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Results for "

transduction

" in TargetMol Product Catalog
  • Inhibitors & Agonists
    130
    TargetMol | Inhibitors_Agonists
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    8
    TargetMol | Compound_Libraries
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    25
    TargetMol | Peptide_Products
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    8
    TargetMol | Inhibitory_Antibodies
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    14
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    126
    TargetMol | Recombinant_Protein
ap 18
T2154355224-94-7In house
AP-18 is a potent and selective TRPA1 inhibitor. AP-18 inhibits activation of TRPA1 induced by 50 μM Cinnamaldehyde with an IC50 of 3.1 μM and 4.5 μM for human and mouse TRPA1, respectively. AP-18 could reverse complete Freund's adjuvant (CFA)-induced mechanical hyperalgesia in mice. AP-18 could attenuate Yo-Pro uptake induced by 30 μM AITC in a concentration-dependent manner (IC50= 10.3 μM).
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mrt67307
MRT67307
T00971190378-57-4
Through its effects on ULK1 and ULK2, MRT67307 blocks autophagy. MRT67307 prevents the phosphorylation of IRF3 and the production of IFN-β and increases toll-like receptor-induced IL-10 and IL-1ra secretion in macrophages. MRT67307 is a kinase inhibitor that has been shown to inhibit TBK1, MARK1-4, IKKε, and NUAK1 (IC50 values are 19, 27-52, 160, and 230 nM, respectively), the salt-inducible kinases (SIKs; IC50s =250, 67, and 430 nM for SIK1, SIK2, and SIK3, respectively) and ULK1 and ULK2 (IC50s = 45 and 38 nM, respectively).
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Cyclosporin H
T2149383602-39-5
Cyclosporin H (CsH), a specific inhibitor of FPR1, inhibited lung inflammation in the ALI models. CsH significantly attenuated MTDs or NFP-induced inflammatory lung injury and activation of MAPK and AKT pathways. Cyclosporin H is a viral transduction enha
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Azadirachtin
TN141711141-17-6
Azadirachtin has antifungal activity, used as an insecticide.
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RMC-9805
Zoldonrasib, KRAS G12D inhibitor 18, KRAS G12D IN 18
T782122922732-54-3
RMC-9805 is a novel, mutant-selective, covalent and oral KRASG12D (ON) inhibitor. A stable and high affinity triple complex is formed between RMC-9805, KRASG12D, and cyclophilin A, which inhibits signal transduction downstream of KRASG12D (ON) by disrupting its interaction with downstream effectors. RMC-9805 can induce cell apoptosis and promote tumor regression in preclinical KRASG12D tumor models. With rich experience in compound synthesis, we can provide fast customized synthesis services for this product according to your research needs.
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TargetMol | Inhibitor Hot
Amivantamab
JNJ-61186372, JNJ61186372, JNJ 61186372
T771102171511-58-1
Amivantamab (JNJ-61186372) is a humanized antibody that recognizes epidermal growth factor receptor (EGFR) and MET proto-oncogene (MET), with anticancer and anti-tumor activities, preventing ligand binding to EGFR and MET and receptor dimerization that inhibits downstream signal transduction. Amivantamab can induce Fc-dependent endocytosis of macrophages and antibody-dependent cytotoxicity of natural killer cells, and can be used to study metastatic non-small cell lung cancer.
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7-10 days
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CU-CPD107
CU-CPD107
T353492573912-32-8In house
CU-CPD107 is a selective agonist of toll-like receptor 8 (TLR8) and also shows activation activity against ssRNA ligands. CU-CPD107 acts as an inhibitor of TLR8 signaling in the presence of R848 (IC50=13.7 μM). CU-CPD107 exhibited coagonist activity in the presence of ssRNA, while CU-CPD107 alone could not affect TLR8 signal transduction.
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8-10weeks
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ALE-0540
ALE0540
T9292234779-34-1In house
ALE-0540 is a nonpeptidic heterocyclic molecule that inhibits the binding of NGF to p75 and TrkA, as well as signal transduction and biological responses mediated by TrkA receptors.
