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| Cat. No. | Product Name | Field of Application | Chemical Structure |
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| DC78273 | WML-01 |
WML-01 is a fungicide with EC50s of 0.079, 0.72 and 2.02 μg/mL against F. graminearum, F. fujikuroi and S. sclerotiorum. WML-01 disrupts the cell membrane of F. graminearum and induces deposition of lipid droplets. WML-01 inhibits Deoxynivalenol (DON) biosynthesis with no cross-resistance and strongly suppresses ribosomal subunit assembly, impairing protein synthesis. WML-01 effectively controls the fusarium head blight (FHB) epidemic.
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| DC78272 | Y502-2304 |
Y502-2304 is a c-Myc G-quadruplex stabilizer. Y502-2304 exhibits potent antiproliferative activity in multiple myeloma (MM) cells. Y502–2304 downregulates c-Myc mRNA and protein expression. Y502-2304 induces apoptosis in MM cells, characterizes by elevated γH2AX levels, increases reactive oxygen species (ROS) generation, and mitochondrial dysfunction. Y502-2304 significantly inhibits tumor growth in a xenograft MM model. Y502-2304 can be used for the study of multiple myeloma.
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| DC78271 | T-0902611 benzenesulfonate |
T-0902611 benzenesulfonate is a specific HCMV inhibitor. T-0902611 benzenesulfonate targets and covalently modifies the HCMV helicase–primase complex. T-0902611 benzenesulfonate can be used in the research of HCMV infection.
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| DC78270 | JY-21 |
JY-21 is a BRD4 PROTAC degrader with a DC50 of 3.797 μM. JY-21 has a potent anticancer activity against MDA-MB-231 cells.
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| DC78269 | Type II TRK inhibitor 3 |
Type II TRK inhibitor 3 (Compound 18d) is a Type II TRK inhibitor with IC50 values of 0.82, 1.82, and 0.12 nM for TRKAWT/G595R/G667C, respectively. Type II TRK inhibitor 3 exhibits antitumor activity.
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| DC78268 | CTC 96 |
CTC 96 is an antiviral agent, showing inhibitory effects particularly on herpes viruses and adenoviruses. CTC 96 directly blocks the fusion process between the viral envelope and the cell membrane, preventing the entry of viral nucleic acids and proteins into the cells. CTC 96 can completely block the penetration and intercellular transmission of HSV-1, preventing the synthesis of viral proteins and mRNA. CTC 96 exhibits significant anti-adenovirus activity in rabbit eye models. CTC 96 is also effective against varicella-zoster virus (VZV) and vesicular stomatitis virus (VSV). CTC 96 can be used for broad-spectrum antiviral research.
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| DC78267 | KRAS G12D ligand-Linker Conjugate 2 |
KRAS G12D ligand-Linker Conjugate 2 is a conjugate of the KRAS (G12D) ligand and the linker. KRAS G12D ligand-Linker Conjugate 2 can be used for synthesizing PROTAC KRAS (G12D) degrader ASP-3082
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| DC78266 | JNJ627 |
JNJ627 is a small molecule allosteric inhibitor of IL-17A with a KD of 92 nM. JNJ627 effectively inhibits the binding of IL-17A and IL-17RA, with an IC50 value of 16 nM. JNJ627 is capable of inhibiting the secretion of G-CSF (granulocyte colony-stimulating factor) caused by IL-17A stimulation. JNJ627 can be used for the study of autoimmune diseases (such as psoriasis).
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| DC78265 | afi-FSP1-1 |
afi-FSP1-1 is a Ferroptosis suppressor protein 1 (FSP1) inhibitor with an Ki of 0.283 μM. afi-FSP1-1 has a superior binding capacity to FSP1-FAD-NAD+. afi-FSP1-1 can induces ferroptosis in cancer cells. afi-FSP1-1 can be used for cancers research.
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| DC78264 | SHP2 ligand-3 |
SHP2 ligand-3 is a PROTAC target protein ligand that can be used to synthesize SHP2 protein degrader-1.
