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Tumor vessel development and maturation impose limits on the effectiveness of anti-vascular therapy
Michael S Gee1, William N Procopio, Sosina Makonnen
1Biomedical Graduate Program, University of Pennsylvania School of Medicine, Philadelphia, USA.
Abstract:
The effect of anti-vascular agents on the growth of experimental tumors is well studied. Their impact on tumor vasculature, the primary therapeutic target of these agents, is not as well characterized, even though this primarily determines treatment outcome. Hypothesizing that the response of vessels to therapy is influenced by their stage of maturation, we studied vascular development and the vascular effects of therapy in several transplanted murine tumor models. Based on size, perfusion, endothelial cell (EC) proliferation, and the presence of pericytes, tumor vessels segregated into three categories. Least mature were highly proliferative, nonperfused EC sprouts emanating from functional vessels. Intermediate were small, perfused vessels which, like the angiogenic sprouts, were not covered by pericytes. Most mature were larger vessels, which were predominantly pericyte-covered with quiescent ECs and few associated sprouts. Thus, a developmental order, similar to that described during physiological neovascularization, was evident among vessels in growing tumors. This order markedly influenced tumor vessel response to anti-vascular therapy with recombinant interleukin-12. Therapy reduced tumor vessel density, which was attributable to a decrease in angiogenic sprouts and induction of EC apoptosis in pericyte-negative vessels. Although the great majority of vessels in growing tumors lacked pericyte coverage, selective loss of less mature vessels with therapy significantly increased the fraction of pericyte-positive vessels after therapy. These data indicate that the therapeutic susceptibility of tumor vasculature to recombinant murine IL-12 and, potentially, other anti-vascular agents is limited by its level of maturation. An implication is that tumor susceptibility is similarly limited, making pericyte coverage of tumor vasculature a potential indicator of tumor responsiveness.
Insights
Tumor vessel maturation impacts anti-vascular therapy. Less mature, pericyte-negative vessels are more susceptible to agents like recombinant interleukin-12, influencing treatment outcomes.
Area of Science:
- Oncology
- Vascular Biology
- Cancer Therapy
Background:
- Anti-vascular agents target tumor vasculature, but their impact on vessel maturation is not well understood.
- Tumor vessel maturation stage may influence therapeutic response and treatment outcomes.
- Understanding tumor vessel development is crucial for optimizing anti-vascular therapies.
Purpose of the Study:
- To investigate the relationship between tumor vessel maturation and response to anti-vascular therapy.
- To characterize the different stages of tumor vessel development in murine models.
- To determine how vessel maturation affects susceptibility to recombinant interleukin-12 (IL-12).
Main Methods:
- Utilized transplanted murine tumor models to study vascular development and therapy effects.
- Classified tumor vessels into three maturation categories based on size, perfusion, endothelial cell (EC) proliferation, and pericyte coverage.
- Administered recombinant IL-12 to assess therapy-induced changes in tumor vasculature.
Main Results:
- Tumor vessels were categorized as immature (proliferative, nonperfused EC sprouts), intermediate (perfused, pericyte-negative), and mature (larger, pericyte-covered, quiescent ECs).
- Recombinant IL-12 therapy reduced overall vessel density by decreasing sprouts and inducing apoptosis in pericyte-negative vessels.
- Therapy selectively reduced immature vessels, increasing the proportion of pericyte-positive vessels post-treatment.
Conclusions:
- Tumor vasculature exhibits a developmental hierarchy influencing its susceptibility to anti-vascular agents like IL-12.
- Vessel maturation, particularly pericyte coverage, is a key determinant of tumor response to anti-vascular therapy.
- Pericyte coverage may serve as a predictive biomarker for tumor responsiveness to anti-vascular treatments.