921 Results for "

Normal

" in MedChemExpress (MCE) Product Catalog:
Products (921)

921 Results for "Normal" in MCE Product Catalog:

Cat. No.: HY-D3211
CAS No.: 2442502-32-9
HJTA is a selective, pH/GSH dual-responsive Fluorescent probe and anticancer agent. HJTA selectively undergoes an enzymatic reaction with GSTπ. HJTA induces Apoptosis and Autophagy by regulating the expression of apoptotic and autophagic proteins. HJTA exhibits pH- and GSH-dual-responsive fluorescence in tumor cells. HJTA selectively illuminates tumor tissues, enabling precise in situ visualization of colon tumors. HJTA exerts anticancer effects against colon cancer. HJTA can be used for colon cancer research .
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Cat. No.: HY-P12120
CAS No.: 499773-67-0
Synonyms: KCCYSL
Research Areas:  

Cancer

ErbB-2-binding peptide-2 (KCCYSL) is a peptide targeting ErbB-2/HER2, which specifically binds to the extracellular domain of HER2 and accumulates in HER2-expressing cancer cells. When radiolabeled, ErbB-2-binding peptide-2 serves as a SPECT/CT and PET imaging agent, enabling the visualization of HER2-expressing tumor xenografts. ErbB-2-binding peptide-2 is applicable to research related to ovarian cancer and breast cancer .
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Cat. No.: HY-P992333

Research Areas:  

Cancer

CLT030 Antibody is a human monoclonal antibody targeting CLL1/CLEC12A/CD371, with a Kd value of 7.32 nM against human targets. CLT030 Antibody can be used to synthesize the ADC CLT030. It is applicable to research related to acute myeloid leukemia .
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Cat. No.: HY-B0377G
CAS No.: 76824-35-6
Synonyms: MK-208 (GMP)
Famotidine GMP (MK-208 GMP) is Famotidine (HY-B0377) produced in GMP guideline. Famotidine is an orally active and highly selective histamine H2 receptor antagonist. It inhibits gastric acid secretion by blocking the Gs signaling pathway, and regulates intracellular cAMP and ERK pathways. Famotidine inhibits TLR3-mediated inflammatory pathways, and reduces the expression of various inflammatory mediators and interferon-related genes. Famotidine scavenges DPPH and nitric oxide free radicals, alleviates oxidative stress damage in gastric tissue, inhibits proMMP-9, improves vascular endothelial permeability, and restores the normal physiological functions of neutrophils and eosinophils. Famotidine crosses intestinal epithelial cells via facilitated diffusion and passive diffusion, blocks paracellular cation transport, and increases intestinal transepithelial electrical resistance. Famotidine reduces serum levels of transaminases and alkaline phosphatase, exerts analgesic effects and gastric protective effects simultaneously. Famotidine can be used in studies related to COVID-19, liver injury and acute gastric ulcer .
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Cat. No.: HY-B1165R
CAS No.: 41354-29-4
Cyproheptadine hydrochloride sesquihydrate (Standard) is the analytical standard of Cyproheptadine hydrochloride sesquihydrate (HY-B1165). This product is intended for research and analytical applications. Cyproheptadine hydrochloride sesquihydrate acts as a p38 MAP kinase activator, CHK2 activator, histamine H1 receptor inhibitor and serotonin receptor inhibitor. Cyproheptadine hydrochloride sesquihydrate mediates cell cycle arrest via G1 phase arrest, G1/S transition arrest, G0/G1 phase arrest, reduced expression of cyclins D1/D2/D3, upregulated expression of HBP1, p16, p21, p27, and decreased phosphorylation of retinoblastoma protein. Cyproheptadine hydrochloride sesquihydrate induces Apoptosis by increasing PARP and cleaved PARP, as well as activating the mitochondrial caspase pathway. Cyproheptadine hydrochloride sesquihydrate inhibits tumor growth with extremely low toxicity to normal cells. Cyproheptadine hydrochloride sesquihydrate can be used in research related to hepatocellular carcinoma, multiple myeloma and acute myeloid leukemia .
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Cat. No.: HY-W745430
Synonyms: Cyproheptadine HCl-d3
Cyproheptadine hydrochloride-d3 (Cyproheptadine HCl-d3) is the d3-labeled Cyproheptadine (hydrochloride) (HY-B0366A). Cyproheptadine hydrochloride (Cyproheptadine HCl) acts as a p38 MAP kinase activator, CHK2 activator, histamine H1 receptor inhibitor and serotonin receptor inhibitor. Cyproheptadine hydrochloride mediates cell cycle arrest via G1 phase arrest, G1/S transition arrest, G0/G1 phase arrest, reduced expression of cyclins D1/D2/D3, upregulated expression of HBP1, p16, p21, p27, and decreased phosphorylation of retinoblastoma protein. Cyproheptadine hydrochloride induces Apoptosis by increasing PARP and cleaved PARP, as well as activating the mitochondrial caspase pathway. Cyproheptadine hydrochloride inhibits tumor growth with extremely low toxicity to normal cells. Cyproheptadine hydrochloride can be used in research related to hepatocellular carcinoma, multiple myeloma and acute myeloid leukemia .
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Cat. No.: HY-L136
1,525 compounds

