Autophagy is an intracellular degradation system that delivers cytoplasmic constituents to the lysosome. Autophagy plays a wide variety of physiological and pathophysiological roles. Different selective forms of autophagy have been identified and characterized, leading to the specific degradation of organelles or pathogens. These selective pathways include the autophagic degradation of mitochondria (mitophagy), peroxisomes (pexophagy), endoplasmic reticulum (reticulophagy or ER-phagy), ribosomes (ribophagy), protein aggregates (aggrephagy), lipid droplets (lipophagy), spermatozoon-inherited organelles following fertilization (allophagy), secretory granules within pancreatic cells (zymophagy), or intracellular pathogens (xenophagy).

Autophagy consists of several sequential steps--sequestration, transport to lysosomes, degradation, and utilization of degradation products--and each step may exert different function. Autophagy signal transduction are mainly regulated by autophagy-related genes/proteins, Atgs. ATGs have unveiled much of the machinery of autophagosome formation. Furthermore, different non-ATG proteins are involved in the regulation and process of autophagy, e.g., mTOR, AMPK, AKT, AMBRA1, BCL2, DFCP1, or VPS34.

Autophagy and its dysregulation have been implicated in different human diseases or processes, such as cancer, neurodegeneration, immunity, or aging. Plenty of drugs and natural products are involved in autophagy modulation, either inducing or inhibiting autophagy, through multiple signaling pathways. Small molecules that can regulate autophagy seem to have great potential to modulate the clinical course of neurodegenerative diseases or promote chemotherapeutic response in tumor models. Besides, several clinical drugs and compounds in diabetes are also found to involve regulation of autophagy.

References:
[1] Glick D, et al. J Pathol. 2010 May;221(1):3-12.
[2] Mizushima N. Genes Dev. 2007 Nov 15;21(22):2861-73.
[3] Wesselborg S, et al. Cell Mol Life Sci. 2015 Dec;72(24):4721-57.
[4] Zhang XW, et al. J Asian Nat Prod Res. 2017 Apr;19(4):314-319.


