53 Results for "

Tumor Hypoxia

" in MedChemExpress (MCE) Product Catalog:
Products (53)

53 Results for "Tumor Hypoxia" in MCE Product Catalog:

115
115 Publications Verification
Cat. No.: HY-10231
CAS No.: 685898-44-6
Purity:  ≥98.0%
PX-478 is a multifunctional HIF-1α inhibitor with properties including radiosensitization, autophagy activation, and lipid accumulation inhibition. PX-478 also blocks hypoxia-induced VEGF production and regulates β-cell phenotypes under hypoxic conditions. PX-478 induces cell cycle arrest and DNA damage, restores autophagic function, reduces foam cell formation, and maintains glucose homeostasis. PX-478 is widely used in research on related diseases such as human tumors (e.g., prostate cancer), type 2 diabetes, and atherosclerosis .
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22
22 Cited Publications
Cat. No.: HY-16438
CAS No.: 925206-65-1
Synonyms: Nibrozetone
RRx-001, a hypoxia-selective epigenetic agent and studied as a radio- and chem-sensitizer, triggers apoptosis and overcomes agent resistance in myeloma. RRx-001 exhibits potent anti-tumor activity with minimal toxicity . RRx-001 is a dual small molecule checkpoint inhibitor by downregulating CD47 and SIRP-α . RRx-001 is a potent inhibitor of G6PD and shows potent antimalarial activity .
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9
9 Cited Publications
Cat. No.: HY-105129
CAS No.: 70132-51-3
Purity:  99.98%
Research Areas:  

Cancer

Pimonidazole is a novel hypoxia marker for complementary study of tumor hypoxia and cell proliferation in tumor . Pimonidazole accumulates in hypoxic cells via covalent binding with macromolecules or by forming reductive metabolites after reduction of its nitro group, it can be used for qualitative and quantitative assessment of tumor hypoxia .
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9
9 Cited Publications
Cat. No.: HY-105129A
CAS No.: 70132-50-2
Purity:  99.32%
Research Areas:  

Cancer

Pimonidazole is a novel hypoxia marker for complementary study of tumor hypoxia and cell proliferation in tumor . Pimonidazole accumulates in hypoxic cells via covalent binding with macromolecules or by forming reductive metabolites after reduction of its nitro group, it can be used for qualitative and quantitative assessment of tumor hypoxia .
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1
1 Cited Publications
Cat. No.: HY-W016409
CAS No.: 3943-89-3
Synonyms: Protocatechuic acid ethyl ester
Ethyl 3,4-dihydroxybenzoate (Protocatechuic acid ethyl ester) is an orally effective, blood-brain barrier-permeable, competitive prolyl hydroxylase (PHD) inhibitor that inhibits the hydroxylation modification of hypoxia-inducible factor (HIF) by PHD. Ethyl 3,4-dihydroxybenzoate stabilizes HIF-1α by inhibiting PHD, activates downstream pathways to induce autophagy and apoptosis of tumor cells, and regulates inflammatory responses, inhibits the NF-κB pathway, improves vascular permeability, and promotes osteoblast differentiation. Ethyl 3,4-dihydroxybenzoate has anti-tumor, anti-hypoxic injury, and bone metabolism regulation effects. It can also be used in the research of cardiovascular protection (such as reducing myocardial ischemic damage), bone tissue engineering (promoting osteogenesis/inhibiting osteoclast differentiation), and prevention and treatment of high-altitude cerebral edema .
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1
1 Cited Publications
Cat. No.: HY-P10869
dCNP binds to NPR-B/C receptor, activates cGMP signaling pathway, and regulates vascular function. dCNP exhibits anti-hypoxia property through downregulation of hypoxia-related genes expressions like HIF1α and HIF2α. dCNP inhibits the induction of tumor stroma and exhibits anti-fibrosis activity. dCNP upregulates CTLs, NK cells, and conventional type 1 dendritic cells in tumors, and activates immune responses .
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Cat. No.: HY-152293
CAS No.: 1412453-70-3
Target:  

