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Monitoring of Systemic and Hepatic Hemodynamic Parameters in Mice
Published on: October 4, 2014
Murine study of portal hypertension associated endothelin-1 hypo-response
Nicholas Theodorakis1, Mary Maluccio1, Nicholas Skill1
1Nicholas Theodorakis, Mary Maluccio, Nicholas Skill, Department of Surgery, Division of Transplant Surgery, Indiana School of Medicine, Indiana University, Indianapolis, IN 46202, United States.
Aim:
To investigate endothelin-1 hypo-responsive associated with portal hypertension in order to improve patient treatment outcomes.
Methods:
Wild type, eNOS(-/-) and iNOS(-/-) mice received partial portal vein ligation surgery to induce portal hypertension or sham surgery. Development of portal hypertension was determined by measuring the splenic pulp pressure, abdominal aortic flow and portal systemic shunting. To measure splenic pulp pressure, a microtip pressure transducer was inserted into the spleen pulp. Abdominal aortic flow was measured by placing an ultrasonic Doppler flow probe around the abdominal aorta between the diaphragm and celiac artery. Portal systemic shunting was calculated by injection of fluorescent microspheres in to the splenic vein and determining the percentage accumulation of spheres in liver and pulmonary beds. Endothelin-1 hypo-response was evaluated by measuring the change in abdominal aortic flow in response to endothelin-1 intravenous administration. In addition, thoracic aorta endothelin-1 contraction was measured in 5 mm isolated thoracic aorta rings ex-vivo using an ADI small vessel myograph.
Results:
In wild type and iNOS(-/-) mice splenic pulp pressure increased from 7.5 ± 1.1 mmHg and 7.2 ± 1 mmHg to 25.4 ± 3.1 mmHg and 22 ± 4 mmHg respectively. In eNOS(-/-) mice splenic pulp pressure was increased after 1 d (P = NS), after which it decreased and by 7 d was not significantly elevated when compared to 7 d sham operated controls (6.9 ± 0.6 mmHg and 7.3 ± 0.8 mmHg respectively, P = 0.3). Abdominal aortic flow was increased by 80% and 73% in 7 d portal vein ligated wild type and iNOS when compared to shams, whereas there was no significant difference in 7 d portal vein ligated eNOS(-/-) mice when compared to shams. Endothelin-1 induced a rapid reduction in abdominal aortic blood flow in wild type, eNOS(-/-) and iNOS(-/-) sham mice (50% ± 8%, 73% ± 9% and 47% ± 9% respectively). Following portal vein ligation endothelin-1 reduction in blood flow was significantly diminished in each mouse group. Abdominal aortic flow was reduced by 19% ± 9%, 32% ± 10% and 9% ± 9% in wild type, eNOS(-/-) and iNOS(-/-) mice respectively.
Conclusion:
Aberrant endothelin-1 response in murine portal hypertension is NOS isoform independent. Moreover, portal hypertension in the portal vein ligation model is independent of ET-1 function.
Insights
Endothelin-1 hypo-response occurs in portal hypertension, independent of NOS isoforms. This study suggests that endothelin-1 function is not critical for portal hypertension development in this mouse model.
Area of Science:
- Cardiovascular Physiology
- Hepatology
- Vascular Biology
Background:
- Portal hypertension is a serious complication of liver disease.
- Endothelin-1 plays a role in vascular tone and blood pressure regulation.
- Understanding endothelin-1's role in portal hypertension may lead to improved treatments.
Purpose of the Study:
- To investigate endothelin-1 hypo-responsiveness in a murine model of portal hypertension.
- To determine if this hypo-responsiveness is dependent on specific nitric oxide synthase (NOS) isoforms (eNOS or iNOS).
- To assess the impact of portal hypertension on endothelin-1's vascular effects.
Main Methods:
- Induction of portal hypertension in wild type, eNOS(-/-), and iNOS(-/-) mice via partial portal vein ligation.
- Measurement of splenic pulp pressure, abdominal aortic flow, and portal systemic shunting to confirm portal hypertension.
- Assessment of endothelin-1's effect on abdominal aortic blood flow and ex-vivo thoracic aorta contraction.
Main Results:
- Portal hypertension was successfully induced in wild type and iNOS(-/-) mice, evidenced by increased splenic pulp pressure and aortic flow.
- Endothelin-1 administration resulted in a diminished blood flow reduction in all portal hypertensive mouse groups compared to sham controls.
- The hypo-response to endothelin-1 was observed regardless of eNOS or iNOS gene deletion.
Conclusions:
- Aberrant endothelin-1 response in portal hypertension is independent of NOS isoforms.
- Portal hypertension in this model does not appear to be critically dependent on endothelin-1 function.
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