136 Results for "

Safety profiling

" in MedChemExpress (MCE) Product Catalog:
Products (136)

136 Results for "Safety profiling" in MCE Product Catalog:

Cat. No.: HY-178230
CAS No.: 951015-69-3
Target:  

P2X Receptor Apoptosis

Research Areas:  

Inflammation/Immunology

EVT-401 is an orally active, potent and highly selective human P2X7R antagonist, with an IC50 of 10 nM and a Ki of 7.6 nM for human P2X7R, and an IC50 of 220 nM for mouse P2X7R. EVT-401 promotes apoptosis and induces cell cycle arrest in human rheumatoid arthritis synovial fibroblasts (RA SF), reduces the production of proinflammatory and joint-destructive mediators, and mitigates aggressive phenotypes. EVT-401 exhibits favorable oral bioavailability and a good safety profile, making it suitable for research into rheumatoid arthritis .
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Cat. No.: HY-180574
CAS No.: 2619847-12-8
Target:  

DYRK

Research Areas:  

Cancer

TSL2109 is an orally active and selective DYRK2 and CDK4/6 inhibitor with an IC50 value of 22 nM for DYRK2. TSL2109 exhibits high kinase selectivity over 93%. TSL2109 arrests cell cycle and induces apoptosis in virto. TSL2109 effectively overcomes Enzalutamide (HY-70002) resistance by suppressing tumor growth in vivo and virto. TSL2109 also shows CDK4/6 inhibitor resistance.TSL2109 demonstrates safety profile. TSL2109 can be used for prostate cancer research and breast cancer [1][2].
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Cat. No.: HY-179394
Target:  

Proteasome

Research Areas:  

Inflammation/Immunology

Immunoproteasome-IN-2 is selective immunoproteasome inhibitor with IC50 = 232.3 nM for LMP7, IC50 = 9384.9 nM for β5. Immunoproteasome-IN-2 exhibits ancillary inhibitory activity against LMP2 and MECL-1 subunits. Immunoproteasome-IN-2 demonstrates anti-inflammatory efficacy in a mouse model of arthritis and shows a favorable safety profile in toxicological studies with reduced hepatotoxicity and hematotoxicity. Immunoproteasome-IN-2 has LMP7/β5 selectivity directly correlated with lower systemic toxicity. Immunoproteasome-IN-2 can be employed for research in arthritis .
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Cat. No.: HY-W010902
CAS No.: 6055-82-9
Synonyms: Dicalcium 1,6-di-O-phosphonato-L-tagatose
Research Areas:  

Metabolic Disease

Calcium fructose diphosphate (Dicalcium 1,6-di-O-phosphonato-L-tagatose) is a crucial intermediate in the glycolysis process and is closely related to ATP synthesis. Calcium fructose diphosphate can be used to regulate calcium and phosphorus balance, protect myocardial tissue from ischemia/reperfusion injury, counteract the effects of alcohol, and serve as a safer source of phosphate in parenteral nutrition .
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Cat. No.: HY-180967
CAS No.: 2703834-25-5
Target:  

Bcr-Abl PROTACs Apoptosis

Research Areas:  

Cancer

PROTAC BCR-ABL Degrader-2 is a selective Bcr-Abl T315 PROTAC degrader with a DC50 of 108.7 nM in Ba/F3 Bcr-Abl T315I cells. PROTAC BCR-ABL Degrader-2 exhibits the most potent degradation efficacy with DR of 69.89% and 94.23% at 100 and 300 nM, respectively. PROTAC BCR-ABL Degrader-2 demonstrates high plasma exposure, and induces significant tumor regression and induces tumor cell apoptosis with a good safety profile in vivo. PROTAC BCR-ABL Degrader-2 can be used for chronic myeloid leukemia (CML) research .
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Cat. No.: HY-182971
Target:  

PROTACs Enterovirus

Research Areas:  

