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Repurposing triamterene as chloride intracellular channel 1 inhibitor via ligand-based approach for glioblastoma
Opinion: Autonomous AI will beat AI-assisted physicians at some medical tasks by 2030
Ezekiel J. Emanuel and Abe Baker-Butler have been debating the proper place for AI in medicine with American Medical Association CEO John Whyte. Now, they are taking their discussion to STAT’s First Opinion. Read Emanuel and Baker-Butler’s essay below and read Whyte’s essay here.
In 1867, Joseph Lister published his research on carbolic acid and antiseptic surgical technique. In September 1871, he was summoned to Queen Victoria, who had a rapidly growing abscess in her left armpit. Using his antiseptic surgical technique, Joseph Lister successfully drained the pus. Queen Victoria recovered without fever or other complications. The antiseptic technique quickly gained approval in the U.K. and Europe, but not among American physicians.


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Advancing conflict research and response through satellite-derived data
Nature, Published online: 09 September 2026; doi:10.1038/s41586-026-11004-6
Integrating satellite-derived war-damage data with text-based fatality records through improvement, enrichment and fusion mitigates limitations inherent in each source, revealing complex violence dynamics beyond fatality-centric paradigms, as case studies from Ukraine and Myanmar illustrate.Circulating Tumor DNA in Breast Cancer: A Liquid Biopsy Revolution for Non-Invasive Genomic Profiling and Clinical Decision-Making
Breast Cancer (Auckl). 2026 Sep 3;20:11782234261485831. doi: 10.1177/11782234261485831. eCollection 2026.
ABSTRACT
Breast cancer remains the most frequently diagnosed cancer and a leading cause of cancer-related mortality among women worldwide, underscoring the need for accurate, minimally invasive biomarkers to support precision oncology. Conventional tissue biopsy remains the standard for molecular characterization but is limited by its invasiveness, inability to capture spatial and temporal tumor heterogeneity, and challenges in serial monitoring. Circulating tumor DNA (ctDNA), a tumor-derived fraction of cell-free DNA, has emerged as a promising liquid biopsy biomarker capable of providing real-time genomic information throughout disease progression. This narrative review examines recent advances in ctDNA biology, analytical technologies, clinical applications, current limitations, and future directions in breast cancer management. A structured literature search of PubMed/MEDLINE, Scopus, Embase, Web of Science, and Google Scholar identified relevant English-language publications from 2015 to 2026. Current evidence indicates that highly sensitive platforms, including digital PCR, BEAMing, and next-generation sequencing, can detect clinically actionable alterations in genes such as PIK3CA, ESR1, TP53, ERBB2, AKT1, and BRCA1/2. ctDNA has demonstrated particular utility in identifying minimal residual disease, monitoring therapeutic response, detecting emerging resistance mechanisms, and guiding targeted treatment selection in advanced breast cancer. However, applications in early cancer detection, population screening, and artificial intelligence-assisted clinical decision-making remain investigational. Widespread clinical implementation is constrained by low ctDNA abundance in early-stage disease, analytical variability, limited assay standardization, and cost considerations. Continued technological innovation, prospective multicenter validation, standardized testing protocols, and evidence-based clinical guidelines are essential to fully integrate ctDNA into routine precision breast cancer care.
PMID:42699009 | PMC:PMC13542536 | DOI:10.1177/11782234261485831
NKCC1 as a regulator of stemness and redox balance in colorectal cancer
Oncogenesis, Published online: 31 August 2026; doi:10.1038/s41389-026-00651-z
NKCC1 as a regulator of stemness and redox balance in colorectal cancerRole of liquid biopsy in the multimodal assessment and treatment of esophageal cancer: a surgical perspective
Updates Surg. 2026 Aug 24. doi: 10.1007/s13304-026-02814-4. Online ahead of print.
