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K+ Channels Activator
1-EBIO is an activator of Ca2+-sensitive K+ channels, playing a crucial role in the modulation of membrane potential and cellular excitability. This compound is utilized in research to investigate the physiological functions and pathophysiological roles of K+ channels, contributing to a deeper understanding of cellular signaling processes and potential therapeutic targets in various diseases. -
Monounsaturated Fatty Acid
Oleic acid (9-cis-Octadecenoic acid) is an abundant monounsaturated fatty acid. Oleic acid is a Na+/K+ ATPase activator. -
Mycotoxin
Deoxynivalenol, an orally active mycotoxin of the trichothecenes family, crosses the intestinal mucosa by a paracellular pathway through the tight junctions. The Deoxynivalenol transport is not affected by P-glycoprotein (PgP) or multidrug resistance-associated proteins (MRPs) inhibitors. -
Autophagy Inhibitor
Reserpine acts as an inhibitor of vesicular monoamine transporter 2 (VMAT2), thereby influencing neurotransmitter storage and release. This compound is widely utilized in research studies focusing on autophagy inhibition and its implications in various neurodegenerative disorders. Additionally, reserpine's effects on monoamine levels make it a valuable tool in the investigation of psychiatric conditions and the biochemical pathways involved in these diseases. -
Bacterial Inhibitor
Probenecid is a selective inhibitor of bacterial growth, primarily targeting pannexin 1 channels, while also exhibiting activity as a TRPV2 channel agonist. Its ability to modulate ion channel activity makes it valuable for research into pain pathways and inflammatory responses. Probenecid is commonly used in studies investigating the role of TRPV2 in nociception and as a tool in exploring bacterial resistance mechanisms. -
IL-1 Inhibitor
Diacerein is a potent IL-1 inhibitor that functions by reducing the production of IL-1 converting enzyme, thereby inhibiting the activation of IL-1β and its downstream signaling pathways. This compound exhibits significant anti-inflammatory and anti-rheumatic properties, making it useful for various research applications, including studies on osteoarthritis and the management of bronchospasm and airway inflammation in asthmatic models. Diacerein is recognized as a slow-acting drug for symptomatic relief of osteoarthritis, facilitating insights into long-term therapeutic strategies. -
L-glutamate Uptake Inhibitor
Evans Blue is a potent inhibitor of L-glutamate uptake through the membrane-bound excitatory amino acid transporter (EAAT). This compound effectively inhibits L-glutamate and kainate receptor-mediated currents, making it valuable for research into neurophysiological processes. Additionally, due to its strong affinity for serum albumin, Evans Blue serves as a high molecular weight protein tracer and is widely used to investigate blood-brain barrier (BBB) permeability. -
Anti-microbial Agent/Kir3.2 Blocker
3,6-Diaminoacridine hemisulfate is an acridine compound that functions primarily as a broad-spectrum antimicrobial agent and a Kir3.2 potassium channel blocker. Its mechanism involves insertion into bacterial DNA, thereby disrupting replication and transcription, which ultimately leads to bacterial lysis. Additionally, this compound is utilized in research to investigate the neurological phenotype associated with Down syndrome. Due to its ability to penetrate the stratum corneum and accumulate in the cell nucleus, prolonged exposure warrants caution due to potential oncogenic effects. -
VMAT2 Inhibitor
Reserpine hydrochloride is a potent inhibitor of the vesicular monoamine transporter 2 (VMAT2). It is primarily utilized in research to study neurotransmitter release and its implications in neurodegenerative diseases and mental health disorders. By inhibiting VMAT2, Reserpine hydrochloride disrupts the storage of monoamines, allowing for investigation into their effects on various physiological and pathological processes. -
DNA Dye
DAPI (4',6-Diamidino-2-phenylindole) is a fluorescent DNA dye that selectively binds to the AT base pairs in the minor groove of double-stranded DNA, enhancing fluorescence intensity approximately 20-fold upon binding. This property makes DAPI suitable for applications in fluorescence microscopy, allowing for quantification of DNA based on fluorescence intensity. Additionally, DAPI's ability to penetrate intact cell membranes enables its use in staining both live and fixed cells. DAPI also acts as an inhibitor of acid-sensing ion channel 3 (ASIC3), potentially contributing to research in chronic pain treatment (Ex/Em = 356/451 nm). -
