ARMISEN YAÑEZ, RICARDO AMADO
Preferred name
ARMISEN YAÑEZ, RICARDO AMADO
Main Affiliation
Email
rarmisen@udd.cl
ORCID
0000-0003-2567-0521
Scopus Author ID
22956957700
48 results
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Item type:Product, Dataset - Multimorbidity profile among cancer-related hospitalization events in younger and older patients: a large-scale nationwide cross-sectional study(GITHUB, 2026) ;Sanhueza Condell Cristobal Tomas ;CARLA ANDREA CAMPAÑA CASTILLO; ; - Some of the metrics are blocked by yourconsent settings
Item type:Publication, 2 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Methylated Reprimo Cell-Free DNA as a Non-Invasive Biomarker for Gastric Cancer(MDPI AG, 2025-04-03) ;María José Maturana ;Oslando Padilla ;Pablo M. Santoro ;Maria Alejandra AlarcónWilda OlivaresRestrictions resulting from the COVID-19 pandemic abruptly reversed the slow decline of the diagnosis and mortality rates of gastric cancer (GC). This scenario highlights the importance of developing cost-effective methods for mass screening and evaluation of treatment response. In this study, we evaluated a non-invasive method based on the circulating methylated cell-free DNA (cfDNA) of Reprimo (RPRM), a tumor suppressor gene associated with the development of GC. Methylated RPRM cfDNA was analyzed in three de-identified cohorts: Cohort 1 comprised 81 participants with GC and 137 healthy donors (HDs); Cohort 2 comprised 27 participants with GC undergoing gastrectomy and/or chemotherapy analyzed at the beginning and after three months of treatment; and Cohort 3 comprised 1105 population-based participants in a secondary prevention program who underwent esophagogastroduodenal (EGD) endoscopy. This cohort includes 180 normal participants, 845 participants with premalignant conditions (692 with chronic atrophic gastritis [AG] and 153 with gastric intestinal metaplasia/low-grade dysplasia [GIM/LGD]), 21 with high-grade dysplasia/early GC [HGD/eGC], and 59 with advanced GC [aGC]). A nested case-control substudy was performed using a combination of methylated RPRM cfDNA and pepsinogens (PG)-I/II ratio. The dense CpG island of the promoter region of the RPRM gene was bisulfite sequenced and analyzed to develop a fluorescence-based real-time PCR assay (MethyLight). This assay allows the determination of the absolute number of copies of methylated RPRM cfDNA. A targeted sequence of PCR amplicon products confirmed the gastric origin of the plasma-isolated samples. In Cohort 1, the mean value of GCs (32,240.00 copies/mL) was higher than that of the HD controls (139.00 copies/mL) (p < 0.0001). After dividing this cohort into training–validation subcohorts, we identified an area under the curve of 0.764 (95% confidence interval (CI) = 0.683–0.845) in the training group. This resulted in a cut-off value of 87.37 copies/mL (sensitivity 70.0% and specificity 80.2%). The validation subcohort predicted a sensitivity of 66.67% and a specificity of 83.33%. In Cohort 2 (monitoring treatment response), RPRM levels significantly decreased in responders (p = 0.0042) compared to non-responders. In Cohort 3 (population-based participants), 18.9% %, 24.1%, 30.7%, 47.0%, and 71.2% of normal, AG, GIM/LGD, HGD/eGC, and aGC participants tested positive for methylated RPRM cfDNA, respectively. Overall sensitivity and specificity in distinguishing normal/premalignant conditions vs. GC were 65.0% (95% CI 53.52% to 75.33%) and 75.9% (95% CI 73.16% to 78.49%), respectively, with an accuracy of 75.11% (95% CI 72.45% to 77.64%). Logistic regression analyses revealed an OR of 1.85 (95% CI 1.11–3.07, p = 0.02) and an odds ratio (OR) of 3.9 (95% CI 1.53–9.93, p = 0.004) for the risk of developing GIM/LGD and HGD/eGC, respectively. The combined methylated RPRM cfDNA and PG-I/II ratio reached a sensitivity of 78.9% (95% CI 54.43% to 93.95%) and specificity of 63.04% (95% CI 52.34% to 72.88%) for detecting HGD/eGC vs. three to six age- and sex-matched participants with premalignant conditions. Our results demonstrate that methylated RPRM cfDNA should be considered a direct biomarker for the non-invasive detection of GC and a predictive biomarker for treatment response.1Scopus© Citations 4 - Some of the metrics are blocked by yourconsent settings
Item type:Product, Dataset - Integration of RNA Editing into Multiomics Machine Learning Models for Predicting Drug Responses in Breast Cancer Patients(GITHUB, 2026) ;Bernal Gómez Yanara A. ;ALEJANDRO ESTEBAN BLANCO MUÑOZ; ; 1 - Some of the metrics are blocked by yourconsent settings
