Hepatic sinusoidal vasodilators improve transplanted cell engraftment and ameliorate microcirculatory perturbations in the liver
- 1 June 2002
- journal article
- Published by Wolters Kluwer Health in Hepatology
- Vol. 35 (6) , 1320-1328
- https://doi.org/10.1053/jhep.2002.33201
Abstract
After transplantation, hepatocytes entering liver sinusoids are engrafted, whereas cells entrapped in portal spaces are cleared. We studied whether hepatic sinusoidal dilatation will increase the entry of transplanted cells in the liver lobule, improve cell engraftment, and decrease microcirculatory perturbations. F344 rat hepatocytes were transplanted intrasplenically into syngeneic dipeptidyl peptidase IV (DPPIV)-deficient rats. Animals were treated with adrenergic receptor blockers (phentolamine, labetalol), a calcium channel blocker (nifedipine), and splanchnic vasodilators (nitroglycerine, calcitonin gene-related peptide [CGRP], glucagon). Transplanted cells were localized by histochemistry. The hepatic microcirculation was studied with in vivo videomicroscopy. Changes in cell translocations were analyzed by injection of 99mTc-labeled hepatocytes. Pretreatment with phentolamine and nitroglycerine increased transplanted cell entry in liver sinusoids, whereas labetalol, nifedipine, CGRP, and glucagon were ineffective. Increased deposition of transplanted cells in sinusoids resulted in greater cell engraftment. In vivo microscopy showed disruption of sinusoidal blood flow immediately after cell transplantation with circulatory restoration requiring more than 12 to 24 hours after cell transplantation. However, in nitroglycerine-treated animals, sinusoidal blood flow was perturbed less. Nitroglycerine did not meaningfully increase intrapulmonary cell translocations. In conclusion, these findings indicate that hepatic sinusoidal capacitance is regulated by α-adrenergic- and nitroglycerine-responsive elements. Sinusoidal vasodilatation benefited intrahepatic distribution of transplanted cells and restored hepatic microcirculation after cell transplantation. This shall facilitate optimization of clinical cell transplantation and offers novel ways to investigate vascular mechanisms regulating hepatic sinusoidal reactivity.Keywords
Funding Information
- National Institutes of Health (R01 DK46952, P30 DK41296)
This publication has 33 references indexed in Scilit:
- Hepatocyte Transplantation Improves Survival in Mice with Liver Toxicity Induced by Hepatic Overexpression of Mad1 Transcription FactorMolecular Therapy, 2000
- Hepatocyte transplantation in acute liver failureLiver Transplantation, 2000
- Hepatocyte transplantation in acute liver failureLiver Transplantation, 2000
- Mechanisms of Cell Engraftment During Liver Repopulation with Hepatocyte TransplantationSeminars in Liver Disease, 1999
- The influence of nifedipine and captopril on liver blood flow in healthy subjectsPublished by Wiley ,1998
- Induction of Interleukin 6 (IL-6) by Hypoxia in Vascular CellsJournal of Biological Chemistry, 1995
- Effect of nifedipine on splanchnic and pulmonary vascular capacitanceClinical Physiology and Functional Imaging, 1993
- Hepatic Microvasculature: Dynamic Structure and Its RegulationSeminars in Liver Disease, 1993
- Effects of gastric inhibitory polypeptide and glucagon on portal venous and hepatic arterial flow in conscious dogsDigestive Diseases and Sciences, 1992
- Calcitonin Gene-Related Peptide in Hepatorenal Syndrome. A Possible Mediator of Peripheral Vasodilation?Journal of Clinical Gastroenterology, 1992