119 Results for "

CaLL

" in MedChemExpress (MCE) Product Catalog:
Products (119)

119 Results for "CaLL" in MCE Product Catalog:

Cat. No.: HY-13215A
CAS No.: 166518-61-2
Synonyms: CI-1011 sodium; PD-148515 sodium
Target:  

Acyltransferase

Research Areas:  

Cancer

Avasimibe sodium (CI-1011 sodium; PD-148515 sodium) is an orally active acyl coenzyme A-cholesterol acyltransferase (ACAT; also called SOAT)) inhibitor with IC50s of 24 and 9.2 µM for ACAT1 and ACAT2, respectively . Avasimibe sodium can be used for the research of prostate cancer .
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Cat. No.: HY-E71234
Research Areas:  

Others

α-Galactosidase 97B, Bacteroides thetaiotaomicron (EC 3.2.1.22) is a glycoside hydrolase enzyme that hydrolyses the terminal alpha-galactosyl moieties from glycolipids and glycoproteins. It is encoded by the GLA gene. Two recombinant forms of alpha-galactosidase are called agalsidase alfa (INN) and agalsidase beta (INN) .
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Cat. No.: HY-E71247
Research Areas:  

Others

α-Pinene-oxide decyclase (EC 5.5.1.10) belongs to the family of isomerases, specifically the class of intramolecular lyases. The systematic name of this enzyme class is α-pinene-oxide lyase (decyclizing). This enzyme is also called α-pinene oxide lyase. This enzyme participates in limonene and pinene degradation.
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Cat. No.: HY-130562
CAS No.: 2444-65-7
Synonyms: 4-Des-dimethylaminotetracycline; 4-De(dimethylamino)-tc; CMT-1
Target:  

Antibiotic Bacterial

Research Areas:  

Others

DDA-tetracycline is a tetracycline derivative (4-des-dimethylaminotetracycline, also called CMT-1) .DDA-tetracycline is subject to conflicting classification, with one source noting no definitive identity or classification, and specifying the abbreviation 'DDA' may refer to the disk diffusion agar method rather than the reagent itself .
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Cat. No.: HY-P77732
Purity:  ≥ 95%, as determined by Bis-Tris PAGE.
Synonyms: L1CAM; NCAM-L1; Prev. MIC5; CD171; Prev. HSAS1; Antigen Identified By Monoclonal Antibody R1; Prev. HSAS; N-CAM-L1; Prev. MASA; CD171 Antigen; Prev. SPG1; N-CAML1; Prev. S10; HYCX; Neural Cell Adhesion Molecule L1; L1 Cell Adhesion Molecule; CAML1
Species:  
Mouse
Source:  
HEK293
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Cat. No.: HY-L040
1,172 compounds

Diabetes mellitus, usually called diabetes, is a group of metabolic disorders characterized by a high blood sugar level over a prolonged period of time. The most common types are Type I and Type II. Type I diabetes (T1D), also called juvenile onset diabetes mellitus or insulin-dependent diabetes mellitus, is characterized by destruction of the β-cells of the pancreas and insulin is not produced, whereas type II diabetes (T2D), also called non-insulin-dependent diabetes mellitus, is characterized by a progressive impairment of insulin secretion and relative decreased sensitivity of target tissues to the action of this hormone. Type 2 diabetes accounts for the vast majority of all diabetes mellitus. Diabetes of all types can lead to complications in many parts of the body and can increase the overall risk of dying prematurely. Possible complications include kidney failure, leg amputation, vision loss and nerve damage.

The pathogenesis of diabetes is complicated, and development of the safe and effective drugs against diabetes is full of challenge. Increasing studies have confirmed that the pathogenesis of diabetes is related to various signaling pathways, such as insulin signaling pathway, AMPK pathway, PPAR regulation and chromatin modification pathways. These signaling pathways have thus become the major source of the promising novel drug targets to treat metabolic diseases and diabetes.

MCE Anti-diabetic Compound Library owns a unique collection of 1,172 compounds, which mainly target SGLT, PPAR, DPP-4, AMPK, Dipeptidyl Peptidase, Glucagon Receptor, etc. This library is a useful tool for discovery anti-diabetes drugs.

