SRC inhibitors and angiogenesis

review OA: closed public-domain-us
Full text JSON View on PubMed View at publisher
AI-generated summary by gemini-2.5-flash-lite, 2026-06-09

This review details the involvement of Src tyrosine kinases in angiogenesis through various signaling pathways and discusses selective Src inhibitors that demonstrate direct antiangiogenic properties.

One-sentence paraphrase of the abstract; not a substitute for reading it. No clinical advice. How this works

AI-generated deep summary by qwen3.7-flash, 2026-08-28 · read from full text

This review examines the role of Src family tyrosine kinases in regulating angiogenesis, a process critical for tumor growth and metastasis. The authors discuss how Src signaling pathways control proangiogenic molecules and highlight selective Src inhibitors that demonstrate direct antiangiogenic properties. While the primary focus is on malignancies, the paper explicitly identifies endometriosis as one of the pathological conditions where enhanced angiogenesis occurs alongside cancer and retinopathies. Relevance to endometriosis: listed as one indication for angiogenesis-related pathology, though the paper's main focus is on Src inhibitors in cancer treatment.

Read from the paper's body, not the abstract. Not a substitute for reading the paper. No clinical advice. How this works

Abstract

Angiogenesis is a tightly regulated process that leads to the formation of new blood vessels in limited physiological conditions, and can also occur under pathological situations as retinopathies, arthritis, endometriosis and cancer. Enhanced angiogenesis is present in tumors that need new blood capillaries to grow, remove metabolic waste and transport the cells to locations distal to the primary tumor, facilitating metastasis formation. For these reasons, blockade of angiogenesis is an attractive approach for the treatment of both solid and haematological malignancies. Antiangiogenic therapy should be less toxic in comparison with conventional treatments such as chemotherapy, being angiogenesis a process relatively restricted to the growing tumor. The Src family of tyrosine kinases has been implicated in the intracellular signaling cascade that acts downstream of cell surface receptors to elicit different cellular functions, including growth, proliferation, adhesion and motility. Src kinases are frequently activated in human malignancies, causing tumor progression, metastasis formation and deregulating expression of proangiogenic molecules. This review reports several studies performed by different authors demonstrating the involvement of Src tyrosine kinases in angiogenesis by regulating different signalling pathways. Moreover, we report selective Src inhibitors for which a direct involvement with angiogenesis has been demonstrated, even if every Src inhibitor could potentially possesses also antiangiogenic properties. Biological data, structures and mechanisms of action of selected molecules, in terms of Src protein-inhibitor interactions, are also reported.
Full text 1,807 characters · extracted from oa-doi-fallback · 2 sections · click to expand

Abstract

Angiogenesis is a tightly regulated process that leads to the formation of new blood vessels in limited physiological conditions, and can also occur under pathological situations as retinopathies, arthritis, endometriosis and cancer. Enhanced angiogenesis is present in tumors that need new blood capillaries to grow, remove metabolic waste and transport the cells to locations distal to the primary tumor, facilitating metastasis formation. For these reasons, blockade of angiogenesis is an attractive approach for the treatment of both solid and haematological malignancies. Antiangiogenic therapy should be less toxic in comparison with conventional treatments such as chemotherapy, being angiogenesis a process relatively restricted to the growing tumor. The Src family of tyrosine kinases has been implicated in the intracellular signaling cascade that acts downstream of cell surface receptors to elicit different cellular functions, including growth, proliferation, adhesion and motility. Src kinases are frequently activated in human malignancies, causing tumor progression, metastasis formation and deregulating expression of proangiogenic molecules. This review reports several studies performed by different authors demonstrating the involvement of Src tyrosine kinases in angiogenesis by regulating different signalling pathways. Moreover, we report selective Src inhibitors for which a direct involvement with angiogenesis has been demonstrated, even if every Src inhibitor could potentially possesses also antiangiogenic properties. Biological data, structures and mechanisms of action of selected molecules, in terms of Src protein-inhibitor interactions, are also reported.

Keywords

Angiogenesis, cancer, tyrosine kinase, Src, VEGF, FGF, small molecules inhibitors, binding mode 21

Text is read by the "Ask this paper" AI Q&A widget below. Extraction quality varies by source — PMC NXML preserves structure cleanly, OA-HTML may include some navigation residue, and OA-PDF can have broken hyphenation. The publisher copy (via DOI) is the canonical version.

My notes (saved in your browser only)

Ask this paper AI returns verbatim quotes from the full text · source: oa-doi-fallback

Answers must be backed by verbatim quotes from this paper's full text. Hallucinated quotes are dropped automatically; if no verbatim passage answers the question, we say so. How this works

Condition tags

endometriosis

MeSH descriptors

Angiogenesis Inhibitors Protein Kinase Inhibitors src-Family Kinases Angiogenesis Inhibitors Animals Humans Neoplasms Neoplasms Neovascularization, Physiologic Protein Kinase Inhibitors Purines Purines Pyrazoles Pyrazoles Pyrimidines Pyrimidines Quinazolines Quinazolines src-Family Kinases src-Family Kinases

Citation neighborhood (no data yet)

We don't have any in-corpus citations linked to this paper yet. The paper's references may be in our DB but unresolved to ``paper_id`` (resolution happens at ingest when the cited DOI matches a row we already have). Run the cross-source citation reconcile pass to retry.

Source provenance

europepmc
last seen: 2026-09-04T06:17:57.233406+00:00
pubmed
last seen: 2026-05-13T22:14:54.534439+00:00
unpaywall
last seen: 2026-09-04T06:34:25.427880+00:00
License: public-domain-us · commercial use OK · attribution required
Courtesy of the U.S. National Library of Medicine