T-type calcium channel Blocker
KTt-45 is a selective T-type calcium channel blocker that exhibits significant anticancer activity. This compound induces apoptosis in the HeLa cervical cancer cell line, making it a valuable tool for studying the mechanisms of cancer cell death. Its ability to modulate calcium signaling has implications for research in cancer therapeutics and cellular physiology. -
SERCA2 Inhibitor
COX-2-IN-55 is a selective SERCA2 inhibitor that exhibits promising anticancer properties, with a unique profile derived from a Celecoxib analog. This compound enhances caspase-3 cleavage and elevates DR5 levels, leading to the activation of GRP78, which contributes to the repression of triple-negative breast cancer (TNBC) progression. Additionally, COX-2-IN-55 reduces angiogenic markers such as VEGF-α and IL-8, effectively inhibiting microvessel formation and supporting its potential utility in cancer research applications. -
NF-kβ Agonist
Berubicin hydrochloride is an NF-kB agonist and a Doxorubicin analog with the ability to cross the blood-brain barrier. It inhibits P-glycoprotein (P-gp) and multidrug resistance-associated protein 1 (MRP1), thereby reducing efflux in glioblastoma multiforme (GBM) and exerting cytotoxic effects on leukemia cells. Additionally, Berubicin hydrochloride induces apoptosis in neuroblastoma cells, making it a valuable reagent for studying tumors of the nervous system. -
Stable Isotope
Terfenadine-d3 is the deuterated form of Terfenadine, which primarily targets the hERG potassium channel as a potent open-channel blocker with an IC50 of 204 nM. As an H1 histamine receptor antagonist, Terfenadine-d3 demonstrates significant biological activity by inducing apoptosis in melanoma cells through the modulation of calcium homeostasis. Its mechanism includes the generation of reactive oxygen species (ROS) and the subsequent activation of caspases -4, -2, and -9, making it valuable for research in cancer biology and apoptosis pathways. -
Calcium Channel Blocker
14-Deoxyandrographolide is a diterpene known for its calcium channel blocking activity, functioning as a uterine smooth muscle relaxant. It enhances nitric oxide (NO) release in endothelial cells, contributing to vasodilation. Additionally, 14-Deoxyandrographolide modulates liver cell sensitivity to TNF-α mediated apoptosis by promoting the release of TNFRSF1A, making it a valuable compound for research into vascular health and liver cell biology. -
P-glycoprotein Inhibitor
1-Monopalmitin, also known as Glyceryl palmitate, functions as an inhibitor of P-glycoprotein (P-gp) and modulates the PI3K/Akt signaling pathway. It has been shown to induce G2/M phase arrest and promote caspase-dependent apoptosis in cancer cells, while also downregulating inhibitor of apoptosis proteins (IAPs). Additionally, 1-Monopalmitin enhances drug accumulation in intestinal Caco-2 cells by inhibiting P-gp activity and has demonstrated the ability to induce protective autophagy and apoptosis in lung cancer cells with an IC50 of 50-58 μg/mL, exhibiting low toxicity towards normal cells. -
P-Glycoprotein Inhibitor
(R)-Verapamil hydrochloride is an orally active P-Glycoprotein inhibitor that effectively blocks MRP1-mediated transport. This compound induces apoptosis and inhibits L-type calcium channels, including BZPcc, DHPcc, and PLLcc. Additionally, (R)-Verapamil hydrochloride demonstrates potential anti-septic shock and anti-diabetic effects, making it suitable for a range of research applications in cellular signaling and drug transport studies. -
Nucleotide Analogue
Uridine 5'-monophosphate disodium salt is a nucleotide analogue that activates mitochondrial ATP-dependent potassium channels, providing cardioprotective effects. This compound facilitates the synthesis of CDP-choline and induces apoptosis in intestinal epithelial cells, supporting gut development and reducing the incidence of diarrhea. It serves as a valuable tool for studies related to cardiac health and gastrointestinal function. -
NF-κB Expression Reducer, ERK 1/2 Activator, Beta-Adrenergic Receptor Modulator, Calcium Channel Inhibitor
Eupatorin is a flavonoid that functions primarily as an NF-κB expression reducer and an ERK 1/2 activator, while also modulating beta-adrenergic receptors and inhibiting calcium channels. It demonstrates significant antiproliferative and vasodilatory effects, inducing apoptosis and causing G2/M phase cell cycle arrest, alongside reactive oxygen species (ROS) production. Eupatorin has been shown to impact inflammatory mediators and calcium signaling pathways, making it relevant for research in breast cancer, hypertension, and leukemia. Metabolized by CYP1A1 and other CYP1 enzymes, Eupatorin yields bioactive metabolites that maintain antiproliferative properties. -