Coagulation, also known as clotting, is the process in which blood changes from a liquid to a solid gel to form a blood clot. Thrombin, which is accurately and evenly generated in the injured part of blood vessels, is a key effector enzyme of the blood coagulation system and participates in many important biological processes, such as platelet activation, fibrinogen conversion to fibrin network, coagulation feedback amplification, etc. At the same time, to avoid the accidental formation of thrombus in the body, there is also an anticoagulant mechanism that inhibits blood coagulation.

Normal coagulation mechanism represents a balance between the pro-coagulant pathway in the injured site and anti-coagulant pathway beyond it. The blood coagulation system may be out of balance during the perioperative period or critical illness, which may lead to thrombosis or excessive bleeding. Therefore, the physiological study of coagulation balance is an important basis for clinical diagnosis and treatment of the abnormal coagulation process.

MCE supplies a unique collection of 1,525 compounds targeting key proteins in coagulation and anti-coagulation system. MCE Coagulation and Anti-coagulation Compound Library is a useful tool for study the mechanism of coagulation and anticoagulation.

Cat. No.: HY-L170
258 compounds

An emerging drug design method is based on the secondary binding site effect, where small molecule drugs are designed to bind to secondary binding sites on target biomolecules rather than primary orthomorphic sites. Successful potential drugs (known as allosteric modulators) will be able to bind to allosteric sites and remotely alter (or modify) the conformation of the main orthosteric binding sites of biological targets. Allosteric modulators (AMs) are ligands of proteins that act through binding sites different from natural (orthosteric) ligand sites. AMs are relatively small, more lipophilic, and more rigid compounds. The binding efficacy of AMs with their targets is often slightly lower. AMs are divided into positive AMs (PAMs) and negative AMs (NAMs). AMs are ideal drug targets because they can fine-tune receptor activity while preserving the spatial and temporal signal transduction characteristics of endogenous ligands, resulting in fewer targeted side effects, improved subtype selectivity, and better promotion of biased signal transduction than normal ligands.

MCE designs a unique collection of 258 small allosteric modulators. It is a good tool to be used for research on metabolize, cancer and other diseases.

Cat. No.: HY-L166
1,751 compounds

Ion channel is a membrane-binding enzyme whose catalytic site is an ion conduction pore, which is opened and closed in response to specific environmental stimuli (voltage, ligand concentration, membrane tension, temperature, etc.). Ion channel provide pores for the passive diffusion of ions on the biofilm. Due to their high selectivity for ion, ion channel are generally classified as sodium (Na+ ), potassium (K+ ), calcium (Ca2+ ), chloride (Cl- ), and non-specific cation channel. Ion channel is an important contributor to cell signal transduction and homeostasis. In addition to electrical signal transduction, ion channel also have many functions: regulating vascular smooth muscle contraction, maintaining normal cell volume, regulating glandular secretion, protein kinase activation, etc. Therefore, dysfunction of ion channel can lead to many diseases, and its mechanism research is particularly important.