Item type:Product, Dataset - MET Signaling Pathways, Resistance Mechanisms, and Opportunities for Target Therapies(cBioPortal, 2022) ;SOLANGE MARIELA RIVAS ARENAS; GONZÁLEZ FELIU, EVELIN17 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, NTRK genomic alterations in Latin-American cancer patients.(2021); ;Claudio Salas ;Katherine Marcelain ;Francisco PerezEvelin Feliu<jats:p> e15088 </jats:p><jats:p> Background: The neurotrophic receptor tyrosine kinase genes NTRK1-3 encode the tropomyosin receptor kinase proteins TRKA, TRKB, and TRKC, respectively. TRK fusions lead to overexpression of the chimeric protein, resulting in constitutively active, ligand-independent downstream signaling. NTRKs act as oncogenes, they can be targeted, and it is estimated that they are present in up to 0.3% of tumors. The incidence of actionable alterations in these genes is currently unknown in Latin-American patients. We investigated the presence of NTRK1-3 mutations/rearrangements in 3 independent patient series from several tertiary hospitals from Chile, Brazil and Peru. Methods: 1795 FFPE tumor samples from multiple institutions divided in 3 series were analyzed using 2 NGS panels: Oncomine Focus Assay (OFA; 52 genes) and Oncomine Comprehensive Assay (OCA; 161 genes. Data on NTRK1-3 SNVs, indels, CNVs and fusions was obtained. Bioinformatic workflows were used to study the biologic significance of these alterations. Results: Using OCA (series 1-2), 31 somatic variants were found in gastric, CRC, gallbladder, lung and pancreatic cases out of 300 patients. From these, 13 were located in the tyrosine kinase domain. Using OFA, no NTRK alteration were detected (series 3, 1495 NSCLC cases). Conclusions: NTRK alterations are rare events in Latin-American cancer patients. In 3 series including 1,795 patients, 31 somatic variants were detected. No NTRK fusions or CNVs were identified. The presence of NTRK mutations in the tyrosine kinase domain warrants further research into their potential to benefit from FDA/EMA-approved targeted therapies. [Table: see text] </jats:p>3 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Latin-American Non-Small Cell Lung Cancer Patient's Tumors Harbor Many Novels Potentially Actionable/ driver Mutations(2024); ;BLANCO, ALEJANDROGONZÁLEZ, E.2 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Multimorbidity profile among cancer-related hospitalization events in younger and older patients: a large-scale nationwide cross-sectional study(Elsevier BV, 2026-01) ;Yanara A. Bernal; ; ;Cristobal SanhuezaScopus© Citations 1 6 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Ski Is Required for Tri-Methylation of H3K9 in Major Satellite and for Repression of Pericentromeric Genes: Mmp3, Mmp10 and Mmp13, in Mouse Fibroblasts(2020) ;Claudio Cappelli ;Hugo Sepulveda; ;Víctor PolaUlises UrzúaScopus© Citations 2 5 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Transcription-Coupled Repair Promotes the Retention of Mutations in Coding Regions During Replication Stress(MDPI AG, 2026-01-23) ;Evelyn Zambrano ;Cristopher Fierro ;Fernanda Morales ;Marcia ManterolaArnaldo MarinReplication stress (RS) is a primary driver of genomic instability in cancer, yet the contribution of transcription-coupled repair (TC-NER) to this process remains unclear. Here, we investigate how the TC-NER factor ERCC6 (CSB) shapes mutational landscapes under RS. We found that ERCC6 deficiency biases early damage signaling toward a 53BP1-mediated response, ultimately leading to senescence. Conversely, ERCC6-proficient cells prioritize survival and proliferative recovery but at the expense of distinct genomic alterations. Whole-exome sequencing reveals that ERCC6 proficiency is associated with the retention of stress-induced mutations specifically within coding regions of transcriptionally active loci, whereas ERCC6-deficient cells accumulate variants primarily in intergenic regions. These findings suggest that while ERCC6 safeguards transcriptional continuity during RS, its activity is associated with a biased retention of stress-induced mutations within coding regions in the surviving cell population. These findings reveal a previously unrecognized link between transcription-coupled repair and mutation distribution in human cells, linking TC-NER to context-dependent somatic evolution and tumor heterogeneity.18