ABSTRACT
Esophageal cancer (EC) remains a highly lethal malignancy, characterized by late diagnosis, early systemic dissemination, and high recurrence rates. Conventional diagnostic and surveillance strategies have limited sensitivity for early disease detection and minimal residual disease. Liquid biopsy technologies have emerged as promising minimally invasive tools for diagnosis, prognostication, and longitudinal monitoring. This scoping review summarizes current evidence on the clinical utilization of liquid biopsies in esophageal squamous cell and adenocarcinoma. PubMed, EMBASE and Cochrane Library were queried. Inclusion criteria encompassed studies investigating the use of liquid biopsy for EC diagnosis, treatment response evaluation, and prognosis definition. A total of 73 studies reported the role of circulating tumor DNA (ctDNA), circulating tumor cells (CTCs), or microRNAs (miRNA). The majority (59%) focused on ctDNA while CTC and miRNA were assessed in 12 and 14 studies, respectively. The reported pooled diagnostic sensitivity and specificity was 71% and 98.6%, respectively, with superior performance in advanced stages (III-IV). Serial ctDNA measurements during neoadjuvant therapy have been reported useful for assessing tumor burden reduction. Additionally, comprehensive ctDNA profiling proved valuable for analysis of tumor heterogeneity and actionable genetic alterations suitable for targeted treatment therapies. Elevated preoperative ctDNA levels correlated with an increased risk of nodal metastasis and postoperative cancer recurrence. ctDNA was also identified as a useful prognostic marker, demonstrating sensitivity and specificity of 49% and 95%, respectively, for survival prediction. Despite limitations related to the various methodologies employed and the lack of laboratory standardization, liquid biopsy constitutes a promising frontier in the surgical management of EC, offering minimally invasive, real-time tool for assessing tumor genetics, genomic heterogeneity, and dynamics of tumor progression. It might enhance early diagnosis, inform neoadjuvant treatment response, and enable postoperative surveillance for residual or recurrent cancer.
PMID:42635711 | DOI:10.1007/s13304-026-02814-4
Safety of Telemedicine Versus In-Person Care for Patients With Tracheal Devices: Propensity Score–Matched Cohort Study
BoxLitE: A Faithful Knowledge Base Embedding Based on Convex Optimization
Fibroblast growth factor receptor inhibition for succinate dehydrogenase-deficient gastrointestinal stromal tumors: a phase 2 trial
Nature Medicine, Published online: 26 May 2026; doi:10.1038/s41591-026-04376-9
In a multicenter phase 2 trial, the fibroblast growth factor receptor inhibitor rogaratinib showed encouraging clinical efficacy in patients with succinate dehydrogenase-deficient gastrointestinal stromal tumors, suggesting a potential new treatment option for this patient population and demonstrating that an epigenetic mechanism of oncogene activation can be successfully targeted with a tyrosine kinase inhibitor.A comparison of deep multiomics profiles across ethnicity, geography, and age
Fronto-insular circuit mechanisms of accelerated intermittent theta burst stimulation
The immunoproteasome disturbs neuronal metabolism and drives neurodegeneration in multiple sclerosis
Predicting bilingual aphasia treatment outcomes using digital twins: a double-blind randomized controlled trial
npj Digital Medicine, Published online: 10 April 2026; doi:10.1038/s41746-026-02583-9
Predicting bilingual aphasia treatment outcomes using digital twins: a double-blind randomized controlled trialNonsense-mediated mRNA decay inhibition reshapes the cancer immunopeptidome
Immunity. 2026 Apr 8:S1074-7613(26)00075-0. doi: 10.1016/j.immuni.2026.02.005. Online ahead of print.
ABSTRACT
DNA mutations are a well-characterized source of neoepitopes in immunotherapy. Here, we examined the contribution of dysregulated RNA processing to neoantigen production. Leveraging multi-omics and checkpoint inhibitor (CPI) response data from >1,000 patients, we identified reduced activity of the nonsense-mediated mRNA decay (NMD) pathway kinase SMG1 as a predictor of improved CPI response. NMD inhibition through SMG1 targeting stabilized transcripts containing premature termination codons, most of which were of non-mutational origin. This reshaped the major histocompatibility complex class I (MHC class I)-bound immunopeptidome and increased neoantigen abundance to levels comparable to high mutation burden tumors. Functionally, NMD inhibition drove antigen-dependent T cell-mediated tumor cell killing in vitro, promoted activation of tissue-resident T cells in patient-derived models ex vivo, and improved CPI efficacy in vivo. Our findings establish NMD inhibition as a strategy to harness a previously inaccessible source of canonical and non-canonical neoantigens, with the potential to increase tumor immunogenicity across cancers.
PMID:41956098 | DOI:10.1016/j.immuni.2026.02.005
Author Correction: Oncogene ablation-resistant pancreatic cancer cells depend on mitochondrial function
Nature, Published online: 08 April 2026; doi:10.1038/s41586-026-10488-6
Author Correction: Oncogene ablation-resistant pancreatic cancer cells depend on mitochondrial functionHigh-fidelity collisional quantum gates with fermionic atoms
Nature, Published online: 08 April 2026; doi:10.1038/s41586-026-10356-3
A robust composite pair-exchange gate based on controlled interactions of fermionic atoms in an optical superlattice demonstrates high fidelities and long Bell-state lifetimes, marking an important step towards a fully digital fermionic quantum computer.