15 Results for "

ERAS

" in MedChemExpress (MCE) Product Catalog:
Products (15)

15 Results for "ERAS" in MCE Product Catalog:

Cat. No.: HY-175870
CAS No.: 3024878-19-8
Target:  

Ras ERK

Research Areas:  

Cancer

Eras-4001 is a potent, orally active pan-KRAS inhibitor with Kd values of 110, 13 and 39 pM against wild-type, G12D and G12V mutant KRAS, respectively, and exhibits selectivity toward wild-type HRAS and NRAS. Eras-4001 inhibits ERK1/2 phosphorylation and cell viability in cancer cells. Eras-4001 induces tumor growth inhibition and regression in subcutaneous xenograft models. Eras-4001 can be used in research on non-small cell lung cancer, ovarian cancer, etc.
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Cat. No.: HY-W654077
Synonyms: BPAF-d4; 4,4'-(Perfluoropropane-2,2-diyl)diphenol-d4
Bisphenol AF-d4 is the isotope labelled analog of Bisphenol AF (HY-W013782). Bisphenol AF is a full agonist for the estrogen receptor. Bisphenol AF acts as an endocrine-disrupting chemical (EDC), activating estrogen through the estrogen receptor Era. Bisphenol AF-d4 can be used for the research of endocrinology and cancer .
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Cat. No.: HY-P99856
CAS No.: 2247196-23-0
Synonyms: 62-71-3

Target:  

RABV

Research Areas:  

Infection

Docaravimab is an antibody, targeting ERA (Evelyn-Rockitniki-Abelseth) glycoprotein ectodomain epitope G-III. Docaravimab can be used in research of Rabies .
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Cat. No.: HY-RS04465
Research Areas:  

Others

ERAS Human Pre-designed siRNA Set A contains three designed siRNAs for ERAS gene (Human), as well as a negative control, a positive control, and a FAM-labeled negative control.

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Cat. No.: HY-RS17053
Research Areas:  

Others

Eras Mouse Pre-designed siRNA Set A contains three designed siRNAs for Eras gene (Mouse), as well as a negative control, a positive control, and a FAM-labeled negative control.

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Cat. No.: HY-W727814
Synonyms: ERA-923-d10
Pipendoxifene-d10 (ERA-923-d10) is the deuterium labeled Pipendoxifene (HY-13724). Pipendoxifene is a selective estrogen receptor modulator (SERM).
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Cat. No.: HY-174717
Target:  

mRNA

Research Areas:  

Cancer

Human ERAS mRNA encodes the human ES cell expressed Ras (ERAS) protein, a constitutively active member of the small GTPase Ras protein family. ERAS may be involved in cancer and chemotherapy resistance.
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Cat. No.: HY-175870A
CAS No.: 3024878-21-2
Target:  

Ras ERK

Research Areas:  

Cancer

(7R)-Eras-4001 is an orally active KRAS mutant inhibitor with remarkable selectivity for H-RAS and N-RAS. (7R)-Eras-4001 effectively suppresses cancer cell viability by blocking downstream signaling pathways mediated by RAF family proteins, inhibiting the formation of the KRAS G12D-RAF1 RBD complex and the phosphorylation of ERK1/2. (7R)-Eras-4001 induces tumor growth inhibition and regression in a dose-dependent manner, and also reduces plasma ERK1/2 phosphorylation levels. (7R)-Eras-4001 exerts a synergistic effect with anti-PD-1 Cetuximab (HY-P9905). (7R)-Eras-4001 can be used in research on non-small cell lung cancer, pancreatic cancer, colorectal cancer, and ovarian cancer .
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Cat. No.: HY-RS23497
Research Areas:  

Others

Eras Rat Pre-designed siRNA Set A contains three designed siRNAs for Eras gene (Rat), as well as a negative control, a positive control, and a FAM-labeled negative control.

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Cat. No.: HY-P87380
Synonyms: E ras antibody; E-Ras antibody; ecat5 antibody; Embryonic stem cell expressed Ras antibody; Embryonic stem cell-expressed Ras antibody; ERAS antibody; ES cell expressed Ras antibody; GTPase ERAS antibody; Ha-Ras2 antibody; HRAS2 antibody

Host:  

Mouse

Application:  

ICC/IF, IHC-P

Reactivity:  

Human, Mouse

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Cat. No.: HY-49537
CAS No.: 1075742-56-1
Target:  

Estrogen Receptor/ERR

Research Areas:  

Cancer

ER ligand-10 (Compound 11a) is a weak ERa and ERβ ligand, and shows weak estrogenic activity .
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Cat. No.: HY-168644
Target:  

Estrogen Receptor/ERR

Research Areas:  

Endocrinology

Erα-IN-1 (compound 3c) is an inhibitor of estrogen receptor α (ERα), blocking ERa activity in MCF7/ERE-LUC cells. .
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Cat. No.: HY-L192
69 compounds

Dietary supplement, also known as nutritional supplement or food supplement, include dietary components such as vitamins, minerals, and amino acids. The unique value of dietary supplement is particularly significant in the post-pandemic era. Compared to traditional medication, dietary supplement is often more readily accepted by the public due to their higher safety profile and the natural origin. By orally supplementing essential nutrients and bioactive substances, dietary supplement can help to enhance the body's health level and reduce the risk of diseases. For certain chronic conditions, proper dietary supplement can also serve as a powerful adjunct to conventional medical treatment, enhancing the effectiveness of medication.

MCE has included 69 dietary supplements, whose ingredients are all derived from the official lists published by authoritative organizations such as the FDA, EFSA, NMPA, etc. These compounds can be utilized in the development of health food products and for the mechanistic research of certain chronic diseases.
Cat. No.: HY-L077
4,249 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 4,249 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-L244
756 compounds

In this era of rapid advancement in gene-editing technology, the CRISPR-Cas system, with its powerful programmability, is leading a transformation in life sciences research. It enables efficient and precise targeted modification of an organism's genome, providing a robust tool for studying gene function, treating genetic diseases, and improving crop varieties. However, bottlenecks such as insufficient editing efficiency, low homologous directed repair efficiency, and potential off-target risks remain major challenges in achieving precise genetic modifications and developing gene therapies.

To overcome these limitations, the MCE High-Efficiency Gene Editing Compound Library systematically includes 756 small molecules that are known or have the potential to enhance gene-editing efficiency. These compounds work by targeting and modulating the DNA damage repair network, mechanistically inhibiting non-homologous end joining, promoting homologous directed repair, or regulating chromatin states and cellular responses, thereby significantly optimizing editing outcomes. This library is suitable for developing "CRISPR-small molecule" combination therapy strategies, improving gene-editing efficiency, and providing a powerful tool for in-depth research into the mechanisms of DNA damage repair in gene editing.

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