-
FLT3/HDAC Inhibitor
FLT3/HDAC-IN-3 is a dual inhibitor targeting FLT3 and HDAC, with a potent inhibitory effect on FLT3 (IC50 = 14 nM) and HDAC isoforms, including HDAC1 (IC50 = 27 nM) and HDAC6 (IC50 = 20 nM). This compound demonstrates selective inhibition, exhibiting reduced activity against HDAC8 and no activity toward HDAC4. FLT3/HDAC-IN-3 has shown anti-proliferative effects across various hematological malignancy cell lines and demonstrates efficacy in the Jeko-1 xenograft model without significant toxicity. It is suitable for research focused on hematological malignancies and the role of dual inhibition in therapeutic strategies. -
BTK Inhibitor
BTK-IN-7 is a potent and selective Bruton’s Tyrosine Kinase (BTK) inhibitor, exhibiting an IC50 of 4.0 nM. This compound demonstrates exceptional selectivity in enzymatic assays, with over 250-fold selectivity for ITK and over 2500-fold for EGFR, as well as in cellular contexts with a 227-fold and 27-fold selectivity respectively. BTK-IN-7 exhibits significant antitumor activity, making it a valuable tool for research in cancer biology and the development of targeted therapies. -
FLT3/JAK2 Inhibitor
JAK2/FLT3-IN-3 is a potent dual inhibitor of FLT3 and JAK2, exhibiting IC50 values of 2.01 nM for JAK2, 0.51 nM for FLT3, and 104.40 nM for JAK3. This compound induces apoptosis in cancer cells and demonstrates significant antitumor activity. Its ability to inhibit both FLT3 and JAK2 pathways makes it a valuable tool for research related to hematological malignancies and targeted cancer therapies. -
BTK Inhibitor
BTK-IN-9 is a reversible Bruton's tyrosine kinase (BTK) inhibitor known for its potent antiproliferative effects against mantle cell lymphoma. This compound disrupts mitochondrial membrane potential and elevates reactive oxygen species levels in Z138 cells, leading to increased apoptotic activity. BTK-IN-9 is valuable for research applications focusing on lymphoma biology and the mechanisms of apoptosis. -
ALK Inhibitor
KF-20444 is a selective ALK inhibitor that effectively penetrates the blood-brain barrier. It demonstrates potent activity against ALK fusion proteins such as EML4-ALK and various ALK resistance mutations, including L1196M, G1202R, and F1174L. By inhibiting ALK phosphorylation in ALK-driven cancer cell lines, KF-20444 suppresses cell proliferation and promotes apoptosis. This compound shows significant anti-tumor efficacy in mouse models of ALK-positive non-small cell lung cancer (NSCLC) and neuroblastoma, making it a valuable tool for research on ALK-driven malignancies. -
FGFR2 Kinase Inhibitor
Picrasidine Q is a FGFR2 kinase inhibitor derived from the alkaloid components of Angelica keiskei. It exhibits significant anti-cancer properties by inducing apoptosis and causing G1 phase cell cycle arrest in human esophageal cancer cell lines. This compound is valuable for research focused on cancer biology and the molecular mechanisms underlying cell transformation and proliferation. -
EGFR Inhibitor
EGFR-IN-161 is a potent and reversible inhibitor targeting L858R/T790M/C797S mutant EGFR kinases, demonstrating an IC50 of 0.87 nM. This compound effectively induces apoptosis, causes G1-phase cell cycle arrest, and inhibits migration in tumor cells, making it a valuable tool for cancer research focused on EGFR mutations. Its specificity and efficacy provide significant potential in the study of targeted therapies for resistant forms of non-small cell lung cancer. -
EGFR Inhibitor
EGFR Kinase Inhibitor 1 is a selective inhibitor targeting the epidermal growth factor receptor (EGFR), exhibiting IC50 values of 37 nM for wild-type, 1.7 nM for L858R/T790M, and greater than 300 nM for L858R/T790M/C797S mutant variants. This compound induces apoptosis and promotes cell cycle arrest at the G0/G1 phase, effectively inhibiting cell motility. Its strong antiproliferative and anti-tumor activities make it a valuable tool for research in cancer biology, particularly in studies related to EGFR-driven malignancies. -
