Alternate TextTo enhance service speed and avoid tariff delays, we've opened a US warehouse. All US orders ship directly from our US facility.
Home > Inhibitors & Agonists > Others

Others

You can also try the following methods, and our professionals will serve you Customized Consultation
Cat. No. Product Name Field of Application Chemical Structure
DC80789 Hepoxilin A3
Hepoxilin A3 (HXA3) is a neutrophil chemo-attractant, synthesized by activating the PLA2-12-LOX pathway. Hepoxilin A3 can guide neutrophils to cross the epithelial barrier and migrate to the infection site (such as the alveolar cavity). The level of Hepoxilin A3 increases synchronously with neutrophil infiltration in mouse models. Hepoxilin A3 can be used to study inflammatory diseases (such as pneumonia, cystic fibrosis).
More description
DC80787 HDAC-IN-99
HDAC-IN-99 is a histone deacetylase (HDAC) inhibitor with an IC50 of 37.73 nM, and it exhibits potent inhibitory activity against HDAC1 (IC50 = 48.09 nM), HDAC2 (IC50 = 300.28 nM) and HDAC6 (IC50 = 9.16 nM). HDAC-IN-99 inhibits the enzymatic activity of HDAC and exerts broad-spectrum antiproliferative activity in various cancer cell lines. HDAC-IN-99 induces S-phase cell cycle arrest and apoptosis in colon cancer cells, increases the acetylation levels of histone H3, histone H4 and α-tubulin, and upregulates the expression of p21 as well as the cleavage of caspase-3. HDAC-IN-99 displays antitumor activity in colon cancer xenograft models. HDAC-IN-99 can be used for the research of colon cancer.
More description
DC80782 HDAC6-IN-80
HDAC6-IN-80 is an orally active, selective HDAC6 inhibitor with an IC50 of 8.5 nM. HDAC6-IN-80 inhibits lipopolysaccharide-induced microglial activation, reduces the levels of iNOS, COX-2, TNF-α and IL-6, and alleviates sensory hypersensitivity behaviors. HDAC6-IN-80 can be used for the research of inflammatory pain and chemotherapy-induced peripheral neuropathy.
More description
DC80780 HDAC6-IN-77
HDAC6-IN-77 is a highly selective HDAC6 inhibitor with an IC50 of 7.0 nM.HDAC6-IN-77 induces neurite outgrowth.HDAC6-IN-77 exerts neuroprotective activity.HDAC6-IN-77 shows no significant toxicity on dopaminergic cells.HDAC6-IN-77 can be used for the research of Alzheimer's disease.
More description
DC80777 HDAC6-IN-67
HDAC6-IN-67 is a selective HDAC6 inhibitor (IC50 = 17.15 nM) that exhibits 19-fold selectivity over HDAC1. HDAC6-IN-67 selectively inhibits HDAC6 by interacting with Ser531 and His614. HDAC6-IN-67 induces apoptosis by inducing the cleavage of caspases 9, 8, 3, and PARP, upregulating Bax expression, and downregulating Bcl-2 expression. HDAC6-IN-67 effectively induces the acetylation of α-tubulin, without affecting histone H3 acetylation in MCF-7/ADR cells. HDAC6-IN-67 can be used for the study of breast cancer.
More description
DC80767 HCN2-IN-5
HCN2-IN-5 is a HCN2 ion channel inhibitor with an IC50 of 9 nM. HCN2-IN-5 shows weak inhibitory activity for HCN4. HCN2-IN-5 can be used for the research of inflammatory disease and neurological disorders.
More description
DC80766 HCN2-IN-2
HCN2-IN-2 (Compound 35), azaindazole derivative, is a selective HCN2 inhibitor with an IC50 of 145 nM. HCN2-IN-2 inhibits HCN2 channel activity blocks abnormal firing of peripheral nociceptive neurons. HCN2-IN-2 can be used for the research of pain.
More description
DC80763 HCN2 modulator-5
HCN2 modulator-5 (S-configuration 39) is a HCN2 ion channel inhibitor. HCN2 modulator-5 inhibits HCN2 ion channel activity. HCN2 modulator-5 can be used for the research of pain, inflammatory pain, neuropathic pain, tinnitus, central nervous system disorders, psychiatric disorders, mood disorders.