Infection

PROTAC EV-A71 Degrader-1 is a PROTAC degrader targeting EV-A71 3D polymerase, with broad-spectrum activity against a variety of enteroviruses. PROTAC EV-A71 Degrader-1 induces the degradation of EV-A71 3D polymerase through the ubiquitin-proteasome and autophagy-lysosome pathways, and blocks viral replication. PROTAC EV-A71 Degrader-1 protects infected mice from death, alleviates tissue damage, and exhibits safety profiles. PROTAC EV-A71 Degrader-1 can be used in the research of enterovirus infections .
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Cat. No.: HY-180523
PKM2-IN-13 is a selective PKM2 inhibitor inhibiting PKM2 with an IC50 value of 55.13 μM. PKM2-IN-13 exhibits broad-spectrum anticancer activity with low toxicity to normal cells. PKM2-IN-13 induces apoptosis by elevated ROS levels and activation of caspases 3/7, and interacts with and inhibits the glycolytic activity of Pyruvate Kinase M2 in virto. PKM2-IN-13 demonstrates a favorable safety profile with no significant adverse effects in vivo. PKM2-IN-13 can be used for oral squamous cell carcinoma (OSCC), colon carcinoma, breast cancer and melanoma research .
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Cat. No.: HY-168282
CAS No.: 3047066-15-6
Research Areas:  

Cancer

DD205-291 is a selective, orally active HPK1 PROTAC degrader with a DC50 of 8.8 nM. By inducing complete degradation of HPK1 protein, DD205-291 simultaneously blocks both its kinase-dependent functions and non-kinase scaffold functions. DD205-291 inhibits the phosphorylation of SLP-76 with an EC50 of 22.98 nM. DD205-291 induces the production of IL-2 and IFN-γ with EC50 values of 34.68 nM and 32.6 nM, respectively. Combined with anti-PD1 in mouse models, DD205-291 exerts tumor-suppressive effects with favorable safety profiles. DD205-291 can be used in colon cancer-related research .
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Cat. No.: HY-175188
CAS No.: 2404652-82-8
Synonyms: BPN-0027490
Target:  

Myosin

Research Areas:  

Neurological Disease

MT-110 (BPN-0027490) is a non-muscle myosin NMIIB-selective inhibitor with high brain penetration and favorable safety profile. MT-110 specifically disrupts NMIIB-dependent actin dynamics in dendritic spines, while it exerts no significant adverse effects on cardiac myosin II and cardiac functions (such as cardiac output and heart rate) at tested concentrations. A single administration of MT-110 produces long-lasting (sustained for several weeks) blockade of methamphetamine motivation associated with environmental cues. MT-110 exhibits extremely high specificity, with no interference with cocaine motivation, hippocampus-dependent memory, fear memory, or locomotor and anxiety-like behaviors. MT-110 serves as a valuable tool compound for investigating the mechanisms of methamphetamine use disorder .
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Cat. No.: HY-177963
CAS No.: 2341941-41-9
Target:  

DNA Methyltransferase

Research Areas:  

Inflammation/Immunology

NV914 is an inhibitor of FTSJ1 (tryptophan tRNA-specific 2'-O-methyltransferase) that inhibits the methyltransferase activity of FTSJ1, induces translational readthrough of premature termination codons, and enables genes carrying nonsense mutations to synthesize full-length proteins. NV914 belongs to translational readthrough-inducing compounds (TRIDs). NV914 exhibits translational readthrough activity against nonsense mutations in in vitro systems, does not induce readthrough of natural termination codons, and restores CFTR protein expression. NV914 shows favorable acute oral tolerance in mice, with low health risks and good safety profiles. NV914 is applicable to research related to cystic fibrosis and Shwachman-Diamond syndrome .
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Cat. No.: HY-180965
CAS No.: 3057939-64-4
Pro-PEG3-BA is an EML4-ALK/EGFR PROTAC degrader, degrading EML4 ALK and EGFR mutant (L858R/T790M) with DC50 values of 0.42 and 13.50 μM, respectively. Pro-PEG3-BA hinders proliferation and induces cell cycle arrest and apoptosis of NSCLC cells in vitro. Pro-PEG3-BA shows safety profile and decreases EML4-ALK protein via rewiring the ubiquitin- proteasome system in vivo. Pro-PEG3-BA can be used for non-small cell lung cancer research .
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Cat. No.: HY-180970
CAS No.: 2162120-55-8
Research Areas:  

