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一种用于评估群居大型动物心血管功能的新型基于遥测的系统。通过云数据传输对远程测量进行评估,将3R原则提升到一个新水平。

A new telemetry-based system for assessing cardiovascular function in group-housed large animals. Taking the 3Rs to a new level with the evaluation of remote measurement via cloud data transmission.

作者信息

Markert Michael, Trautmann Thomas, Krause Florian, Cioaga Marius, Mouriot Sebastien, Wetzel Miriam, Guth Brian D

机构信息

Department of Drug Discovery Science, General Pharmacology Group, Boehringer Ingelheim Pharma GmbH & Co KG, Germany.

Department of Drug Discovery Science, General Pharmacology Group, Boehringer Ingelheim Pharma GmbH & Co KG, Germany.

出版信息

J Pharmacol Toxicol Methods. 2018 Sep-Oct;93:90-97. doi: 10.1016/j.vascn.2018.03.006. Epub 2018 Mar 26.

Abstract

INTRODUCTION

A newly developed total implant telemetry system for cardiovascular (CV), electrophysiological and body temperature measurement was evaluated. A cloud-based transmission of the physiological signals allowed an assessment of the quality of the physiological signals despite the physical separation between the instrumented animals and the evaluating home laboratory. The new system is intended to be used for safety pharmacological evaluations of drug candidates in various species.

METHODS

Two female minipigs, 6 Labrador-mixed breed dogs and 4 female Cynomolgus monkeys were instrumented with a newly developed total implant system (TSE SYSTEMS). The implants feature a microprocessor, internal memory (1 GB), 2 solid state pressure-tipped catheters, amplifiers and a radio transmitter. Sampling rates for each measurement can be selected within a range between 0.1 and 1 kHz. Biological signals are selected in a programmable fashion on a session-by-session basis according to a user-defined protocol. The pressure sensors are at the tip of an electrical lead having a length customized to each species. Core temperature measurement and activity monitoring (3D accelerometer) are included in the system. Digital transmission range using a single antenna is 5 m with up to 16 animals held together and monitored simultaneously. The range can be expanded with more antennas in an array coupled to a single receiver. The antenna/receiver station consists of a single USB powered mobile unit connected to a PC or laptop. The battery life provides 110 days of continuous recording. The dogs and minipigs were instrumented and monitored in Germany. A novel cloud-based data transmission system was developed to monitor the physiological signals in real-time from the Cynomolgus monkeys, still kept in Mauritius, from the data evaluation laboratory in Germany. After recovery from the surgical implantation, aortic pressure (AP), left ventricular pressure (LVP), ECG and body temperature were recorded for 24 hr monitoring sessions in all animals. Additionally, moxifloxacin (10, 30 and 100 mg/kg) was tested in the dog model using a modified Latin square cross-over study design.

RESULTS

The implant was well tolerated and the animals recovered rapidly from the implantation procedure. Excellent signal quality was obtained and stable hemodynamic and electrophysiological parameters could be measured, with little signal artefact or drop-out, over 24 h in each species. After oral dosing of moxifloxacin to the dogs, a substantial, dose-dependent increase in the QT-interval duration could be shown, as anticipated for this agent. Cloud-based data acquisition from the animals in Mauritius and the data evaluation lab in Germany worked well.

CONCLUSION

This new CV telemetry system provides a novel alternative to fluid-filled catheter telemetry systems and the coupling to a cloud-based data transmission allows for flexibility in the location of the instrumented animals and data acquisition and the location of the site for data analysis. For the first time it is technically feasible to conduct a CV safety pharmacology study in Cynomolgus monkeys without having to ship them long distances to the home laboratory.

摘要

引言

对一种新开发的用于心血管(CV)、电生理和体温测量的全植入式遥测系统进行了评估。生理信号的基于云的传输使得尽管被植入仪器的动物与评估的家庭实验室在物理上分离,但仍能评估生理信号的质量。新系统旨在用于对各种物种的候选药物进行安全药理学评估。

方法

两只雌性小型猪、6只拉布拉多混血犬和4只雌性食蟹猴被植入了新开发的全植入系统(TSE SYSTEMS)。植入物具有微处理器、内部存储器(1GB)、2个固态压力尖端导管、放大器和一个无线电发射器。每次测量的采样率可在0.1至1kHz的范围内选择。根据用户定义的协议,在逐次实验的基础上以可编程方式选择生物信号。压力传感器位于根据每个物种定制长度的电导线尖端。系统包括核心体温测量和活动监测(3D加速度计)。使用单个天线的数字传输范围为5米,最多可同时对16只动物进行饲养和监测。通过在与单个接收器耦合的阵列中使用更多天线,范围可以扩大。天线/接收器站由一个连接到个人电脑或笔记本电脑的单个USB供电移动单元组成。电池续航时间为连续记录110天。犬和小型猪在德国进行植入和监测。开发了一种新型的基于云的数据传输系统,以实时监测仍在毛里求斯的食蟹猴的生理信号,这些信号来自德国的数据评估实验室。在从手术植入中恢复后,对所有动物进行24小时监测,记录主动脉压(AP)、左心室压(LVP)、心电图和体温。此外,在犬模型中使用改良的拉丁方交叉研究设计对莫西沙星(10、30和100mg/kg)进行了测试。

结果

植入物耐受性良好,动物从植入手术中迅速恢复。获得了优异的信号质量,并且在每个物种中,在24小时内都可以测量到稳定的血流动力学和电生理参数,几乎没有信号伪影或信号丢失。给犬口服莫西沙星后,如预期的那样,QT间期持续时间出现了显著的、剂量依赖性增加。从毛里求斯的动物和德国的数据评估实验室进行的基于云的数据采集运行良好。

结论

这种新的CV遥测系统为充液导管遥测系统提供了一种新的替代方案,并且与基于云的数据传输的耦合允许在被植入仪器的动物的位置、数据采集以及数据分析地点的位置方面具有灵活性。首次在技术上可行的是,在食蟹猴中进行CV安全药理学研究而无需将它们长途运送到家庭实验室。

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