Anti-infection >
Arenavirus Bacterial CMV Enterovirus Filovirus Fungal HBV HCV HIV HSV Influenza Virus Parasite Reverse Transcriptase RSV SARS-CoV
Antibody-drug Conjugate >
ADC Cytotoxin ADC Linker Drug-Linker Conjugates for ADC PROTAC-linker Conjugate for PAC
Apoptosis >
Apoptosis Bcl-2 Family c-Myc Caspase DAPK Ferroptosis IAP MDM-2/p53 PKD RIP kinase Survivin Thymidylate Synthase TNF Receptor
Autophagy >
Autophagy LRRK2 ULK Mitophagy
Cell Cycle/DNA Damage >
Antifolate APC ATM/ATR Aurora Kinase Casein Kinase CDK Checkpoint Kinase (Chk) CRISPR/Cas9 Deubiquitinase DNA Alkylator/Crosslinker DNA-PK DNA/RNA Synthesis Eukaryotic Initiation Factor (eIF) G-quadruplex Haspin Kinase HDAC HSP IRE1 Kinesin LIM Kinase (LIMK) Microtubule/Tubulin Mps1 Nucleoside Antimetabolite/Analog p97 PAK PARP PERK Polo-like Kinase (PLK) PPAR RAD51 ROCK Sirtuin SRPK Telomerase TOPK Topoisomerase Wee1
Cytoskeleton >
Arp2/3 Complex Dynamin Gap Junction Protein Integrin Kinesin Microtubule/Tubulin Mps1 Myosin PAK
Epigenetics >
AMPK Aurora Kinase DNA Methyltransferase Epigenetic Reader Domain HDAC Histone Acetyltransferase Histone Demethylase Histone Methyltransferase JAK MicroRNA PARP PKC Sirtuin Protein Arginine Deiminase
GPCR/G Protein >
5-HT Receptor Adenosine Receptor Adenylate Cyclase Adiponectin Receptor Adrenergic Receptor Angiotensin Receptor Bombesin Receptor Bradykinin Receptor Cannabinoid Receptor CaSR CCR CGRP Receptor Cholecystokinin Receptor CRFR CXCR Dopamine Receptor EBI2/GPR183 Endothelin Receptor GHSR Glucagon Receptor Glucocorticoid Receptor GNRH Receptor GPCR19 GPR109A GPR119 GPR120 GPR139 GPR40 GPR55 GPR84 Guanylate Cyclase Histamine Receptor Imidazoline Receptor Leukotriene Receptor LPL Receptor mAChR MCHR1 (GPR24) Melatonin Receptor mGluR Motilin Receptor Neurokinin Receptor Neuropeptide Y Receptor Neurotensin Receptor Opioid Receptor Orexin Receptor (OX Receptor) Oxytocin Receptor P2Y Receptor Prostaglandin Receptor Protease-Activated Receptor (PAR) Ras RGS Protein Sigma Receptor Somatostatin Receptor TSH Receptor Urotensin Receptor Vasopressin Receptor Melanocortin Receptor
Immunology/Inflammation >
Aryl Hydrocarbon Receptor CCR Complement System COX CXCR FLAP Histamine Receptor IFNAR Interleukin Related IRAK MyD88 NO Synthase NOD-like Receptor (NLR) PD-1/PD-L1 PGE synthase Salt-inducible Kinase (SIK) SPHK STING Thrombopoietin Receptor Toll-like Receptor (TLR) Arginase
JAK/STAT Signaling >
EGFR JAK Pim STAT
MAPK/ERK Pathway >
ERK JNK KLF MAP3K MAP4K MAPKAPK2 (MK2) MEK Mixed Lineage Kinase MNK p38 MAPK Raf Ribosomal S6 Kinase (RSK)
Membrane Transporter/Ion Channel >
ATP Synthase BCRP Calcium Channel CFTR Chloride Channel CRAC Channel CRM1 EAAT2 GABA Receptor GlyT HCN Channel iGluR Monoamine Transporter Monocarboxylate Transporter Na+/Ca2+ Exchanger Na+/HCO3- Cotransporter Na+/K+ ATPase nAChR NKCC P-glycoprotein P2X Receptor Potassium Channel Proton Pump SGLT Sodium Channel TRP Channel URAT1
Metabolic Enzyme/Protease >
15-PGDH 5 alpha Reductase 5-Lipoxygenase Acetyl-CoA Carboxylase Acyltransferase Adenosine Deaminase Adenosine Kinase Aldehyde Dehydrogenase (ALDH) Aldose Reductase Aminopeptidase Angiotensin-converting Enzyme (ACE) ATGL ATP Citrate Lyase Carbonic Anhydrase Carboxypeptidase Cathepsin CETP COMT Cytochrome P450 Dipeptidyl Peptidase Dopamine β-hydroxylase E1/E2/E3 Enzyme Elastase Enolase FAAH FABP Factor Xa Farnesyl Transferase Fatty Acid Synthase (FAS) FXR Glucokinase GSNOR Gutathione S-transferase HCV Protease Hexokinase HIF/HIF Prolyl-Hydroxylase HIV Integrase HIV Protease HMG-CoA Reductase (HMGCR) HSP Indoleamine 2,3-Dioxygenase (IDO) Isocitrate Dehydrogenase (IDH) Lactate Dehydrogenase LXR MAGL Mineralocorticoid Receptor Mitochondrial Metabolism MMP Nampt NEDD8-activating Enzyme Neprilysin PAI-1 PDHK PGC-1α Phosphatase Phosphodiesterase (PDE) Phospholipase Procollagen C Proteinase Proteasome Pyruvate Kinase RAR/RXR Renin ROR Ser/Thr Protease SGK Stearoyl-CoA Desaturase (SCD) Thrombin Tryptophan Hydroxylase Tyrosinase Xanthine Oxidase
Neuronal Signaling >
5-HT Receptor AChE Adenosine Kinase Amyloid-β Beta-secretase CaMK CGRP Receptor COMT Dopamine Receptor Dopamine Transporter FAAH GABA Receptor GlyT iGluR Imidazoline Receptor mAChR Melatonin Receptor Monoamine Oxidase nAChR Neurokinin Receptor Opioid Receptor Serotonin Transporter γ-secretase
NF-κB >
NF-κB IKK Keap1-Nrf2 MALT1
PI3K/Akt/mTOR >
Akt AMPK ATM/ATR DNA-PK GSK-3 MELK mTOR PDK-1 PI3K PI4K PIKfyve PTEN
PROTAC >
PROTAC E3 Ligase Ligand-Linker Conjugate Ligand for E3 Ligase PROTAC Linker PROTAC-linker Conjugate for PAC
Protein Tyrosine Kinase/RTK >
Ack1 ALK Bcr-Abl BMX Kinase Btk c-Fms c-Kit c-Met/HGFR Discoidin Domain Receptor DYRK EGFR Ephrin Receptor FAK FGFR FLT3 IGF-1R Insulin Receptor IRAK Itk PDGFR PKA Pyk2 ROS Src Syk TAM Receptor Trk Receptor VEGFR
Stem Cell/Wnt >
Casein Kinase ERK Gli GSK-3 Hedgehog Hippo (MST) JAK Notch Oct3/4 PKA Porcupine ROCK sFRP-1 Smo STAT TGF-beta/Smad Wnt YAP β-catenin γ-secretase
TGF-beta/Smad >
TGF-beta/Smad PKC ROCK TGF-β Receptor
Vitamin D Related >
VD/VDR
Others >
Androgen Receptor Aromatase Estrogen Receptor/ERR Progesterone Receptor Thyroid Hormone Receptor Others

