Results 191 to 200 of about 612,065 (387)
Virus Enhanced Microrobots for Biofilm Eradication
Biofilms resist antimicrobials across medicine, industry, and environments. We present virus‐conjugated microrobots synthesized hydrothermally and magnetically actuated. Their motion and viral specificity enable targeted binding, penetration, and delivery, outperforming bare microrobots.
Jyoti +3 more
wiley +1 more source
Rabies Immunization Status of Dogs, Beijing, China
Chao Wang +11 more
doaj +1 more source
Quantifying Adenoviral Titers by Spectrophotometry [PDF]
S.J. O’Carroll +4 more
openaire +3 more sources
Carbon Quantum Dots Assisted Virus Tracking: From Skin to Brain
A novel carbon quantum dots‐dissolvable microneedle, CQDs‐dMN system, enables painless delivery and real‐time tracking of HSV‐1. The HSV‐1 is labeled with fluorescent CQDs and delivered to the skin dermis, minimizing damage compared to traditional methods.
Yaxiu Feng +11 more
wiley +1 more source
Biocompatible Ink Optimization Enables Functional Volumetric Bioprinting With Xolography
Xolography's reliance on weak‐base co‐initiators introduces unique biochemical constraints. By dissecting the effects of extracellular pH, osmolality, and lysosomotropic stress, this study defines the biochemical design space that enables fully biocompatible, cell‐laden volumetric printing. Abstract Xolography is a novel linear volumetric manufacturing
Erik Brauer +17 more
wiley +1 more source
This review summarizes recent advances in metal‐based nanomaterials (MBNs) as multifunctional platforms for next‐generation diagnostics and nanodynamic therapies (NDTs), highlighting their structural tunability, diverse therapeutic modalities, and broad biomedical applications in oncology and infectious disease control.
Qihang Ding +11 more
wiley +1 more source
The impact of repeated freeze-thaw cycles on antiphospholipid antibody titer [PDF]
Devreese, Katrien, Maelegheer, Karel
core +1 more source
Printed 2.5D‐Microstructures with Material‐Specific Functionalization for Tunable Biosensing
The 2.5D‐MiSENSE platform integrates a microstructured biosensor with an in‐line milking pipeline to enable real‐time detection of mastitis biomarkers during active milk flow. The system uses a 2.5D microengineered surface and patterned electrodes to enhance milk–sensor interaction.
Matin Ataei Kachouei +2 more
wiley +1 more source

