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April 1, 1994AJP Gastrointestinal and Liver Physiology302 citations

Endothelin-1 induces direct constriction of hepatic sinusoids

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JZJ. X. ZhangWPWalter PegoliMCM. G. Clemens

Key Points

  • This research aims to investigate the effects of endothelin-1 on hepatic microvascular dynamics, particularly focusing on Ito cells.
  • Isolated rat livers were studied using high-power intravital microscopy.
  • Livers were perfused with Krebs buffer and rat erythrocytes under a controlled pressure system.
  • The effects of endothelin-1, sodium nitroprusside, and phenylephrine on sinusoidal parameters were analyzed.
  • Endothelin-1 decreased sinusoidal diameter by 25% and increased sinusoidal pressure gradient by 116%.
  • Portal flow decreased by 25% with endothelin-1 and 51% with phenylephrine; inflow pressures increased by 28% and 43%, respectively.
  • Nitric oxide donor significantly inhibited the effects of endothelin-1 on the hepatic microvasculature.

Abstract

We studied the hepatic microvascular response to endothelin (ET) and the possible role of Ito cells (fat-storing cells) acting as pericytes in this response using isolated rat livers under high-power intravital microscopy. Livers were perfused in a modified pressure-controlled system with Krebs buffer plus rat erythrocytes (RBC, 10%), and sinusoids at the site of Ito cells were observed under a x 100 objective (total magnification x 2,533) before and during infusion of ET-1 (10(-9 M) alone, sodium nitroprusside (NP, 10(-5) M). plus ET-1, or phenylephrine (PE, 10(-7) M). Both ET-1 and PE decreased portal flow (25 and 51%) and increased inflow pressure (28 and 43%), respectively. PE had no effect on any sinusoidal parameters except that it decreased measured sinusoidal RBC velocity (P < 0.05); ET-1 decreased sinusoidal diameter by 25% and increased the calculated sinusoidal pressure gradient and resistance by 116 and 350%, respectively, but did not alter RBC velocity. NP significantly inhibited changes induced by ET-1. These results demonstrate that ET-1 induces a specific sinusoidal constriction that disrupts normal acinar flow dynamics, and the sinusoidal constriction colocalizes with Ito cells, suggesting that the constriction may be mediated at least in part by ET-1 action on Ito cells, which can be inhibited by a nitric oxide donor.

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Cite This Study

Zhang et al. (1994) studied this question.

synapsesocial.com/papers/6a1f6d6b2e067b3744835289https://doi.org/10.1152/ajpgi.1994.266.4.g624
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Also Consider

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