rac-Sitagliptin

(Rac)-Sitagliptin is an isoform of Sitagliptin (HY-13749), which is a potent and orally active inhibitor of DPP4 with an IC50 of 19 nM in Caco-2 cell extracts[1].

  • CAS Number: 823817-56-7
  • MF: C16H15F6N5O
  • MW: 407.31
  • Catalog: Autophagy
  • Density: 1.6±0.1 g/cm3
  • Boiling Point: 529.9±60.0 °C at 760 mmHg
  • Melting Point: N/A
  • Flash Point: 274.3±32.9 °C

Lithocholic acid-d5

Lithocholic acid-d5 is deuterium labeled Lithocholic acid.

  • CAS Number: 52840-06-9
  • MF: C24H35D5O3
  • MW: 381.60
  • Catalog: Apoptosis
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

PF-06456384 trihydrochloride

PF-06447475 trihydrochloride is a highly potent, selective, brain penetrant LRRK2 kinase inhibitor with IC50 values of 3 nM and 11 nM for WT LRRK and G2019S LRRK2, respectively. PF-06447475 trihydrochloride can be used for parkinson's disease (PD) research[1].

  • CAS Number: 1834610-75-1
  • MF: C35H32F3N7O3S2
  • MW: 719.799
  • Catalog: LRRK2
  • Density: 1.5±0.1 g/cm3
  • Boiling Point: 789.8±70.0 °C at 760 mmHg
  • Melting Point: N/A
  • Flash Point: 431.4±35.7 °C

Emetine dihydrochloride hydrate

Emetine dihydrochloride hydrate is an anti-protozoal drug previously used for intestinal and tissue amoebiasis.

  • CAS Number: 7083-71-8
  • MF: C29H40N2O4.2HCl.H2O
  • MW: 571.58
  • Catalog: Parasite
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

Esmolol-d7 (hydrochloride)

Esmolol-d7 hydrochloride is the deuterium labeled Esmolol hydrochloride. Esmolol hydrochloride is a beta adrenergic receptor blocker[1][2].

  • CAS Number: 1346598-13-7
  • MF: C16H19D7ClNO4
  • MW: 338.878
  • Catalog: Autophagy
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

Proflavine (hemisulfate)

Proflavine hemisulfate is an Acridine derivative, which is a slow-acting disinfectant with bacteriostatic action against many Gram-positive bacteria but less effective against Gram-negative organisms.