VEGFR ERK

Research Areas:  

Cancer

EVT801 is an orally active and selective inhibitor of VEGFR-3 (IC50=11 nM), which has antitumor effects. EVT801 inhibits not only VEGF-C-induced human endothelial cell proliferation, but also tumor (lymphatic) angiogenesis in tumor mouse models. EVT801 can reduce tumor hypoxia, immunosuppressive cytokines (CCL4, CCL5) and myeloid derived suppressor cells (MDSC) production. EVT801 has synergistic effect with immune checkpoint therapy (ICT), which improves ICT response rate and has better inhibitory effect on cancer mouse models . EVT801 is a click chemistry reagent, it contains an Alkyne group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing Azide groups.
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Cat. No.: HY-159644
CAS No.: 2709069-30-5
Synonyms: AB521
Research Areas:  

Cancer

Casdatifan (AB521) is an orally active and selective allosteric small-molecule inhibitor of hypoxia-inducible factor 2α (HIF-2α). Casdatifan inhibits pro-tumor gene transcription by blocking the heterodimerization of HIF-2α with ARNT, and significantly suppresses tumor growth in clear cell renal cell carcinoma (ccRCC) models either as a monotherapy or in combination with agents such as Zimberelimab (HY-P99109). Casdatifan is applicable for the research of ccRCC .
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Cat. No.: HY-16405
CAS No.: 851627-62-8
Research Areas:  

Cancer

PR-104 is a selective hypoxia-activated DNA cross-linking agent and can be used for the research of multiple tumor xenograft models. PR-104, as a nitrogen mustard pre-proagent, is converted efficiently to the more lipophilic dinitrobenzamide mustards alcohol PR-104A .
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Cat. No.: HY-122094
CAS No.: 56486-94-3
Purity:  99.49%
Steppogenin is a potent inhibitor of HIF-1α and DLL4, with IC50 values of 0.56 and 8.46 μM, respectively. Steppogenin can be sued for the research of angiogenic diseases, such as those involving solid tumors .
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Cat. No.: HY-151465
CAS No.: 2826221-23-0
Purity:  99.95%
Research Areas:  

Cancer

HIF-1α-IN-4 is a HIF-1α inhibitor with an IC50 value of 24 nM (in HEK293T cell). HIF-1α-IN-4 downregulates VEGF and PDK1 mRNA expressions under hypoxia. HIF-1α-IN-4 can be used in the research of cancer .
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Cat. No.: HY-W342380
CAS No.: 5463-64-9
Synonyms: NSC 5067
Target:  

E1/E2/E3 Enzyme

Research Areas:  

Cancer

SPI-05 (NSC 5067) is a non-competitive SUMO-specific proteases (SENP1/2) inhibitor (IC50=60 μM). SPI-05 is promising for research of cancers, such as prostate cancer and hypoxia-driven solid tumors with SENP1 overexpression .
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Cat. No.: HY-158189
CAS No.: 3030629-73-0
TPP-Ce6 is a mitochondria-targeted photosensitizer formed by the ester bond conjugation of chlorophyll e6 (Ce6) with triphenylphosphine (TPP). Under light irradiation or ultrasound exposure, TPP-Ce6 generates reactive oxygen species, induces cell apoptosis, and triggers immunogenic cell death. TPP-Ce6 can serve as a component of carrier-free co-delivery systems, undergo enzyme-induced self-assembly within tumors, and modulate tumor hypoxia. TPP-Ce6 is applicable to research on breast cancer and glioblastoma .
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Cat. No.: HY-N13009
CAS No.: 2744300-63-6
MO-2097 is a RAF-1/HIF-1α inhibitor. MO-2097 induces RAF-1 destabilization, leading to a reduction in EMT-associated transcription factors and mesenchymal markers. MO-2097 inhibits HIF-1a protein expression mediated by hnRNPA2B1 under hypoxic and mimetic hypoxia. MO-2097 induces mitochondrial ROS, which leads to apoptosis in cells. MO-2097 effectively suppresses colorectal cancer metastasis by inhibiting the RAF/MEK/ERK signaling pathway. MO-2097 attenuates tumor growth in a xenograft HCT116 cell mouse model. MO-2097 can be used for the study of colorectal cancer .
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Cat. No.: HY-170779
CAS No.: 3078291-78-5
Target:  