Calcium Channel Modulator
4-Bromo A23187 is a halogenated analog of the selective calcium ionophore A-23187, acting as a calcium channel modulator. This compound facilitates the transport of calcium ions across cellular membranes, leading to increased intracellular calcium levels. It has demonstrated efficacy in inducing apoptosis in various cell types, including HL-60 cells, and is useful for research applications related to calcium-mediated signaling pathways and cell death mechanisms. -
PP Inhibitor
Pantoprazole sodium hydrate is a potent proton pump inhibitor (PPI) that targets the H+/K+-ATPase enzyme. With an IC50 value of 6.8 μM, it exhibits significant anti-secretory and anti-ulcer properties. This compound has been demonstrated to enhance tumor growth delay when used in combination with Doxorubicin, making it a valuable reagent for studies involving cancer treatment and gastrointestinal disorders. -
Calcium Sensitiser
OR-1896 is a potent calcium sensitizer and active metabolite of Levosimendan, primarily targeting phosphodiesterase (PDE) III isoforms. It exhibits significant vasodilatory effects and can activate ATP-sensitive potassium channels, enhancing calcium sensitivity. OR-1896 has been shown to reduce cardiomyocyte apoptosis, alleviate cardiac remodeling, and mitigate myocardial inflammation, making it valuable for research in cardiovascular disease therapies. -
F0F1-ATPase Inhibitor
Apoptolidin is a polyketide compound that selectively inhibits the mitochondrial F0F1-ATPase. It has been demonstrated to induce apoptotic cell death specifically in cells transformed with adenovirus type 12 oncogenes, such as ElA, with an IC50 of 10-17 ng/ml. Apoptolidin serves as a valuable tool for studying apoptotic mechanisms and mitochondrial function in cancer research. -
Kv2.1 Inhibitor
Kv2.1-IN-1 is a selective inhibitor of the Kv2.1 potassium channel, demonstrating a potent inhibitory activity with an IC50 of 0.07 μM. It exhibits over 130-fold selectivity against other potassium, sodium, and calcium channels. Kv2.1-IN-1 has been shown to reduce H2O2-induced apoptosis in HEK293 cells and provides significant neuroprotective effects in models of middle cerebral artery occlusion (MCAO) in rats. This compound is useful for research into ischemic stroke and related neurological conditions. -
Potassium Binder
Patiromer is a selective, non-absorbable intestinal potassium binder that targets potassium ions through a reversible exchange with calcium ions. It effectively lowers serum potassium levels while promoting fecal potassium excretion and reducing serum aldosterone levels. Patiromer is utilized in research on hyperkalemia associated with conditions such as chronic kidney disease, diabetes, and heart failure, and is particularly beneficial in studies aimed at enhancing the efficacy of renin-angiotensin-aldosterone system inhibitor (RAASi) therapies. -
V-ATPase Inhibitor
RSC-1255 is a potent and selective inhibitor of Vacuolar H⁺-ATPase (V-ATPase), demonstrating a binding affinity with a Kd of 23 nM. This compound exhibits preferential cytotoxicity towards KRAS-mutant cancer cells, particularly those harboring KRASG13D and KRASG12V mutations. RSC-1255 effectively induces apoptosis while inhibiting lysosomal acidification, autophagy, and macropinocytosis. It serves as a valuable tool for researching KRAS-driven lung and colon cancers. -
ATPase Inhibitor
ATPase-IN-3 is an ATPase inhibitor that demonstrates gastroprotective effects in models of ethanol-induced gastric ulcers. Its mechanism of action involves the modulation of anti-apoptotic pathways through the upregulation of BCL-2 and the activation of tumor suppressor protein P53. This compound is valuable for research applications aimed at investigating gastric ulcer pathophysiology and potential therapeutic interventions. -
Apoptosis Inducer
Rabeprazole-d4 is a deuterated derivative of Rabeprazole, primarily acting as an apoptosis inducer through its irreversible inhibition of gastric H+/K+-ATPase. This second-generation proton pump inhibitor also functions as a uridine nucleoside ribohydrolase (UNH) inhibitor with an IC50 of 0.3 μM. Rabeprazole-d4 is valuable for research focused on gastric ulcerations and gastroesophageal reflux diseases, facilitating studies on its mechanisms of action and therapeutic potential. -
Calcium Antagonist
Cycleanine is a potent vascular-selective calcium antagonist known for its analgesic, muscle relaxant, and anti-inflammatory properties. This compound exhibits potential anti-ovarian cancer effects by modulating the apoptosis pathway, making it a valuable tool for research in oncology and pain management. Its calcium-blocking mechanism allows for further exploration into vascular functions and related biological systems. -