Cancer

TD-004 is a potent ALK PROTAC degrader. TD-004 exhibits anti-ALK inhibitory activity with an IC50 of 0.11 µM and selectively inhibits the proliferation of SU-DHL-1 and H3122 cells (ALK-positive cancer cells) with IC50s of 0.058 µM and 0.28 µM, respectively. TD-004 induces degradation of ALK fusion proteins (NPM-ALK and EML4-ALK) via recruitment of the VHL E3 ligase and the proteasome pathway. TD-004 demonstrates significant tumor growth inhibition with a favorable safety profile in vivo. TD-004 can be used for the research of anaplastic large cell lymphoma and non-small cell lung cancer .
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Cat. No.: HY-182244
Research Areas:  

Endocrinology

SERT/NET-IN-1 is a blood-brain barrier-permeable SERT and NET inhibitor, with an IC50 of 11.2 nM against human SERT and an IC50 of 32.0 nM against human NET. SERT/NET-IN-1 blocks 5-HT reuptake to enhance serotonergic signaling. SERT/NET-IN-1 also blocks norepinephrine reuptake to enhance central noradrenergic transmission and inhibits the ejaculatory reflex. SERT/NET-IN-1 prolongs ejaculatory latency, reduces ejaculation frequency and preserves sexual function. SERT/NET-IN-1 exhibits cross-species microsomal metabolic stability, shows acceptable oral brain exposure in rats, and has favorable safety profiles. SERT/NET-IN-1 can be used in studies related to premature ejaculation .
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Cat. No.: HY-189393
CAS No.: 3089177-97-6
Target:  

P-glycoprotein

Research Areas:  

Inflammation/Immunology

RTY-406 is an orally active ABCB4/MDR3 and ABCB11/BSEP positive modulator. RTY-406 increases ABCB4/MDR3 and ABCB11/BSEP protein levels and functional output, elevates biliary phospholipid levels, enhances bile acid efflux, increases bile flow and micelle formation, reduces hepatic bile acids, and promotes cholesterol-to-bile-acid conversion. RTY-406 does not induce hepatocellular injury, maintains normal serum alanine transaminase and aspartate aminotransferase levels, and shows a favorable safety profile in cynomolgus monkeys. RTY-406 can be used for the research of primary sclerosing cholangitis and cholestasis .
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Cat. No.: HY-P991015
CAS No.: 2921676-04-0
Synonyms: JNJ-78278343; KLCB-245

Target:  

CD3

Research Areas:  

Cancer

Pasritamig (JNJ-78278343; KLCB-245) is a bispecific T-cell engager (BiTE) that targets the complex of human kallikrein KLK2 and CD3 receptor. Pasritamig redirects the cytotoxicity of T cells to KLK2-expressing tumor cells and induces T cell-mediated lysis of KLK2-expressing prostate cancer cells. Administered via subcutaneous injection, subcutaneous infusion or intravenous infusion, Pasritamig exhibits antitumor activity against metastatic castration-resistant prostate cancer. Pasritamig has a safety profile with an extremely low incidence of cytokine release syndrome and can be safely administered in an outpatient setting. Pasritamig is applicable to the research of metastatic castration-resistant prostate cancer .
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Cat. No.: HY-L219
58 compounds

Antimicrobial Peptides (AMPs), also known as antimicrobial peptides or antibiotic peptides, are a class of polypeptides encoded by specific genes in various biological cells and induced by external stimuli. They exhibit broad-spectrum bioactivity against bacteria, fungi, viruses, protozoa, and even tumor cells. AMPs serve as crucial effector molecules in the host's innate immune system.Due to their wide antimicrobial spectrum, low toxicity to normal cells of higher animals, high safety profile, low tendency to induce resistance, and additional benefits such as immune enhancement and antioxidant effects, antimicrobial peptides hold significant promise in new drug development.