FAP

Research Areas:  

Cancer

DOTA-NI-FAPI-04 is a FAP inhibitor (IC50 = 7.44 nM). By integrating FAP targeting with hypoxia-sensitive groups (nitroimidazole), DOTA-NI-FAPI-04 significantly enhances tumor uptake and retention capabilities. DOTA-NI-FAPI-04 chelates metallic isotopes (such as 68Ga and 177Lu) through DOTA to produce radioactive probes ([68Ga]Ga/DOTA-NI-FAPI-04 and [177Lu]Lu/DOTA-NI-FAPI-04), which can be used for research in tumor diagnostics and therapeutic agents. DOTA-NI-FAPI-04 holds dual targeting potential in the fields of cancer imaging, tumor microenvironment analysis, and radionuclide therapy, particularly suitable for scenarios where the tumor stroma and hypoxic regions synergistically interact .
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Cat. No.: HY-W044762
CAS No.: 3393-45-1
Target:  

Carbonic Anhydrase

Research Areas:  

Cancer

5,6-Dihydro-2H-pyran-2-one (Compound 1) is a prodrug-type carbonic anhydrase inhibitor. 5,6-Dihydro-2H-pyran-2-one can specifically inhibit the tumor-associated subtype hCA IX and the cytoplasmic subtype hCA I with Ki values of 1.35 and 8.03 μM. 5,6-Dihydro-2H-pyran-2-one can be used for the research on hypoxia-related cancer .
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Cat. No.: HY-151466
CAS No.: 2826221-10-5
Purity:  99.95%
Research Areas:  

Cancer

HIF-1α-IN-5 is a HIF-1α inhibitor with an IC50 value of 24 nM (in HEK293T cell). HIF-1α-IN-5 also inhibits MAO-A activity. HIF-1α-IN-5 downregulates VEGF and PDK1 mRNA expressions under hypoxia. HIF-1α-IN-5 can be used in the research of cancer .
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Cat. No.: HY-106509
CAS No.: 77858-21-0
Purity:  99.59%
Synonyms: BW 12C; 12C79; BW 12C79
Target:  

Hemoglobin

Research Areas:  

Cardiovascular Disease Cancer

Velaresol (BW 12C) is a small molecule oxyhemoglobin stabilizer. Velaresol stabilizes hemoglobin’s oxy-conformation, shifts oxygen dissociation curves left, induces tumor hypoxia, alters radiosensitivity, protects normal tissues from radiation damage, and reduces sickled cell counts. Velaresol can be used for the research of cancer and sickle cell disease .
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Cat. No.: HY-179341
CAS No.: 3104302-65-7
Research Areas:  

Cancer

CHNQD-03301 is an orally active hypoxia-inducible factor-1α (HIF-1α) inhibitor (IC50 = 10.97 nM). CHNQD-03301 promotes the proteasomal degradation of HIF-1α protein, leading to its significant suppression. CHNQD-03301 can reverse HIF accumulation-induced angiogenesis and mitigate the HIF-induced erythrocytosis phenotype in zebrafish models. CHNQD-03301 can be used for the study of colon cancer .
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Cat. No.: HY-P10988
CAS No.: 2197957-07-4
Research Areas:  

Cancer

LVTX-8 is a peptide toxin, exacted from Lycosa vittata. LVTX-8 has potent anticancer and and anti-metastasis activities towards lung cancer with strong cytotoxicity. LVTX-8 significantly induces apoptosis and inhibits the proliferation, invasion and migration of lung cancer cells through P53 hypoxia pathways and integrin signaling. LVTX-8 significantly inhibits the tumor growth and metastasis in A549/H460 xenograft mice model .
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