Blood clot-busting nanocapsules could reduce existing treatment’s side effects
Tested on human blood in the lab, the selective nanocapsules could reduce the side effects of a major blood clot-dissolving drug, which include bleeding on the brain
Tested on human blood in the lab, the selective nanocapsules could reduce the side effects of a major blood clot-dissolving drug, which include bleeding on the brain
No dark room required; fluorescence observation can be performed anywhere.
Safedevelop fingerprint development chambers are designed to safely develop latent fingerprints on porous surfaces using DFO, Ninhydrin, and other chemicals in a controlled environment for optimum effectiveness and safety where moisture, temperature, and development time are critical factors.
Unlock the full potential of the BD FACSymphony™ platform with the flexibility of spectral unmixing or compensation workflows
Almac Xcel™ Array for the profiling of FFPE samples provides the only 3’ gene expression array designed and optimized for use with formalin-fixed, paraffin-embedded (FFPE) tissues.
The company’s most significant advance in chromatography since UPLC aims to accelerate scientific research and development
Join us online, May 17th, to discover the latest developments in the fields of microbiology and infectious disease
Scientists identified 16 genes linked to rheumatoid arthritis, including key immune checkpoints, opening the door to precision treatments and potential cures
Optimized performance in cooled flatbed electrophoresis like 1D SDS PAGE, 2D electrophoresis, IEF.
Discover how Invisible-Light Labs is redefining nanoscale analysis with EMILIE, boosting sensitivity and cutting sampling times for breakthroughs in environmental monitoring, nanotechnology, and beyond
The Next Generation FLUOVIEW for the Next Revolutions in Science
First dose delivered to patients in a multi-center U.S. clinical trial to evaluate novel gamma-delta T cell cancer therapy
The LC-2030C NT provides a simple touch-screen user interface and a workflow that requires no specialist training.
Achieve optimal fluorescence and luminescence in cell culture and microscopic applications with Thermo Scientific™ Nunc™ MicroWell™ 384-Well Optical-Bottom Plates with Polymer or Coverglass Base, featuring a polystyrene black or white upper structure with a polystyrene film at the bottom of the plate.