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Microvascular permeability in isolated vascularly perfused small intestine of rats
A D Kraneveld1, A S Koster, F P Nijkamp
1Department of Pharmacology, Faculty of Pharmacy, Utrecht University, The Netherlands.
Abstract:
Intestinal microvascular permeability was studied in the isolated vascularly perfused small intestine of the rat by arterial injection of tracer molecules and collection of venous samples. The injection mixture contained a rhodamine-labeled dextran and a fluorescein-labeled dextran or free fluorescein. Pharmacokinetic analysis, based on statistical moment theory, of the tracer outflow concentration-time curve and the application of either the well-stirred model (WSM) or parallel tube model (PTM) was used to assess vasopermeability. The results indicate that the experimental system cannot be considered a pure WSM or a PTM. No different intrinsic clearance (Clint,i) values were found by applying the two models: Clint,i (in ml/min) = 1.23 +/- 0.14 (radius 0.5 nm); 0.44 +/- 0.09 (radius 1.4 nm); 0.31 +/- 0.08 (radius 2.2 nm); 0.02 +/- 0.01 (radius 6.0 nm); and 0 (radius 20.8 nm). Infusion of histamine (10(-5)-10(-3) M) and destruction of the endothelium via perfusion with distilled water increased the permeability for the tracers. We have established a technique for measurement of microvascular permeability characteristics in the rat small intestine. Histamine-induced changes and destruction of the endothelium can be detected in a quantitatively reliable way.
Insights
This study developed a new method to measure intestinal microvascular permeability in rats using tracer molecules. The technique reliably detects changes induced by histamine and endothelial damage.
Area of Science:
- Physiology
- Pharmacology
- Biophysics
Background:
- Intestinal microvascular permeability is crucial for nutrient absorption and barrier function.
- Understanding changes in permeability is vital for diagnosing and treating gastrointestinal disorders.
Purpose of the Study:
- To establish a quantitative method for assessing intestinal microvascular permeability in rats.
- To evaluate the impact of histamine and endothelial damage on this permeability.
Main Methods:
- Isolated vascularly perfused rat small intestine model.
- Arterial injection of fluorescently labeled dextran tracers.
- Pharmacokinetic analysis using statistical moment theory and WSM/PTM models.
Main Results:
- The experimental system exhibited characteristics of both WSM and PTM models.
- Intrinsic clearance values varied with tracer size, indicating size-dependent permeability.
- Histamine infusion and endothelial destruction significantly increased microvascular permeability.
Conclusions:
- A reliable technique for measuring rat intestinal microvascular permeability was established.
- The method can quantitatively detect histamine-induced changes and endothelial damage.
- This technique offers a valuable tool for gastrointestinal research.