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Updated: Mar 7, 2026

Standardized Colon Ascendens Stent Peritonitis in Rats - a Simple, Feasible Animal Model to Induce Septic Acute Kidney Injury
Published on: February 15, 2022
Milrinone and levosimendan improve microvascular perfusion in septic rats: a randomized, placebo-controlled trial
Carsten Marcus1,2, Stefan Hof3, Alena Gesing3
1Department of Anesthesiology, University Hospital Duesseldorf, Moorenstrasse 5, 40225, Duesseldorf, Germany. carsten.marcus@med.uni-duesseldorf.de.
Background:
Microcirculatory dysfunction is a key pathophysiological feature of sepsis and contributes to organ failure and mortality. In the gastrointestinal tract, impaired barrier function due to microcirculatory injury promotes translocation of inflammatory mediators and bacteria, worsening systemic inflammation and multiorgan dysfunction. Inotropic and vasoactive agents may improve microvascular perfusion through vasodilation in addition to their inotropic effects. Milrinone, a phosphodiesterase-3 inhibitor, and levosimendan, a calcium sensitizer, have shown promising but inconsistent effects in sepsis, while data on their direct microcirculatory and mitochondrial effects in abdominal organs remain limited. Sub-therapeutic vasopressin has demonstrated beneficial effects on gut microcirculation in experimental models, but its combination with inotropes has not been investigated. We hypothesized that (1) milrinone and levosimendan increase colonic and hepatic microvascular blood flow and oxygenation, (2) adjunctive low-dose vasopressin further enhances gastrointestinal microcirculation, and (3) mitochondrial respiration does not differ between treatment groups.
Methods:
Male Wistar rats (n = 105) underwent colon ascendens stent peritonitis (CASP) or sham surgery to induce moderate sepsis. Twenty-four hours later, animals received intravenous infusions of vehicle, milrinone, levosimendan, or the respective inotrope with low-dose vasopressin. Colonic and hepatic microvascular oxygenation and blood flow were assessed using tissue-reflectance spectrophotometry and laser Doppler flowmetry. Mitochondrial respiration in colonic and hepatic tissue homogenates from septic animals was analyzed by respirometry. Statistical analyses included mixed-effects models with Tukey or Dunnett post-hoc tests and Kruskal-Wallis tests with Dunn's correction, using a two-sided significance level of α = 0.05.
Results:
In septic animals, milrinone and levosimendan increased colonic and hepatic microvascular blood flow. With adjunctive vasopressin, colonic perfusion remained increased, whereas hepatic blood flow did not increase. Microvascular oxygenation remained unchanged in both organs. In sham-operated animals, microvascular blood flow and oxygenation did not differ between treatment groups. Mitochondrial respiration in colon and liver was unchanged across treatments, as indicated by respiratory control index and ADP/O ratio.
Conclusions:
In experimental abdominal sepsis, milrinone and levosimendan increase colonic and hepatic microvascular blood flow without affecting mitochondrial respiration. Adjunctive vasopressin alters hepatic but not colonic microvascular responses during combined inotropic therapy.
Insights
Milrinone and levosimendan improved microvascular blood flow in sepsis, but adding vasopressin had mixed effects. Mitochondrial function remained unaffected by these treatments in experimental abdominal sepsis.
Area of Science:
- Critical Care Medicine
- Sepsis Pathophysiology
- Gastrointestinal Physiology
Background:
- Sepsis-induced microcirculatory dysfunction is a critical factor in organ failure and mortality.
- Impaired gastrointestinal barrier function exacerbates systemic inflammation and multiorgan dysfunction.
- Inotropic agents may enhance microvascular perfusion, but their effects on sepsis microcirculation and mitochondrial function are not fully understood.
Purpose of the Study:
- To investigate the effects of milrinone and levosimendan on colonic and hepatic microcirculation in experimental sepsis.
- To determine if low-dose vasopressin enhances gastrointestinal microcirculation when combined with inotropes.
- To assess the impact of these agents on mitochondrial respiration in abdominal organs.
Main Methods:
- Male Wistar rats underwent colon ascendens stent peritonitis (CASP) or sham surgery to induce sepsis.
- Animals received vehicle, milrinone, levosimendan, or inotrope plus low-dose vasopressin infusions.
- Colonic and hepatic microvascular blood flow and oxygenation were measured; mitochondrial respiration was analyzed.
Main Results:
- Milrinone and levosimendan increased colonic and hepatic microvascular blood flow in septic rats.
- Adjunctive vasopressin maintained colonic perfusion but did not increase hepatic blood flow; oxygenation remained unchanged.
- Mitochondrial respiration (respiratory control index, ADP/O ratio) was not significantly different across treatment groups in colon or liver.
Conclusions:
- Milrinone and levosimendan enhance colonic and hepatic microvascular blood flow in experimental abdominal sepsis without altering mitochondrial respiration.
- Adjunctive low-dose vasopressin modifies hepatic microvascular response but not colonic response during combined inotropic therapy.