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| DC78263 | Indolidan |
Indolidan (LY195115) is an orally active cardiotonic agent and a selective cyclic nucleotide phosphodiesterase inhibitor. Indolidan has a Ki of 80 nM for sarcoplasmic reticulum phosphodiesterase (SR-PDE). Indolidan exhibits positive inotropic and vasodilator effects. Indolidan can be used in the research of diseases such as congestive heart failure.
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| DC78262 | 4-(4-Boc-piperazinemethyl)phenylboronic acid pinacol ester |
4-(4-Boc-piperazinemethyl)phenylboronic acid pinacol ester is a PROTAC linker that can be used in the synthesis of CST905.
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| DC78261 | Chem-0199 |
Chem-0199 is an Adipocyte Enhancer-Binding Protein 1 (AEBP1) inhibitor. Chem-0199 can disrupt the interaction between AEBP1 and CKAP4, thereby enhances antitumor immunity. Chem-0199 can inhibit Akt phosphorylation (p-Akt) and downregulates PD-L1 expression. Chem-0199 can be used for the research of cancer, such as colon cancer.
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| DC78260 | YM 934 |
YM 934 is a potassium channel opener. YM 934 inhibits neurogenic plasma leakage. YM 934 inhibits airway neurogenic inflammation.
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| DC78259 | SB-T-101141 |
SB-T-101141 is a novel taxane. SB-T-101141 effectively induces a noncanonical ferroptosis to overcome Paclitaxel resistance of breast cancer. SB-T-101141 facilitates the production of iron and ferrous ions and ROS. SB-T-101141 stably binds to KHSRP to inhibit the iron-dependent expression of CISD1 related to iron homeostasis. SB-T-101141 synergistically enhances the iron-dependent activation of JNK and PERK pathways via KHSRP. SB-T-101141 suppresses breast tumor growth in MCF-7(PR)/MDA-MB-231(PR) or KHSRP knock-down MCF-7 xenograft mice model.
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| DC78258 | BMS-188184 |
BMS-188184 is a type II s-PLA2 inhibitor (IC50 = 17 µM). BMS-188184 can be used for research on inflammatory conditions.
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| DC78257 | Melianol |
Melianol is a compound that can be extracted from the fruits of Melia azeradacha and can be used as an acaricide.
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| DC78256 | c-MYC/BCL2 ligand 1 iodide |
c-MYC/BCL2 ligand 1 iodide is a dual-targeting c-MYC/Bcl-2 G4 ligand with Kd values of 0.90 μM (c-MYC G4) and 0.56 μM (Bcl-2 G4). c-MYC/BCL2 ligand 1 iodide inhibits c-MYC and Bcl-2 gene transcription by binding to G4-forming sequences and downregulates their protein expression. c-MYC/BCL2 ligand 1 iodide inhibits suppresses migration, induces caspase-dependent apoptosis, and triggers cell cycle G1 arrest in MCF-7 cells. c-MYC/BCL2 ligand 1 iodide significantly suppresses tumor growth in a 4T1 syngeneic model with no observable toxicity. c-MYC/BCL2 ligand 1 iodide can be used for the research of breast cancer.
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| DC78255 | KOS-2079 |
KOS-2079 is an antifungal agent with good oral bioavailability. KOS-2079 has strong inhibitory activity against Aspergillus flavus 204303 (MIC = 1.10 μg/mL) and Aspergillus fumigatus 204305 (MIC = 1.32 μg/mL). KOS-2079 is commonly used in the study of fungal infections.
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| DC78254 | FD-895 |
FD-895 is a spliceosome modulator derived from a polyketide natural product, targeting the SF3b subunit of the spliceosome. FD-895 possesses core biological activities for regulating RNA splicing (intron retention, alternative splicing) and inducing apoptosis of cancer cells. FD-895 can be used for the research of cancer, such as chronic lymphocytic leukemia (CLL).
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| DC78253 | PD 161374 |
PD 161374 is an inhibitor targeting the HIV-1 nucleocapsid protein NCp7. PD 161374 primarily acts on the early stages of viral replication, inhibiting the completion of reverse transcription without affecting viral entry or later assembly. PD 161374 remains active against HIV-1, HIV-2, SIV, and drug-resistant strains. PD 161374 can be used to study antiretroviral agents.