MCE offers 58 types of antimicrobial peptides, which can be applied in high-throughput screening for research in anti-infection therapies, immunotherapy, anticancer drug development, and agricultural disease control.

Cat. No.: HY-L230
331 compounds

Kinases are enzymes that catalyze the addition of phosphate groups to substrate molecules, a process known as phosphorylation. Protein phosphorylation serves as a critical regulatory mechanism for numerous cellular processes, including cell division, metabolism, and signal transduction. The human genome encodes over 500 kinases, which collectively regulate approximately 50% of cellular functions. Due to their pivotal roles, kinases represent one of the most important target classes in drug development.

Kinase inhibitors can selectively block the activity of disease-associated kinases, making them valuable therapeutics for conditions such as cancer and inflammatory diseases. FDA-approved kinase inhibitors have undergone extensive preclinical and clinical studies, demonstrating high bioactivity, favorable safety profiles, and good bioavailability, rendering them suitable for investigating new therapeutic indications.

Cat. No.: HY-L261
167 compounds

MCE Classic FDA-Approved Drug Library features a curated selection of marketed drugs that have achieved the highest prescription volumes and greatest clinical impact in global practice since 2006. The collection covers eight major therapeutic areas, including cardiovascular diseases, oncology, metabolic disorders, infectious diseases, central nervous system disorders, respiratory diseases, digestive system diseases, and immunological conditions. All compounds have been validated through long‑term clinical use and possess well‑defined molecular targets, well‑established pharmacokinetic properties, quantifiable efficacy endpoints, and comprehensive toxicological safety profiles.

The library currently contains 167 representative drugs and is designed to serve as an efficient tool for drug repurposing, phenotypic screening, mechanism‑of‑action studies, and combination therapy strategy development.

Cat. No.: HY-179578
CAS No.: 1262219-89-5
SU212 is a podophyllotoxin-derived ENO1 inhibitor and AMPK activator. SU212 can selectively induce oxidative phosphorylation, reduce glycolysis activity and glucose uptake in tumor cells, and directly bind to ENO1 without affecting these pathways in normal cells. SU212 induces apoptosis and promotes ENO1 degradation via proteasomal and autophagic pathways without inhibiting the catalytic activity. SU212 leads to mitotic arrest and apoptosis in TNBC (triple-negative breast cancer) cells by activating AMPK, demonstrating potent anti-tumor activity in vitro. SU212 inhibits tumor growth and metastasis in syngeneic, xenograft, and diabetic mouse models, exhibiting an excellent safety profile. SU212 can be used in research on t TNBC, diabetes, and fatty liver disease .
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Cat. No.: HY-180524
CAS No.: 3014372-17-6
Target:  

HBV

Research Areas:  

Infection

CAB7-3 is an orally active HBV capsid assembly modulator (CAM). CAB7-3 exhibits an exceptional antiviral efficacy reducing HBV DNA with an EC50 = 70 nM, CC50 = 32.3 μM in HepDES19 cells. CAB7-3 exhibits significant anti-HBV activity in HBV-integrated HepDES19 (EC50 = 70 nM), HepAD38 (EC50 = 1 nM) and HBV-infected HLCZ01 cells (EC50 = 2 nM), respectively. CAB7-3 effectively reduces Hepatic HBV core protein levels and suppresses viral replication in vivo. CAB7-3 demonstrates a favorable drug-like and safety profile. CAB7-3 can be used for Hepatitis B Virus (HBV) research .
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