More description
DC80757 GyrB-IN-1
GyrB-IN-1 is a DNA gyrase (GyrB) inhibitor. GyrB-IN-1 shows an IC50 of 19.1 μM against Mycobacterium smegmatis GyrB ATPase activity and 21.9 μM against Mycobacterium tuberculosis GyrB DNA supercoiling activity. GyrB-IN-1 exerts antimycobacterial activity and has cytotoxicity. GyrB-IN-1 can be used for the research of tuberculosis.
More description
DC80755 GW583340
GW583340 (compound 6) is an orally active ErbB-2/EGFR tyrosine kinase inhibitor. GW583340 exhibits antitumor activity in xenograft models with EGFR overexpression or ErbB-2 overexpression. GW583340 is applicable to research related to head and neck cancer, breast cancer, and gastric cancer.
More description
DC80754 GW-5823
GW-5823 is a selective CCK-AR agonist with an EC50 of 70 nM. GW-5823 can be studied in research on obesity.
More description
DC80753 Guraxetan-NH-PEG3-TFP ester
Guraxetan-NH-PEG3-TFP ester (Fig.3) is a chelating agent and linker conjugate that can be used in the synthesis of radiopharmaceuticals.
More description
DC80752 Guanosine 5'-triphosphate 3'-diphosphate
Guanosine 5'-triphosphate 3'-diphosphate is a guanine nucleotide that participates in RNA synthesis and protein synthesis.
More description
DC80743 GSK 1997132B
GSK 1997132B is a benzimidazole-based PPARγ partial agonist that can cross the blood-brain barrier with a pEC50 value of 8.0. GSK 1997132B has no significant effect on PPARα/δ. GSK 1997132B improves the problem of high blood clearance rate of earlier compounds, avoiding side effects such as weight gain and edema. GSK 1997132B can be used for research on Alzheimer's disease.
More description
DC80736 GRI918013
GRI918013 (compound 1) is a selective and competitive autotaxin (ATX/NPP2) inhibitor with anti-invasive and anti-metastatic activity. GRI918013 competitively binds to ATX, blocking lipid substrates such as lysophosphatidylcholine (LPC) from entering the ATX active site, thereby inhibiting ATX-mediated hydrolysis of LPC to lysophosphatidic acid (LPA), and consequently inhibiting ATX-LPA axis-related tumor cell invasion and metastasis. GRI918013 inhibits ATX-mediated hydrolysis of the LPL substrate FS-3 (IC50=31.42 nM, Ki=12.98 nM). GRI918013 can be used in research on cancer invasion and metastasis, such as melanoma, and can also serve as a tool compound for ATX-LPA axis-related diseases such as fibrotic diseases, neuropathic pain, and cholestatic pruritus.
More description
DC80735 Graviquinone
Graviquinone is a Chk1 inhibitor. Graviquinone exhibits potent cytotoxicity against various cancer cell lines. Graviquinone possesses the characteristics of bypassing ABCB1-mediated multidrug resistance, selectively damaging cancer cell DNA, and regulating the DNA damage response. Graviquinone can also enhance cytotoxicity by increasing ROS levels in cancer cells. Graviquinone can be used for cancer research.
More description
DC80731 GPX4 degrader-1
GPX4 degrader-1 (Compound RS-1) is a hydrophobic tagging (HyT)-mediated GPX4 degrader (DC50: 8.9 nM in HT1080 cells) GPX4 degrader-1 induces GPX4 degradation. GPX4 degrader-1 induces Ferroptosis. GPX4 degrader-1 increases lipid ROS. GPX4 degrader-1 demonstrates potent antitumor efficacy in a murine mammary carcinoma model.
More description
DC80730 GPR84 antagonist 10
GPR84 antagonist 10 (compound 1) is a potent and orally active GPR84 antagonist. GPR84 antagonist 10 can be used to study GPR84-dependent diseases, such as inflammation-driven pain diseases.
More description
DC80729 GPR6 inverse agonist 2