MDR Reversal Agent
Hydrocinchonine is a multidrug resistance (MDR) reversal agent that functions primarily by inhibiting the activity and expression of P-glycoprotein (P-gp). This inhibition plays a critical role in overcoming drug resistance in cancer treatment. Hydrocinchonine has demonstrated a synergistic apoptotic effect when combined with Paclitaxel in MES-SA/DX5 cells, making it a valuable tool for research aimed at addressing drug-resistant gynecological malignancies, such as uterine sarcoma. -
Calcium Channel Antagonist
Benidipine is a potent orally active calcium channel antagonist. It exhibits anti-apoptotic effects in ischemic/reperfused myocardial cells and enhances the activity of endothelial cell-type nitric oxide synthase. Additionally, Benidipine has been shown to improve coronary circulation in hypertensive rat models, making it valuable for research on cardiovascular health and related disorders. -
P-gp Inhibitor
RMS3 is a tetrandrine analogue that functions as a potent inhibitor of P-glycoprotein (P-gp). This compound exhibits significant antiproliferative and cytotoxic effects on various cancer cell lines. Notably, RMS3 induces PARP cleavage, which is indicative of cells undergoing apoptosis. Its strong anticancer properties make RMS3 a valuable tool for cancer research and therapeutic studies. -
P-gp Inhibitor
RMS5 is a potent P-glycoprotein (P-gp) inhibitor, derived from a tetrandrine analogue. It exhibits significant antiproliferative and cytotoxic effects on cancer cells, contributing to its strong anticancer properties. Additionally, RMS5 has been observed to reduce the expression of anti-apoptotic Bcl-2 family proteins Bcl-XL and Mcl-1 while inducing PARP cleavage, a hallmark of apoptosis. This compound is valuable for research applications focusing on cancer therapeutics and the modulation of multidrug resistance. -
Stable Isotope
Capsaicin-d3 is a deuterated form of Capsaicin, a well-known TRPV1 agonist derived from chili peppers. This stable isotope allows for precise tracking and analysis in various research applications. Capsaicin-d3 has been implicated in studies exploring analgesic effects for neurological disorders, as well as its potential antioxidant, anti-inflammatory, and anti-cancer properties. Its use in research facilitates a better understanding of pain pathways and the therapeutic potential of capsaicin-related compounds. -
Stable Isotope
Pantoprazole-d6 is a deuterated form of Pantoprazole, a potent proton pump inhibitor (PPI) targeting H+/K+-ATPase with an IC50 of 6.8 μM. This stable isotope is primarily utilized in pharmacokinetic studies and metabolic investigations. Pantoprazole exhibits significant anti-secretory and anti-ulcer activities, enhancing pH stability while demonstrating the potential to improve tumor growth delay when combined with Doxorubicin. -
Antiarrhythmic Agent
Quinidine gluconic acid is an antiarrhythmic agent primarily targeting potassium channels, exhibiting an IC50 of 19.9 μM. This compound is a potent, orally active inhibitor of cytochrome P450 enzymes and has been shown to induce apoptosis in certain cell types. Quinidine gluconic acid is utilized in research related to cardiac arrhythmias as well as malaria studies, providing valuable insights into these complex biological processes. -
P-gp Inhibitor
(R)-OY-101 is an orally active and selective inhibitor of P-glycoprotein (P-gp). This compound enhances the sensitivity of tumors to anticancer agents by reversing drug resistance and promoting apoptosis. It has valuable applications in cancer research, particularly in studies focused on overcoming multidrug resistance and improving therapeutic efficacy. -
Na+/K+ ATPase Activator
Oleic acid sodium, also known as sodium oleate, is a sodium salt of the monounsaturated fatty acid oleic acid. It functions as an activator of Na+/K+ ATPase, which is essential for maintaining ion gradients across cell membranes. This compound has significant implications in various biological research applications, particularly in studies involving membrane function and cellular signaling pathways. -
SERT/NET Inhibitor
Amitriptyline is a tricyclic antidepressant that primarily inhibits the serotonin transporter (SERT) and norepinephrine transporter (NET), enhancing synaptic levels of serotonin and norepinephrine. With a Ki value of 3.45 nM for SERT and 13.3 nM for NET, Amitriptyline demonstrates significant antidepressant activity. Additionally, it exhibits agonistic properties at α2A adrenergic and TrkA/TrkB receptors, contributing to its analgesic and neurotrophic effects. Furthermore, Amitriptyline interacts with various receptors, including muscarinic cholinergic and H1 receptors, which may lead to a variety of side effects, while its ability to block sodium channels and hERG potassium channels raises concerns regarding cardiotoxicity. -
