6 Results for "

ion recognition

" in MedChemExpress (MCE) Product Catalog:
Products (6)

6 Results for "ion recognition" in MCE Product Catalog:

Cat. No.: HY-158739
CAS No.: 2740257-94-5
Purity:  98.0%
Rhodamine dithenoyl hydrazide (probe 1) possesses excellent recognition and selectivity for Fe 3+ ion. Rhodamine dithenoyl hydrazide exhibits Excitation/Emission maxima of 543/550-700 nm, respectively .
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Cat. No.: HY-D1591
CAS No.: 150173-71-0
BODIPY R6G methyl ester (compound 5′-1) is a BODIPY-like fluorescent dye with good light stability and insensitive to pH value. BODIPY R6G methyl ester shows good photostability, high sensitivity and insensitive to pH value. BODIPY R6G methyl ester can be used in research areas such as photodynamic research, PH probes, ion recognition, photocatalysis, protein labeling, cell imaging, and proteomic analysis .
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Cat. No.: HY-W150770
CAS No.: 1740-57-4
Synonyms: Isophthalic acid diamide
Target:  

Drug Intermediate

Research Areas:  

Others

Isophthalamide (Isophthalic acid diamide) is a widely used chemical scaffold for the design of high-performance fluorescent chemosensors.Isophthalamide, with its inherent hydrogen-bond-donating properties and tunable chelating cavity, enables highly selective recognition and detection of various analytes ranging from inorganic ions to complex organic molecules.Isophthalamide can be incorporated with various fluorophores to develop sensors displaying “turn-on” or “turn-off” signal responses.Isophthalamide-based sensors are thus capable of detecting diverse analytes including metal ions, anions, neutral molecules, pharmaceuticals, and explosives .
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Cat. No.: HY-L011
2,241 compounds

Most of molecules enter or leave cells mainly via membrane transport proteins, which play important roles in several cellular functions, including cell metabolism, ion homeostasis, signal transduction, the recognition process in the immune system, energy transduction, etc. There are three major types of transport proteins, ATP-powered pumps, channel proteins and transporters. Transport proteins such as channels and transporters play important roles in the maintenance of intracellular homeostasis, and mutations in these transport protein genes have been identified in the pathogenesis of a number of hereditary diseases. In the central nervous system, ion channels have been linked to, but not limited to, many diseases such asataxias, paralyses, epilepsies, and deafness. This indicates the roles of ion channels in the initiation and coordination of movement, sensory perception, and encoding and processing of information. Ion channels are a major class of drug targets in drug development.

MCE designs a unique collection of 2,241 smal-molecule modulators that can be used for the research of Ion Channel and Membrane Transporter or high throughput screening (HTS) related drug discovery.

Cat. No.: HY-L150
7,036 compounds

Membrane receptors, also known cell surface receptors or transmembrane receptors, are transmembrane proteins embedded into the plasma membrane which play an essential role in maintaining communication between the internal processes within the cell and various types of extracellular signals. They act in cell signaling by receiving (binding to) extracellular molecules, which are also called ligands. These extracellular molecules include hormones, cytokines, growth factors, neurotransmitters, lipophilic signaling molecules such as prostaglandins, and cell recognition molecules.

There are three kinds of membrane receptors: ion channel-linked receptors, enzyme-linked receptors and G-protein-linked receptors. They play important roles in keeping human normal physiologic processes. GPCRs and ion channels are important drug targets in drug discovery.

MCE provides a unique collection of 7,036 compounds targeting a variety of membrane receptors. MCE Membrane reeptor-targeted Compound Library can be used for membrane receptor-focused screening and drug discovery.

Cat. No.: HY-D3233
Ctrl-BDPS1 is a BODIPY-based control probe that shows no response to copper ions (exhibiting two emission peaks at 575 nm and 708 nm; the maximum excitation wavelength is at 627 nm). Ctrl-BDPS1 has no fluorescent response to Cu + .
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