54 Results for "

cell-permeable probe

" in MedChemExpress (MCE) Product Catalog:
Products (54)

54 Results for "cell-permeable probe" in MCE Product Catalog:

Cat. No.: HY-L063
282 compounds

Chemical probes are simply reagents with high potency, selectivity and cell-permeability which play important roles in both fundamental and applied biological research. In their most common application, chemical probes can establish the tractability of a specific target. They are used to interrogate the relationship between a target and its phenotype (biological tractability) as well as an ability to modulate that phenotype using a small molecule. Otherwise, chemical probes also have had a major impact in enabling and accelerating discoveries along the path to pioneer medicines. They have helped to improve the understanding of targets and pathways and have created opportunities for proprietary drug discovery efforts to an extent that would not have been possible otherwise.

MCE provides a unique collection of 282 chemical probes with high potency (at least 100 nM potency), selectivity (at least 10-fold selectivity against any other target) and cell-permeability (at least 10 μM potency). MCE Chemical probe library is a useful tool for target identification and mechanism research.

Cat. No.: HY-111457AR
CAS No.: 675103-36-3
Research Areas:  

Inflammation/Immunology

BAY-678 (Standard) is the analytical standard of BAY-678 (HY-111457A). This product is intended for research and analytical applications. BAY-678 is an orally bioavailable, highly potent, selective and cell-permeable inhibitor of human neutrophil elastase (HNE), with an IC50 of 20 nM. BAY-678 is also nominated as a chemical probe to the public via the Structural Genomics Consortium (SGC).
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Cat. No.: HY-D3200
CAS No.: 3112200-59-3
Research Areas:  

Others

Dns-LLC is a cell-permeable Cu +-selective fluorescent probe that forms a 1:1 complex with Cu +. The thiol group of Dns-LLC plays a key binding role, while the sulfonamide and amide groups jointly contribute to the stabilization of the complex. Upon binding to Cu + in aqueous buffer solutions, Dns-LLC generates a turn-on fluorescence response, which can be used for the detection of Cu + in the Golgi apparatus .
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Cat. No.: HY-100352R
CAS No.: 1883429-22-8
Research Areas:  

Cancer

BI-9564 (Standard) is the analytical standard of BI-9564 (HY-100352). This product is intended for research and analytical applications. BI-9564, a chemical probe, is a potent, selective and cell-permeable BRD9/BRD7 bromodomains inhibitor, with IC50s of 75 nM and 3.4 μM and Kds of 14 nM and 239 nM, respectively. BI-9564 has an IC50 of > 100 μM for BET family .
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Cat. No.: HY-111457R
CAS No.: 2117404-84-7
Research Areas:  

Inflammation/Immunology

BAY-677 (Standard) is the analytical standard of BAY-677 (HY-111457). This product is intended for research and analytical applications. BAY-677 is an inactive control for BAY-678. BAY-678 is an orally bioavailable, highly potent, selective and cell-permeable inhibitor of human neutrophil elastase (HNE), with an IC50 of 20 nM . BAY-678 is also nominated as a chemical probe to the public via the Structural Genomics Consortium (SGC) .
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Cat. No.: HY-D3163
Target:  

Fluorescent Dye

Research Areas:  

