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Development and Preliminary Evaluation of a Conversational Agent Delivering Problem-Solving Therapy for Family Caregivers of Children With a Chronic Health Condition: Multiphase Mixed Methods Study
Authors’ Reply: Clarifying the Comparative Interpretation and Clinical Implications of Radiomics-Based AI for Pathological Response Prediction
Same-Patient, Same–Time Point Evidence for Radiomics Benchmarking
Metal–organic framework nanovaccines for systemic tumour regression
Nature Biomedical Engineering, Published online: 06 October 2026; doi:10.1038/s41551-026-01786-5
A nanoscale metal–organic framework (MOF)-based cancer vaccine platform enables coordinated antigen presentation and innate immune activation, resulting in tumour regression, immune memory and protection against metastasis.Realignment of representational drift in mouse visual cortex via flexible electrode arrays
Nature Biomedical Engineering, Published online: 06 October 2026; doi:10.1038/s41551-026-01780-x
A long-term flexible electrode array system stably tracks individual neurons for months, revealing intrinsic drift in visual evoked neural activity and potentiating durable cross-session and cross-animal decoding.SPIRIT-CONSORT-ELM: element-level annotated dataset and large language model approach for assessing randomized controlled trial reporting
npj Digital Medicine, Published online: 06 October 2026; doi:10.1038/s41746-026-03318-6
SPIRIT-CONSORT-ELM: element-level annotated dataset and large language model approach for assessing randomized controlled trial reportingMulti-omics studies identified the molecular network of mitochondrial dysfunction in the pathogenesis of breast cancer
Genes Dis. 2026 May 17;14(2):102243. doi: 10.1016/j.gendis.2026.102243. eCollection 2027 Feb.
NO ABSTRACT
PMID:42831172 | PMC:PMC13634571 | DOI:10.1016/j.gendis.2026.102243
Microphysiological models of human gastrointestinal diseases
Nature Biomedical Engineering, Published online: 05 October 2026; doi:10.1038/s41551-026-01805-5
This Review highlights how organoids and organ-on-a-chip technologies are transforming gastrointestinal disease research by providing clinically relevant models of inflammation, infection and cancer and discusses future opportunities for therapeutic developments.Engineering human multi-organ tissue chip niches for drug absorption, distribution, metabolism, excretion and toxicity prediction
Nature Biomedical Engineering, Published online: 05 October 2026; doi:10.1038/s41551-026-01806-4
Multi-organ-on-a-chip systems aim to improve the prediction of human drug responses by replicating organ interactions in vitro. This Review discusses advances in niche-preserving engineering, scalable manufacturing and multimodal readouts needed to make these systems reliable tools.Selective PET imaging of bacterial infection using a glycosylated <sup>18</sup>F-fluorodeoxyglucose-derived tracer
Nature Biomedical Engineering, Published online: 05 October 2026; doi:10.1038/s41551-026-01798-1
A positron emission tomography tracer that directly targets bacterial metabolism by exploiting the phosphotransferase system, a carbohydrate transport pathway absent in mammalian cells, enables selective detection of living bacteria in vivo.Stereochemical origin of potential hysteresis in lithium metal batteries with lithium-rich cation-disordered rocksalt positive electrodes
Nature Nanotechnology, Published online: 05 October 2026; doi:10.1038/s41565-026-02301-2
Multiscale physicochemical and electrochemical characterizations demonstrate that atomic-scale structural distortion and nanoscale short-range ordering govern the thermodynamic and kinetic components of potential hysteresis in Li||DRX cells.Telemedicine in surgical and anesthetic care in urban and rural settings across time: a scoping review
npj Digital Medicine, Published online: 05 October 2026; doi:10.1038/s41746-026-03340-8
Telemedicine in surgical and anesthetic care in urban and rural settings across time: a scoping reviewStandardized pre-consultation by a large language model agent vs ophthalmology residents: a randomized clinical trial
npj Digital Medicine, Published online: 05 October 2026; doi:10.1038/s41746-026-03232-x
Standardized pre-consultation by a large language model agent vs ophthalmology residents: a randomized clinical trialKDM4A drives TGCT metastasis by inducing focal adhesion disassembly via STAT1-mediated <i>CCL3</i> transcriptional activation
Oncogene, Published online: 04 October 2026; doi:10.1038/s41388-026-04002-5
KDM4A drives TGCT metastasis by inducing focal adhesion disassembly via STAT1-mediated CCL3 transcriptional activationMinimal residual disease combined with radiological tumor volume as a tool for identification of resected NSCLC patients at high risk of recurrence
J Liq Biopsy. 2026 Sep 18;14:100501. doi: 10.1016/j.jlb.2026.100501. eCollection 2026 Dec.
