AI Article Synopsis

  • AMG 232 is a small molecule that inhibits the interaction between MDM2 and p53, enhancing the response of tumor cells to radiation treatment.
  • In various human tumor cell lines and xenografts, AMG 232 was shown to increase radiosensitivity by impairing DNA damage repair mechanisms, leading to higher levels of DNA damage and triggering cell death processes like senescence and apoptosis.
  • The combination of AMG 232 and radiation demonstrated stronger anti-tumor effects in vivo, suggesting that this treatment strategy could be effective for tumors with functional p53.

Article Abstract

MDM2-p53 interaction and downstream signaling affect cellular response to DNA damage. AMG 232 is a potent small molecule inhibitor that blocks the interaction of MDM2 and p53. We examined the capacity of AMG 232 to augment radiation response across a spectrum of human tumor cell lines and xenografts. AMG 232 effectively inhibited proliferation and enhanced radiosensitivity via inhibition of damage repair signaling. Combined AMG 232 and radiation treatment resulted in the accumulation of γH2AX-related DNA damage and induction of senescence with promotion of apoptotic and/or autophagic cell death. Several molecules involved in senescence, autophagy, and apoptosis were specifically modulated following the combined AMG 232/radiation treatment, including FoxM1, ULK-1, DRAM, and BAX. In vivo xenograft studies confirmed more potent antitumor and antiangiogenesis efficacy with combined AMG 232/radiation treatment than treatment with drug or radiation alone. Taken together, these data identify the capacity of AMG 232 to augment radiation response across a variety of tumor types harboring functional p53.

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Source
http://dx.doi.org/10.1158/1535-7163.MCT-14-1056-TDOI Listing

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