Please wait a minute...
J4  2012, Vol. 46 Issue (2): 359-365    DOI: 10.3785/j.issn.1008-973X.2012.02.028
生物医学工程、光学工程     
心肌组织传感阵列在信号传导及药物分析中的应用
陈庆梅1,2, 李蓉1, 肖丽丹1, 刘清君1, 王平1
1. 浙江大学 生物医学工程系,生物传感器国家专业实验室,生物医学工程教育部重点实验室 浙江 杭州 310027;
2. 江西中医学院 医疗电子学科组,江西 南昌 330006
Cardiac tissue-based sensing array for studying on signal
conduction and drugs analysis
CHEN Qing-mei1,2, LI Rong1, XIAO Li-dan1, Liu Qing-jun1, WANG Ping1
1. Biosensor National Special Laboratory, Key Laboratory of Biomedical Engineering of Ministry of Education,
Department of Biomedical Engineering, Zhejiang University, Hangzhou 310027, China; 2. Department of
medical electronics, Jiangxi Institute of Traditional Chinese Medicine, Nanchang 330006, China
 全文: PDF  HTML
摘要:

为了对心肌组织的搏动信号及其传导进行实时监测与分析,设计一种用于离体心肌组织电生理检测的组织传感阵列.根据组织/器件耦合原理,该传感阵列能够检测伴随心肌细胞搏动产生的场电位的变化.利用组织传感阵列,同步采集多通道的心肌信号并观察心血管药物盐酸肾上腺素和氯化乙酰胆碱对搏动信号的影响.实验结果显示:离体心肌组织及切片表现出良好的搏动和信号传导;盐酸肾上腺素和氯化乙酰胆碱对心肌组织搏动信号的幅度、频率、持续时间甚至信号的传导分别表现出兴奋和抑制作用.说明组织传感阵列技术对离体心肌组织搏动信号的提取是可行的,并且对心肌信号的传导及药物作用分析非常有用.

Abstract:

To real-time monitor the beating signals of the cardiac tissues and investigate the signal propagation, an in vitro cardiac tissuebased sensing array was developed for monitoring the electrophysiological activities. According to the coupling principle between tissues and sensors, the sensing array can detect the changes of the field potentials with the mechanical beatings of the cardiac cells. With the tissue-based sensing array, the multi-channel data was acquired synchronously and the effect of Adrenaline Hydrochloride and Acetylcholine Chloride on the beating signals was observed. Experiment results showed that the in vitro cardiac tissues and slices took on good beatings as well as the propagation. Adrenaline Hydrochloride and Acetylcholine Chloride respectively had exciting and relaxing action on signals’ amplitude, frequency, duration and even the signal conduction. In conclusion, the tissue-based sensing array technique is feasible to measure the beating signals of the in vitro cardiac tissues, and is quite advantageous to study the signal conduction and drugs screening.

出版日期: 2012-03-20
:  TP 212.3  
基金资助:

 国家自然科学基金资助项目(30970765, 60725102).

通讯作者: 王平,男,教授,博导.     E-mail: cnpwang@zju.edu.cn
作者简介: 陈庆梅(1974—),女,副教授,主要从事生物医学传感器研究. E-mail: zjucqm@zju.edu.cn
服务  
把本文推荐给朋友
加入引用管理器
E-mail Alert
RSS
作者相关文章  

引用本文:

陈庆梅, 李蓉, 肖丽丹, 刘清君, 王平. 心肌组织传感阵列在信号传导及药物分析中的应用[J]. J4, 2012, 46(2): 359-365.

CHEN Qing-mei, LI Rong, XIAO Li-dan, Liu Qing-jun, WANG Ping. Cardiac tissue-based sensing array for studying on signal
conduction and drugs analysis. J4, 2012, 46(2): 359-365.

链接本文:

http://www.zjujournals.com/eng/CN/10.3785/j.issn.1008-973X.2012.02.028        http://www.zjujournals.com/eng/CN/Y2012/V46/I2/359

