14 Results for "

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Products (14)

14 Results for "search" in MCE Product Catalog:

Cat. No.: HY-P2695
CAS No.: 118447-40-8
Target:  

Peptides

Domaines de recherche:  

Infection

STh, an Escherichia coli heat-stable toxin, is a 19 amino acid polypeptide encompassing three disulfide bridges. STh is an antigen of interest in the search for a broad coverage enterotoxigenic Escherichia coli (ETEC) vaccine .
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Cat. No.: HY-176489
CAS No.: 3043908-63-7
Target:  

PROTACs Ras

Domaines de recherche:  

Cancer

PROTAC pan-KRAS degrader-1 is a pan-KRAS PROTAC degrader for degrading different KRAS mutation types, such as G12D, G12C, G12V, and G13D. PROTAC pan-KRAS degrader-1 potently degrades KRAS mutation (G12D) in AGS cells, with a DC50 of 1.1 nM, Dmax of 95%. PROTAC pan-KRAS degrader-1 can be used to search diseases caused by KRAS mutation or amplification, especially cancers such as breast cancer, bladder cancer, gastric cancer, etc .
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Cat. No.: HY-146497
CAS No.: 2408639-81-4
Target:  

Topoisomerase

Domaines de recherche:  

Cancer

Topoisomerase I inhibitor 7 (Compound 8) is a potent inhibitor of Topoisomerase I. Topoisomerase I inhibitor 7 significantly inhibits tumor growth (up to 79%) and increases the lifespan (153%) of mice bearing P388 lymphoma transplants. Topoisomerase I inhibitor 7 indicates prospects for further search of new antitumor agent candidates among the heteroarene-fused anthraquinones .
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Cat. No.: HY-116535B
CAS No.: 149022-18-4
Target:  

Parasite

Domaines de recherche:  

Infection

DL-threo-PPMP is an inhibitor of sphingosine synthetase in Plasmodium falciparum. DL-threo-PPMP inhibits the activity of sphingosine synthetase by mimicking the substrate sphingosine. This inhibition leads to a rapid decrease in the activity of sensitive sphingosine synthetase, selectively destroying the interconnected tubular network of TVMs in the host cell cytoplasm, and this inhibition also blocks the proliferation of Plasmodium falciparum. DL-threo-PPMP can be used for the study of Plasmodium biology and the search for new antimalarial strategies .
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Cat. No.: HY-116535A
CAS No.: 139974-41-7
Target:  

Parasite

Domaines de recherche:  

Infection

DL-threo-PPMP hydrochloride is an inhibitor of sphingosine synthetase in Plasmodium falciparum. DL-threo-PPMP hydrochloride inhibits the activity of sphingosine synthetase (sphingosine synthetase) by binding to a substrate that mimics sphingosine. This inhibition leads to a rapid decline in sensitive sphingomyelin synthase (SSS) activity, selectively disrupting the interconnected tubular network of TVM in the cytoplasm of the host cell, and this inhibition also blocks the proliferation of the parasite. DL-threo-PPMP hydrochloride can be used in the study of malaria parasite biology and the search for new antimalarial strategies .
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Cat. No.: HY-L901
50,000 compounds

MCE 50K Diversity Library consists of 50,000 lead-like compounds with multiple characteristics such as calculated good solubility (-3.2 < logP < 5), oral bioavailability (RotB <= 10), drug transportability (PSA < 120). These compounds were selected by dissimilarity search with an average Tanimoto Coefficient of 0.52. There are 36,857 unique scaffolds and each scaffold 1 to 7 compounds. What’s more, compounds with the same scaffold have as many functional groups as possible, which make abundant chemical spaces. This exceptionally diverse library is highly recommended for random screening against new as well as popular targets based its novel, diverse scaffolds, abundant chemical spaces and the convenience for subsequent modification.

Cat. No.: HY-122211
CAS No.: 1047980-53-9
Target:  

Endogenous Metabolite

Domaines de recherche:  

Cardiovascular Disease

MRS2802 is a P2Y14 receptor agonist with an EC50 value of 63 nM. MRS2802 can effectively activate the P2Y14 receptor and may play a role in regulating platelet function. The selectivity and activity of MRS2802 are conducive to in-depth research on the biological functions and pharmacological properties of P2Y receptors. The development of MRS2802 provides a potential inhibitory strategy for the search for new antiplatelet compounds .
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Cat. No.: HY-L0088V
50,240 compounds
Life Chemicals presents a number of exclusive Pre-Plated Diversity Sets composed of 50,240 novel compounds with optimal physicochemical properties selected from Life Chemicals collection of newly synthesized items by dissimilarity search with an average Tanimoto threshold of 82%. These Diverse Screening Sets are ideal starting points for customers looking for a wide range of dissimilarity to screen against a number of targets from different classes or where little information is available on targeted protein structure.
Cat. No.: HY-L218
166 compounds

Animal drug (also veterinary drug) refers to a drug intended for use in the diagnosis, cure, mitigation, treatment, or prevention of disease in animals. Animal Drugs @ FDA is a searchable online database that includes most FDA-approved and conditionally approved animal drugs. The major classes of veterinary drugs include antibiotics, anthelmintics, coccidiostats, nonsteroidal anti-inflammatory drugs, sedatives, corticosteroids, beta-agonists, and anabolic hormones.

