430 Results for "

Advanced

" in MedChemExpress (MCE) Product Catalog:
Products (430)

430 Results for "Advanced" in MCE Product Catalog:

Cat. No.: HY-16141R
CAS No.: 188968-51-6
Synonyms: EMD 121974 (Standard)
Cilengitide (Standard) (EMD 121974 (Standard)) is the analytical standard of Cilengitide (HY-16141). This product is intended for research and analytical applications. Cilengitide (EMD 121974) is an integrin (integrin) inhibitor with blood-brain barrier permeability, with IC50 values against human targets as follows: 0.61 nM for αvβ3, 8.4 nM for αvβ5, 14.9 nM for α5β1, 5400 nM for αIIbβ3, 2050 nM for αvβ6, 2350 nM for αvβ8. Cilengitide inhibits the binding of integrins to vitronectin, fibronectin, fibrinogen and LAP (TGF-β), and serves as an internal standard for solid-phase integrin binding assays. Cilengitide inhibits tumor cell viability, induces apoptosis, reduces the phosphorylation levels of STAT3, AKT and mTOR, downregulates the expression of PD-L1, inhibits cell viability and angiogenesis, regulates anti-tumor immune responses and slows tumor growth. Cilengitide can be used in research related to glioblastoma, melanoma, advanced solid tumors and refractory brain tumors .
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Cat. No.: HY-L077
4,336 compounds

Pancreatic cancer is a devastating disease with a low overall survival rate. Chemotherapy is the most common treatment for patients presenting with advanced pancreatic cancer. More recently, the era of targeted therapies has generated a lot of interest in discovering better approaches for patients with pancreatic cancer. Commonly mutated genes in pancreatic cancer include K-ras (in 74-100% of cases), p16INK4a (up to 98%), p53 (43 to 76%), DPC4 (about 50%), HER-2/neu (in about 65%) and FHIT (found in 70% of cases). Other genes involved are notch1, Akt-2, BRCA2 and COX-2. These proteins are important targets of target therapies for pancreatic cancer.

MCE offers a unique collection of 4,336 compounds with identified and potential anti- pancreatic cancer activity. These compounds target K-Ras, p53, HER2, Notch, AKT, etc. MCE anti-pancreatic cancer compound library is a useful tool for anti-pancreatic cancer drugs screening and other related research.

Cat. No.: HY-P990061
CAS No.: 2640981-19-5
Synonyms: JTX 8064
Polzastobart (JTX-8064) is a humanized IgG4 monoclonal antibody and LILRB2 (ILT4) antagonist. Polzastobart specifically binds to and antagonizes LILRB2, relieves ILT4-mediated myeloid immunosuppression, and promotes the polarization of macrophages from an M2-like phenotype to an M1-like phenotype. Polzastobart induces macrophage polarization, IFNγ signaling, and T cell inflammation-related pharmacodynamic responses in ex vivo human renal cancer, lung cancer, and head and neck cancer tissues. Polzastobart can be used in studies related to tumor-associated macrophages and tumor immunity. For the isotype control of Polzastobart, refer to: Human IgG4 (S228P) kappa, Isotype Control (HY-P99003) .
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Cat. No.: HY-P991000
CAS No.: 2919583-43-8
Synonyms: AU-007; BD-8; BDG8
Imneskibart (AU-007) is a human monoclonal antibody that binds to the CD25-binding epitope of interleukin-2 (IL-2), blocking the binding of IL-2 to the trimeric IL-2 receptor while retaining the ability to bind to the dimeric IL-2 receptor. Imneskibart expands effector T cell and NK cell populations, reduces regulatory T cells, increases the effector T cell/regulatory T cell ratio, and alleviates vascular leakage. Imneskibart can be used in research related to melanoma and non-small cell lung cancer. The corresponding isotype control is: Human IgG1 kappa, Isotype Control (HY-P99001) .
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Cat. No.: HY-183553
CAS No.: 2874214-01-2
Target:  

Ras

Research Areas:  

