Literature DB >> 9770111

Monoclonal antibodies targeting the VEGF receptor-2 (Flk1/KDR) as an anti-angiogenic therapeutic strategy.

L Witte1, D J Hicklin, Z Zhu, B Pytowski, H Kotanides, P Rockwell, P Böhlen.   

Abstract

Biological evidence suggests that interference with the function of the angiogenic growth factor receptor VEGFR2 (flk1/KDR) is a particularly promising strategy to inhibit tumor-induced angiogenesis. Proof of concept was established by developing a monoclonal rat anti-mouse VEGFR2 antibody (DC101) and showing that it potently blocked the binding of VEGF to its receptor, inhibited VEGF-induced signaling, and strongly blocked tumor growth in mice through an anti-angiogenic mechanism. Since DC101 does not cross-react with the human VEGFR2 KDR, anti-KDR monoclonal antibodies were generated by standard hybridoma technology and by using phage display library. High affinity antibodies (Kd = 4.9 x 10(-10)-1.1 x 10(-9) M) were found with both approaches. The anti-KDR antibodies compete on an equimolar basis with VEGF for binding to KDR and inhibit with similar potency the VEGF-induced signaling and mitogenesis in human endothelial cells. Although these antibodies cannot be tested for in vivo efficacy in standard murine tumor models because of lack of species cross-reactivity, the similarity of their in vitro properties with those of DC101 suggests that they may be effective in blocking KDR function in vivo.

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Year:  1998        PMID: 9770111     DOI: 10.1023/a:1006094117427

Source DB:  PubMed          Journal:  Cancer Metastasis Rev        ISSN: 0167-7659            Impact factor:   9.264


  93 in total

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3.  Enhanced natural-killer cell and erythropoietic activities in VEGF-A-overexpressing mice delay F-MuLV-induced erythroleukemia.

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Journal:  Blood       Date:  2006-10-19       Impact factor: 22.113

4.  CTA combined with CT perfusion for assessing the efficacy of anti-angiogenic therapy in rabbit VX2 tumors.

Authors:  Han Wang; Lin-Feng Zheng; Yan Feng; Xue-Qian Xie; Xiao-Ming Yang; Gui-Xiang Zhang
Journal:  Acad Radiol       Date:  2012-03       Impact factor: 3.173

5.  Gene therapy using genetically modified lymphocytes targeting VEGFR-2 inhibits the growth of vascularized syngenic tumors in mice.

Authors:  Dhanalakshmi Chinnasamy; Zhiya Yu; Marc R Theoret; Yangbing Zhao; Rajeev K Shrimali; Richard A Morgan; Steven A Feldman; Nicholas P Restifo; Steven A Rosenberg
Journal:  J Clin Invest       Date:  2010-10-11       Impact factor: 14.808

6.  Differential effects of VEGFR-1 and VEGFR-2 inhibition on tumor metastases based on host organ environment.

Authors:  Yoon-Jin Lee; Daniel L Karl; Ugwuji N Maduekwe; Courtney Rothrock; Sandra Ryeom; Patricia A D'Amore; Sam S Yoon
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7.  Differential Effects of EGFL6 on Tumor versus Wound Angiogenesis.

Authors:  Kyunghee Noh; Lingegowda S Mangala; Hee-Dong Han; Ningyan Zhang; Sunila Pradeep; Sherry Y Wu; Shaolin Ma; Edna Mora; Rajesha Rupaimoole; Dahai Jiang; Yunfei Wen; Mian M K Shahzad; Yasmin Lyons; MinSoon Cho; Wei Hu; Archana S Nagaraja; Monika Haemmerle; Celia S L Mak; Xiuhui Chen; Kshipra M Gharpure; Hui Deng; Wei Xiong; Charles V Kingsley; Jinsong Liu; Nicholas Jennings; Michael J Birrer; Richard R Bouchard; Gabriel Lopez-Berestein; Robert L Coleman; Zhiqiang An; Anil K Sood
Journal:  Cell Rep       Date:  2017-12-05       Impact factor: 9.423

8.  Vascular endothelial growth factor blockade rapidly elicits alternative proangiogenic pathways in neuroblastoma.

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Journal:  Int J Oncol       Date:  2009-02       Impact factor: 5.650

Review 9.  Therapeutic potential of manipulating VEGF splice isoforms in oncology.

Authors:  Emma S Rennel; Steven J Harper; David O Bates
Journal:  Future Oncol       Date:  2009-06       Impact factor: 3.404

Review 10.  Vascular endothelial growth factor and other signaling pathways in developmental and pathologic angiogenesis.

Authors:  Gavin Thurston; Nicholas W Gale
Journal:  Int J Hematol       Date:  2004-07       Impact factor: 2.490

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