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Updated: Aug 21, 2026

Establishing a Physiologic Human Vascularized Micro-Tumor Model for Cancer Research
Published on: September 15, 2023
Measuring tumour vascular response to antivascular and antiangiogenic drugs
1Tumour Microcirculation Group, Gray Cancer Institute, PO Box 100, Mount Vernon Hospital, Northwood, Middlesex HA6 2JR, UK.
Abstract:
The tumour vasculature is an attractive target for therapy because of its accessibility to blood-borne anticancer agents and the reliance of most tumour cells on an intact vascular supply for their survival. For convenience, therapeutic targeting of the tumour vasculature can be divided into antiangiogenic approaches, which target the process of new blood vessel development and antivascular approaches, which target the established tumour vasculature. Many agents are now in clinical trial for the treatment of cancer by these methods. The main aim of this article is to describe the vascular effects of some of these agents and identify suitable end-points for measuring efficacy in early clinical trials. For drugs which are active below their maximum tolerated dose (MTD), measurement of vascular end-points is required to determine the most effective dosing/scheduling protocols. In addition, many of the current and developing antiangiogenic agents have additional mechanisms of action unrelated to angiogenesis per se, requiring measurement of vascular end-points to understand their mechanisms of action. Measurement of tumour microvascular density (MVD) from tumour biopsies is a common method for assessing the efficacy of antiangiogenic drugs. The limitations of this method and alternative end-points, which take into account vascular function, are discussed. Pre-clinical data regarding tumour response to the antivascular agent combretastatin A-4 3-0-phosphate (CA-4-P) are discussed in the context of guiding clinical trial planning. Finally, the accessibility of vascular end-points for clinical imaging is addressed.
Insights
Targeting tumor vasculature offers a promising cancer therapy strategy. This review discusses antiangiogenic and antivascular agents, focusing on efficacy endpoints and clinical trial applications.
Area of Science:
- Oncology
- Vascular Biology
- Pharmacology
Background:
- Tumor vasculature is a key target for anticancer therapies due to its role in tumor cell survival and accessibility to drugs.
- Therapeutic strategies include antiangiogenic approaches (inhibiting new blood vessel growth) and antivascular approaches (targeting established vasculature).
Purpose of the Study:
- To review the vascular effects of anticancer agents targeting tumor vasculature.
- To identify suitable endpoints for measuring treatment efficacy in early clinical trials.
- To discuss the role of vascular endpoints in understanding drug mechanisms and optimizing dosing.
Main Methods:
- Review of clinical trial data and preclinical studies on antiangiogenic and antivascular agents.
- Discussion of methods for measuring treatment efficacy, including tumor microvascular density (MVD) and functional vascular endpoints.
- Exploration of clinical imaging for assessing vascular endpoints.
Main Results:
- Various agents targeting tumor vasculature are in clinical trials.
- Tumor microvascular density (MVD) is a common but limited method for assessing antiangiogenic drug efficacy.
- Alternative endpoints measuring vascular function and clinical imaging are crucial for comprehensive evaluation.
Conclusions:
- Effective use of antiangiogenic and antivascular therapies requires careful selection of endpoints to measure efficacy and understand mechanisms.
- Further research into functional vascular endpoints and imaging techniques is needed to optimize cancer treatment strategies.

