Literature DB >> 23208836

Antiangiogenic therapy for cancer: an update.

Belal Al-Husein1, Maha Abdalla, Morgan Trepte, David L Deremer, Payaningal R Somanath.   

Abstract

The idea of antiangiogenic therapy was the brainchild of Dr. Judah Folkman in the early 1970s. He proposed that by cutting off the blood supply, cancer cells would be deprived of nutrients and, hence, treated. His efforts paid off when bevacizumab, a monoclonal antibody targeting vascular endothelial growth factor, was approved as antiangiogenic therapy in 2004 for the treatment of colon cancer. Since then, an array of antiangiogenic inhibitors, either as monotherapy or in combination with other cytotoxic and chemotherapy drugs, have been developed, used in clinical trials, and approved for the treatment of cancer. Despite this important breakthrough, antiangiogenic therapy for cancer met with a number of hurdles on its way to becoming an option for cancer therapy. In this article, we summarize the most current information on the mechanisms of tumor angiogenesis, proangiogenic and antiangiogenic factors, potential targets and their mechanisms of action, and experimental evidences, as well as the most recent clinical trial data on antiangiogenic agents for cancer therapy.
© 2012 Pharmacotherapy Publications, Inc.

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Year:  2012        PMID: 23208836      PMCID: PMC3555403          DOI: 10.1002/phar.1147

Source DB:  PubMed          Journal:  Pharmacotherapy        ISSN: 0277-0008            Impact factor:   4.705


  92 in total

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Review 3.  The neuropilins: multifunctional semaphorin and VEGF receptors that modulate axon guidance and angiogenesis.

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  63 in total

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Review 2.  Plants and their active compounds: natural molecules to target angiogenesis.

Authors:  Kai Lu; Madhavi Bhat; Sujit Basu
Journal:  Angiogenesis       Date:  2016-05-06       Impact factor: 9.596

Review 3.  Autophagy as a mechanism for anti-angiogenic therapy resistance.

Authors:  Ankush Chandra; Jonathan Rick; Garima Yagnik; Manish K Aghi
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Review 4.  Imaging biomarkers in primary brain tumours.

Authors:  Egesta Lopci; Ciro Franzese; Marco Grimaldi; Paolo Andrea Zucali; Pierina Navarria; Matteo Simonelli; Lorenzo Bello; Marta Scorsetti; Arturo Chiti
Journal:  Eur J Nucl Med Mol Imaging       Date:  2014-12-18       Impact factor: 9.236

5.  Nintedanib, a triple angiokinase inhibitor, enhances cytotoxic therapy response in pancreatic cancer.

Authors:  Niranjan Awasthi; Stefan Hinz; Rolf A Brekken; Margaret A Schwarz; Roderich E Schwarz
Journal:  Cancer Lett       Date:  2014-12-16       Impact factor: 8.679

6.  Real-time photoacoustic sensing for photo-mediated ultrasound therapy.

Authors:  Wei Zhang; Yu Qin; Xinyi Xie; Zizhong Hu; Yannis M Paulus; Xinmai Yang; Xueding Wang
Journal:  Opt Lett       Date:  2019-08-15       Impact factor: 3.776

7.  86/90Y-Based Theranostics Targeting Angiogenesis in a Murine Breast Cancer Model.

Authors:  Emily B Ehlerding; Carolina A Ferreira; Eduardo Aluicio-Sarduy; Dawei Jiang; Hye Jin Lee; Charles P Theuer; Jonathan W Engle; Weibo Cai
Journal:  Mol Pharm       Date:  2018-05-30       Impact factor: 4.939

8.  Anti-tumor activity of cediranib, a pan-vascular endothelial growth factor receptor inhibitor, in pancreatic ductal adenocarcinoma cells.

Authors:  Majid Momeny; Zivar Alishahi; Haniyeh Eyvani; Fatemeh Esmaeili; Azam Zaghal; Parisa Ghaffari; Javad Tavakkoly-Bazzaz; Kamran Alimoghaddam; Ardeshir Ghavamzadeh; Seyed H Ghaffari
Journal:  Cell Oncol (Dordr)       Date:  2019-09-06       Impact factor: 6.730

Review 9.  The Contribution of Angiogenesis to the Process of Metastasis.

Authors:  Diane R Bielenberg; Bruce R Zetter
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10.  Celastrol and Its Role in Controlling Chronic Diseases.

Authors:  Shivaprasad H Venkatesha; Kamal D Moudgil
Journal:  Adv Exp Med Biol       Date:  2016       Impact factor: 2.622

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