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Updated: Dec 21, 2025

A Matrigel-Based Tube Formation Assay to Assess the Vasculogenic Activity of Tumor Cells
Published on: September 7, 2011
Vascular mimicry: changing the therapeutic paradigms in cancer
Nazila Fathi Maroufi1,2,3, Sina Taefehshokr4, Mohammad-Reza Rashidi1
1Stem Cell and Regenerative Medicine Institute, Tabriz University of Medical Sciences, Tabriz, Iran.
Abstract:
Cancer is a major problem in the health system, and despite many efforts to effectively treat it, none has yet been fully successful. Angiogenesis and metastasis are considered as major challenges in the treatment of various cancers. Researchers have struggled to succeed with anti-angiogenesis drugs for the effective treatment of cancer, although new challenges have emerged in the treatment with the emergence of resistance to anti-angiogenesis and anti-metastatic drugs. Numerous studies have shown that different cancers can resist anti-angiogenesis drugs in a new process called vascular mimicry (VM). The studies have revealed that cells resistant to anti-angiogenesis cancer therapies are more capable of forming VMs in the in vivo and in vitro environment, although there is a link between the presence of VM and poor clinical outcomes. Given the importance of the VM in the challenges facing cancer treatment, researchers are trying to identify factors that prevent the formation of these structures. In this review article, it is attempted to provide a comprehensive overview of the molecules and main signaling pathways involved in VM phenomena, as well as the agents currently being identified as anti-VM and the role of VM in response to treatment and prognosis of cancer patients.
Insights
Vascular mimicry (VM) is a key challenge in cancer treatment, enabling resistance to anti-angiogenesis therapies. Identifying factors to prevent VM formation is crucial for improving patient outcomes and treatment effectiveness.
Area of Science:
- Oncology
- Cancer Biology
- Translational Medicine
Background:
- Cancer treatment faces significant challenges, including angiogenesis and metastasis.
- Resistance to anti-angiogenesis and anti-metastatic drugs is an emerging problem.
- Vascular mimicry (VM) is a newly identified process by which cancers resist anti-angiogenesis therapies.
Purpose of the Study:
- To provide a comprehensive overview of molecules and signaling pathways involved in VM.
- To identify agents that can inhibit VM formation.
- To explore the role of VM in cancer treatment response and patient prognosis.
Main Methods:
- Literature review of studies on vascular mimicry in cancer.
- Analysis of molecular mechanisms and signaling pathways driving VM.
- Evaluation of current and potential anti-VM therapeutic strategies.
Main Results:
- VM formation is linked to resistance to anti-angiogenesis drugs.
- Cancer cells capable of forming VMs exhibit poor clinical outcomes.
- Several molecules and signaling pathways are implicated in the VM phenomenon.
Conclusions:
- VM presents a significant hurdle in effective cancer therapy.
- Targeting VM pathways offers a potential strategy to overcome drug resistance.
- Further research into anti-VM agents is critical for improving cancer treatment and prognosis.
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