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L-Glutamic acid monosodium salt monohydrate
MSG monohydrate, Monosodium L-glutamate monohydrate, L(+)-Monosodium glutamate monohydrate
T353696106-04-3
L-Glutamic acid monosodium salt monohydrate (MSG monohydrate) is an important food additive with gastrointestinal protective effects. It plays a critical role in nutrient metabolism, energy demand, immune response, oxidative stress, signal transduction, and synaptic transmission. L-Glutamic acid monosodium salt monohydrate can induce oxidative stress, DNA damage, and apoptosis in mouse liver and brain tissues. It can protect against gastrointestinal damage caused by NSAIDs and Helicobacter pylori through multiple mechanisms.
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7-10 days
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Adenosine monophosphate
5'-Adenylic acid, AMP, Adenosine 5'-monophosphate
T213361-19-8
Adenosine monophosphate (AMP) is a purine ribonucleoside 5'-monophosphates and a key cellular metabolite in signal transduction and regulation of energy homeostasis.It has a role as an EC 3.1.3.11 (fructose-bisphosphatase) inhibitor, an EC 3.1.3.1 (alkaline phosphatase) inhibitor and an adenosine A1 receptor agonist.
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TargetMol | Citations Cited
Tacrolimus monohydrate
FK-506, FR 900506, Prograf, FR900506, Tacrolimus hydrate, LCP-Tacro, FK 506
T20879109581-93-3
Tacrolimus monohydrate (LCP-Tacro) is a macrolide from the culture broth of a strain of Streptomyces tsukubaensis, binds to FK506 binding protein (FKBP) to form a complex. Tacrolimus inhibits calcineurin phosphatase, which inhibits T-lymphocyte signal transduction and IL-2 transcription. Immunosuppressive properties. It prevents the activation of T-lymphocytes in response to antigenic or mitogenic stimulation in vitro and has strong immunosuppressive activity in vivo.
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Veratramine
NSC17821, NSC23880
T336460-70-8
Veratramine (NSC-23880)(NSC-17821; NSC-23880) is a potent signal transduction inhibitor for treating tumors.
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Fimepinostat
PI3K HDAC Inhibitor, CUDC-907, CUDC 907
T20781339928-25-4
Fimepinostat (CUDC 907) is an orally bioavailable inhibitor of both phosphoinositide 3-kinase (PI3K) class I and pan-histone deacetylase (HDAC) enzymes, with potential antineoplastic activity. Upon oral administration, CUDC-907 inhibits the activity of both PI3K class I isoforms and HDAC, thereby preventing the activation of the PI3K-AKT-mTOR signal transduction pathway that is often overactivated in many cancer cell types.
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Merestinib
LY2801653
T34551206799-15-6
Merestinib (LY2801653) is an orally available, small molecule inhibitor of the proto-oncogene c-Met (Ki: 2 nM) with potential antineoplastic activity. Merestinib electively binds to c-Met, thereby inhibiting c-Met phosphorylation and disrupting c-Met signal transduction pathways. This may induce cell death in tumor cells overexpressing c-Met protein or expressing the constitutively activated c-Met protein.
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TargetMol | Citations Cited
Kuromanin chloride
Glucocyanidin chloride, Cyanidin 3-O-glucoside chloride, Chrysontemin chloride
T34067084-24-4
Kuromanin chloride (Chrysontemin chloride) is potent antioxidants and free radical scavengers, may act as modulators of gene regulation and signal transduction pathways.
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TargetMol | Citations Cited
Carboxyamidotriazole Orotate
L-651582 Orotate, CAI Orotate
T14871187739-60-2
Carboxyamidotriazole Orotate (L-651582 Orotate) is a cytostatic inhibitor of non-voltage-operated calcium channels and associated signaling pathways. As the orotate salt form of Carboxyamidotriazole (CAI), it is an orally bioavailable signal transduction inhibitor with in vitro antileukaemic activity, exhibiting anti-tumor, anti-inflammatory, and antiangiogenic effects.
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SU5214
SU 5214
T3569186611-04-1
SU5214 is a modulator of tyrosine kinase signal transduction.