Others

Endo-pH is a cell-permeable, pH-responsive fluorescent probe based on BODIPY, with a pKa of 5.08. When pH decreases from 7.32 to 4.97, Endo-pH undergoes protonation under acidic conditions, resulting in a 79-fold increase in fluorescence intensity at 786 nm. The detection wavelengths of its protonated form are Ex/Em=688/786 nm, while the absorption wavelength of its non-protonated form is 745 nm. Endo-pH can be used for staining late endosomes in live cells and determining the fusion time of late endosomes and lysosomes .
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Cat. No.: HY-DY1091
CAS No.: 1461-15-0
Synonyms: Fluorexon (solution)
Calcein (solution) (Fluorexon (solution)) is a fluorescent dye and self-quenching probe, used as an indicator of lipid vesicle leakage, and also as a complexometric indicator for titration of calcium ions with EDTA, and for fluorometric determination of calcium. Calcein cannot directly cross the intact cell membrane of a living cell, unlike Calcein-AM (HY-D0041) which is cell-permeable. Calcein can also be used as a model drug for evaluating efficiency and bioavailability of drug delivery systems .
Solvent and concentration: DMSO: 2 mM
The 1 mL volume is defined as the base specification. All larger sizes correspond to incremental volumes of this base.
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Cat. No.: HY-W783351
CAS No.: 1416808-87-1
Synonyms: Coppersensor 790 acetoxymethyl ester
Target:  

Fluorescent Dye

Research Areas:  

Metabolic Disease

CS790AM (Coppersensor 790 acetoxymethyl ester) is a cell-permeable, Cu +-targeted near-infrared fluorescent probe (λabs=760 nm, λem=790 nm) applicable to live cells. CS790AM can cross lipophilic cell membranes, and is converted into negatively charged CS790 under the action of intracellular esterases to be retained, thus enabling highly sensitive, reversible "turn-on" detection of labile Cu + pools in live cells and mice. CS790AM possesses excellent biocompatibility and selectivity, avoids interference from other metal ions, shows no obvious toxicity, and can be rapidly cleared. CS790AM allows long-term longitudinal monitoring of individual mice, visualizes copper levels in internal organs and isolated livers, and effectively evaluates abnormal copper accumulation in Wilson's disease models (Atp7b -/-) as well as dynamic changes after chelator treatment. CS790AM can be used for research on Wilson's disease and related copper metabolic disorders .
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Cat. No.: HY-100335R
CAS No.: 1022899-36-0
Research Areas:  

Cancer

PCI-33380 (Standard) is the analytical standard of PCI-33380 (HY-100335). This product is intended for research and analytical applications. PCI-33380 is a fluorescent probe ( (Ex=532 nm, Em=555 nm). PCI-33380 consists of a (BTK) inhibitor PCI-32765 (HY-10997) attaching with a Bodipy-FL fluorophore via a piperazine linker. PCI-33380 binds predominantly to Btk in B cell lysates with cell permeable activity. PCI-33380 can be used for imaging live cancer cells such as non-Hodgkin lymphoma research
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Cat. No.: HY-D3164
CAS No.: 1380316-56-2
Target:  

Fluorescent Dye

Research Areas:  

Others

TPE-Cy is a fluorescent probe with both aggregation-induced emission (AIE) property and pH-dependent luminescent behavior. TPE-Cy exhibits significant luminescent differences under different acidic and alkaline conditions: it shows moderate to strong red emission with linear variation with pH in acidic environments and within the pH range of 5-7, weak or even no emission within the pH range of 7-10, and switches to blue emission under alkaline conditions. TPE-Cy possesses excellent cell permeability and biocompatibility, enabling accurate ratiometric pH sensing and imaging monitoring in living cells via confocal microscopy, ratiometric analysis and flow cytometry .
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Cat. No.: HY-D3094
CAS No.: 2687198-42-9
Target:  

Fluorescent Dye

Research Areas:  

Others

TPE-SQ5 is a ratiometric Fluorescent probe for hypochlorite (ClO -) detection with a limit of detection of 5.6 nM. TPE-SQ5 exhibits high selectivity and high sensitivity towards ClO -. TPE-SQ5 can be oxidized by ClO - to form an epoxide, which quenches its deep red fluorescence; subsequently, the epoxide decomposes into a hemicyanine and a sulfonic acid-substituted oxindole, producing blue-green fluorescence to achieve a ratiometric response. TPE-SQ5 can form nanoparticles with Pluronic F-127 via the nanoprecipitation method, and these nanoparticles possess cell permeability. TPE-SQ5 has unique Ex/Em spectra in different solvents and nanoparticle forms, with emission peaks at 643 nm (380 nm excitation, 95% H2O/THF), 631 nm (564 nm excitation, DMSO), 652 nm (536 nm excitation, THF) and 630 nm (524 nm excitation, nanoparticles); the Ex/Em settings used for cell imaging are 488/550-650 nm (red channel) and 405/450-550 nm (green channel) .
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Cat. No.: HY-L918
317 compounds