EGFR Inhibitor
EGFR-IN-56 is a potent inhibitor of the epidermal growth factor receptor (EGFR), demonstrating IC50 values of 541.7 nM and 132.1 nM against the EGFRT790M and EGFRT790M/L858R mutations, respectively. This compound significantly disrupts cell cycle progression by blocking cancer cells in the G2/M phase and facilitating late apoptosis. It is suitable for studies examining the therapeutic potential of EGFR inhibition in cancer research. -
VEGFR-2/β-tubulin Inhibitor
VEGFR-2-IN-22 is a dual inhibitor targeting VEGFR-2 and β-tubulin polymerization, demonstrating an IC50 of 19.82 nM against VEGFR-2. This compound promotes apoptosis, making it a valuable tool for studying angiogenesis and cancer biology. Its mechanism of action provides insights into vascular endothelial growth factor pathways and their role in tumor progression. -
FAK Inhibitor
FAK-IN-29 is a potent selective inhibitor of focal adhesion kinase (FAK), exhibiting an IC50 of 0.5 nM. This compound demonstrates significant antitumor activity by inhibiting proliferation and colony formation of MDA-MB-231 cells, as well as inducing cell cycle arrest and apoptosis. FAK-IN-29 is a valuable tool for investigating the role of FAK in various tumors, particularly in the research of triple-negative breast cancer. -
FLT3 Inhibitor
Tuspetinib dihydrochloride is a selective FLT3 inhibitor that demonstrates potent inhibitory activity with IC50 values of 1.1 nM for FLT3 WT, 1.8 nM for FLT3 ITD, and 1.0 nM for FLT3 D835Y kinases. As a reversible type I inhibitor, it effectively modulates downstream signaling pathways, including p-STAT5, p-ERK, SYK, JAK1/2, and TAK1. Tuspetinib dihydrochloride is utilized in research for its ability to inhibit proliferation and induce apoptosis in leukemic cells, making it significant for studies on hematological malignancies. -
EGFR Inhibitor
EGFR-IN-57 is a potent EGFR tyrosine kinase inhibitor with an IC50 of 0.054 µM, demonstrating significant inhibitory activity against additional targets including VEGFR-2, CK2α, topoisomerase IIβ, and tubulin polymerization, with respective IC50 values of 0.087, 0.171, 0.130, and 3.61 µM. This compound effectively induces cell cycle arrest at the G2/M and pre-G1 phases, promoting apoptosis in cancer cells. EGFR-IN-57 is utilized in research applications focused on cancer therapy, specifically targeting EGFR signaling pathways and elucidating mechanisms of tumor growth and resistance. -
FLT3/MNK2 Inhibitor
K783-0308 is a potent and selective dual inhibitor of FLT3 and MNK2, demonstrating IC50 values of 680 nM and 406 nM, respectively. This compound effectively inhibits the growth of acute myeloid leukemia (AML) cell lines, MOLM-13 and MV-4-11, with IC50 values of 10.5 µM and 10.4 µM. Additionally, K783-0308 promotes apoptosis and induces cell cycle arrest in the G0/G1 phase, making it a valuable tool for research into AML and related pathways. -
EGFR Inhibitor
EGFR/microtubule-IN-1 is a dual inhibitor targeting epidermal growth factor receptor (EGFR) and tubulin. It exhibits an IC50 of 10.66 nM for EGFR inhibition, effectively reducing phosphorylation levels of EGFR, AKT, and ERK. Additionally, this compound disrupts tubulin polymerization and induces apoptosis, making it a valuable tool for cancer research and studies focused on cell signaling pathways and microtubule dynamics. -
FLT3-ITD Inhibitor
FLT3-ITD-IN-3 is a potent inhibitor of FLT3-ITD (FLT3 internal tandem duplication), primarily targeting the FLT3 signaling pathway. This compound effectively disrupts FLT3 signal transduction, leading to G0/G1 cell cycle arrest and the induction of apoptosis in malignant cells. FLT3-ITD-IN-3 is valuable for research applications focused on acute myeloid leukemia (AML) and related hematological disorders. -
EGFR Inhibitor