MCE designs a unique collection of 1,751 small molecules related to ion channel, mainly targeting Na+ channel, K+ channel, Ca2+ channel, GABA receptor, iGluR, etc. It is an essential tool for research of cardiovascular diseases, Nervous system diseases and other diseases.

Cat. No.: HY-100395
CAS No.: 36098-33-6
Purity:  99.94%
F16 is a mitochondrial permeability transition pore (PTP) modulator with an EC50 of 30 μM in mice. F16 promotes PTP opening, accumulates in cancer cell mitochondria, and induces mitochondrial depolarization, swelling, cristae disruption, outer membrane rupture, ATP depletion, reactive oxygen species (ROS) production, cytochrome c release and mitochondrial uncoupling. F16 induces cell cycle arrest at the G1 (occasionally G2) phase, reduces the phosphotyrosine content of Neu, as well as the levels of phosphorylated PKB/Akt and phosphorylated MAP kinase, downregulates the protein expression levels of Neu and PKB, triggers apoptosis in cells with moderate Bcl-2 expression, and induces necrosis in cells with overexpressed Bcl-2. F16 can be used in research related to breast cancer and gastric cancer .
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Cat. No.: HY-100395R
CAS No.: 36098-33-6
F16 (Standard) is the analytical standard of F16 (HY-100395). This product is intended for research and analytical applications. F16 is a mitochondrial permeability transition pore (PTP) modulator with an EC50 of 30 μM in mice. F16 promotes PTP opening, accumulates in cancer cell mitochondria, and induces mitochondrial depolarization, swelling, cristae disruption, outer membrane rupture, ATP depletion, reactive oxygen species (ROS) production, cytochrome c release and mitochondrial uncoupling. F16 induces cell cycle arrest at the G1 (occasionally G2) phase, reduces the phosphotyrosine content of Neu, as well as the levels of phosphorylated PKB/Akt and phosphorylated MAP kinase, downregulates the protein expression levels of Neu and PKB, triggers apoptosis in cells with moderate Bcl-2 expression, and induces necrosis in cells with overexpressed Bcl-2. F16 can be used in research related to breast cancer and gastric cancer .
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Cat. No.: HY-181611
CAS No.: 3068829-46-6
Research Areas:  

Cancer

Polθ-IN-10 is an orally active Polθ-pol inhibitor (with a human IC50 of 1.3 nM) that exhibits oral bioavailability in mice and rats. Polθ-IN-10 binds to the allosteric site of Polθ-pol, disrupts the microhomology-mediated end-joining DNA repair pathway, and inhibits CYP2C9 (IC50=1.63 μM). Polθ-IN-10 selectively inhibits the proliferation of HR-deficient cancer cells and induces apoptosis. Polθ-IN-10 is applicable to the research of HR-deficient cancers .
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Cat. No.: HY-189143
Target:  

Xanthine Oxidase

Research Areas:  

Metabolic Disease

Xanthine oxidase-IN-24 is an orally active mixed-type inhibitor of xanthine oxidase, with an IC50 of 0.051 μM and a Ki of 0.162 μM. Xanthine oxidase-IN-24 interacts with both free xanthine oxidase and the xanthine-xanthine oxidase complex, and reduces uric acid production in vivo. In a rat model of hyperuricemia induced by Potassium oxonate (HY-17511), Xanthine oxidase-IN-24 dose-dependently lowers serum uric acid levels, improves renal function-related biochemical parameters such as creatinine and urea nitrogen, and alleviates histopathological damage to liver and kidney tissues. Xanthine oxidase-IN-24 can be used in the research of hyperuricemia .
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Cat. No.: HY-N17406
CAS No.: 244303-77-3
Dankasterone A is a secondary metabolite. Dankasterone A can be derived from the Fungus Talaromyces purpurogenu. Dankasterone A upregulates HO-1 protein expression, induces Apoptosis, induces excessive ROS production. Dankasterone A has anti-cancer activity against prostate cancer .
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Cat. No.: HY-P991319

