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cellular differentiation

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19

Inhibitors & Agonists

5

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1

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2

Peptides

1

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6

Natural
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1

Oligonucleotides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-32343
    Secalciferol
    4 Publications Verification

    (24R)-24,25-Dihydroxyvitamin D3

    Endogenous Metabolite VD/VDR Metabolic Disease Inflammation/Immunology
    Secalciferol ((24R)-24,25-Dihydroxyvitamin D3) is the major active metabolite of Vitamin D. Secalciferol activates vitamin D receptor (VDR) with an EC50 value of 150 nM. Secalciferol is involved in a wide range of biological functions such as calcium homeostasis, cellular differentiation and proliferation processes, as well as other functions related to the immune system, which is promising for research of rickets, osteomalacia, hypercalcemia and autoimmune disorders .
    Secalciferol
  • HY-P99014
    Cusatuzumab
    1 Publications Verification

    ARGX-110

    Apoptosis Inflammation/Immunology Cancer
    Cusatuzumab is a human αCD70 monoclonal antibody. Cusatuzumab shows cytotoxicity activity with enhanced antibody-dependent cellular. Cusatuzumab reduces leukemia stem cells (LSCs) and triggers gene signatures related to myeloid differentiation and apoptosis. Cusatuzumab has the potential for the research of Acute myeloid leukemia (AML) .
    Cusatuzumab
  • HY-100355

    Endogenous Metabolite Neurological Disease Cancer
    C18-Ceramide can promote exocytosis of glutamate from damaged neurons. C18-Ceramide promotes cell death in glioma cells. Ceramides is involved in diverse cellular functions, such as differentiation, cell cycle progression, cell-cell adhesion, senescence, and apoptosis .
    C18-Ceramide
  • HY-107397
    Ch55
    2 Publications Verification

    RAR/RXR Cancer
    Ch55 is a potent synthetic retinoid. Ch55 binds to RAR-α and RAR-β receptors with high affinity. Ch55 displays low affinity for cellular retinoic acid binding protein (CRABP). Ch55 is a potent inducer of the differentiation of HL60 cells with an EC50 of 200 nM. Ch55 can be used for cancer research .
    Ch55
  • HY-P3766

    PKC Others
    Protein kinase C α peptide (TFA) is a peptide of PKC-α. PKC-α acts as a lipid-dependent ser/thr protein kinase, can modulate various cellular processes, including cell survival, proliferation, differentiation, migration, adhesion and so on .
    Protein kinase C α peptide TFA
  • HY-P2936

    Phospholipase Metabolic Disease
    Sphingomyelin phosphodiesterase, Streptomyces sp., a hydrolase, is involved in the sphingomyelin metabolism process. Sphingomyelin phosphodiesterase hydrolyzes the conversion of sphingomyelin to phosphocholine and ceramide. Sphingomyelin phosphodiesterase also plays an important role in cellular differentiation, various immune and inflammatory responses, and intracellular cholesterol trafficking and metabolism .
    Sphingomyelin phosphodiesterase, Streptomyces sp.
  • HY-124824

    Glyoxalase (GLO) Others
    Methyl gerfelin inhibits osteoclast differentiation by binding 3 major cellular proteins: glyoxalase 1 (GLO1), sterol binding protein 2 (SCP2), and small glutamine-rich tetratricopeptide repeat containing protein A (SGTA). Methyl gerfelin is a potent GLO1 inhibitor related to the flavonoid class .
    Methyl gerfelin
  • HY-142032

    LPL Receptor Inflammation/Immunology
    RBM10-8 is irreversible inhibitor of recombinant  human sphingosine-1-phosphate lyase (hS1PL) . Sphingosine-1-phosphate (S1P) is a sphingolipid (SL) that acts as a signaling molecule regulating diverse cellular processes such as cell proliferation and differentiation, angiogenesis, immune function, inflammation, and development .
    RBM10-8
  • HY-146519

    Trk Receptor Cancer
    TRK-IN-14 is a potent inhibitor of TRK. Protein kinases play a critical role in the control of cell growth and differentiation and are responsible for the control of a wide variety of cellular signal transduction processes. TRK-IN-14 has the potential for the research of TRK-related diseases (extracted from patent WO2012034091A1, compound X-47) .
    TRK-IN-14
  • HY-146522

    Trk Receptor Cancer
    TRK-IN-16 is a potent inhibitor of TRK. Protein kinases play a critical role in the control of cell growth and differentiation and are responsible for the control of a wide variety of cellular signal transduction processes. TRK-IN-16 has the potential for the research of TRK-related diseases (extracted from patent WO2012034091A1, compound X-21) .
    TRK-IN-16
  • HY-146518

    Trk Receptor Cancer
    TRK-IN-13 is a potent inhibitor of TRK. Protein kinases play a critical role in the control of cell growth and differentiation and are responsible for the control of a wide variety of cellular signal transduction processes. TRK-IN-13 has the potential for the research of TRK-related diseases (extracted from patent WO2012034091A1, compound X-24) .
    TRK-IN-13
  • HY-146521