[1] PIJNAPPELS D A, SCHALIJ M J, VAN TUYN J, et al. Progressive increase in conduction velocity across human mesenchymal stem cells is mediated by enhanced electrical coupling [J]. Cardiovascular Research, 2006, 72(2): 282-291.
[2] PIJNAPPELS D A, VAN TUYN J, DE VRIES A A F, et al. Resynchronization of separated rat cardiomyocyte fields with genetically modified human ventricular scar fibroblasts [J]. Circulation, 2007, 116(18): 2018-2028.
[3] PIJNAPPELS D A, SCHALIJ M J, RAMKISOENSING A A, et al. Forced alignment of mesenchymal stem cells undergoing cardiomyogenic differentiation affects functional integration with cardiomyocyte cultures [J]. Circulation Research, 2008, 103(2): 167-176.
[4] HANNES T, HALBACH M, NAZZAL R, et al. Biological pacemakers: characterization in an in vitro coculture model [J]. Journal of Electrocardiology, 2008, 41(6): 562-566.
[5] FAHRENBACH J P, AI X, BANACH K. Decreased intercellular coupling improves the function of cardiac pacemakers derived from mouse embryonic stem cells [J]. Journal of Molecular and Cellular Cardiology, 2008, 45(5): 642-649.
[6] THOMAS S P, LEHMANN L B, THOMAS S A, et al. Synthetic strands of neonatal mouse cardiac myocytes: structural and electrophysiological properties [J]. Circulation Research, 2000, 87(6): 467-473.
[7] ANUMONWO J M B, TALLINI Y N, VETTER F J, et al. Action potential characteristics and arrhythmogenic properties of the cardiac conduction system of the murine heart [J]. Circulation Research, 2001, 89(4): 329-335.
[8] NATARAJAN A, MOLNAR P, SIEVERDES K, et al. Microelectrode array recordings of cardiac action potentials as a high throughput method to evaluate pesticide toxicity [J]. Toxicology in Vitro, 2006, 20(3): 375-381.
[9] IGELMUND P, FLEISCHMANN B K, FISCHER I R, et al. Action potential propagation failures in longterm recordings from embryonic stem cellderived cardiomyocytes in tissue culture [J]. Pflugers Archiv European Journal of Physiology, 1999, 437(5): 669-679.
[10] MEIRY G, REISNER Y, FELD Y, et al. Evolution of action potential propagation and repolarization in cultured neonatal rat ventricular myocytes [J]. Journal of Cardiovascular Electrophysiology, 2001, 12(11): 1269-1277.
[11] PILLEKAMP F, REPPEL M, DINKELACKER V, et al. Establishment and characterization of a mouse embryonic heart slice preparation [J]. Cellular Physiology and Biochemistry, 2005, 16(1/3): 127-132.
[12] HALBACH M, PILLEKAMP F, BROCKMEIER K, et al. Ventricular slices of adult mouse heartsa new multicellular in vitro model for electrophysiological studies [J]. Cellular Physiology and Biochemistry, 2006, 18(1/3): 01-08.
[13] PILLEKAMP F, REPPEL M, BROCKMEIER K, et al. Impulse propagation in latestage embryonic and neonatal murine ventricular slices [J]. Journal of Electrocadiology, 2006, 39(4): 425.e1-425.e4.
[14] 段亚琦,唐明,梁华敏,等.微电极矩阵研究小鼠胚胎心脏电生理活动[J].生理学报,2006,58(1): 65-70.
DUAN Yaqi, TANG Ming, LIANG Huamin, et al. Investigation on spontaneous electrical activity of murine embryonic heart using microelectrode arrays [J]. Acta Physiologica Sinica, 2006, 58(1): 65-70.
[15] 热依兰·艾沙,侯月梅.微电极阵列技术在大鼠心脏组织电生理特性研究的应用[J].新疆医科大学学报,2007,30(11): 1254-1257.
RAYILE Aisa,HOU Yumei. The application of microelectrode arrays in the research of electrophysiological properties of rats’ cardiac tissue slices [J]. Journal of Xinjiang Medical University, 2007, 30(11): 1254-1257.
[16] 徐莹,余辉,张威,等.基于MEMS技术的微电极阵列细胞传感器[J].自然科学进展,2007,17(9): 1265-1272.
XU Ying, YU Hui, ZHANG Wei, et al. Cellbased biosensor of microelectrode array on MEMS [J]. Progress in Natural Science, 2007, 17(9): 1265-1272.
[17] 刘清君,蔡华,徐莹,等.心肌搏动细胞传感器及其在药物分析中的应用[J].浙江大学学报:工学版,2007,41(5): 742-745.
LIU Qingjun, CAI Hua, XU Ying, et al. Beating cardiac cellbased biosensor and its application in drugs screening [J]. Journal of Zhejiang University: Engineering Science, 2007, 41(5): 742-745.
[18] LIU Q J, CAI H, XU Y, et al. Detection of heavy metal toxicity using cardiac cellbased biosensor [J]. Biosensors and Bioelectronics, 2007, 22(12): 3224-3229.
[19] FROMHERZ P. Sheet conductor model of brain slices for stimulation and recording with planar electronic contacts [J]. European Biophysics Journal, 2002, 31(3): 228-231.
[20] OKA H, SHIMONO K, OGAWA R, et al. A new planar multielectrode array for extracellular recording: application to hippocampal acute slice [J]. Journal of Neuroscience Methods, 1999, 93(1): 61-67.

[1] 张威, 胡靓, 肖丽丹, 胡朝颖, 王平. 自组装技术在细胞传感器相容性设计中的应用[J]. J4, 2012, 46(2): 345-350.