  • CAS Number: 1811-28-5
  • MF: C13H11N3.1/2H2O4S
  • MW: 258.29
  • Catalog: Bacterial
  • Density: 1.346 g/cm3
  • Boiling Point: 506.9ºC at 760 mmHg
  • Melting Point: 284-286ºC
  • Flash Point: 292.9ºC

Mefloquine hydrochloride

Mefloquine hydrochloride is a quinoline antimalarial drug that is structurally related to the antiarrhythmic agent quinidine. IC50 Value: 1 microM ( for K+ channel) [1]Target: AntiparasiticMefloquine is widely used in both the treatment and prophylaxis of Plasmodium falciparum malaria. MQ can induces oxidative stress in vitro. Evidence indicates that reactive oxygen species (ROS) may be used as a therapeutic modality to kill cancer cells [2].in vitro: Mefloquine inhibitedKvLQT1/minK channel currents with an IC50 value of approximately 1 microM. Mefloquine slowed the activation rate of KvLQT1/minK and more block was evident at lower membrane potentials compared with higher ones. HERG channel currents were about 6-fold less sensitive to block by mefloquine (IC50 = 5.6 microM). Block of HERG displayed a positive voltage dependence with maximal inhibition obtained at more depolarized potentials [1]. MQ has a highly selective cytotoxicity that inhibits PCa cell growth. MQ-mediated ROS simultaneously downregulated Akt phosphorylation and activated extracellular signal-regulated kinase (ERK), c-Jun N-terminal kinase (JNK) and adenosine monophosphate-activated protein kinase (AMPK) signaling in PC3 cells [2]. in vivo: Pregnant rats were treated orally with AS (15 and 40 mg/kg body weight (bwt)/day), MQ (30 and 80 mg/kg bwt/day) and AS/MQ (15/30 and 40/80 mg/kg bwt/day) on days 9-11 post coitum (pc). The dams were euthanized on day 12 pc and gestational and embryos histological parameters were evaluated [3].Clinical trial: Activity of Mefloquine Against Urinary Schistosomiasis . Phase 2

  • CAS Number: 51773-92-3
  • MF: C17H17ClF6N2O
  • MW: 378.312
  • Catalog: Parasite
  • Density: 1.4±0.1 g/cm3
  • Boiling Point: 415.7±40.0 °C at 760 mmHg
  • Melting Point: 250-254ºC
  • Flash Point: 205.2±27.3 °C

Venetoclax-d8

Venetoclax-d8 is deuterium labeled Venetoclax. Venetoclax (ABT-199; GDC-0199) is a highly potent, selective and orally bioavailable Bcl-2 inhibitor with a Ki of less than 0.01 nM. Venetoclax induces autophagy[1][2][3].

  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

CHIR-99021 HCl

CHIR-99021 monohydrochloride is a GSK-3α/β inhibitor with IC50 of 10 nM/6.7 nM; > 500-fold selectivity for GSK-3 versus its closest homologs CDC2 and ERK2, as well as other protein kinases.

  • CAS Number: 1797989-42-4
  • MF: C22H19Cl3N8
  • MW: 501.799
  • Catalog: Autophagy
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

Cycloheximide

Cycloheximide (Naramycin A) is an eukaryote protein synthesis inhibitor, with IC50s of 532.5 nM and 2880 nM for protein synthesis and RNA synthesis in vivo, respectively.

  • CAS Number: 66-81-9
  • MF: C15H23NO4
  • MW: 281.347
  • Catalog: Fungal
  • Density: 1.1±0.1 g/cm3
  • Boiling Point: 491.8±10.0 °C at 760 mmHg
  • Melting Point: 111-116 °C
  • Flash Point: 251.2±19.0 °C

Isradipine-d3

Isradipine-d3 (PN 200-110-d3) is the deuterium labeled Isradipine. Isradipine (PN 200-110) is an orally active L-type calcium channel blocker. Isradipine, as a powerful peripheral vasodilator, is a dihydropyridine calcium antagonist with selective actions on the heart as well as the peripheral circulation. Isradipine is a potentially viable neuroprotective agent for Parkinson's disease[1][2][3].