    Trk Receptor Cancer
    TRK-IN-15 is a potent inhibitor of TRK. Protein kinases play a critical role in the control of cell growth and differentiation and are responsible for the control of a wide variety of cellular signal transduction processes. TRK-IN-15 has the potential for the research of TRK-related diseases (extracted from patent WO2012034091A1, compound X-55) .
    TRK-IN-15
  • HY-P2818C

    Apase, microorganism

    Endogenous Metabolite Metabolic Disease
    Alkaline phosphatase, microorganism is a membrane-bound glycoprotein. It can hydrolyze monophosphate esters at alkaline pH, releasing inorganic phosphate. Alkaline phosphatase, microorganism is also capable of dephosphorylating proteins, and the balance between protein phosphorylation and dephosphorylation plays a key role in regulating various cellular functions. Alkaline phosphatase, microorganism can regulate cell proliferation and differentiation .
    Alkaline phosphatase, microorganism
  • HY-15650
    SGC0946
    Maximum Cited Publications
    9 Publications Verification

    Histone Methyltransferase Cancer
    SGC0946 is a selective DOT1LH3K79 methyltransferase) inhibitor, with an IC50 of 0.3 nM. SGC0946 results in G1 arrest, inhibits potential of cell self-renewal and metastatic, also induces cell differentiation. SGC0946 can be used in studies of leukemia and solid tumors and also serve as a probe to further investigate the cellular mechanism of DOT1L in both normal and diseased cells .
    SGC0946
  • HY-W009310

    Endogenous Metabolite Organoid Others
    9-cis-Retinal is a natural retinoid. Dietary 9-cis-β-carotene generates 9-cis-retinoids via cleavage into 9-cis-retinal. 9-cis Retinal binds to cellular retinol-binding protein-I (CRBP-I) and CRBP-II with Kds of 8 nM and 5 nM, respectively. 9-cis-Retinal expedites differentiation and maturation of rod photoreceptors in retinal organoids .
    9-cis-Retinal
  • HY-N6739

    Bacterial Apoptosis Fungal PI3K Akt TNF Receptor Interleukin Related Infection Cancer
    Beauvericin is a cyclohexapeptide Fusarium toxin with insecticidal, antibacterial, anticancer, antiviral and cytotoxic activities. Beauvericin causes cellular genotoxicity by producing DNA breaks, chromosomal aberrations and micronuclei, and inhibits the PI3K/AKT pathway to induce apoptosis, thereby inhibiting the growth of HCC. In addition, Beauvericin affects immune function by inhibiting lymphocyte proliferation and interfering with the differentiation process of human monocytes into macrophages .
    Beauvericin
  • HY-113225B

    GTP tritris

    Endogenous Metabolite Cancer
    Guanosine triphosphate tritris (GTP tritris) serves as a vital enhancer of myogenic cell differentiation and plays a critical role in modulating miRNA-myogenic regulator factors. It also facilitates the release of exosomes enriched with guanosine and guanosine-derived molecules, and is regarded as an activated precursor for RNA synthesis. In mitochondrial function, GTP participates in the import of proteins into the matrix, which is essential for various regulated pathways, and is involved in initiating peptide synthesis through the binding of formylmethionyl-tRNA to the ribosome, as well as polypeptide chain elongation. Additionally, GTP acts as a phosphate and pyrophosphate carrier that channels chemical energy into specific biosynthetic pathways. It activates signal transducing G proteins that regulate cellular processes such as proliferation and differentiation, and its hydrolysis by small GTPases, including Ras and Rho, is integral to both proliferation and apoptosis. Furthermore, the small GTPase Rab is instrumental in vesicle docking, fusion, and formation. Beyond signal transduction, GTP is an energy-rich precursor in the enzymatic biosynthesis of DNA and RNA.
    Guanosine triphosphate tritris
  • HY-142677

    PI3K Inflammation/Immunology Cancer
    PI3K-IN-27 is a potent inhibitor of PI3K. PI3K belongs to a large family of lipid signaling kinase that plays key role in cellular process including cell growth, differentiation, migration and apoptosis. PI3K-IN-27 has the potential for the research of hyper-proliferative diseases like cancer and inflammation, or immune and autoimmune diseases (extracted from patent WO2021233227A1, compound 1) .
    PI3K-IN-27
  • HY-W414697

    D-Ribo-phytosphingosine (C17 base)

    Others Others
    4-Hydroxysphinganine C17 base (D-Ribo-phytosphingosine C17 base), also known as D-ribo-phytosphingosine or PHS, is a crucial compound present in the membranes of fungi, plants, bacteria, marine organisms, and mammalian tissues. It plays a vital role in preserving the structural integrity of membranes, regulating cellular growth, and mediating the heat stress response in yeast. Additionally, PHS serves as a precursor for the synthesis of important lipid mediators such as PHS 1-phosphate, inositol phosphorylceramide, and KRN7000 (the α-anomer of galactosylceramide). Furthermore, this phospholipid promotes keratinocyte differentiation, making it a valuable active ingredient in cosmetic formulations.
    4-Hydroxysphinganine (C17 base)

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