MCE has collected 166 FDA-approved veterinary drug compounds for use in scientific research.

Cat. No.: HY-L171
4,313 compounds

Hematopathy, also known as hematopoietic system diseases, are a class of diseases that hematopoietic system has abnormal changes. Common hematopathy include: aplastic anemia, myeloproliferative diseases, thalassemia, leukemia, lymphoma, myeloma and hemophilia, etc. In recent years, treatments for hematopathy have been developed. In particular, the treatment of malignant hematopathy developed from chemotherapy, radiotherapy, bone marrow development to immunotherapy, induced differentiation therapy, cell therapy, gene therapy and hematopoietic stem cell transplantation. Although these therapies have greatly improved the survival rate of patients, there are still problems such as low cure rate and easy recurrence in the treatment of hematopathy. Therefore, it is of great significance to actively search for new hematopathy therapeutic drugs.

MCE designs a unique collection of 4,313 anti-hematopathy small molecules, which is an effective tool for development and research of anti-hematopathy compounds.

Cat. No.: HY-L0123V
30,300 compounds

The incidence and significance of central nervous system diseases are increasing at an alarming rate all over the world. Although substantial research efforts have been applied to develop new CNS-active drugs, only a few CNS disorders are addressed satisfactorily, while the remaining ones pose significant clinical challenges. Blood-brain barrier (BBB) permeability is one of the most important limiting factors in the design and development of novel CNS-targeted pharmaceuticals for the treatment of neurological disorders.

Carefully selected from the HTS Compound Collection to meet the parameters optimized for high BBB-permeability, our CNS Focused Screening Library comprising over 30,300 structurally-diverse and potentially CNS-active screening compounds. This original Screening Compound Library is aimed at supporting CNS drug design projects and HTS efforts in search for novel neurotherapeutics.

Cat. No.: HY-L924
1,488 compounds

Boronic acid and boronic ester represent a relatively novel and promising chemical structure in drug design. Boronic acid exists in an sp²-hybridized state, possessing an empty p-orbital that can act as a Lewis acid to accept lone pairs from heteroatoms (O, N, or S). This Lewis acidity enables it to form reversible covalent bonds with amino acid residues such as lysine, serine, threonine, and histidine. Currently, five FDA-approved drugs containing boronic acid or boronic ester predominantly involve such covalent binding mechanisms in their interactions with target proteins. Furthermore, boronic acid can serve as a bioisostere for carboxylic acids, phosphates, and phenolic groups, utilized to improve pharmacokinetic properties and enhance drug efficacy.

To date, five boron-containing drugs have been approved by the FDA. The unique properties of boronic acids and boronic esters confer significant potential in drug design, with applications spanning cancer therapy (e.g., multiple myeloma), anti-infectives (e.g., fungal infections, tuberculosis), anti-inflammatory treatments (e.g., atopic dermatitis), antibacterial agents (e.g., carbapenem-resistant bacterial infections), and Reactive Oxygen Species (ROS)-responsive prodrugs, among others. The MCE Boronic Acid/Boronic Ester Fragment Library, which contains 1,488 compounds, serves as a valuable tool for the development of boron-containing drugs.

Cat. No.: HY-L917
5,619 compounds

RNA is crucial for the regulation of numerous cellular processes and functions. With the in-depth study of disease mechanisms, processes such as RNA expression, splicing, translation, and stability regulation have become new targets for disease intervention. RNA has provided new therapeutic modalities for metabolic diseases, genetic disorders, and cancer patients, resulting in several innovative drugs.

MCE R&D team collected small molecules targeting RNA from the PDB, R-BIND, ROBIN, and internal database as the positive dataset, and non-targeting RNA small molecules from ROBIN as the negative dataset. Based on the GeminiMol pre-trained model, we encoded the molecules and calculated over 1700 molecular descriptors using Mordred as inputs for the model. Subsequently, we employed 13 deep learning models to learn from the data. All of which yielded good training results, with AUROCs greater than 0.75. Ultimately, we selected the Finetune model to screen HY-L901P, which exhibited the best classification performance, achieving an AUROC of 0.82 and a prediction accuracy of 0.76. We then applied filtering based on StaR rules (with at least two of the following properties: cLogP ≥ 1.5, Molar Refractivity ≥ 4, Relative Polar Surface Area ≤ 0.3) to obtain a library containing approximately 5,000 small molecule compounds targeting RNA. This library serves as a valuable tool for screening small molecules that interact with RNA.

Cat. No.: HY-L903
5,281 compounds

Fragment-based drug discovery (FBDD) is well suited for discovering both drug leads and chemical probes of protein function. 3-dimensionality (3D) diversity is pivotal because the molecular shape is one of the most important factors in molecular recognition by a biomolecule. There is a developing appreciation that 3D fragments could offer opportunities that are not provided by 2D fragments.

MCE 3D Diverse Fragment Library consists of 5,400 non-flat fragment-like molecules (average Fsp3 value 0.58). More than 4,700 fragment compounds contain at least one chiral center in the structure. The key concepts that underlie the library design were 3D shape, structural diversity, reactive functionality and fragment-like. This 3D Diverse Fragment Library brings higher fragment hit optimization and increases the likelihood to find innovative hits in FBDD.

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