  • CAS Number: 1189959-59-8
  • MF: C19H18D3N3O5
  • MW: 374.40600
  • Catalog: Autophagy
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

Pirarubicin (Hydrochloride)

Pirarubicin Hydrochloride is an anthracycline antibiotics, acts as a topoisomerase II inhibitor, and is a widely used for treatment of various cancers, in particular, solid tumors.

  • CAS Number: 95343-20-7
  • MF: C32H38ClNO12
  • MW: 664.09700
  • Catalog: Autophagy
  • Density: N/A
  • Boiling Point: 834.7ºC at 760mmHg
  • Melting Point: N/A
  • Flash Point: 458.6ºC

Sapanisertib (MLN0128)

Sapanisertib (INK-128) is a ATP-dependent mTOR1/2 inhibitor with an IC50 of 1 nM for mTOR kinase.

  • CAS Number: 1224844-38-5
  • MF: C15H15N7O
  • MW: 309.326
  • Catalog: Autophagy
  • Density: 1.6±0.1 g/cm3
  • Boiling Point: 598.8±60.0 °C at 760 mmHg
  • Melting Point: N/A
  • Flash Point: 315.9±32.9 °C

Di(N-desethyl) Amiodarone Hydrochloride

Di-N-desethyl Amiodarone hydrochloride is a metabolite of Amiodarone (HY-14187). Di-N-desethyl Amiodarone hydrochloride is a strong inhibitor of the respiratory chain[1].

  • CAS Number: 757220-04-5
  • MF: C21H22ClI2NO3
  • MW: 625.67
  • Catalog: Autophagy
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

KYT 0353

JPH203 Dihydrochloride is a tyrosine analog, acts as a selective inhibitor of L-type amino acid transporter 1 (LAT1), and is used in cancer research.

  • CAS Number: 1597402-27-1
  • MF: C23H21Cl4N3O4
  • MW: 545.238
  • Catalog: Autophagy
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

AUTEN-67

A small molecule autophagy enhancer that specificly inhibits myotubularin-related phosphatase MTMR14; at concentrations of 2, 10, and 100 uM, AUTEN-67 inhibits MTMR14 by nearly 3%, 25%, and 70%, respectively; shows no activity for CDC25B , other phosphatase, PTPN1; significantly increases autophagic flux in cell lines and in vivo models, promotes longevity and protects neurons from undergoing stress-induced cell death; also restores nesting behavior in a murine model of Alzheimer disease, without apparent side effects.

  • CAS Number: 1783800-77-0
  • MF: C23H14N4O6S
  • MW: 474.445
  • Catalog: Autophagy
  • Density: 1.6±0.1 g/cm3
  • Boiling Point: 689.7±65.0 °C at 760 mmHg
  • Melting Point: N/A
  • Flash Point: 370.9±34.3 °C

demethoxycurcumin

Demethoxycurcumin(Curcumin II) is a major active curcuminoid; possess anti-inflammatory properties; also exert cytotoxic effects in human cancer cells via induction of apoptosis.IC50 value: Target:in vitro: DMC significantly decreased NO secretion by 35-41% in our inflamed cell model. Decrease in NO production by DMC was concomitant with down-regulation of iNOS at mRNA and protein levels compared to proinflammatory cytokine cocktail and LPS-treated controls. Mechanism of action of DMC may be partly due to its potent inhibition of the iNOS pathway [1]. BDMCCN has the strongest inhibitory activity toward BACE-1 with 17 μM IC50, which was 20 and 13 times lower than those of CCN and DMCCN respectively [2]. Genes associated with DNA damage and repair, cell-cycle check point and apoptosis could be altered by DMC; in particular, 144 genes were found up-regulated and 179 genes down-regulated in NCI-H460 cells after exposure to DMC [3]. in vivo: At low doses, both the curcuminoid mixture and curcumin I did not affect brain stimulation reward, whereas, higher doses increased ICSS thresholds. Curcumin II and curcumin III did not affect brain stimulation reward at any doses. Subthreshold doses of the curcuminoid mixture and curcumin I inhibited the reward-facilitating effect of morphine.

