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ATR inhibition sensitizes liposarcoma to doxorubicin by increasing DNA damage. | LitMetric

ATR inhibition sensitizes liposarcoma to doxorubicin by increasing DNA damage.

Am J Cancer Res

Department of Orthopedic Surgery, Sarcoma Biology Laboratory, Sylvester Comprehensive Cancer Center, and The University of Miami Miller School of Medicine, Papanicolaou Cancer Research Building 1550 NW. 10th Avenue, Miami, Florida 33136, USA.

Published: April 2022

AI Article Synopsis

  • * Researchers studied a protein called ATR to see how it works in liposarcoma and found that most samples had a lot of it, which was linked to shorter survival for patients.
  • * They discovered that blocking ATR helped slow down the growth and spread of liposarcoma cells, and made them more sensitive to the chemotherapy drug doxorubicin, suggesting a new treatment approach.

Article Abstract

Liposarcomas account for approximately 20% of all adult sarcomas and have limited therapeutic options outside of surgery. Inhibition of ataxia-telangiectasia and Rad3 related protein kinase (ATR) has emerged as a promising chemotherapeutic strategy in various cancers. However, its activation, expression, and function in liposarcoma remain unkown. In this study, we investigated the expression, function, and potential of ATR as a therapeutic target in liposarcoma. Activation and expression of ATR in liposarcoma was analyzed by immunohistochemistry, which was further explored for correlation with patient clinical characteristics. ATR-specific siRNA and the ATR inhibitor VE-822 were applied to determine the effect of ATR inhibition on liposarcoma cell proliferation and anti-apoptotic activity. Migration activity and clonogenicity were examined using wound healing and clonogenic assays. ATR (p-ATR) was overexpressed in 88.1% of the liposarcoma specimens and correlated with shorter overall survival in patients. Knockdown of ATR via specific siRNA or inhibition with VE-822 suppressed liposarcoma cell growth, proliferation, migration, colony-forming ability, and spheroid growth. Importantly, ATR inhibition significantly and synergistically enhanced liposarcoma cell line chemosensitivity to doxorubicin. Our findings support ATR as critical to liposarcoma proliferation and doxorubicin resistance. Therefore, the addition of ATR inhibition to a standard doxorubicin regimen is a potential treatment strategy for liposarcoma.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9077062PMC

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