Cancer

AUBE00 is an orally active, selective cyclic peptide pan-KRAS inhibitor. AUBE00 selectively binds to the OFF state of KRAS. AUBE00 exhibits anticancer activity against RAS wild-type colorectal cancer. The combination of AUBE00 with Cetuximab (HY-P9905) produces a synergistic antiproliferative effect .
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Cat. No.: HY-183926
CAS No.: 384361-09-5
Target:  

HIV Integrase

Research Areas:  

Infection

D719 is an HIV-1 integrase inhibitor. D719 binds to the hydrophobic pocket of HIV-1 integrase CCD dimer, disrupts interaction with LEDGF/P75, and prevents integrase nuclear translocation. D719 reduces HIV-1 p24 antigen production in acute infection of human T cells. D719 can be used for the research of HIV infection .
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Cat. No.: HY-P991947
Synonyms: AFS98; TG3003

Target:  

c-Fms

Research Areas:  

Inflammation/Immunology

ELB041 (AFS98) is a rat monoclonal anti-murine c-fms antibody (IgG2a). AFS98 inhibits M-CSF–dependent colony formation and cell growth by blocking the binding of M-CSF to its receptor. AFS98 prevents development of fatty streaks in ApoE-deficient mice. ELB041 can be used for the research of atherosclerosis .
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Cat. No.: HY-P992130
CAS No.: 3038136-62-5
Synonyms: TQB2102 Antibody
Target:  

ADC Antibodies EGFR

Research Areas:  

Cancer

Rolditamig (TQB2102 Antibody) is a recombinant humanized anti-human epidermal growth factor receptor 2 (HER2) antibody. Rolditamig can be conjugated with an enzyme-cleavable linker and a topoisomerase I inhibitor to form the ADC TQB2102. Rolditamig is applicable to research on solid tumors such as HER2-positive breast cancer .
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Cat. No.: HY-108839
CAS No.: 198153-51-4
Synonyms: Ro 25-8310/000
Target:  

IFNAR

Research Areas:  

Infection

Peginterferon alfa-2a (Ro 25-8310/000) is a 40 kDa branched pegylated IFN alfa-2a with antiviral and immunomodulatory activities. Peginterferon alfa-2a binds to the Interferon Receptor on the surface of target cells, induces the formation of ISGF3, and promotes the expression of effector proteins such as interferon-stimulated genes (ISGs) and Mx proteins, thereby exerting sustained antiviral effects. Peginterferon alfa-2a is applicable to research on virus infections associated with chronic hepatitis C and chronic hepatitis B .
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Cat. No.: HY-LD004
14 million compounds

DEL technology enables the simultaneous screening of millions or billions of compounds in a single tube by covalently linking each small molecule with a unique DNA sequence. Traditional DEL screening primarily focuses on identifying non-covalent binding molecules, where interactions with the target are reversible. In contrast, DNA‑encoded covalent library is an ultra‑high‑throughput screening library developed on the basis of conventional DNA‑encoded library technology. It incorporates controllable electrophilic covalent warheads capable of forming irreversible covalent bonds with amino acid residues at the active sites of target proteins, including Cys, Lys, Ser, Tyr, and others. This covalent binding enhances binding affinity, prolongs residence time at the target site, and has the potential to overcome challenges associated with traditional non-covalent inhibitors, such as drug resistance or off-target effects.

Each compound in the library contains both a binding domain and an electrophilic warhead. It first recognizes and binds to the target through non covalent interactions, and then forms a stable covalent bond with key amino acid residues to achieve irreversible inhibition. This library is specifically designed for the discovery of potent, long lasting, and highly selective covalent inhibitors, particularly for undruggable targets such as kinases, GPCRs, proteases, and mutant oncoproteins. Each molecule is uniquely labeled with a DNA barcode for molecular identification and sequencing decoding.

This library is an advanced and highly diverse collection, consists of 35 independent sub-libraries with a total scaleof 14 million compounds, It incorporates over 14 experimentally validated covalent warheads capable of targeting cysteine, lysine, arginine, aspartic acid and glutamic acid. This library is constructed with diverse drug like core scaffolds and integrated controllable covalent warheads, it features structural diversity, reaction spec