presented. These examples demonstrate that it is possible to access both preexisting conditions, such as heterogeneity of ventilation, perfusion, and/or inflammatory stimuli, which may affect inhalation therapy, and the functional effects of inhaled medications or inflammatory agents on lung regional function. The imaging techniques described could be efficient tools to evaluate quantitatively and noninvasively these processes in vivo. Furthermore, it can be expected that imaging of respiratory structure and function will yield sensitive biomarkers of disease, which will help and speed drug discovery, and the evaluation of novel inhalation therapies.

摘要

肺部的生理条件和病理生理变化可能会影响气溶胶医学和肺部药物输送的许多应用。在患病的肺部中,功能和结构的空间异质性可能会导致不同肺部区域之间的气溶胶传输和局部沉积发生重大变化。非均匀的气溶胶沉积会影响气道或组织的药物剂量,从而降低吸入疗法的治疗效果。本文通过正电子发射断层扫描和正电子发射断层扫描/计算机断层扫描(PET/CT)介绍了肺部生理学的成像示例,重点介绍了它们对气溶胶医学的影响。通过测量静脉内注射生理盐水的氮-13 的局部动力学,评估放射性示踪剂(18)F-FDG 的区域摄取,测量区域性通气、灌注和通气/灌注比;还可以评估肺部炎症。这些示例表明,有可能获得可能影响吸入治疗的预先存在的条件,例如通气、灌注和/或炎症刺激的异质性,以及吸入药物或炎症剂对肺部区域功能的功能影响。所描述的成像技术可以成为定量和非侵入性评估这些体内过程的有效工具。此外,可以预期,呼吸结构和功能的成像将产生疾病的敏感生物标志物,这将有助于加快药物发现和新型吸入疗法的评估。

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