  • CAS Number: 22608-11-3
  • MF: C20H18O5
  • MW: 338.354
  • Catalog: Apoptosis
  • Density: 1.3±0.1 g/cm3
  • Boiling Point: 571.4±50.0 °C at 760 mmHg
  • Melting Point: 168ºC
  • Flash Point: 205.5±23.6 °C

Pramipexole dihydrochloride

Pramipexole 2Hcl is a partial/full D2S, D2L, D3, D4 receptor agonist with a Ki of 3.9, 2.2, 0.5 and 5.1 nM for D2S, D2L, D3, D4 receptor, respectively. IC50 Value: 3.9 nM(D2S); 2.2 nM(D2L); 0.5 nM(D3); 5.1 nM(D4)Target: Dopamine ReceptorPramipexole dihydrochloride is a dopamine receptor agonist with selectivity for the D3 receptor (Ki values are 3.9, 3.3, 0.5 and 3.9 nM for D2L, D2S, D3 and D4 receptors respectively). Pramipexole dihydrochloride exhibits negligable affinity for D1 and D5 receptors. Pramipexole has been found to have neuroprotective effects independent of its dopamine receptor agonism. It reduces mitochondrial reactive oxygen species (ROS) production and inhibits the activation of apoptotic pathways. Pramipexole displays activity in the treatment of Parkinson's disease (PD) and restless legs syndrome (RLS).

  • CAS Number: 104632-25-9
  • MF: C10H19Cl2N3S
  • MW: 284.249
  • Catalog: Autophagy
  • Density: N/A
  • Boiling Point: 378ºC at 760 mmHg
  • Melting Point: 288-290ºC
  • Flash Point: 182.4ºC

Itraconazole-d9

Itraconazole-d9 is the deuterium labeled Itraconazole[1]. Itraconazole (R51211) is a triazole antifungal agent and a potent and orally active Hedgehog (Hh) signaling pathway antagonist with an IC50 of ~800 nM. Itraconazole potently inhibits lanosterol 14α-demethylase (cytochrome P450 enzyme), thereby inhibits the oxidative conversion of lanosterol to ergosterol. Itraconazole has anticancer and antiangiogenic effects. Itraconazole is a oxysterol-binding protein (OSBP) inhibitor[2][3][4][5].

  • CAS Number: 1309272-50-1
  • MF: C35H29D9Cl2N8O4
  • MW: 714.69
  • Catalog: Bacterial
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

Rosuvastatin Calcium

Rosuvastatin Calcium is a competitive inhibitor of HMG-CoA reductase with IC50 of 11 nM. IC50 Value: 11 nM [1]Target: HMG-CoA reductasein vitro: Rosuvastatin is relatively hydrophilic and is highly selective for hepatic cells; its uptake is mediated by the liver-specific organic anion transporter OATP-C. Rosuvastatin is a high-affinity substrate for OATP-C with apparent association constant of 8.5 μM [2]. Rosuvastatin inhibits cholesterol biosynthesis in rat liver isolated hepatocytes with IC50 of 1.12 nM. Rosuvastatin causes approximately 10 times greater increase of mRNA of LDL receptors than pravastatin [1]. Rosuvastatin (100 μM) decreases the extent of U937 adhesion to TNF-α-stimulated HUVEC. Rosuvastatin inhibits the expressions of ICAM-1, MCP-1, IL-8, IL-6, and COX-2 mRNA and protein levels through inhibition of c-Jun N-terminal kinase and nuclear factor-kB in endothelial cells [3].in vivo: Rosuvastatin (3 mg/kg) daily administration for 14 days decreases plasma cholesterol levels by 26% in male beagle dogs with normal cholesterol levels. In cynomolgus monkeys, Rosuvastatin decreases plasma cholesterol levels by 22% [1]. Rosuvastatin (20 mg/kg/day) administration for 2 weeks, significantly reduces very low-density lipoproteins (VLDL) in diabetes mellitus rats induced by Streptozocin [4]. Rosuvastatin shows antiatherothromhotic effects in vivo. Rosuvastatin (1.25 mg/kg) significantly inhibits thrombin-induced transmigration of monocvtes across mesenteric venules via inhibition of the endothelial cell surface expression of P-selectin, and increases the basal rate of nitric oxide in aortic segments by 2-fold times [5].