ABSTRACT
INTRODUCTION: Circulating tumor DNA (ctDNA) is a valuable tool for assessing minimal residual disease (MRD) and predicting recurrence in resected non-small cell lung cancer (NSCLC) patients. Combining ctDNA-detection with radiological tumor volume may improve risk stratification.
METHODS: Patients with stage I-III resectable NSCLC were prospectively enrolled in the RESIDUAL study. Plasma samples were collected before surgery (T0), at landmark (10 days after surgery), during surveillance (T2, 20 days, T3, 1 months after surgery and every 3 months for the first year and then at the end of the second year after surgery), and at relapse. Samples were analyzed using Guardant Reveal, a tissue-free methylation-based ctDNA assay. Receiver operating characteristic analysis associated T1 ctDNA status with tumor volume; volume thresholds were calculated via Youden's J, and Cox regression analysis was performed.
RESULTS: Forty-eight patients were enrolled (median age 72 years; 64.6% male). Most had stage I disease (54.2%) and adenocarcinoma histology (79.2%). Median follow-up was 41.8 months, and 19 patients (39.6%) relapsed. Overall ctDNA detection rate was 15.2% across all timepoints. Pre-surgical ctDNA detection was higher in squamous histology and stage II-III disease and was associated with worse disease-free survival (DFS; p = 0.022). Landmark MRD detection was also associated with worse DFS (p = 0.024). Serial surveillance sampling anticipated radiologic recurrence by a median of 2.6 months (range 2.0-7.5). Patients with tumor volume >26,378 mm3 had a significantly higher relapse risk (p < 0.001).
CONCLUSIONS: MRD detection in NSCLC resected patients predicts relapse and poor outcome; integrating ctDNA with tumor volume enhances identification of high-risk patients.
PMID:42828040 | PMC:PMC13631347 | DOI:10.1016/j.jlb.2026.100501
Multi-omics-driven personalized management of advanced HCC
Cell Rep Med. 2026 Oct 2:103085. doi: 10.1016/j.xcrm.2026.103085. Online ahead of print.
ABSTRACT
Hepatocellular carcinoma (HCC) management is challenging due to its complex tumor microenvironment and poor treatment responses. Here, using tumor specimens from a prospective clinical trial of combined transarterial chemoembolization (TACE) with immune checkpoint blockade (ICB), we perform exhaustive multi-omics analysis including spatial proteomics and transcriptomics, single-cell RNA sequencing, and bulk transcriptomics. These analyses reveal that treatment response is associated with enrichment of anti-tumor T cell regions that are regulated by cGAS-STING activation within immune-suppressive epithelial cells. Conversely, fibrotic processes impede these pro-response processes. Based on these insights, we test triple combination therapy consisting of cGAS activation, immune checkpoint blockade, and anti-fibrosis strategies, which shows improved efficacy over dual therapy. To identify patients who would benefit, we construct a predictive model using a group sparse learning algorithm. Our findings provide a blueprint for crafting personalized HCC therapies using next-generation biomarkers.
PMID:42826719 | DOI:10.1016/j.xcrm.2026.103085
Urine cell-free RNA for bladder cancer detection and treatment response prediction
Nat Med. 2026 Oct 2. doi: 10.1038/s41591-026-04673-3. Online ahead of print.