EGFR-IN-152 is a highly selective inhibitor of the epidermal growth factor receptor (EGFR) tyrosine kinase, demonstrating significant inhibitory activity against the EGFR L858R/T790M/C797S mutant isoforms, with an IC50 of 40 nM. This compound effectively induces G0/G1 phase cell cycle arrest and apoptosis, leading to the inhibition of colony formation and cell proliferation in non-small cell lung cancer (NSCLC) models. EGFR-IN-152 serves as a valuable tool for research focusing on NSCLC and novel therapeutic strategies targeting EGFR mutations. -
EGFR Inhibitor
EGFR-IN-97 is a selective inhibitor of the epidermal growth factor receptor (EGFR). This compound demonstrates potent inhibitory activity against Ba/F3 cells expressing EGFR mutations, specifically L858R/T790M/C797S and Del19/T790M/C797S, with IC50 values of 0.42 μM and 0.41 μM, respectively. Additionally, EGFR-IN-97 effectively induces apoptosis in NCI-H1975 cells harboring the EGFR L858R/T790M/C797S mutations at a concentration of 0.8 μM. This reagent is valuable for research focused on targeted therapies in EGFR-mutant cancers. -
EGFR/HER2 Inhibitor
EGFR/HER2-IN-6 is a potent inhibitor of EGFR and HER2 kinases, as well as dihydrofolate reductase (DHFR), with IC50 values of 0.122 μM, 0.078 μM, and 0.585 μM, respectively. This compound displays significant anticancer activity across various cancer cell lines, demonstrating a favorable safety profile and selectivity. EGFR/HER2-IN-6 is valuable for research on cancer therapeutics targeting these critical pathways. -
EGFR/BRAFV600E Inhibitor
EGFR/BRAFV600E-IN-1 is a potent dual inhibitor targeting EGFR and the BRAFV600E mutation, with IC50 values of 0.08 µM and 0.15 µM, respectively. This compound effectively induces apoptosis and induces cell cycle arrest in the pre-G1 and G2/M phases. Additionally, it demonstrates significant antiproliferative activity against A-549, MCF-7, Panc-1, and HT-29 cell lines, with IC50 values of 1.2 µM, 0.79 µM, 1.3 µM, and 1.23 µM, respectively, making it valuable for cancer research focused on these targets. -
FLT3 Inhibitor
FLT3-IN-33 is a potent FLT3 inhibitor with an IC50 value of 7.82 nM, demonstrating significant anti-cancer activities, particularly against acute myeloid leukemia (AML) cell lines such as MV4-11 and MOLM-13. This compound effectively induces apoptosis in cancer cells and inhibits the phosphorylation of FLT3 signaling pathways. FLT3-IN-33 is suitable for research applications targeting AML and other malignancies, providing valuable insights into therapeutic strategies and cellular responses. -
EGFR Inhibitor
EGFR-IN-88 is a selective epidermal growth factor receptor (EGFR) inhibitor with an IC50 of 87 nM. The compound demonstrates cytotoxic effects on A549 cells, exhibiting an IC50 of 3.902 μM, and induces apoptosis in these cells. This compound is valuable for research focused on cancer therapies that target EGFR signaling pathways. -
EGFR/VEGFR2 Inhibitor
EGFR/VEGFR2-IN-3 is a selective inhibitor of the epidermal growth factor receptor (EGFR) and vascular endothelial growth factor receptor 2 (VEGFR-2), demonstrating IC50 values of 0.129 µM and 0.142 µM, respectively. This compound also exhibits activity against cyclooxygenase-2 (COX-2) with an IC50 of 3.428 µM. EGFR/VEGFR2-IN-3 has been shown to induce cytotoxic effects, promoting apoptosis and causing cell cycle arrest at the G2/M phase. Its dual inhibition profile makes it a valuable tool for research in cancer biology and therapeutic development. -
ROS/HIF-1α Inhibitor
Terpestacin is a potent inhibitor of reactive oxygen species (ROS) production and a negative regulator of hypoxia-inducible factor 1-alpha (HIF-1α). Derived from Phoma exigua var. heteromorpha, Terpestacin binds to UQCRB, effectively impeding mitochondrial ROS generation. Its demonstrated ability to inhibit tumor angiogenesis in the FM3A breast cancer cell xenograft model highlights its relevance in cancer research, while also exhibiting notable antitumor and phytotoxic activities. -