  • CAS Number: 147098-20-2
  • MF: C22H27Ca0.5FN3O6S
  • MW: 500.57
  • Catalog: Bacterial
  • Density: N/A
  • Boiling Point: 745.6ºC at 760 mmHg
  • Melting Point: 122ºC
  • Flash Point: 404.7ºC

Simvastatin

Simvastatin (MK 733) is a competitive inhibitor of HMG-CoA reductase with a Ki of 0.2 nM.

  • CAS Number: 79902-63-9
  • MF: C25H38O5
  • MW: 418.566
  • Catalog: Autophagy
  • Density: 1.1±0.1 g/cm3
  • Boiling Point: 564.9±50.0 °C at 760 mmHg
  • Melting Point: 139 °C
  • Flash Point: 184.8±23.6 °C

Tamoxifen

Tamoxifen is a selective estrogen receptor modulator (SERM) which blocks estrogen action in breast cells and can activate estrogen activity in other cells, such as bone, liver, and uterine cells.

  • CAS Number: 10540-29-1
  • MF: C26H29NO
  • MW: 371.515
  • Catalog: Apoptosis
  • Density: 1.0±0.1 g/cm3
  • Boiling Point: 482.3±33.0 °C at 760 mmHg
  • Melting Point: 97-98ºC
  • Flash Point: 140.0±27.7 °C

Tetrahydrocurcumin

Tetrahydrocurcumin is a Curcuminoid found in turmeric (Curcuma longa) that is produced by the reduction of Curcumin. Tetrahydrocurcumin inhibit CYP2C9 and CYP3A4.

  • CAS Number: 36062-04-1
  • MF: C21H24O6
  • MW: 372.412
  • Catalog: Autophagy
  • Density: 1.2±0.1 g/cm3
  • Boiling Point: 564.1±45.0 °C at 760 mmHg
  • Melting Point: 95-97ºC
  • Flash Point: 196.2±22.2 °C

ABT-751 (E7010)

ABT-751(E 7010) is a novel bioavailable tubulin-binding and antimitotic sulfonamide agent with IC50 of about 1.5 and 3.4 μM in neuroblastoma and non-neuroblastoma cell lines, respectively.IC50 Value: 1.5 μM(neuroblastoma); 3.4 μM(non-neuroblastoma)Target: Microtubule/Tubulinin vitro: ABT-751 shows the selective cytotoxicity with IC50 of 0.6–2.6 μM in neuroblastoma and 0.7–4.6 μM in other solid tumor cell lines. Furthermore, ABT-751 also exhibits a selective effect on dynamic microtubules and spares stable microtubules, accounting for the persistence of acetylated and detyrosinated α-tubulin positive polymerized tubules at the IC90 concentration of ABT-751. in vivo: In Calu-6 xenograft model, ABT-751 as a single agent at 100 and 75 mg/kg/day shows significant antitumor activity, while in combination with cisplatin, ABT-751 shows a dose-dependent enhancement in growth delay. In the HT-29 colon xenograft model, ABT-751 also shows significant antitumor activity as a single agent and produced a dose-dependent enhancement in growth delay In combination with 5-FU. In dogs with lymphoma, ABT-751 exhibits the dose-limiting toxicities that included vomiting, diarrhea, anorexia, or some combination of these with a maximum tolerated dose (MTD) of 350 mg/m2 PO q24h. Furthermore, the mean AUC and Cmax for ABT-751 at the MTD of 350 mg/m2 is 5.55 μg-hour/mL and 0.9 μg/mL, respectively.

  • CAS Number: 141430-65-1
  • MF: C18H17N3O4S
  • MW: 371.410
  • Catalog: Autophagy
  • Density: 1.4±0.1 g/cm3
  • Boiling Point: 551.0±60.0 °C at 760 mmHg
  • Melting Point: 162 °C(dec.)
  • Flash Point: 287.0±32.9 °C

Sulfabenzamide

Sulfabenzamide is a intermediate in the synthesis of organic and pharmaceutical.

