9 Results for "

Cancer chemotherapy and radiotherapy

" in MedChemExpress (MCE) Product Catalog:
Products (9)

9 Results for "Cancer chemotherapy and radiotherapy" in MCE Product Catalog:

161
161 Cited Publications
Cat. No.: HY-10087A1
CAS No.: 1093851-28-5
Synonyms: ABT-263 dihydrochloride
Navitoclax dihydrochloride (ABT-263 dihydrochloride) is an orally active BH3 mimetic and an inhibitor of Bcl-2, Bcl-xL, and Bcl-w, with a Ki value of <1 nM for each target. Navitoclax dihydrochloride triggers endogenous Apoptosis and downregulates the expression of Survivin and TGFβ2. Navitoclax dihydrochloride alleviates fibrosis and induces thrombocytopenia. Navitoclax dihydrochloride exhibits anticancer activity against a variety of tumors and enhances the efficacy of chemotherapy and radiotherapy. Navitoclax dihydrochloride can be used in the research of acute lymphoblastic leukemia, ovarian cancer, and fibrotic diseases .
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1
1 Cited Publications
Cat. No.: HY-10087S
CAS No.: 1217620-38-6
Purity:  99.71%
Navitoclax-d8 is the d8-labeled Navitoclax (HY-10087). Navitoclax (ABT-263 ) is an orally active BH3 mimetic and an inhibitor of Bcl-2, Bcl-xL, and Bcl-w, with a Ki value of <1 nM for each target. Navitoclax triggers endogenous Apoptosis and downregulates the expression of Survivin and TGFβ2. Navitoclax alleviates fibrosis and induces thrombocytopenia. Navitoclax exhibits anticancer activity against a variety of tumors and enhances the efficacy of chemotherapy and radiotherapy. Navitoclax can be used in the research of acute lymphoblastic leukemia, ovarian cancer, and fibrotic diseases .
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Cat. No.: HY-10087R
CAS No.: 923564-51-6
Synonyms: ABT-263 (Standard)
Navitoclax (Standard) (ABT-263 (Standard)) is the analytical standard of Navitoclax (HY-10087). This product is intended for research and analytical applications. Navitoclax (ABT-263 ) is an orally active BH3 mimetic and an inhibitor of Bcl-2, Bcl-xL, and Bcl-w, with a Ki value of <1 nM for each target. Navitoclax triggers endogenous Apoptosis and downregulates the expression of Survivin and TGFβ2. Navitoclax alleviates fibrosis and induces thrombocytopenia. Navitoclax exhibits anticancer activity against a variety of tumors and enhances the efficacy of chemotherapy and radiotherapy. Navitoclax can be used in the research of acute lymphoblastic leukemia, ovarian cancer, and fibrotic diseases .
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Cat. No.: HY-175779
Research Areas:  

Cancer

TDP1-IN-4 (Compound 33) is a Tyrosyl-DNA phosphodiesterase 1 (TDP1) inhibitor with an IC50 of 0.90  μM. TDP1-IN-4 has a strong synergistic effect with Camptothecin (HY-16560) in SK-Mel-2 cells, but not in cancer cells (A549, HCT-116 and MCF-7 cells) and non-cancerous Ges-1 cells. TDP1-IN-4 can be used for cancer chemotherapy and radiotherapy research .
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Cat. No.: HY-144036
CAS No.: 2734846-19-4
Target:  

DNA-PK

Research Areas:  

Cancer

DNA-PK-IN-3 is a potent inhibitor of DNA-PK. DNA-PK-IN-3 synergistically enhances the effect of radiotherapy and chemotherapy and effectively inhibits tumor growth. DNA-PK-IN-3 also effectively reduces the damage to normal cells and reducing side effects. DNA-PK-IN-3 has the potential for the research of cancer disease (extracted from patent WO2021213460A1, compound 4) .
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Cat. No.: HY-116604
CAS No.: 4425-23-4
Synonyms: PD 139530
Target:  

