fluorescence
12 RESULTS
45-1 Ramsey Road, Shirley, NY 11967, USA, Shirley
Tel: 6316197922
Fluorescence assays employ membrane potential dye or FRET-based voltage senor to measure fluorescence changes caused by dye relocation in response to membrane potential depolarization or hyperpolarization following ion channel activation or inhibition. In Acroscell our high throughput ion channel screening team incorporate to design optimize and run ion channel High Throughput Screening programs with a clear focus on ensuring meaningful data and successful outcomes within client-driven timelines.... read more
Tel: 6316197922
Fluorescence assays employ membrane potential dye or FRET-based voltage senor to measure fluorescence changes caused by dye relocation in response to membrane potential depolarization or hyperpolarization following ion channel activation or inhibition. In Acroscell our high throughput ion channel screening team incorporate to design optimize and run ion channel High Throughput Screening programs with a clear focus on ensuring meaningful data and successful outcomes within client-driven timelines.... read more
45-1 Ramsey Road, Shirley, NY 11967, USA, Shirley
Tel: 16316197922
Creative Bioarray is pleased to announce the introduction of custom labeled Fluorescence in situ Hybridization (FISH) Probes for a range of molecular and cytogenetic applications. What sets us apart in custom labeled probe manufacturing is our ability to consistently offer high quality locus-specific probes that can be customized to meet the specific needs of researchers and clinicians alike. Under the custom FISH process appropriate clones are selected and verified using PCR for known markers your probes are manufactured using a large choice of different fluorescent dyes before being fully quality tested prior to dispatch to your lab. This exciting new... read more
Tel: 16316197922
Creative Bioarray is pleased to announce the introduction of custom labeled Fluorescence in situ Hybridization (FISH) Probes for a range of molecular and cytogenetic applications. What sets us apart in custom labeled probe manufacturing is our ability to consistently offer high quality locus-specific probes that can be customized to meet the specific needs of researchers and clinicians alike. Under the custom FISH process appropriate clones are selected and verified using PCR for known markers your probes are manufactured using a large choice of different fluorescent dyes before being fully quality tested prior to dispatch to your lab. This exciting new... read more
NY, NY
Tel: 6316197922
Fluorescence assays employ membrane potential dye or FRET-based voltage senor to measure fluorescence changes caused by dye relocation in response to membrane potential depolarization or hyperpolarization following ion channel activation or inhibition. In Acroscell our high throughput ion channel screening team incorporate to design optimize and run ion channel High Throughput Screening programs with a clear focus on ensuring meaningful data and successful outcomes within client-driven timelines. With a dedicated ion cell biology team on hand Acroscell can rapidly screen compounds against even the most challenging ion channel targets.... read more
Tel: 6316197922
Fluorescence assays employ membrane potential dye or FRET-based voltage senor to measure fluorescence changes caused by dye relocation in response to membrane potential depolarization or hyperpolarization following ion channel activation or inhibition. In Acroscell our high throughput ion channel screening team incorporate to design optimize and run ion channel High Throughput Screening programs with a clear focus on ensuring meaningful data and successful outcomes within client-driven timelines. With a dedicated ion cell biology team on hand Acroscell can rapidly screen compounds against even the most challenging ion channel targets.... read more
NY, NY
Fluorescence–activated cell sorting (FACS) was invented to sort a heterogeneous mixture of cells into different homogenous subpopulations of interest based upon the specific light scattering and fluorescent characteristics of each cell. In a complex cell mixture the different homogenous subpopulations may have different antigenic and other markers on their surface. These markers can be tagged by the means of fluorescent labels which can be detected by laser and light detectors of fluorescence-activated cell sorting. It provides rapid accurate and high throughput cell analysis and has been applied to examine diverse biological processes such as cell cycle cell proliferation cell viability... read more
Fluorescence–activated cell sorting (FACS) was invented to sort a heterogeneous mixture of cells into different homogenous subpopulations of interest based upon the specific light scattering and fluorescent characteristics of each cell. In a complex cell mixture the different homogenous subpopulations may have different antigenic and other markers on their surface. These markers can be tagged by the means of fluorescent labels which can be detected by laser and light detectors of fluorescence-activated cell sorting. It provides rapid accurate and high throughput cell analysis and has been applied to examine diverse biological processes such as cell cycle cell proliferation cell viability... read more