Targeted Protein Degradation (TPD) is a novel and promising approach to drug development. It shows great potential for targeting proteins traditionally considered "undruggable" due to the lack of enzymatic function and absence of binding sites by tagging them for degradation or recruiting natural degradation mechanisms.

Molecular glues are a type of small-molecule degraders that primarily induce novel interactions between E3 ubiquitin ligases and target proteins, forming ternary complexes that lead to protein ubiquitination and subsequent proteasomal degradation. Compared with PROTACs, molecular glues generally have lower molecular weights, higher cell permeability, and better drug-like properties. Additionally, the design of molecular glues is relatively simple, without the requirements for complex linkers and ligand optimization. As a result, molecular glues have gradually emerged as a promising therapeutic approach for various diseases.

Multiple types of molecular glues have been reported previously. Analysis of co-crystal complex structures reveals that CRBN-related molecular glues are more versatile. Therefore, MCE researchers select active molecules related to these targets as probes for artificial intelligence (AI) screening.Subsequently, molecular docking technology was used to verify whether the screened molecules retained the key pharmacophore features. Ultimately, we obtained 317 molecular glue analogs, and these compounds serve as powerful tools for the research of molecular glues.

Cat. No.: HY-L036P
6,121 compounds

Small molecule covalent inhibitors, or irreversible inhibitors, are a type of inhibitors that exert their biological functions by irreversibly binding to target through covalent bonds. Compared with non-covalent inhibitors, covalent inhibitors have obvious advantages in bioactivity, such that covalent warheads can target rare residues of a particular target protein, thus leading to the development of highly selective inhibitors and achieving a more complete and continued target occupancy in living systems. In recent years, the distinct strengths of covalent inhibitors in overcoming drug resistance had been recognized. However, toxicity can be a real challenge related to this class of therapeutics due to their potential for off-target reactivity and has led to these drugs being disfavored as a drug class. The drug design and optimization of covalent inhibitors has become a hot spot in drug discovery.

MCE covalent inhibitor library contains 6,121 small molecules including identified covalent inhibitors and other molecules having common covalent reactive groups as warheads, such as acrylamides, activated terminal acetylenes, sulfonyl fluorides/esters, cloracetamides, alkyl halides, epoxides, aziridines, disulfides, etc.

MCE Covalent inhibitor Library plus, with more powerful screening capability, further complement Covalent inhibitor Library (HY-L036) by adding some fragment compounds with covalent warheads.

Cat. No.: HY-L036
1,618 compounds

Small molecule covalent inhibitors, or irreversible inhibitors, are a type of inhibitors that exert their biological functions by irreversibly binding to target through covalent bonds. Compared with non-covalent inhibitors, covalent inhibitors have obvious advantages in bioactivity, such that covalent warheads can target rare residues of a particular target protein, thus leading to the development of highly selective inhibitors and achieving a more complete and continued target occupancy in living systems. In recent years, the distinct strengths of covalent inhibitors in overcoming drug resistance had been recognized. However, toxicity can be a real challenge related to this class of therapeutics due to their potential for off-target reactivity and has led to these drugs being disfavored as a drug class. The drug design and optimization of covalent inhibitors has become a hot spot in drug discovery.

MCE covalent inhibitor library contains 1,618 small molecules including identified covalent inhibitors and other bioactive molecules having common covalent reactive groups as warheads, such as acrylamides, activated terminal acetylenes, Sulfonyl fluorides/esters, cloracetamides, alkyl halides, epoxides, aziridines, disulfides, etc.