ABSTRACT
Urine biomarkers promise to improve noninvasive detection and molecular characterization of genitourinary malignancies. Here we describe urine random priming and affinity capture of cell-free RNA (cfRNA) fragments for enrichment analysis by sequencing (uRARE-seq), a liquid biopsy method for urine cfRNA profiling, and apply it to 683 urine samples from patients with cancer and controls. Urine cfRNA contained transcripts from genitourinary tissues and, in patients with prostate, kidney or bladder cancer, tumor-derived transcripts. uRARE-seq demonstrated 95% sensitivity at 90% specificity for detecting localized bladder cancer. The method outperformed urine tumor DNA analysis and was unaffected by the presence of field-effect mutations. Urine cfRNA analysis also sensitively detected minimal residual disease and distinguished complete molecular responses after surgery from those after intravesical Bacillus Calmette-Guérin (BCG). Pretreatment urine from complete responders to BCG was enriched for T cell and other immune signatures, suggesting a preexisting antitumor immune response, whereas nonresponders showed higher expression of proliferation-related genes. In pretreatment urine from 114 patients, this biological difference enabled development of a biomarker predicting likelihood of response to BCG versus chemotherapy (area under the curve 0.93) that was strongly associated with risk of recurrence. Urine cfRNA analysis is therefore a promising biomarker approach for bladder cancer and potentially other urologic malignancies, although prospective studies are needed to assess its clinical utility.
PMID:42827132 | DOI:10.1038/s41591-026-04673-3
Liquid biopsy in head and neck tumors: novel approaches and clinical applications
Clin Chim Acta. 2026 Oct 2;594:122871. doi: 10.1016/j.cca.2026.122871. Online ahead of print.
ABSTRACT
Head and neck cancers (HNCs) represent one of the most prevalent and lethal types of cancer, accounting for 4.7% of annual cancer new cases and 4.9% of cancer-related mortalities. These high prevalence and mortality rates have positioned HNCs as a global health issue. Despite advances in disease treatment methods, the prognosis of patients with advanced or recurrent diseases remains poor. The difficulty of early-stage diagnosis of HNCs is one of the primary contributors to this reduced long-term survival. Currently available diagnostic and disease-monitoring tools, such as tissue biopsy and imaging techniques, are associated with several limitations, including invasiveness, limited repeatability, and limited sensitivity for detecting minimal residual disease (MRD) and microscopic metastases. In recent years, liquid biopsy has emerged as a promising approach, enabling minimally invasive detection of tumor-related biomarkers in body fluids. This review aims to provide a comprehensive overview of the progress and pitfalls of liquid biopsy in the context of HNCs. In this regard, we discuss the principles of liquid biopsy, applicable biomarker types, sample sources, and advanced detection methods. Furthermore, the current status of liquid biopsy in clinical trials of HNCs and the challenges of its clinical translation are also comprehensively explored.
PMID:42826825 | DOI:10.1016/j.cca.2026.122871
Minimal residual disease and relapse surveillance in osteosarcoma: an action-linked framework integrating liquid biopsy and imaging biomarkers
J Bone Oncol. 2026 Sep 16;61:100803. doi: 10.1016/j.jbo.2026.100803. eCollection 2026 Dec.
ABSTRACT
Osteosarcoma relapse surveillance remains dominated by scheduled imaging because salvage treatment depends on anatomical confirmation of pulmonary, local or extrapulmonary recurrence. However, radiological recurrence may occur after a biologically active phase in which residual viable disease or micrometastatic progression is already present but not yet localizable. This clinical-translational review reframes postoperative osteosarcoma surveillance as an action-linked decision workflow rather than a comparison of isolated biomarker technologies. Current evidence suggests that tumor-informed circulating tumor DNA (ctDNA) sequencing provides the strongest osteosarcoma-specific minimal residual disease (MRD) signal, with postoperative positivity associated with inferior event-free survival and, in selected patients, molecular detection preceding imaging-confirmed relapse or progression. Cell-free DNA methylation may offer a mutation-independent adjunct, whereas circulating tumor cells, extracellular vesicles and circulating microRNAs remain exploratory signals without validated postoperative surveillance actions. Chest computed tomography (CT) and local magnetic resonance imaging (MRI) remain indispensable for disease localization and treatment planning, while diffusion-weighted imaging, dynamic contrast-enhanced MRI and radiomics currently provide mainly local viability or risk-enrichment information rather than proven surveillance-intervention evidence. The near-term role of integrated biomarkers is therefore not to replace guideline-based imaging, but to define protocolized pathways for molecular-positive/imaging-negative, imaging-positive/molecular-negative, concordant high-risk and concordant low-risk states. Future studies should test whether biomarker-triggered reassessment improves clinically meaningful outcomes, including resectability, second complete remission, clinical trial access, patient burden and survival, rather than simply documenting recurrence earlier.
PMID:42824543 | PMC:PMC13628598 | DOI:10.1016/j.jbo.2026.100803