Generation of a chemical gradient across an array of 256 cell cultures in a single chip
文献情報
Himali Somaweera, Akif Ibragimov
A microfluidic diffusion diluter to create stable chemical gradients across an array of cell cultures was demonstrated. The device enabled concentration based studies to be conducted at 256 different concentrations across individual, low shear cell cultures. A gradient of staurosporine on cells stained with Mitotracker Deep Red (MTDR) showed a concentration-based effect on cell apoptosis across the cell culture array.
おすすめジャーナル

Chemistry of Heterocyclic Compounds

Journal of the American Chemical Society

Journal of the Chinese Chemical Society

Chemistry of Natural Compounds

Australian Journal of Chemistry

Accounts of Chemical Research

Biopolymers

Canadian Metallurgical Quarterly

Advances in Colloid and Interface Science

Chemical & Pharmaceutical Bulletin
関連文献
IF 6.367
Water-soluble pH-switchable cobalt complexes for aqueous symmetric redox flow batteriesIF 6.222
Ultra-thin NiFeSe nanosheets as a highly efficient bifunctional electrocatalyst for overall water splittingIF 6.367
Insights into the mechanism of photosynthetic H2 evolution catalyzed by a heptacoordinate cobalt complexIF 6.367
An elemental S/P photocatalyst for hydrogen evolution from water under visible to near-infrared light irradiationIF 6.222
Triboelectric nanogenerators for a macro-scale blue energy harvesting and self-powered marine environmental monitoring systemIF 6.367
Mechanism of lignocellulose modification and enzyme disadsorption for complete biomass saccharification to maximize bioethanol yield in rapeseed stalksIF 6.367
Chemoproteomics-based target profiling of sinomenine reveals multiple protein regulators of inflammationIF 6.222
Catalytic depolymerization of Kraft lignin to produce liquid fuels via Ni–Sn metal oxide catalystsIF 6.367
Strong circularly polarized luminescence of an octahedral chromium(iii) complexIF 6.222
掲載誌
Analyst

Analyst publishes analytical and bioanalytical research that reports premier fundamental discoveries and inventions, and the applications of those discoveries, unconfined by traditional discipline barriers.