Target:  

Inhibitory Antibodies

Research Areas:  

Cancer

TAB-004 is a murine IgG1 monoclonal antibody that specifically binds to the tumor-associated hypoglycosylated mucin 1 (tMUC1), with high selectivity for human tMUC1. TAB-004 can be conjugated with Indocyanine green (ICG) (HY-D0711) for in vivo targeted imaging. TAB-004 can be used for the research of early detection, tumor progression monitoring and cancer stem cell targeting in breast cancer and pancreatic cancer.
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Cat. No.: HY-136618
CAS No.: 283-60-3
Silatrane is a functionalized reagent. Silatrane stimulates the biosynthesis of DNA and proteins. Silatrane functionalizes oligonucleotides. Silatrane is applicable to the finishing of glass fibers. Silatrane can be used in research related to malignant tumors .
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Cat. No.: HY-178496
Research Areas:  

Cancer

DDO3602 is a PARP1 HSPTAC (HSP90-mediated proteolysis-targeting chimera) degrader, with a DC50 of 490.3 nM against PARP1; its Kd values for PARP1 and HSP90 are 66.5 nM and 1.64 nM, respectively. DDO3602 induces the formation of an unnatural PARP1-HSP90 ternary complex, recruits E3 ubiquitin ligase, and promotes PARP1 degradation via the ubiquitin-proteasome pathway. DDO3602 induces G2/M cell cycle arrest, DNA damage, inhibits cell migration, and exhibits antiproliferative activity in breast cancer cells. DDO3602 can be used in breast cancer-related research .
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Cat. No.: HY-187206
Target:  

Cytochrome P450

Research Areas:  

Cancer

CYP1B1-IN-15 is a CYP1B1 inhibitor with an IC50 of 1.47 nM, and it exhibits high selectivity against six major CYP subtypes. CYP1B1-IN-15 exerts competitive inhibitory effects by competing with substrates for binding to the active site of CYP1B1. CYP1B1-IN-15 enhances the inhibitory effect of Paclitaxel (HY-B0015) on the proliferation of paclitaxel-resistant cancer cells, and inhibits the migration and invasion of paclitaxel-resistant cancer cells. CYP1B1-IN-15 can be used in studies related to paclitaxel-resistant non-small cell lung cancer .
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Cat. No.: HY-189464
Target:  

EGFR Akt STAT Apoptosis

Research Areas:  

Cancer

EGFR/Akt/STAT3-IN-1 is an EGFR/Akt/STAT3 inhibitor (IC50 values of 9.79 μM, 17.80 μM, and 8.30 μM, respectively) that induces apoptosis and G0/G1 cell cycle arrest by inhibiting EGFR tyrosine kinase, Akt kinase, and STAT3 transcriptional activity, and exhibits selective cytotoxicity against cancer cells. EGFR/Akt/STAT3-IN-1 can be used for research on non-small cell lung cancer .
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Cat. No.: HY-N18070
CAS No.: 25090-71-5
12-Deoxyphorbol-13-isobutyrate-20-acetate is a 12-deoxy-phorbol diterpene ester. 12-Deoxyphorbol-13-isobutyrate-20-acetate is a protein kinase C (PKC) agonist that activates protein kinase C to phosphorylate troponin I and troponin T. 12-Deoxyphorbol-13-isobutyrate-20-acetate induces skin irritation and necrosis in mice without cocarcinogenic activity. 12-Deoxyphorbol-13-isobutyrate-20-acetate inhibits Aspergillus carbonarius growth. 12-Deoxyphorbol-13-isobutyrate-20-acetate supports research on heart failure, cardiomyopathies and fungal infection .
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