Pre-Existing Tumoral B Cell Infiltration and Impaired Genome Maintenance Correlate with Response to Chemoradiotherapy in Locally Advanced Rectal Cancer.
Juan M SendoyaSoledad IseasMariana F CoraglioMariano GolubickiJuan RobbioRuben SalanovaMirta KujarukVanesa MikolaitisMariana RizzoloGonzalo RuizAna CabanneUbaldo GualdriniGuillermo MendezStella HirmasCecilia RotondaroJulieta ViglinoMartín EletaElmer FernandezMartín Carlos AbbaOsvaldo PodhajcerEnrique RocaAndrea Sabina LleraPublished in: Cancers (2020)
Locally advanced rectal cancer (LARC) remains a medical challenge. Reliable biomarkers to predict which patients will significantly respond to neoadjuvant chemoradiotherapy (nCRT) have not been identified. We evaluated baseline genomic and transcriptomic features to detect differences that may help predict response to nCRT. Eligible LARC patients received nCRT (3D-LCRT 50.4 Gy plus capecitabine 825 mg/m2/bid), preceded by three cycles of CAPOX in high systemic-relapse risk tumors, and subsequent surgery. Frozen tumor biopsies at diagnosis were sequenced using a colorectal cancer panel. Transcriptomic data was used for pathway and cell deconvolution inferential algorithms, coupled with immunohistochemical validation. Clinical and molecular data were analyzed according to nCRT outcome. Pathways related to DNA repair and proliferation (p < 0.005), and co-occurrence of RAS and TP53 mutations (p = 0.001) were associated with poor response. Enrichment of expression signatures related to enhanced immune response, particularly B cells and interferon signaling (p < 0.005), was detected in good responders. Immunohistochemical analysis of CD20+ cells validated the association of good response with B cell infiltration (p = 0.047). Findings indicate that the presence of B cells is associated with successful tumor regression following nCRT in LARC. The prevalence of simultaneous RAS and TP53 mutations along with a proficient DNA repair system that may counteract chemoradio-induced DNA damage was associated with poor response.
Keyphrases
- locally advanced
- rectal cancer
- dna repair
- dna damage
- neoadjuvant chemotherapy
- phase ii study
- squamous cell carcinoma
- end stage renal disease
- radiation therapy
- immune response
- newly diagnosed
- ejection fraction
- single cell
- chronic kidney disease
- dendritic cells
- healthcare
- dna damage response
- mesenchymal stem cells
- cell therapy
- acute coronary syndrome
- risk factors
- genome wide
- randomized controlled trial
- oxidative stress
- minimally invasive
- bone marrow
- patient reported
- stem cells
- drug induced
- electronic health record
- rna seq
- cell death
- artificial intelligence
- endothelial cells
- deep learning
- endoplasmic reticulum stress
- gene expression
- metastatic breast cancer
- cell cycle arrest
- pi k akt
- inflammatory response
- diabetic rats