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PMID: 28679765 Published · ppublish English Journal Article

Sequential Tracking of PD-L1 Expression and RAD50 Induction in Circulating Tumor and Stromal Cells of Lung Cancer Patients Undergoing Radiotherapy.

Adams DL, Adams DK, He J, Kalhor N, Zhang M, Xu T, Gao H, Reuben JM, Qiao Y, Komaki R, Liao Z, Edelman MJ, Tang CM, Lin SH

Abstract

Purpose: Evidence suggests that PD-L1 can be induced with radiotherapy and may be an immune escape mechanism in cancer. Monitoring this response is limited, as repetitive biopsies during therapy are impractical, dangerous, and miss tumor stromal cells. Monitoring PD-L1 expression in both circulating tumor cells (CTCs) and circulating stromal cells (CStCs) in blood-based biopsies might be a practical alternative for sequential, noninvasive assessment of changes in tumor and stromal cells.Experimental Design: Peripheral blood was collected before and after radiotherapy from 41 patients with lung cancer, as were primary biopsies. We evaluated the expression of PD-L1 and formation of RAD50 foci in CTCs and a CStC subtype, cancer-associated macrophage-like cells (CAMLs), in response to DNA damage caused by radiotherapy at the tumor site.Results: Only 24% of primary biopsies had sufficient tissue for PD-L1 testing, tested with IHC clones 22c3 and 28-8. A CTC or CAML was detectable in 93% and 100% of samples, prior to and after radiotherapy, respectively. RAD50 foci significantly increased in CTCs (>7×, P < 0.001) and CAMLs (>10×, P = 0.001) after radiotherapy, confirming their origin from the radiated site. PD-L1 expression increased overall, 1.6× in CTCs (P = 0.021) and 1.8× in CAMLs (P = 0.004): however, individual patient PD-L1 expression varied, consistently low/negative (51%), consistently high (17%), or induced (31%).Conclusions: These data suggest that RAD50 foci formation in CTCs and CAMLs may be used to track cells subjected to radiation occurring at primary tumors, and following PD-L1 expression in circulating cells may be used as a surrogate for tracking adaptive changes in immunotherapeutic targets. Clin Cancer Res; 23(19); 5948-58. ©2017 AACR.

MeSH 主题词
Acid Anhydride Hydrolases Adult Aged B7-H1 Antigen/blood Biomarkers, Tumor/blood Biopsy Cell Line, Tumor DNA Repair Enzymes/blood DNA-Binding Proteins/blood Female Gene Expression Regulation, Neoplastic/radiation effects Humans Lung Neoplasms/blood,pathology,radiotherapy Male Middle Aged Neoplastic Cells, Circulating/radiation effects Stromal Cells/radiation effects
化学物质
B7-H1 Antigen Biomarkers, Tumor CD274 protein, human DNA-Binding Proteins Acid Anhydride Hydrolases Rad50 protein, human DNA Repair Enzymes
作者与单位
共 14 位作者,点击展开单位 / ORCID
Adams Daniel L
Creatv MicroTech, Inc., Monmouth Junction, New Jersey. dan@creatvmicrotech.com shlin@mdanderson.org.
Adams Diane K
Rutgers, the State University of New Jersey, New Brunswick, New Jersey.
He Jianzhong
MD Anderson Cancer Center, Houston, Texas.
Kalhor Neda
MD Anderson Cancer Center, Houston, Texas.
Zhang Ming
Hebei General Hospital, Shijiazhuang, China.
Xu Ting
MD Anderson Cancer Center, Houston, Texas.
Gao Hui
MD Anderson Cancer Center, Houston, Texas.
Reuben James M
MD Anderson Cancer Center, Houston, Texas.
Qiao Yawei
MD Anderson Cancer Center, Houston, Texas.
Komaki Ritsuko
MD Anderson Cancer Center, Houston, Texas.
Liao Zhongxing
MD Anderson Cancer Center, Houston, Texas.
Edelman Martin J
Fox Chase Cancer Center, Philadelphia, Pennsylvania.
Tang Cha-Mei
Creatv MicroTech, Inc., Potomac, Maryland.
Lin Steven H
MD Anderson Cancer Center, Houston, Texas. dan@creatvmicrotech.com shlin@mdanderson.org.
Article Info
Journal
Clinical cancer research : an official journal of the American Association for Cancer Research
Abbr.
Clin Cancer Res
ISSN
1557-3265
Published
2017-10-01
电子出版
2017-00-05
页码
5948-5958
Language
English
Country/Region
United States
NLM ID
9502500
勘误 / 撤稿关联
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