VEGFR Inhibitor
Aflibercept (VEGF Trap) acts as a soluble decoy receptor targeting vascular endothelial growth factor (VEGF) and inhibiting VEGF receptor (VEGFR) signaling. By fusing the immunoglobulin domains of VEGFR1 and VEGFR2 with the Fc region of human IgG1, Aflibercept effectively diminishes VEGF-mediated biological processes. This reagent is primarily utilized in research related to age-related macular degeneration (AMD) and cardiovascular disease, facilitating studies on angiogenesis and vascular permeability. -
VEGFR inhibitor
Tivozanib hydrochloride hydrate is a selective inhibitor targeting vascular endothelial growth factor receptors (VEGFR)-1, 2, and 3, with IC50 values of 30 nM, 6.5 nM, and 15 nM, respectively. This orally active compound demonstrates significant antitumor efficacy, making it a valuable tool for cancer research. Tivozanib hydrochloride hydrate is primarily utilized in studies focusing on angiogenesis and tumor proliferation, contributing to the advancement of targeted cancer therapies. -
VEGFR1 Antagonist
GNQWFI is a VEGFR1-specific antagonist that effectively disrupts the interaction between VEGFR1 and its ligands, including VEGFA, VEGFB, and placental growth factor (PlGF). This peptide inhibits VEGF-mediated endothelial cell migration and tube formation, making it a valuable tool for studying vasculature-related processes. GNQWFI has potential applications in cancer research, asthma, and various ocular diseases. -
VEGFR Inhibitor
AAL993 is a potent inhibitor of Vascular Endothelial Growth Factor Receptors (VEGFR) with IC50 values of 130 nM for VEGFR1, 23 nM for VEGFR2, and 18 nM for VEGFR3. This compound selectively targets VEGFRs while showing reduced inhibition of other tyrosine kinases. AAL993 exhibits significant antiangiogenic and antitumor activities, making it a valuable tool for cancer research and studies focused on tumor vasculature modulation. -
VEGFR3 inhibitor
VEGFR-3-IN-1 is a selective inhibitor of Vascular Endothelial Growth Factor Receptor 3 (VEGFR3) with an IC50 of 110.4 nM. It effectively inhibits the proliferation and migration of human dermal lymphatic endothelial cells (HDLEC), as well as breast cancer cell lines MDA-MB-231 and MDA-MB-436, by disrupting the VEGFR3 signaling pathway. This compound demonstrates significant potential in breast cancer research and therapies targeting lymphatic endothelial function. -
VEGF/HIF-1 Inducer
Mersalyl is a potent inducer of vascular endothelial growth factor (VEGF) and hypoxia-inducible factor 1 (HIF-1). It enhances the expression of VEGF and ENO1 mRNA, contributing to its biological activity. Mersalyl is utilized in research to investigate mechanisms underlying hypoxia and angiogenesis, as well as potential therapeutic effects related to diuresis. -
VEGFR Inhibitor
DMH4 is a selective inhibitor of Vascular Endothelial Growth Factor Receptor 2 (VEGFR2), demonstrating potent activity with an IC50 of 0.16 µM. This reagent is valuable for research applications targeting angiogenesis and tumor growth, allowing for the investigation of cancer biology and potential therapeutic interventions. -
VEGFR2/Tie-2 Inhibitor
TIE-2/VEGFR-2 kinase-IN-2 is a potent dual inhibitor of the Vascular Endothelial Growth Factor Receptor 2 (VEGFR2) and the Tyrosine kinase with immunoglobulin-like and EGF-like domains 2 (Tie-2), exhibiting pIC50 values of 8.61 and 8.56, respectively. This compound serves as an effective anti-angiogenic agent, making it a valuable tool for cancer research. Its ability to inhibit both targets can provide insights into tumor vascularization and growth. -
HIF-1 Inhibitor
Cyclo(CLLFVY) is a selective inhibitor of hypoxia-inducible factor-1 (HIF-1), demonstrating IC50 values of 19 μM in U2OS cells and 16 μM in MCF-7 cells. By binding to the PAS-B domain of HIF-1α, cyclo(CLLFVY) effectively disrupts HIF-1 dimerization and subsequent transcriptional activity. This compound downregulates the expression of key hypoxia response genes, including VEGF and CAIX, and shows potential for antitumor applications in HIF-1 associated cancers. -