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M 1145 acetate
TP1991L
M1145 acetate, a chimeric peptide, is a selective galanin receptor type 2 (GAL2) agonist, with a Ki of 6.55 nM. M1145 acetate shows more than 90-fold higher affinity for GAL2 over GAL1 (Ki=587 nM) and a 76-fold higher affinity over GalR3 (Ki=497 nM). M1145 acetate has an additive effect on the signal transduction of galanin[1].
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Biotin-TAT (47-57) acetate
Biotin-TAT (47-57) acetate(1231898-25-1 free base)
T38617L
Biotin-TAT (47-57) acetate is a biotin-labeled TAT polypeptide and a transactivator of transcription. Biotin-TAT (47-57) acetate is one of the most widely used peptides in protein transduction domains.
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Nitric Oxide Synthase (599-613) Blocking Peptide, Bovine Endothelial Cell
TP2195
Nitric Oxide Synthase (599-613) Blocking Peptide, Bovine Endothelial Cell (Ac-Pro-Tyr-Asn-Ser-Ser-Pro-Arg-Pro-Glu-Gln-His-Lys-Ser-Tyr-Lys-Cys) is a peptide that inhibits the function of NOSs as a result it blocks the production of NO. Because of the invol
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Gallium 8-Hydroxyquinolinate
Tris(8-hydroxyquinolinato)gallium
T20024614642-34-3
Gallium 8-Hydroxyquinolinate is an inducer of apoptosis that initiates both p53-dependent and independent cell death in cancer cells through the induction of Ca2+ signaling transduction. In addition to its apoptotic properties, this compound's nanostructures exhibit excellent optical performance, making it suitable for use in tumor research.
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2-4 weeks
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Tat-βsyn-degron TFA
T83726
Tat-βsyn-degron, an α-synuclein knockdown peptide, integrates three domains: the HIV-1 Tat plasma membrane transduction domain, an α-synuclein binding domain (βsyn) representing amino acids 36-45 of β-synuclein, and a proteasomal targeting domain (degron). It effectively binds to recombinant α-synuclein, demonstrating a significant reduction in α-synuclein levels in primary rat cortical neuron cultures.
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3,5-dimethyl PIT-1
T35491701947-53-7
PtdIns-(3,4,5)-P3 (PIP3) serves as an anchor for the binding of signal transduction proteins bearing pleckstrin homology (PH) domains such as phosphatidylinositol 3-kinase (PI3K) or PTEN. Protein binding to PIP3 is important for cytoskeletal rearrangement and membrane trafficking and initiates an intricate signaling cascade that has been implicated in cancer. 3,5-dimethyl PIT-1 is a dimethyl analog of PIT-1, the selective inhibitor of PIP3/Akt PH domain binding, that is designed for more favorable solubility in vivo. 3,5-dimethyl PIT-1 inhibits PI3K/Akt signaling (IC50 = 27 μM), suppressing PI3K-PDK1-Akt-dependent phosphorylation, which has been shown to reduce cell viability and induce apoptosis in PTEN-deficient U87MG glioblastoma cells (IC50 = 36 μM). 4T1 breast cancer growth is significantly attenuated in BALB/c mice with a dose of 1 mg/kg of 3,5-dimethyl PIT-1 per day.
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6-8 weeks
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PtdIns-(3,4,5)-P3 (1,2-dipalmitoyl) (sodium salt)
PtdIns-(3,4,5)-P3 (1,2-dipalmitoyl) (sodium salt)
T370281628353-02-5
The phosphatidylinositol phosphates represent a small percentage of total membrane phospholipids. However, they play a critical role in the generation and transmission of cellular signals. PtdIns-(3,4,5)-P3 can serve as an anchor for the binding of signal transduction proteins bearing pleckstrin homology (PH) domains. Centuarin α and the Akt-family of GTPase activating proteins are examples of PtdIns-(3,4,5)-P3-binding proteins. Protein-binding to PtdIns-(3,4,5)-P3 is important for cytoskeletal rearrangements and membrane trafficking. PtdIns-(3,4,5)-P3 is resistant to cleavage by PI-specific phospholipase C (PLC). Thus, it is likely to function in signal transduction as a modulator in its own right, rather than as a source of inositol tetraphosphates. For further reading on inositol phospholipids, see also references and .
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