7 Results for "

Scale Inhibitors

" in MedChemExpress (MCE) Product Catalog:
Products (7)

7 Results for "Scale Inhibitors" in MCE Product Catalog:

Cat. No.: HY-120253
CAS No.: 203313-25-1
Purity:  94.20%
Synonyms: BY-108330
Spirotetramat (BY-108330) is an orally active Insecticide and lipid biosynthesis inhibitor. Spirotetramat regulates the activities of superoxide dismutase (SOD) and glutathione peroxidase (GSH-Px), with short-term exposure increasing their activities and long-term exposure altering their activities. Spirotetramat induces the activity and mRNA expression of carboxylesterase (CarE). Spirotetramat induces oxidative stress and lipid peroxidation in tadpoles. Spirotetramat is toxic to amphibian tadpoles and exhibits sublethal/non-lethal toxicity to amphibians. Spirotetramat causes death in immature psyllids, aphids, scale insects, mealybugs, whiteflies and thrips, and shows a high lethal rate against Cacopsylla pyri nymphs. Spirotetramat reduces the fecundity of Aphis gossypii. Spirotetramat induces tolerance in the offspring of exposed Aphis gossypii, and acts on Myzus persicae, Bemisia tabaci and Tetranychus urticae .
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Cat. No.: HY-111224
CAS No.: 878197-98-9
Target:  

HIV CXCR

Research Areas:  

Infection

GSK812397 is a CXCR4 antagonist with potential for the treatment of HIV infection. To evaluate the clinical potential of GSK812397, kilogram-scale agent candidates are needed. Here, an improved, scalable synthetic route for the CXCR4 antagonist GSK812397 is described. This new route has been scaled up in a 50-liter stationary facility to obtain 1.2 kg of agent substance in 20% overall yield and >99% chemical and enantiomeric purity in five steps. CXC chemokine receptor 4 (CXCR4) is a 7-transmembrane protein that functions in part as a host co-receptor for multiple strains of HIV-1. It is thought that targeting CXCR4 will help inhibit the replication of several late cytopathic viruses; therefore, CXCR4 antagonists are one of the most promising new classes of experimental anti-HIV agents. GSK812397 is a potent CXCR4 antagonist and is therefore a candidate for investigation for the treatment of HIV infection.
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Cat. No.: HY-19877
CAS No.: 958457-44-8
Target:  

Parasite

Research Areas:  

Infection

GSK932121 is an antimalarial drug with activity that inhibits the electron transport chain of P. falciparum. GSK932121 acts selectively on this pathogen at the level of cytochrome bc1 (complex III). The synthesis method of GSK932121 is highly efficient, and the final structure can be obtained in only 5 steps. The synthesis of GSK932121 can be prepared atKilog scale to support clinical studies .
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Cat. No.: HY-116765
CAS No.: 1619884-75-1
Target:  

Endogenous Metabolite

Research Areas:  

Neurological Disease

MAO-B-IN-35 is a potent, selective, reversible monoamine oxidase B (MAO-B) inhibitor with high inhibitory activity. MAO-B-IN-35 can exhibit high selectivity and potency at a small molecule scale. MAO-B-IN-35 is designed and synthesized so that it can be efficiently obtained during standard synthesis procedures and has superior physical and chemical properties .
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Cat. No.: HY-184754
CAS No.: 34690-00-1
Synonyms: Bis(hexamethylenetriaminepenta(methylenephosphonic acid))
Research Areas:  

Others

BHMTPMP (Bis(hexamethylenetriaminepenta(methylenephosphonic acid))) is a polyphosphonate scale inhibitor with activity against barium sulfate precipitation. BHMTPMP delays nucleation and precipitation of barium sulfate in supersaturated brine solutions. BHMTPMP acts across wide ranges of saturation indices, temperatures, pH values, and brine compositions. BHMTPMP exhibits reduced inhibition efficiency with elevated saturation index and temperature, and enhanced efficiency with increased solution pH .
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Cat. No.: HY-L932V0
2,000,000 compounds

Macrocyclic compounds (≥12-atom cyclic small molecules/peptides) have unique physicochemical properties. They form preorganized conformations with high binding affinity/selectivity, target traditional small-molecule-inaccessible proteins, and bridge small-molecule drugs and biological agents. As key protein phosphorylation enzymes, kinases are linked to tumors, COPD, etc., and are critical therapeutic targets. Traditional small-molecule kinase inhibitors lack selectivity, causing off-target toxicity, low bioavailability, and acquired resistance. Macrocycles’ semi-rigid structure restricts conformations, boosts binding selectivity, optimizes pharmacokinetics, and makes macrocyclization a core kinase inhibitor optimization strategy.

Thousands of bioactive macrocycles were curated from ChEMBL. Via Transformer, macrocyclization was converted into a chemical language translation task, enabling end-to-end macrocycle generation from linear precursors with simplified inputs. Macformer achieves efficient, automated linear molecule macrocyclization via deep learning; generated macrocycles have diversity, novelty, biocompatibility, and cover broader chemical space.

MCE collected thousands of marketed/clinical kinase inhibitors, using their fragments for macrocyclization to generate derivatives. After evaluating synthetic accessibility and physicochemical properties, a million-scale virtual macrocyclic library was built for kinase-related virtual and AI-driven screening.

Cat. No.: HY-L932V
2,000,000 compounds

Macrocyclic compounds (≥12-atom cyclic small molecules/peptides) have unique physicochemical properties. They form preorganized conformations with high binding affinity/selectivity, target traditional small-molecule-inaccessible proteins, and bridge small-molecule drugs and biological agents. As key protein phosphorylation enzymes, kinases are linked to tumors, COPD, etc., and are critical therapeutic targets. Traditional small-molecule kinase inhibitors lack selectivity, causing off-target toxicity, low bioavailability, and acquired resistance. Macrocycles’ semi-rigid structure restricts conformations, boosts binding selectivity, optimizes pharmacokinetics, and makes macrocyclization a core kinase inhibitor optimization strategy.

Thousands of bioactive macrocycles were curated from ChEMBL. Via Transformer, macrocyclization was converted into a chemical language translation task, enabling end-to-end macrocycle generation from linear precursors with simplified inputs. Macformer achieves efficient, automated linear molecule macrocyclization via deep learning; generated macrocycles have diversity, novelty, biocompatibility, and cover broader chemical space.

MCE collected thousands of marketed/clinical kinase inhibitors, using their fragments for macrocyclization to generate derivatives. After evaluating synthetic accessibility and physicochemical properties, a million-scale virtual macrocyclic library was built for kinase-related virtual and AI-driven screening.