Cat. No.: HY-180961
CAS No.: 2408835-49-2
Research Areas:  

Cancer

His-TERRα is a ERRα PROTAC degrader. His-TERRα uses a single amino acid (His) as the E3 ligand and employs the N-end rule pathway to induce the degradation of the target protein, significantly reducing the molecular size, and thus is called a mini-PROTAC. His-TERRα significantly inhibits the proliferation and migration of MCF7 breast cancer cells. His-TERRα can be used for the study of breast cancer .
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Cat. No.: HY-184648
Gold nanoparticles, also known as gold nanoparticle colloids, are colloidal systems formed by dispersing gold nanoparticles in a solution. Common methods for preparing gold nanoparticle colloids include the sodium citrate reduction of chloroauric acid method, also called the seed growth method or electrochemical synthesis method. The color of gold nanoparticle colloids changes with the size of the gold nanoparticles. Generally, the larger the diameter of the gold nanoparticles, the more the wavelength of light absorbed by the solution shifts towards longer wavelengths, and the particles will exhibit the complementary color of the absorbed light.
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Cat. No.: HY-180962
CAS No.: 3037776-73-8
Target:  

PROTACs Bcr-Abl

Research Areas:  

Cancer

Phe-PEG1-Dasa is a BCR-ABL PROTAC degrader, with its DC50 being 1.56 nM. Phe-PEG1-Dasa uses a single amino acid (Phe) as the E3 ligand and employs the N-end rule pathway to induce the degradation of the target protein, significantly reducing the molecular size, thus being called a mini-PROTAC. Phe-PEG1-Dasa significantly inhibits the proliferation of K562 cells. Phe-PEG1-Dasa can be used for the study of leukemia .
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Cat. No.: HY-E71166
Research Areas:  

Others

1,5-Anhydro-D-fructose reductase (1,5-Anhydro-D-mannitol-forming) (EC 1.1.1.292) belongs to the GFO/IDH/MocA protein family. It can also reduce 1,5-Anhydro-D-fructose-2,3-diketooses and 2-keto aldoses (called ketones), such as D-glucose ketone (D-arabino-hexose-2-ketoose) and 6-deoxy-D-glucose ketone. It cannot reduce common aldoses and ketoses, nor can it reduce non-glucose aldehydes and ketones.
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Cat. No.: HY-L131
984 compounds

Ossification is a tightly regulated process, performed by specialized cells called osteoblasts. Dysregulation of this process may cause inadequate or excessive mineralization of bones or ectopic calcification, all of which have grave consequences for human health.

Osteoblasts play important roles in the process of osteogenesis and prevention of osteonecrosis. Osteoblast formation and bone formation are regulated by hormones, growth factors, cytokines, etc.

MCE offers a unique collection of 984 bone formation compounds with identified and potential inducing osteogenesis activity. MCE bone formation compound library is a useful tool for the study of bone disease drugs and pharmacology.

Cat. No.: HY-L141
2,921 compounds

Drug repurposing (also called drug repositioning, reprofiling, or re‑tasking) offers various advantages over developing an entirely new drug for a given indication, for example, lower risk of failure, less investment, and shorter development timelines. But drug repositioning projects are also subject to several risks, including regulatory and intellectual property issues. So the off-patent drugs are optimal for repositioning because of their immediate availability for clinical studies, with high feasibility and relatively low risk.

MCE carefully prepared a unique collection of 2,921 off-patent drugs, which is a good choice for drug repurposing.

Cat. No.: HY-L026
2,568 compounds

New drug development is a time-consuming and high-cost process. Drug repurposing (also called drug repositioning, reprofiling or re‑tasking) offers various advantages over developing an entirely new drug for a given indication, such as lower risk and less investment. Clinical drugs have confirmed bioactivities, clear mechanisms and high safety that are suitable for drug repurposing.

MCE owns a unique collection of 2,568 clinical compounds that refer to various research areas including anti-cancer, anti-infection, anti-inflammation, nervous disease. Those compounds are of detailed information on clinical development status, research area, targets, etc.

Cat. No.: HY-L117
226 compounds

Calcium channel blockers (CCBs), also called calcium antagonists are compounds that slow the movement of calcium (Ca2+) through calcium channels into the cells of the heart and blood vessel walls. Calcium causes the heart and arteries to squeeze more strongly. By blocking calcium, calcium channel blockers allow blood vessels to relax and open. So calcium channel blockers are usually used to lower blood pressure, relieve chest pain (angina) and control an irregular heartbeat.

MCE supplies a unique collection of 226 calcium channel blockers and antagonists, all of which have the identified inhibitory effect on calcium channel. MCE Calcium Channel Blocker Library is a useful tool for discovery of antihypertensive drugs and cardiovascular disease research.

