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Updated: Jun 22, 2026

Quantification of γH2AX Foci in Response to Ionising Radiation
Published on: April 6, 2010
Bringing H2AX into the angiogenesis family
Erinn B Rankin1, Amato J Giaccia, Ester M Hammond
1Department of Radiation Oncology, Division of Radiation and Cancer Biology, Center for Clinical Sciences Research, Stanford University, Stanford, CA 94303-5152, USA.
Abstract:
The cell's ability to sense and respond to DNA damage is critical to maintain homeostasis and prevent the development of cancer. Paradoxically, Economopoulou et al. recently reported that a DNA damage response protein, H2AX, promotes tumor growth and angiogenesis.
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