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| DC78252 | (±)-Jasmonic-L-isoleucine |
(±)-Jasmonic-L-isoleucine ((±)-JA-L-Ile) is a conjugate of the plant hormone jasmonic acid with an amino acid, JA-Ile, and is the active form of the jasmonic acid signaling pathway. (±)-Jasmonic-L-isoleucine can control plant defense responses, growth and development, and stress response processes.
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| DC78251 | Mc-Lys(PEG12)-Cap-Ala-Ala-PABC-exatecan |
Mc-Lys(PEG12)-Cap-Ala-Ala-PABC-exatecan (compound 12) is a Drug-Linker Conjugate for ADC. Mc-Lys(PEG12)-Cap-Ala-Ala-PABC-exatecan contains the ADC linker (Mc-Lys(PEG12)-Cap-Ala-Ala-PABC) and a DNA topoisomerase I inhibitor Exatecan. Mc-Lys(PEG12)-Cap-Ala-Ala-PABC-exatecan can be used for the development of ADC targeting HER2-positive breast cancer.
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| DC78250 | XSJ81 |
XSJ81 is an orally active anti-cancer agent. XSJ81 significantly inhibits the proliferation of ampullary carcinoma (AC) DPC-X3 cells with an IC50 of 0.655 μM. XSJ81 inhibits the colony formation, arrests cell cycle at the G2/M phase and inhibits the migration in DPC-X3 cells. XSJ81 induces DNA damage and apoptosis in DPC-X3 cells. XSJ81 demonstrates significant anti-tumor efficacy in mice bearing DPC-X3 xenografts. XSJ81 can be used for the study of ampullary carcinoma.
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| DC78249 | ASX-173 |
ASX-173 is an orally active inhibitor of asparagine synthetase (ASNS) (IC50 = 0.113 μM, Ki = 0.4 nM). ASX-173 enhances the anticancer activity of L-asparaginase (ASNase). ASX-173 disrupts nucleotide synthesis and induces leukemia cell cycle arrest, apoptosis and autophagy in leukemia cells in combination with ASNase. ASX-173 slows the growth of OCI-AML2 xenografts in combination with ASNase. ASX-173 is indicated for the study of acute lymphoblastic leukemia, acute myeloid leukemia, colorectal cancer, and other cancers.
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| DC78248 | Auristatin S |
Auristatin S is an Auristatin payload with potent antitumor activity. Auristatin S attenuates bystander activity with improved off-target toxicity. Auristatin S has excellent tolerability in Karpas/KarpasBVR cell models. Auristatin S can be used as a cytotoxic component of antibody-drug conjugates (ADCs) to treat several different cancer types.
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| DC78247 | Hydrotecan |
Hydrotecan is a Camptothecin derivative that can be used as an ADC cytotoxin. Hydrotecan can be used to synthesize ADC molecules.
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| DC78246 | Topi MF-6 |
Topi MF-6 is a DNA topoisomerase I (Top1) inhibitor. Topi MF-6 has superior cytotoxicity against gastrointestinal cancer cells. Topi MF-6 can be used as an ADC payload.
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| DC78245 | c9,t11,c15-CLNA |
c9,t11,c15-CLNA is a conjugated linolenic acid (CLNA) isomer produced by Lactobacillus plantarum ZS2058. c9,t11,c15-CLNA has significant anti-proliferation activity against colon cancer cells (IC50: 18.26 μM). c9,t11,c15-CLNA induces pyroptosis by activating the canonical pyroptosis pathway mediated by caspase-1. c9,t11,c15-CLNA can be used in the study of colon cancer.
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| DC78244 | t9,t11,c15-CLNA |
t9,t11,c15-CLNA is a conjugated linolenic acid (CLNA) isomer produced by Lactobacillus plantarum ZS2058. t9,t11,c15-CLNA has the main activities of anti-inflammatory, antioxidant and improving intestinal barrier function. The regulatory mechanism of t9,t11,c15-CLNA includes upregulation of tight junction proteins, inhibition of pro-inflammatory cytokines (such as TNF-α, IL-6) and activation of antioxidant enzymes (such as SOD, CAT). t9,t11,c15-CLNA can be used in the study of inflammatory bowel diseases (such as colitis).
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