SMARCA4/SMARCA2 ATPase inhibitor
FHD-286 is a selective, orally active inhibitor of the SMARCA4/SMARCA2 (BRG1/BRM) ATPase. It holds potential for research into BAF (BRG1/BRM-associated factor)-related disorders, including acute myeloid leukemia. -
SMARCA4/SMARCA2 ATPase Inhibitor
FHT-1015 is a selective allosteric inhibitor of SMARCA4 (BRG1) and SMARCA2 (BRM), with IC₅₀ values of 4 nM and 5 nM, respectively. It binds to an allosteric site, inducing conformational changes that inhibit the ATPase activity of BRG1/BRM. FHT-1015 disrupts tumor cell growth and migration and is applicable in research on uveal melanoma and hematologic malignancies. - Artepillin C is an orally active compound that functions as a CREB/CRTC2 inhibitor and a covalent TRPA1 agonist (EC50 = 1.8 μM). It suppresses CREB/CRTC2-mediated gene transcription and downregulates BMAL1 expression, thereby modulating glucose and lipid metabolism. Additionally, Artepillin C activates TRPA1 channels, eliciting spicy taste signals. It exhibits antitumor activity by inhibiting cell proliferation and inducing necroptosis, improves insulin resistance, and reduces hepatic lipid synthesis. Artepillin C is applicable for research into metabolic syndrome, tumor prevention and treatment, and inflammation.
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COX-1/COX-2 inhibitor
Glafenine is a non-selective, non-steroidal anti-inflammatory drug (NSAID) that inhibits both COX-1 and COX-2 enzymes. It exerts anti-inflammatory, anti-proliferative, and anti-migratory effects by suppressing the arachidonic acid metabolic pathway, thereby reducing prostaglandin production. Additionally, glafenine induces cell cycle arrest in vascular smooth muscle cells and endothelial cells and decreases the synthesis of the extracellular matrix protein tenascin. It is utilized in research related to inflammatory disorders, vascular restenosis, and cystic fibrosis. -
AMPA receptor PAM
Osavampator (TAK-653) is a positive allosteric modulator of AMPA receptors that selectively binds in a glutamate-dependent manner. It enhances Ca²⁺ influx in hGluA1i CHO cells with an EC50 of 3.3 μM. Osavampator has been shown to improve learning and memory in various models and is under investigation for the treatment of depressive disorders. -
ALK/ROS1 inhibitor
Iruplinalkib (WX-0593) is an orally active and selective ALK/ROS1 inhibitor that effectively blocks tyrosine autophosphorylation of ALK, mutant ALK, and EGFR, with IC50 values ranging from 5.38 to 16.74 nM. Additionally, it inhibits the transport activity of MATE1, MATE2K, P-gp, and BCRP. Iruplinalkib is under investigation for the treatment of non-small cell lung cancer (NSCLC). -
HIV-1 protease/PTP1B inhibitor
Isosinensetin is a bioactive flavonoid compound with diverse pharmacological properties. It acts as a dual inhibitor of HIV-1 protease and protein tyrosine phosphatase 1B (PTP1B), with an IC₅₀ of 2.61 µM and a Kᵢ of 0.92 µM for PTP1B, indicating its potential in antiviral and metabolic disease research. Additionally, isosinensetin inhibits P-glycoprotein (P-gp) activity in MDR1-MDCKII cells, suggesting its utility in overcoming multidrug resistance. Isosinensetin exhibits multiple therapeutic effects, including anti-tumor, anti-viral, anti-inflammatory, and antioxidant activities. These properties support its application in the research of various conditions such as cancer, chronic inflammation, osteoporosis, diabetes, and infectious diseases. -
PKA inhibitor
HA-1004 is a selective and multifunctional inhibitor of cyclic nucleotide-dependent protein kinases, including protein kinase A (PKA) and cyclic GMP-dependent protein kinase (PKG). It regulates key second messenger pathways involving cyclic AMP and cyclic GMP and has broad pharmacological effects. HA-1004 inhibits lipolysis and induces vascular smooth muscle relaxation, acting as a vasodilator. It also functions as a calcium antagonist, contributing to its ability to suppress contraction in rabbit aortic strips. In neurological models, HA-1004 has been shown to antagonize ERK and tyrosine hydroxylase (TH) phosphorylation in morphine abstinence rat models, suggesting potential relevance in addiction and neurochemical regulation. Its diverse actions make it a valuable tool for studying cardiovascular, metabolic, and neurobiological processes.

