Browse Articles

Discover research articles across all indexed journals

Translation-dependent degradation of cas12 mRNA triggered by an anti-CRISPR

Nature Nicole D. Marino, Alexander Talaie, Milan Gerovac et al. Jun 18, 2026 DOI: 10.1038/s41586-026-10440-8

People are turning to AI chatbots to plug gaps in health information

Nature Moritz Gerstung Jun 18, 2026 DOI: 10.1038/d41586-026-01737-9

Seven steps for critically analysing research papers

Nature Jacques Cornwell Jun 18, 2026 DOI: 10.1038/d41586-026-01209-0

Vaccination generates broadly cross-neutralizing antibodies to the HIV Env apex

Nature Javier Guenaga, Monika Ádori, Shridhar Bale et al. Jun 18, 2026 DOI: 10.1038/s41586-026-10429-3

Abstract As a chronically replicating virus, HIV has evolved extreme sequence variability and effective shielding of functionally constrained spike protein determinants by host-derived glycans 1 . Broadly neutralizing antibodies, although rare, can be isolated from people living with HIV, revealing conserved envelope glycoprotein (Env) sites as key targets for vaccine development 2–4 . One such target is the apex of the Env spike. Here we identify a vaccination strategy using heterologous HIV Env trimers covalently coupled to liposomes for multivalent display that resulted in the elicitation of cross-neutralizing HIV serum antibody responses in all trimer-liposome-immunized non-human primates. Critically, we isolated monoclonal antibodies from multiple macaques that cross-neutralize divergent HIV clinical isolates. High-resolution cryogenic electron microscopy structural analyses of monoclonal antibodies from four different macaques demonstrate that they target the Env trimer apex in a manner highly similar to that of the human-infection-elicited, apex-directed broadly neutralizing antibody PG9, representing a substantial advance in HIV vaccine development.

Let’s talk about biomedical research kits

Nature Rao M. Uppu Jun 18, 2026 DOI: 10.1038/d41586-026-00799-z

World-first: therapy to make cells young again trialled in a person

Nature Heidi Ledford Jun 18, 2026 DOI: 10.1038/d41586-026-01836-7

Engineering a dual-antigen mRNA vaccine to restore immune control in chronic hepatitis B

Nature Communications Baowen Zhang, Yiyuan Wang, Da Chen et al. Jun 18, 2026 DOI: 10.1038/s41467-026-74006-y

Ocean ‘cold blob’ is evidence for a troubling climate trend

Nature Jun 18, 2026 DOI: 10.1038/d41586-026-01826-9

Author Correction: Forecasting the dissemination of antibiotic resistance genes across bacterial genomes

Nature Communications Morten O. A. Sommer, Christian Munck Jun 18, 2026 DOI: 10.1038/s41467-026-74295-3

A meta-analysis of infant gut viromes reveals global patterns in bacteriophage community assembly and functional capacity over the first three years of life

Nature Communications Michael Shamash, Corinne F. Maurice Jun 18, 2026 DOI: 10.1038/s41467-026-74609-5

Abstract Assembly of the gut microbiota in infancy is an important health determinant, yet the viral component, the virome, remains poorly described. Here, we conduct a meta-analysis of 12 infant cohorts across 8 countries to model gut virome development over the first three years of life. Our results revealed distinct diversity patterns, where viral richness increased significantly over the first eight months of life alongside a loss of community evenness. We define virome developmental velocity, the rate of change between sequential samples, which significantly decreased over time. This was mirrored by community-wide convergence, as infant viromes became more similar with age. Functionally, the transition to a stable state involved a significant decrease in extracellular temperate phages and shifts in phage-encoded auxiliary metabolic genes, which can modulate host metabolism. Our work provides a baseline characterization of gut virome development, marked by a conserved successional trajectory, providing a framework to identify disease-associated perturbations.