VEGFR2 Inhibitor
VEGFR-2-IN-5 hydrochloride is a selective inhibitor of Vascular Endothelial Growth Factor Receptor 2 (VEGFR-2), a critical target involved in angiogenesis and tumor growth. This compound exhibits strong biological activity in inhibiting VEGFR-2 signaling, making it useful for research focused on cancer biology and vascular biology. Its application extends to the study of tumor microenvironments and potential therapeutic strategies targeting angiogenesis in various malignancies. -
VEGFR Inhibitor
Ziv-aflibercept is a soluble vascular endothelial growth factor receptor (VEGFR) inhibitor. It demonstrates significant anti-angiogenic activity by blocking the interaction between VEGF and its receptors, thereby inhibiting endothelial cell proliferation and migration. This compound is primarily investigated for its therapeutic potential in metastatic colorectal carcinoma and various retinal diseases, offering insights into the modulation of tumor growth and ocular pathologies. -
VEGFR2 Inhibitor
Rhamnazin is an orally active inhibitor of VEGFR2 signaling, exhibiting an IC50 of 4.68 μM against VEGFR2 kinase. This compound demonstrates significant antiangiogenic activity and antitumor efficacy, making it a valuable tool in cancer research. Additionally, Rhamnazin possesses antioxidant and anti-inflammatory properties, further broadening its potential applications in biological studies. -
VEGFR Inhibitor
5α-Hydroxycostic acid is a natural eudesmane-type sesquiterpene that functions as a VEGFR inhibitor. It exhibits notable anti-angiogenic properties, effectively inhibiting the migration of breast cancer cells by modulating the VEGF/VEGFR2 and Ang2/Tie2 signaling pathways. This compound is valuable for research applications focused on cancer biology and therapeutic development targeting vascular endothelial growth factor receptors. -
VEGFR2/Tie-2 Inhibitor
GW768505A free base is a potent dual inhibitor of Vascular Endothelial Growth Factor Receptor 2 (VEGFR2) and Tie-2, exhibiting a pIC50 of 7.81 for VEGFR2. This compound demonstrates significant anti-angiogenic activity, making it valuable for research applications in cancer biology and therapeutic angiogenesis. It can be utilized in studies aimed at elucidating the roles of VEGFR2 and Tie-2 in various pathological conditions. -
HIF-2α Inhibitor
Casdatifan is an orally bioavailable allosteric inhibitor targeting hypoxia-inducible factor 2α (HIF-2α). It functions by preventing the heterodimerization of HIF-2α with ARNT, thereby inhibiting pro-tumor gene transcription. Casdatifan has demonstrated significant tumor growth suppression in clear cell renal cell carcinoma (ccRCC) models, both as a single agent and in combination therapies. This reagent is valuable for research related to ccRCC and HIF-2α signaling pathways. -
VEGFR Inhibitor
Bevasiranib sodium is a small interfering RNA (siRNA) targeting the vascular endothelial growth factor receptor (VEGFR). By silencing the genes responsible for VEGF production, it plays a crucial role in the inhibition of choroidal neovascularization (CNV), a significant factor in the development of wet age-related macular degeneration (wet AMD). This reagent is essential for research into therapeutic approaches for retinal diseases and the modulation of angiogenic processes. -
VEGFR-2 Inhibitor
VEGFR-2-IN-37 is a potent inhibitor of Vascular Endothelial Growth Factor Receptor 2 (VEGFR-2). Exhibiting an inhibition rate of approximately 56.9% at 200 μM, this compound demonstrates the potential to hinder the proliferation of human umbilical vein endothelial cells (HUVECs). It is an essential tool for researchers investigating angiogenesis and related vascular processes. -
VEGFR-2 Inhibitor
