Related Experiment Video
Updated: Nov 3, 2025

Murine Model of Metastatic Liver Tumors in the Setting of Ischemia Reperfusion Injury
Published on: August 30, 2019
Attenuated Microcirculation in Small Metastatic Tumors in Murine Liver
Arturas Ziemys1, Vladimir Simic2, Miljan Milosevic2
1Houston Methodist Research Institute, Houston, TX 77030, USA.
Abstract:
Metastatic cancer disease is the major cause of death in cancer patients. Because those small secondary tumors are clinically hardly detectable in their early stages, little is known about drug biodistribution and permeation into those metastatic tumors potentially contributing to insufficient clinical success against metastatic disease. Our recent studies indicated that breast cancer liver metastases may have compromised perfusion of intratumoral capillaries hindering the delivery of therapeutics for yet unknown reasons. To understand the microcirculation of small liver metastases, we have utilized computational simulations to study perfusion and oxygen concentration fields in and around the metastases smaller than 700 µm in size at the locations of portal vessels, central vein, and liver lobule acinus. Despite tumor vascularization, the results show that blood flow in those tumors can be substantially reduced indicating the presence of inadequate blood pressure gradients across tumors. A low blood pressure may contribute to the collapsed intratumoral capillary lumen limiting tumor perfusion that phenomenologically corroborates with our previously published in vivo studies. Tumors that are smaller than the liver lobule size and originating at different lobule locations may possess a different microcirculation environment and tumor perfusion. The acinus and portal vessel locations in the lobule were found to be the most beneficial to tumor growth based on tumor access to blood flow and intratumoral oxygen. These findings suggest that microcirculation states of small metastatic tumors can potentially contribute to physiological barriers preventing efficient delivery of therapeutic substances into small tumors.
Insights
Metastatic cancer
Area of Science:
- Oncology
- Medical Imaging
- Computational Biology
Background:
- Metastatic cancer is a leading cause of cancer-related death.
- Early-stage metastatic tumors are difficult to detect, limiting understanding of drug delivery.
- Breast cancer liver metastases show impaired perfusion, hindering therapeutic efficacy.
Purpose of the Study:
- To investigate the microcirculation and perfusion in small liver metastases (<700 µm).
- To understand how tumor location within the liver lobule affects microenvironment and perfusion.
- To identify factors contributing to therapeutic delivery challenges in metastatic disease.
Main Methods:
- Computational simulations were used to model perfusion and oxygen concentration.
- Simulations focused on metastases located near portal vessels, central veins, and liver lobule acini.
- Tumor size was kept below 700 µm to represent early-stage metastatic disease.
Main Results:
- Reduced blood flow was observed in small liver metastases despite vascularization.
- Low blood pressure gradients across tumors may lead to collapsed intratumoral capillaries.
- Tumor location significantly impacts microcirculation, with acinus and portal vessel sites being most favorable for tumor growth.
- Compromised tumor perfusion creates physiological barriers to drug delivery.
Conclusions:
- Microcirculation abnormalities in small metastatic tumors impede therapeutic delivery.
- Tumor location within the liver lobule influences perfusion and oxygen availability.
- Understanding these microcirculatory dynamics is crucial for improving metastatic disease treatment.