Cat. No.: HY-L035
5,148 compounds

New drug development is a time-consuming and high-cost process. Drug repurposing (also called drug repositioning, reprofiling or re‑tasking) offers various advantages over developing an entirely new drug for a given indication. First, the risk of failure is lower. Second, the time frame for drug development can be reduced. Third, less investment is needed. Approved and clinical drugs, especially after phase I drugs, have identified bioactivities, good pharmacokinetic characteristics and safety which are suitable for drug repurposing.

MCE Drug Repurposing Compound Library contains 5,148 approved drugs and passed phase Ⅰclinical drugs, which have been completed extensive preclinical and clinical studies and have well-characterized bioactivities, safety and bioavailability properties.

Cat. No.: HY-L022M
3,236 compounds

New drug development is a time-consuming and high-cost process. Drug repurposing (also called drug repositioning, reprofiling or re‑tasking) offers various advantages over developing an entirely new drug for a given indication. First, the risk of failure is lower. Second, the time frame for drug development can be reduced. Third, less investment is needed. Approved drugs have identified bioactivities, good pharmacokinetic characteristics and safety which are suitable for drug repurposing.

MCE owns a unique collection of 3,236 approved compounds which have been completed extensive preclinical and clinical studies and have well-characterized bioactivities, safety and bioavailability properties. The package of this library is 96-well microplate with peelable foil seal, which makes the screening process easier and faster.

Cat. No.: HY-L147
956 compounds

A protease (also called a peptidase, proteinase, or proteolytic enzyme) is an enzyme that catalyzes proteolysis, breaking down proteins into smaller polypeptides or single amino acids, and spurring the formation of new protein products. Proteases play important roles in regulating multiple biological processes in all living organisms, such as regulating the fate, localization, and activity of many proteins, modulating protein-protein interactions, creating new bioactive molecules, contributing to the processing of cellular information, and generating, transducing, and amplifying molecular signals.

Proteases are important targets in drug discovery. Some protease inhibitors are often used as anti-virus drugs and anti-cancer drugs. MCE offers a unique collection of 956 protease inhibitors. MCE Protease Inhibitor Library is critical for drug discovery and development.

Cat. No.: HY-L022
3,236 compounds

New drug development is a time-consuming and high-cost process. Drug repurposing (also called drug repositioning, reprofiling or re‑tasking) offers various advantages over developing an entirely new drug for a given indication. First, the risk of failure is lower. Second, the time frame for drug development can be reduced. Third, less investment is needed. Approved drugs have identified bioactivities, good pharmacokinetic characteristics and safety which are suitable for drug repurposing.

MCE owns a unique collection of 3,236 approved compounds which have been completed extensive preclinical and clinical studies and have well-characterized bioactivities, safety and bioavailability properties. MCE FDA-Approved Drug Library is a good tool for drug repurposing which could dramatically accelerate drug development.

Cat. No.: HY-L003
3,650 compounds

Apoptosis is an ordered and orchestrated cellular process that occurs in physiological and pathological conditions, which is also called programmed cell death (PCD). Apoptosis plays a crucial role in developing and maintaining the health of the body by eliminating old cells, unhealthy cells and unnecessary cells. Too little or too much apoptosis contribute to many diseases. When apoptosis does not work correctly, cells that should be eliminated may persist and become immortal, for example, in cancer and leukemia. When apoptosis works overly well, it kills too many cells and inflicts grave tissue damage. This is the case in strokes and neurodegenerative disorders such as Alzheimer's, Huntington's, and Parkinson's disease.

MCE designs a unique collection of 3,650 apoptosis-related compounds mainly focusing on the key targets in the apoptosis signaling pathway and can be used in the research of apoptosis signal pathway and related diseases.

Cat. No.: HY-L090
2,569 compounds

Transcription is the essential first step in the conversion of the genetic information in the DNA into protein and the major point at which gene expression is controlled. Transcription of protein-coding genes is accomplished by the multi-subunit enzyme RNA polymerase II and an ensemble of ancillary proteins, called transcription factors (TFs). Transcription factors play an important role in the long-term regulation of cell growth, differentiation and responses to environmental cues. Deregulated transcription factors contribute to the pathogenesis of a plethora of human diseases, ranging from diabetes, inflammatory disorders and cardiovascular disease to many cancers, and thus these proteins hold great therapeutic potential.

MCE offers a unique collection of 2,569 compounds with validated transcription factor targets modulating properties. MCE transcription factor-targeted compound library is an effective tool for researching transcription factors as drug targets as well as modulation of TFs for different therapeutic applications.