NY, NY
These markers can be tagged by the means of fluorescent labels which can be detected by laser and light detectors of fluorescence-activated cell sorting. It provides rapid accurate and high throughput cell analysis and has been applied to examine diverse biological processes such as cell cycle cell proliferation cell viability cell phenotyping cell signaling micronucleus test intracellular cytokine secretion.... read more
These markers can be tagged by the means of fluorescent labels which can be detected by laser and light detectors of fluorescence-activated cell sorting. It provides rapid accurate and high throughput cell analysis and has been applied to examine diverse biological processes such as cell cycle cell proliferation cell viability cell phenotyping cell signaling micronucleus test intracellular cytokine secretion.... read more
NY, NY
These markers can be tagged by the means of fluorescent labels which can be detected by laser and light detectors of fluorescence-activated cell sorting. It provides rapid accurate and high throughput cell analysis and has been applied to examine diverse biological processes such as cell cycle cell proliferation cell viability cell phenotyping cell signaling micronucleus test intracellular cytokine secretion.... read more
These markers can be tagged by the means of fluorescent labels which can be detected by laser and light detectors of fluorescence-activated cell sorting. It provides rapid accurate and high throughput cell analysis and has been applied to examine diverse biological processes such as cell cycle cell proliferation cell viability cell phenotyping cell signaling micronucleus test intracellular cytokine secretion.... read more
NY, NY
These markers can be tagged by the means of fluorescent labels which can be detected by laser and light detectors of fluorescence-activated cell sorting. It provides rapid accurate and high throughput cell analysis and has been applied to examine diverse biological processes such as cell cycle cell proliferation cell viability cell phenotyping cell signaling micronucleus test intracellular cytokine secretion.... read more
These markers can be tagged by the means of fluorescent labels which can be detected by laser and light detectors of fluorescence-activated cell sorting. It provides rapid accurate and high throughput cell analysis and has been applied to examine diverse biological processes such as cell cycle cell proliferation cell viability cell phenotyping cell signaling micronucleus test intracellular cytokine secretion.... read more
NY, NY
These markers can be tagged by the means of fluorescent labels which can be detected by laser and light detectors of fluorescence-activated cell sorting. It provides rapid accurate and high throughput cell analysis and has been applied to examine diverse biological processes such as cell cycle cell proliferation cell viability cell phenotyping cell signaling micronucleus test intracellular cytokine secretion.... read more
These markers can be tagged by the means of fluorescent labels which can be detected by laser and light detectors of fluorescence-activated cell sorting. It provides rapid accurate and high throughput cell analysis and has been applied to examine diverse biological processes such as cell cycle cell proliferation cell viability cell phenotyping cell signaling micronucleus test intracellular cytokine secretion.... read more
45-1 Ramsey Road, Shirley, NY 11967, USA, Shirley
Tel: 6316197922
Profacgen provides specialized transporter panels and customized transporter screening services enabling you to identify novel transporter-targeted compounds. Our transporter panels include FDA transporter screening panel monoamine transporter models and many other cell models. We employ robust transporter uptake and inhibition assays to perform quick and cost-effective screening of new molecular entities (NMEs) for their interactions with transporters and offer you results with good signal-to-background ratio and Z’ scores.... read more
Tel: 6316197922
Profacgen provides specialized transporter panels and customized transporter screening services enabling you to identify novel transporter-targeted compounds. Our transporter panels include FDA transporter screening panel monoamine transporter models and many other cell models. We employ robust transporter uptake and inhibition assays to perform quick and cost-effective screening of new molecular entities (NMEs) for their interactions with transporters and offer you results with good signal-to-background ratio and Z’ scores.... read more
2200 Smithtown Avenue,, Ronkonkoma
Tel: 2017548553
Alfa Chemistry provides various of thermally activated delayed fluorescence (TADF) OLEDs.... read more
Tel: 2017548553
Alfa Chemistry provides various of thermally activated delayed fluorescence (TADF) OLEDs.... read more
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