4.7 Article

Single-Cell-Derived Primary Rectal Carcinoma Cell Lines Reflect Intratumor Heterogeneity Associated with Treatment Response

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CLINICAL CANCER RESEARCH
卷 26, 期 13, 页码 3468-3480

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AMER ASSOC CANCER RESEARCH
DOI: 10.1158/1078-0432.CCR-19-1984

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  1. Intramural Research Program of the NIH, NCI (Bethesda, MD).
  2. Mildred Scheel postdoctoral scholarships of the German Cancer Aid (Deutsche Krebshilfe)
  3. NCI [5R01CA159976]
  4. NATIONAL CANCER INSTITUTE [ZIABC010283, ZIABC010834, ZIABC010833, ZIABC010959, ZICBC011532, ZIABC010837] Funding Source: NIH RePORTER

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Purpose: The standard treatment of patients with locally advanced rectal cancer consists of preoperative chemoradiotherapy (CRT) followed by surgery. However, the response of individual tumors to CRT is extremely diverse, presenting a clinical dilemma. This broad variability in treatment response is likely attributable to intratumor heterogeneity (ITH). Experimental Design: We addressed the impact of ITH on response to CRT by establishing single-cell-derived cell lines (SCDCL) from a treatment-naive rectal cancer biopsy after xenograftin. Results: Individual SCDCLs derived from the same tumor responded profoundly different to CRT in vitro. Clonal reconstruction of the tumor and derived cell lines based on whole-exome sequencing revealed nine separate clusters with distinct proportions in the SCDCLs. Missense mutations in SV2A and ZWINT were clonal in the resistant SCDCL, but not detected in the sensitive SCDCL. Single-cell genetic analysis by multiplex FISH revealed the expansion of a clone with a loss of PIK3CA in the resistant SCDCL. Gene expression profiling by tRNA-sequencing identified the activation of the Wnt, Akt, and Hedgehog signaling pathways in the resistant SCDCLs. Wnt pathway activation in the resistant SCDCLs was confirmed using a reporter assay. Conclusions: Our model system of patient-derived SCDCLs provides evidence for the critical role of ITH for treatment response in patients with rectal cancer and shows that distinct genetic aberration profiles are associated with treatment response. We identified specific pathways as the molecular basis of treatment response of individual clones, which could be targeted in resistant subclones of a heterogenous tumor.

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