VEGFR-2-IN-29 is an inhibitor of Vascular Endothelial Growth Factor Receptor 2 (VEGFR-2), demonstrating an IC50 of 16.5 nM. This compound effectively modulates angiogenesis and vascular permeability by inhibiting VEGFR-2 signaling. VEGFR-2-IN-29 is valuable in research related to tumor vasculature, cancer biology, and potential therapeutic interventions for diseases characterized by aberrant angiogenesis. -
VEGFR2 Inhibitor
VEGFR-2-IN-6 is a selective inhibitor of the vascular endothelial growth factor receptor 2 (VEGFR2), an essential target in the modulation of angiogenesis. This compound demonstrates significant biological activity in inhibiting endothelial cell proliferation and tube formation. It is primarily utilized in research concerning cancer therapeutics and other conditions where neovascularization plays a critical role. -
TIE-2/VEGFR-2 Inhibitor
TIE-2/VEGFR-2 kinase-IN-1 is a potent inhibitor targeting the TIE-2 and VEGFR-2 kinases, which are critical regulators of angiogenesis. This compound is instrumental in researching diseases characterized by abnormal blood vessel formation, including various cancers and diabetic retinopathy. Its application facilitates the exploration of therapeutic strategies aimed at modulating angiogenic processes and offers insights into the underlying mechanisms of angiogenesis-related pathologies. -
VEGFR/PDGFR Inhibitor
BMS-605541 is a selective, orally active inhibitor targeting VEGFR-2 kinase, exhibiting an IC50 of 23 nM and a Ki of 49 nM. It also inhibits Flk-1, VEGFR-1, and PDGFR-β with IC50 values of 40 nM, 400 nM, and 200 nM, respectively. This reagent is valuable for cancer research, aiding in the study of angiogenesis and tumor progression. -
VEGFR2 Inhibitor
(Z)-FeCP-oxindole is a selective inhibitor of human vascular endothelial growth factor receptor 2 (VEGFR2), exhibiting an IC50 value of 200 nM. Additionally, it can significantly inhibit VEGFR1 and PDGFRα or β at concentrations of 10 μM. This compound demonstrates notable anticancer activity against B16 murine melanoma cell lines, with an IC50 of less than 1 μM, making it a valuable tool for cancer research and therapeutic studies. -
VEGFR2 Inhibitor
VEGFR2-IN-7 is a selective inhibitor of Vascular Endothelial Growth Factor Receptor 2 (VEGFR2), a key regulator in angiogenesis. This compound demonstrates potent anticancer activity by interrupting the signaling pathways involved in tumor-associated blood vessel formation. VEGFR2-IN-7 is valuable for research applications targeting tumor vasculature and studying the role of angiogenesis in cancer progression. -
Lck/Src/KDR/VEGF2R/Tie-2/BLK/Csk/Fyn/Lyn Inhibitor
RK-20448 is an ATP-competitive inhibitor targeting Lck, Src, KDR/VEGF2R, and Tie-2, demonstrating IC50 values of 0.24, 1.19, 10.74, and 5.85 µM, respectively. Additionally, it inhibits BLK, Csk, Fyn, and Lyn, with IC50 values of 0.37, 4.27, 2.03, and 0.43 µM, respectively. This compound is valuable for research involving signal transduction pathways mediated by receptor tyrosine kinases and may contribute to studies on cancer and vascular biology. -
VEGFR Inhibitor
Tivozanib hydrate is a selective inhibitor of vascular endothelial growth factor receptors (VEGFR-1, -2, and -3), displaying IC50 values of 30 nM, 6.5 nM, and 15 nM, respectively. This orally active compound demonstrates significant antitumor efficacy, making it a valuable tool for research focused on tumor angiogenesis and vascular biology. Its selectivity and potency facilitate investigations into VEGFR-related pathways and their implications in cancer treatment. -
VEGFR-2 Inhibitor
VEGFR-2-IN-21 is a potent inhibitor of Vascular Endothelial Growth Factor Receptor 2 (VEGFR-2), exhibiting an IC50 of 0.10 μM. This compound demonstrates significant anticancer activity, making it a valuable tool for research in oncology and vascular biology. Its ability to modulate VEGFR-2 signaling can aid in the investigation of tumor growth and metastasis, as well as facilitate the development of targeted therapies.

