| Title |
Pulsatile perfusion system for ex vivo investigation of biochemical pathways in intact vascular tissue
|
|---|---|
| Published in |
American Journal of Physiology: Heart & Circulatory Physiology, February 1996
|
| DOI | 10.1152/ajpheart.1996.270.2.h760 |
| Pubmed ID | |
| Authors |
R. F. Labadie, J. F. Antaki, J. L. Williams, S. Katyal, J. Ligush, S. C. Watkins, S. M. Pham, H. S. Borovetz |
| Abstract |
We have constructed and performed initial validation of an innovative perfusion system that allows exposure of intact segments of vascular tissue to realistic physiological and hemodynamic environments ex vivo. Computer-controlled opening and closing of an in-line gate valve allows generation of arterial pressure waveforms. The control algorithm predicted resultant pressure waveforms with a high degree of accuracy (Pearson correlation coefficient > 0.97). To document vascular homeostasis ex vivo, vasomotor bioassays and morphological studies were performed. The bioassays consisted of injecting epinephrine (2 x 10(-3) mg/ml) into the perfusion system followed by acetylcholine (100 microM) while concurrently measuring vessel diameter with a laser micrometer, significant vasomotion was measured for canine carotid arteries (n = 4) bioassayed after 1, 24, and 48 h of perfusion (P < 0.03). Additionally, human saphenous vein segments were perfused for 24 h (n = 4) and viewed with laser confocal scanning microscopy and transmission electron microscopy; photomicrographs show typical vascular morphology. We conclude that the vascular perfusion system described herein is well suited for investigating the response of intact vascular tissue to hemodynamic variables. |
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Mendeley demographics
Geographical breakdown
| Country | Count | As % |
|---|---|---|
| United Kingdom | 1 | 3% |
| Unknown | 33 | 97% |
Demographic breakdown
| Readers by professional status | Count | As % |
|---|---|---|
| Student > Ph. D. Student | 6 | 18% |
| Researcher | 5 | 15% |
| Other | 3 | 9% |
| Student > Bachelor | 3 | 9% |
| Professor > Associate Professor | 3 | 9% |
| Other | 6 | 18% |
| Unknown | 8 | 24% |
| Readers by discipline | Count | As % |
|---|---|---|
| Engineering | 12 | 35% |
| Medicine and Dentistry | 7 | 21% |
| Biochemistry, Genetics and Molecular Biology | 2 | 6% |
| Mathematics | 2 | 6% |
| Agricultural and Biological Sciences | 2 | 6% |
| Other | 1 | 3% |
| Unknown | 8 | 24% |