Targeting the METTL1/m7G axis as a therapeutic strategy in myeloid leukemia

Blood Lili Ren, Honghai Zhang, Olga Bobileva et al. Jun 18, 2026 DOI: 10.1182/blood.2025030336

Abstract N7-methylguanosine (m7G), a prevalent modification in transfer RNAs (tRNAs), is primarily catalyzed by the methyltransferase METTL1. Although growing evidence supports a role for METTL1 in various tumors, its therapeutic potential and precise function in leukemia stem cell (LSC) homeostasis remain largely unexplored. Here, we identify METTL1 as a key regulator of LSC self-renewal and homing within bone marrow (BM) microenvironment through catalyzing m7G formation on a specific tRNA, tRNAPheGAA, thereby promoting leukemogenesis. Mechanistically, METTL1 loss significantly reduces m7G abundance and steady-state levels of tRNAPheGAA, leading to translation suppression and degradation of transcripts enriched with tRNAPheGAA-related codons, such as hematopoietic cell kinase (HCK). Decreased HCK expression disrupts CXCR4 signaling, impairing LSC self-renewal and BM homing. Therapeutically, we characterized a small-molecule METTL1 inhibitor (M1i; NSC137443), through high-throughput screening. Pharmacological inhibition of METTL1 demonstrated potent antitumor efficacy by reducing tRNA m7G levels and disrupting the tRNAPheGAA/HCK/CXCR4 cascade. Notably, targeting METTL1 significantly reduces LSC frequency, delays leukemogenesis, and prolongs survival in multiple acute myeloid leukemia models. Together, our findings establish a previously unrecognized role for METTL1 and its target tRNAPheGAA in LSC homeostasis and provide compelling proof-of-concept evidence that METTL1 is a druggable epitranscriptomic target for antileukemia therapy.

Early neonatal mortality and its associated factors at Doctor Bogalech Gebre Memorial General Hospital, Central Ethiopia: A cross-sectional study

Scientific Reports Desalegn Berhanu Katiso, Tariku Laelago Ersado, Mesfin Menza Jaldo et al. Jun 18, 2026 DOI: 10.1038/s41598-026-57366-9

Attaining 19.12% solar cell efficiency for non-fused ring electron acceptors via multi-dimensional charge transport

Nature Communications Miao Li, Qianqian Zhu, Nan Wei et al. Jun 18, 2026 DOI: 10.1038/s41467-026-74509-8

Venetoclax combinations in untreated CLL: 5-year results and patient-reported outcomes analysis of the CLL13/GAIA trial

Blood Moritz Fürstenau, Carsten U. Niemann, Sandra Robrecht et al. Jun 18, 2026 DOI: 10.1182/blood.2025032160

Abstract Fixed-duration venetoclax combinations have become a standard first-line treatment in chronic lymphocytic leukemia (CLL). The phase 3 CLL13/GAIA trial assesses 3 time-limited combinations: venetoclax-rituximab (RV), venetoclax-obinutuzumab (GV), and venetoclax-obinutuzumab-ibrutinib (GIV), in comparison with chemoimmunotherapy (CIT). Fit patients with CLL without TP53 aberrations were randomized between 6 cycles of CIT (fludarabine-cyclophosphamide-rituximab [FCR] or bendamustine-rituximab [BR]) or 12 cycles of RV, GV, or GIV (GIV: ibrutinib continuation until cycle 36 if measurable residual disease at months 12/15). In total, 926 patients were randomized (GIV: 231, GV: 229, RV: 237, and CIT: 229 [FCR: 150, BR: 79]). With a median observation time of 63.8 months, 5-year progression-free survival (PFS) rates were 81.3% (GIV), 69.8% (GV), 57.4% (RV), and 50.7% (CIT). PFS was superior for GV and GIV compared with CIT and RV (P< .001 in each case). In addition, GIV showed longer PFS than GV (P = .0046). Venetoclax-based re-treatment after venetoclax-based first-line regimens was efficacious, with 2-year treatment-free survival >80% from second-line treatment. No differences in overall survival were observed between treatment arms (5-year rates: GIV, 94.3%; GV, 93.6%; RV, 94.7%; and CIT, 90.7%). The incidence rates of severe infections were highest with CIT, whereas cardiac events were most frequent with GIV. Compared with patients treated with CIT, those treated with GV or RV reported rapid and significantly greater quality-of-life (QoL) improvements. In the GIV arm, clinically relevant QoL improvements occurred later (month 15, after the end of treatment in most patients) than with GV/RV, likely due to a higher treatment-related symptom burden. This trial was registered at www.clinicaltrials.gov as NCT02950051.