PI3K Akt

Research Areas:  

Cancer

RLX (PD 139530) is a PI3K/Akt/FoxO3a signaling inhibitor, possessing significant therapeutic potential in experimental colon cancer. RLX can effectively modulate the tumor microenvironment, enhancing the efficacy of cancer immunotherapy. RLX demonstrates the ability to improve the retention time of therapeutic agents within the tumor microenvironment by utilizing advanced nanoparticle delivery systems. RLX can be integrated with various treatment modalities, such as chemotherapy and radiotherapy, to enhance overall tumor therapy effectiveness .
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Cat. No.: HY-116604A
CAS No.: 21314-60-3
Synonyms: PD 139530 hydrochloride
Target:  

PI3K Akt

Research Areas:  

Cancer

RLX (PD 139530) hydrochloride is the hydrochloride of RLX (HY-116604). RLX is a PI3K/Akt/FoxO3a signaling inhibitor, possessing significant therapeutic potential in experimental colon cancer. RLX can effectively modulate the tumor microenvironment, enhancing the efficacy of cancer immunotherapy. RLX demonstrates the ability to improve the retention time of therapeutic agents within the tumor microenvironment by utilizing advanced nanoparticle delivery systems. RLX can be integrated with various treatment modalities, such as chemotherapy and radiotherapy, to enhance overall tumor therapy effectiveness .
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Cat. No.: HY-L135
3,540 compounds

With the progress of modern cancer therapy, the life of cancer patients has been extended. However, after initial treatment and recovery, the development of secondary tumors often leads to cancer recurrence. Cancer stem cells are a small number of cells that tumor growth and reproduction depend on.

Cancer stem cells have strong self-renewal ability, which is the direct cause of tumor occurrence. In addition, cancer stem cells also have the ability to differentiate into different cell types, playing a crucial role in tumor metastasis and development. Chemotherapy and radiotherapy induced DNA damage and apoptosis are common cancer treatments. However, cancer stem cells can effectively protect cancer cells from apoptosis by activating DNA repair ability. Cancer stem cells are regarded as the key "seed" of tumor occurrence, development, metastasis and recurrence. Since its first discovery in leukemia in 1994, cancer stem cells have been considered a promising therapeutic target for cancer treatment.

MCE supplies a unique collection of 3,540 compounds targeting key proteins in cancer stem cells. MCE Cancer Stem Cells Compound Library is a useful tool for cancer stem cells related research and anti-cancer drug development.

Cat. No.: HY-L074
3,404 compounds

Breast cancer is the most frequent cancer among women, impacting 2.1 million women each year, and also causes the greatest number of cancer-related deaths among women. Surgery is usually the first type of treatment for breast cancer, which is usually followed by chemotherapy or radiotherapy or, in some cases, hormone or targeted therapies, especially for metastatic breast cancer (MBC).

Breast cancer is a heterogeneous disease, which is categorized into 3 major subtypes based on the presence or absence of molecular markers for estrogen or progesterone receptors and human epidermal growth factor 2 (ERBB2; formerly HER2): hormone receptor positive/ERBB2 negative (70% of patients), ERBB2 positive (15%-20%), and triple-negative (tumors lacking all 3 standard molecular markers; 15%). Different intrinsic subtypes exhibit different tumor behavior with different prognoses, and may require specific targeted therapies to maximize treatment effectiveness. Otherwise, some signaling pathways also play important roles in the development of breast cancer, such as NF-κB Signaling Pathway, TGF-beta Signaling Pathway, PI3K/AKT/mTOR signaling pathway and Notch Signaling Pathway. These signaling pathways offer ideal targets for development of new targeted therapies for breast cancer.

MCE supplies a unique collection of 3,404 compounds with identified and potential anti-breast cancer activity. MCE Anti-Breast Cancer Compound Library is a useful tool for anti-breast cancer drugs screening.