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Citations to this article

Microenvironmental VEGF concentration, not total dose, determines a threshold between normal and aberrant angiogenesis
Clare R. Ozawa, … , Donald M. McDonald, Helen M. Blau
Clare R. Ozawa, … , Donald M. McDonald, Helen M. Blau
Published February 15, 2004
Citation Information: J Clin Invest. 2004;113(4):516-527. https://doi.org/10.1172/JCI18420.
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Article Cardiology

Microenvironmental VEGF concentration, not total dose, determines a threshold between normal and aberrant angiogenesis

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Abstract

Use of long-term constitutive expression of VEGF for therapeutic angiogenesis may be limited by the growth of abnormal blood vessels and hemangiomas. We investigated the relationship between VEGF dosage and the morphology and function of newly formed blood vessels by implanting retrovirally transduced myoblasts that constitutively express VEGF164 into muscles of adult mice. Reducing VEGF dosage by decreasing the total number of VEGF myoblasts implanted did not prevent vascular abnormalities. However, when clonal populations of myoblasts homogeneously expressing different levels of VEGF were implanted, a threshold between normal and aberrant angiogenesis was found. Clonal myoblasts that expressed low to medium levels of VEGF induced growth of stable, pericyte-coated capillaries of uniform size that were not leaky and became VEGF independent, as shown by treatment with the potent VEGF blocker VEGF-TrapR1R2. In contrast, clones that expressed high levels of VEGF induced hemangiomas. Remarkably, when different clonal populations were mixed, even a small proportion of cells with high production of VEGF was sufficient to cause hemangioma growth. These results show for the first time to our knowledge that the key determinant of whether VEGF-induced angiogenesis is normal or aberrant is the microenvironmental amount of growth factor secreted, rather than the overall dose. Long-term continuous delivery of VEGF, when maintained below a threshold microenvironmental level, can lead to normal angiogenesis without other exogenous growth factors.

Authors

Clare R. Ozawa, Andrea Banfi, Nicole L. Glazer, Gavin Thurston, Matthew L. Springer, Peggy E. Kraft, Donald M. McDonald, Helen M. Blau

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014 2013 2012 2011 2010 2009 2008 2007 2006 2005 2004 Total
Citations: 7 5 4 8 14 12 8 9 9 12 14 9 10 13 12 18 11 7 4 7 8 1 202
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal. Not all publishers participate in CrossRef, so this information is not comprehensive. Additionally, data may not reflect the most current citations to this article, and the data may differ from citation information available from other sources (for example, Google Scholar, Web of Science, and Scopus).

Citations to this article in year 2022 (8)

Title and authors Publication Year
Interdependence of Angiogenesis and Arteriogenesis in Development and Disease
F le Noble, C Kupatt
International journal of molecular sciences 2022
Fibrin-based factor delivery for therapeutic angiogenesis: friend or foe?
Melly L, Banfi A
Cell and Tissue Research 2022
Prolonged release of VEGF and Ang1 from intralesionally implanted hydrogel promotes perilesional vascularization and functional recovery after experimental ischemic stroke
Yanev P, van Tilborg GA, van der Toorn A, Kong X, Stowe AM, Dijkhuizen RM
Journal of Cerebral Blood Flow & Metabolism 2022
Ligustilide Inhibits Tumor Angiogenesis by Downregulating VEGFA Secretion from Cancer-Associated Fibroblasts in Prostate Cancer via TLR4
Ma J, Chen X, Chen Y, Tao N, Qin Z
Cancers 2022
VEGF-A and FGF4 Engineered C2C12 Myoblasts and Angiogenesis in the Chick Chorioallantoic Membrane
Kennedy DC, Wheatley AM, McCullagh KJ
Biomedicines 2022
Therapeutic arteriogenesis by factor-decorated fibrin matrices promotes wound healing in diabetic mice.
D'Amico R, Malucelli C, Uccelli A, Grosso A, Di Maggio N, Briquez PS, Hubbell JA, Wolff T, Gürke L, Mujagic E, Gianni-Barrera R, Banfi A
Journal of Tissue Engineering 2022
Type 1 diabetes and engineering enhanced islet transplantation
Jeyagaran A, Lu CE, Zbinden A, Birkenfeld AL, Brucker SY, Layland SL
Advanced Drug Delivery Reviews 2022
Emerging chemical engineering of exosomes as “bioscaffolds” in diagnostics and therapeutics
Wang J, Wang M, Jiang N, Ding S, Peng Q, Zheng L
Genes & Diseases 2022

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