Integrated application of humic acid, urea, and microalgal biostimulant enhances drought tolerance in pea (Pisum sativum L.)

Scientific Reports Ahmed Alsawaf, Shakir Mahmood Saied, Omar Ahmed Fathi Al-Rubaie et al. Jun 18, 2026 DOI: 10.1038/s41598-026-58542-7

Electron-ion equilibration in superheated gold

Nature Communications Travis D. Griffin, Dirk O. Gericke, Daniel Haden et al. Jun 18, 2026 DOI: 10.1038/s41467-026-74346-9

Abstract Electron-ion equilibration dynamics in samples driven into superheated states with multi-eV electron temperatures represent a fundamental process in nonequilibrium physics. A clear picture of the evolving ion temperature is essential for understanding the strength of the electron-ion coupling. However, direct, model-independent measurements of the ion temperature in laser-irradiated samples have remained experimentally elusive. Using inelastic X-ray scattering with meV-resolution in gold samples, the ion response to ultrafast heating by the hot electrons can be resolved, quantifying the electron-ion equilibration dynamics. We report measurements revealing a strongly enhanced energy transfer rate compared to that in weakly excited gold. Moreover, we obtain a quasi-constant electron-ion coupling at the highly elevated electron temperatures. These results place new constraints on electron-ion energy transfer in warm dense matter and establish a path toward quantitative benchmarking of models for nonequilibrium dynamics.

Pathogenic role of serpin B3-positive neutrophils in reinforcing thrombus stiffening during ischemic stroke

Blood Jiankun Zang, Aijun Lu, Bing Yang et al. Jun 18, 2026 DOI: 10.1182/blood.2025029516

Abstract The contribution of immune cells to thrombus architecture and mechanical properties in acute ischemic stroke (AIS) remains poorly understood. Using 3-dimensional imaging and multiplex staining, we mapped immune cells in human stroke thrombi and identified neutrophils as the dominant population. Analysis of 19 thrombi confirmed their positive correlation with collagen, increased stiffness, and poorer clinical outcomes. To preserve spatial context, we developed a laser capture–based proteomic workflow and analyzed thrombus neutrophils from 34 patients with AIS stratified by 90-day outcomes, followed by validation in an independent cohort of 22 patients. Proteomic analysis revealed serpin B3 as a neutrophil-enriched protein strongly correlated with poor prognosis. In murine models of ferric chloride–induced carotid artery thrombosis and middle cerebral artery occlusion, experiments using wild-type, neutrophil-depleted, and Serpinb3a knockout mice demonstrated that neutrophil-derived serpin B3 promotes early thrombus formation, enhances collagen deposition, and contributes to progressive thrombus stiffening. Mechanistically, serpin B3 secreted by neutrophils amplifies thrombus stiffness through upregulation of transforming growth factor β1, neutrophil extracellular traps, and COL1A1. Targeted Serpinb3a knockdown delayed vascular occlusion, improved thrombolysis efficiency, and resulted in better neurological recovery. Collectively, these findings identify a neutrophil-driven mechanism underlying thrombus stiffening and establish SERPINB3 as both a prognostic biomarker and a promising therapeutic target in AIS. This project has been registered with the Chinese Clinical Trial Registration Platform (https://www.chictr.org.cn/index.html) and has successfully passed the review process (registration number: ChiCTR2300077911).

Design and simulation of a hybrid PLC–AI automotive control module for adaptive lighting and honking

Scientific Reports Yogesh Patil, Rachana Patil, Rucha Shinde et al. Jun 18, 2026 DOI: 10.1038/s41598-026-58882-4

Why are so many young people getting cancer? What researchers do and don’t know

Nature Heidi Ledford Jun 18, 2026 DOI: 10.1038/d41586-026-01780-6

Sub-femtosecond figure-of-merit millimeter-wave switches via solution-processed MoS2 for 6G radio-frequency front-ends

Nature Communications Changwoo Pyo, Sungmoon Park, Seungchan Lee et al. Jun 18, 2026 DOI: 10.1038/s41467-026-74534-7