  • CAS Number: 127-71-9
  • MF: C13H12N2O3S
  • MW: 276.311
  • Catalog: Autophagy
  • Density: 1.4±0.1 g/cm3
  • Boiling Point: N/A
  • Melting Point: 180-184 °C
  • Flash Point: N/A

Cediranib

Cediranib maleate (AZD-2171 maleate) is a highly potent, orally available VEGFR tyrosine kinase inhibitor with IC50s of <1, <3, 5, 5, 36, 2 nM for Flt1, KDR, Flt4, PDGFRα, PDGFRβ, c-Kit, respectively.

  • CAS Number: 288383-20-0
  • MF: C25H27FN4O3
  • MW: 450.505
  • Catalog: Autophagy
  • Density: 1.3±0.1 g/cm3
  • Boiling Point: 626.6±55.0 °C at 760 mmHg
  • Melting Point: N/A
  • Flash Point: 332.7±31.5 °C

N2-(7-Chloro-4-quinolinyl)-N1-[2-[(7-chloro-4-quinolinyl)amino]ethyl]-N1-methyl-1,2-ethanediamine

Lys01, a dimeric form of Chloroquine (HY-17589A), is an autophagy inhibitor. Lys01 inhibits cell viability of 1205Lu, c8161, LN229, HT-29 cells with IC50s of 3.6, 3.8, 7.9, 6.0 μM. Lys01 can be used for anticancer research[1].

  • CAS Number: 1391426-22-4
  • MF: C23H23Cl2N5
  • MW: 440.36800
  • Catalog: Autophagy
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

Brivanib (BMS-540215)

Brivanib is an ATP-competitive inhibitor against VEGFR2 with IC50 of 25 nM, and has moderate potency against VEGFR-1 and FGFR-1, but >240-fold against PDGFR-β.

  • CAS Number: 649735-46-6
  • MF: C19H19FN4O3
  • MW: 370.378
  • Catalog: Autophagy
  • Density: 1.4±0.1 g/cm3
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

U0126

U0126 is a potent, non-ATP competitive and selective MEK1 and MEK2 inhibitor, with IC50s of 72 nM and 58 nM, respectively. U0126 is an autophagy and mitophagy inhibitor[1][2][3][4].

  • CAS Number: 109511-58-2
  • MF: C18H16N6S2
  • MW: 380.490
  • Catalog: Influenza Virus
  • Density: 1.4±0.1 g/cm3
  • Boiling Point: 565.1±50.0 °C at 760 mmHg
  • Melting Point: N/A
  • Flash Point: 295.6±30.1 °C

Clarithromycin

Clarithromycin is a macrolide antibiotic and a CYP3A4 inhibitor.Target: Antibacterial; CYP3A4Clarithromycin is a macrolide antibiotic used to treat pharyngitis, tonsillitis, acute maxillary sinusitis, acute bacterial exacerbation of chronic bronchitis, pneumonia (especially atypical pneumonias associated with Chlamydophila pneumoniae), skin and skin structure infections. Clarithromycin prevents bacteria from growing by interfering with their protein synthesis. It binds to the subunit 50S of the bacterial ribosome and thus inhibits the translation of peptides. Clarithromycin has similar antimicrobial spectrum as erythromycin, but is more effective against certain Gram-negative bacteria, particularly Legionella pneumophila. Besides this bacteriostatic effect, clarithromycin also has bactericidal effect on certain strains, such as Haemophilus influenzae, Streptococcus pneumoniae and Neisseria gonorrhoeae. Clarithromycin is a CYP3A4 inhibitor. Even low doses of the cytochrome P4503A4 (CYP3A4) inhibitor clarithromycin increase the plasma concentrations and effects of repaglinide. Concomitant use of clarithromycin or other potent inhibitors of CYP3A4 with repaglinide may enhance its blood glucose-lowering effect and increase the risk of hypoglycemia [1, 2].

  • CAS Number: 81103-11-9
  • MF: C38H69NO13
  • MW: 747.953
  • Catalog: Bacterial
  • Density: 1.2±0.1 g/cm3
  • Boiling Point: 805.5±65.0 °C at 760 mmHg
  • Melting Point: 217-220ºC
  • Flash Point: 440.9±34.3 °C