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使用便携式热成像设备作为评估炎症和实验性关节炎的快速定量方法。

Use of a portable thermal imaging unit as a rapid, quantitative method of evaluating inflammation and experimental arthritis.

作者信息

Sanchez Brian M, Lesch Mark, Brammer David, Bove Susan E, Thiel Melissa, Kilgore Kenneth S

机构信息

Department of Inflammation Biology, Pfizer Global Research and Development, Michigan Laboratories, Ann Arbor, MI 48105, USA.

出版信息

J Pharmacol Toxicol Methods. 2008 May-Jun;57(3):169-75. doi: 10.1016/j.vascn.2008.01.003. Epub 2008 Feb 9.

Abstract

INTRODUCTION

Thermal imaging has been utilized, both preclinically and clinically, as a tool for assessing inflammation and arthritis. However, previous studies have employed large, relatively immobile devises to obtain the thermal signature of the tissue of interest. The present study describes the characterization of a hand-held thermal imaging device in a preclinical model of general inflammation and a model of rheumatoid arthritis (RA).

METHODS

A hand-held ThermoView Ti30 portable thermal imager was utilized to detect the temporal changes in thermal signatures in rat model of carrageenan-induced paw edema (CFE) and a model of collagen-induced arthritis (CIA). In both in vivo models, the kinetics of the thermal changes were correlated to footpad swelling. In addition, the CFE model was utilized to examine the ability of this technology to delineate pharmacodynamic changes in thermal signature in response to the non-steroidal anti-inflammatory drug indomethacin (10 mg/kg; p.o.).

RESULTS

Thermal analysis of rat paws in the CFE model demonstrated a significant increase in the mean temperature difference between the inflamed and contralateral control paw by two hours post-carrageenan (8.3 +/-0.5 degrees F). Indomethacin significantly decreased the mean temperature difference in treated animals as compared to vehicle. In the rat CIA model, increases in footpad temperature, as determined by thermal imaging, were significantly elevated by Day 11 and remained elevated throughout the duration of the 28 day protocol. Thermal changes were also found to precede increases in footpad edema (swelling).

DISCUSSION

The results of this study demonstrate that the hand-held thermal imaging technology represents a rapid, highly-reproducible method by which to quantitate the degree of inflammation in rat models of general inflammation and rheumatoid arthritis. The ability to detect pharmacodynamic responses in paw temperature suggests that this technology may be a useful tool for the development of pharmacologic interventions for the treatment inflammation-related pathologies.

摘要

引言

热成像技术已在临床前和临床中被用作评估炎症和关节炎的工具。然而,先前的研究使用的是大型、相对固定的设备来获取感兴趣组织的热信号。本研究描述了一种手持式热成像设备在一般炎症的临床前模型和类风湿性关节炎(RA)模型中的特性。

方法

使用手持式ThermoView Ti30便携式热成像仪检测角叉菜胶诱导的爪肿胀(CFE)大鼠模型和胶原诱导的关节炎(CIA)模型中热信号的时间变化。在这两种体内模型中,热变化的动力学与足垫肿胀相关。此外,CFE模型用于检验该技术描绘对非甾体抗炎药吲哚美辛(10mg/kg;口服)热信号中药效学变化的能力。

结果

CFE模型中大鼠爪的热分析表明,角叉菜胶注射后两小时,发炎爪与对侧对照爪之间的平均温差显著增加(8.3±0.5华氏度)。与赋形剂相比,吲哚美辛显著降低了治疗动物的平均温差。在大鼠CIA模型中,通过热成像测定,足垫温度在第11天显著升高,并在整个28天实验过程中持续升高。还发现热变化先于足垫水肿(肿胀)增加。

讨论

本研究结果表明,手持式热成像技术是一种快速、高度可重复的方法,可用于量化一般炎症和类风湿性关节炎大鼠模型中的炎症程度。检测爪温度药效学反应的能力表明,该技术可能是开发治疗炎症相关疾病的药物干预措施的有用工具。

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