GPR6 inverse agonist 2 (Compound 575) is a selective GPR6 inverse agonist, with IC50 values of < 0.1 μM and 1~30 μM against GPR6 and GPR3, respectively. GPR6 inverse agonist 2 exhibits preliminary cardiac safety, with an IC50 of 21.71 μM for hERG. GPR6 inverse agonist 2 can be used in the research of movement disorders such as Parkinson's disease.
More description
DC80724 GP130
GP130 (G130) is a psychostimulant agent, exhibiting antagonist activity against central nervous system depressing agents[2.
More description
DC80718 Gly-PEG3-BA
Gly-PEG3-BA is an EML4-ALK PROTAC degrader. Gly-PEG3-BA effectively reduces EML4-ALK with a DC50 value of 0.50 μM in H3122 (EML4-ALK) cells. Gly-PEG3-BA effectively reduces EGFR mutant (L858R/T790M) levels with a DC50 of 20.15 μM in H1975 (EGER-L858R/T790M) cells. Gly-PEG3-BA exerts potent antiproliferation activity in H3122 (EML4-ALK) and H1975 (EGER-L858R/T790M) cells with IC50s value of 0.84 and 20.74 μM. Gly-PEG3-BA can be used for non-small lung cancer research.
More description
DC80717 Glutathioselenol
Glutathioselenol (GS-SeH) is a nucleoside metabolite.
More description
DC80716 Glutathionylaminopropylcadaverine
Glutathionylaminopropylcadaverine is a key biomarkers distinguishing stage II and stage III thyroid cancer.
More description
DC80712 Glucosaminylmuramyl dipeptide
Glucosaminylmuramyl dipeptide (GMDP) is a synthetic analogue of muramil-dipeptide. Glucosaminylmuramyl dipeptide inhibits 5'-nucleotidase activity. Glucosaminylmuramyl dipeptide produces marked antitumor effect. Glucosaminylmuramyl dipeptide can be used in sepsis research.
More description
DC80711 Glucagon receptor antagonist-8
Glucagon receptor antagonist-8 (Compound 1) is a human glucagon receptor and p38 mitogen-activated protein (MAP) kinase antagonist, with IC50s of 0.27 μM and 0.16 μM, respectively.
More description
DC80709 GLP-1R-agonist-43
GLP-1R-agonist-43 (Compound A) is an orally active GLP-1R agonist with an EC50 of 2.68 nM. GLP-1R-agonist-43 can be used in the research of non-insulin-dependent diabetes mellitus (type 2 diabetes) and obesity.
More description
DC80708 GLP-1R agonist 44
GLP-1R agonist 44 is a glucagon-like peptide-1 receptor (GLP-1R) agonist. GLP-1R agonist 44 can be used for the research of diseases related to GLP-1R, such as type 2 diabetes, obesity, non-alcoholic fatty liver disease, non-alcoholic steatohepatitis, nephropathy, gout, hematuria, cardiovascular disease.
More description
DC80707 GLP-1R agonist 35
GLP-1R agonist 35 (Compound 111-2) is a GLP-1R agonist with an EC50 of 0-10 nM. GLP-1R agonist 36 can be used for the studies of diabetes and obesity.
More description
DC80706 GLP-1 receptor agonist 18
GLP-1 receptor agonist 18 is an orally active GLP-1 receptor agonist with an EC50 of 0.22 nM. GLP-1 receptor agonist 18 can reduces blood sugar levels and body weight. GLP-1 receptor agonist 18 can be used for the research of diabetes.
More description
DC80702 Ginsenoside C-K hexapropionate ester
Ginsenoside C-K hexapropionate ester (Structure 2) is a selective agonist of LXRα, with no significant activation effect on LXRβ. Ginsenoside C-K hexapropionate ester upregulates the expression of downstream genes such as ABCA1 by activating LXRα, promoting reverse cholesterol transport, and reducing lipid deposition in macrophage-derived foam cells. It can be used in the research of atherosclerosis. Ginsenoside C-K hexapropionate ester is a derivative synthesized from ginsenoside Compound K, an active metabolite of Panax notoginseng saponins, by modification with propionic anhydride.
More description

Customized Consultation X

Your information is safe with us. * Required Fields.

Your name
Company
Email
Procuct Name
Cat. No.
Remark
Verification code
Please fill out the characters in the picture
X