mTOR
- [1]. Laplante M, et al. mTOR signaling in growth control and disease. Cell. 2012 Apr 13;149(2):274-93. [Content Brief]
- [2]. Panwar V, et al. Multifaceted role of mTOR (mammalian target of rapamycin) signaling pathway in human health and disease. Signal Transduct Target Ther. 2023 Oct 2;8(1):375. [Content Brief]
- [3]. Yong J, et al. Regulation of transcriptome plasticity by mTOR signaling pathway. Exp Mol Med. 2025 Aug;57(8):1623-1630. [Content Brief]
- [4]. Ballesteros-Álvarez J, et al. mTORC2: The other mTOR in autophagy regulation. Aging Cell. 2021 Aug;20(8):e13431. [Content Brief]
- [5]. Patel CH, et al. More TOR: The expanding role of mTOR in regulating immune responses. Immunity. 2025 Jul 8;58(7):1629-1645. [Content Brief]
- [6]. Dai DF, et al. The mTOR signaling pathway in cardiac aging. J Cardiovasc Aging. 2023;3(3):24. [Content Brief]
- [7]. Wang F, et al. Crosstalks between mTORC1 and mTORC2 variagate cytokine signaling to control NK maturation and effector function. Nat Commun. 2018 Nov 19;9(1):4874. [Content Brief]
- [8]. Schaub T, et al. mTORC1 and mTORC2 Differentially Regulate Cell Fate Programs to Coordinate Osteoblastic Differentiation in Mesenchymal Stromal Cells. Sci Rep. 2019 Dec 27;9(1):20071. [Content Brief]
- [9]. Mao B, et al. Overview of Research into mTOR Inhibitors. Molecules. 2022 Aug 19;27(16):5295. [Content Brief]
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mTOR Inhibitors
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mTOR Related Products (518)
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Antibodies (11)
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ROR1-IN-3
0 ImagesCat. No.: HY-174382ROR1-IN-3 (Compound 24d) is a potent and highly selective ROR1 kinase inhibitor (IC50 = 17.6 nM). ROR1-IN-3 demonstrates robust antitumor activity and inhibitory effect against ROR1 both in vitro and in vivo. ROR1-IN-3 has robust antiproliferative efficacy in vitro and in vivo. ROR1-IN-3 induces apoptosis in cancer cell lines. ROR1-IN-3 inhibits ROR1 downstream AKT/mTOR and NF-κB signaling pathway. ROR1-IN-3 can be studied in antitumor research. -
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Bisdemethoxycurcumin
0 ImagesCat. No.: HY-N2942CAS No.: 52328-96-8Bisdemethoxycurcumin is an orally effective curcuminoid. Bisdemethoxycurcumin downregulates pro-inflammatory cytokines in macrophages by inhibiting the phosphorylation of PI3K/Akt and p38 MAPK. Bisdemethoxycurcumin relieves autophagy inhibition and promotes lipophagy to clear vascular smooth muscle foam cells by inhibiting the PDK1/Akt/mTOR pathway. Bisdemethoxycurcumin activates the cAMP/Epac/AMPKα axis and the NRF2/HO-1 antioxidant axis, thereby indirectly inhibiting the phosphorylation of NF-κB p65 and pro-inflammatory outputs such as IL-1β/IL-6/TNF-α, so as to alleviate pulmonary oxidative stress, inflammatory infiltration and pulmonary edema. Bisdemethoxycurcumin blocks NLRP3-mediated pyroptosis and protects cartilage extracellular matrix degradation by activating NRF2/HO-1. Bisdemethoxycurcumin also exerts a synergistic effect with potassium iodide against Candida. -
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PI3K/mTOR Inhibitor-7
0 ImagesCat. No.: HY-147614CAS No.: 2456295-65-9PI3K/mTOR Inhibitor-7 (Compound 19i) is a potent and dual inhibitor of PI3K/mTOR. PI3K/mTOR Inhibitor-7 shows 4.7-fold higher potency than the positive control gedatolisib (0.3 vs. 1.4 μM, IC50 values). PI3K/mTOR Inhibitor-7 significantly suppresses the PI3K/Akt/mTOR signaling pathway at 10 μM. PI3K/mTOR Inhibitor-7 has the potential for the research of cancer diseases. -
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CAII/VII-IN-1
0 ImagesCat. No.: HY-178362CAS No.: 3085155-69-4CAII/VII-IN-1 is an orally active hCA II (KI = 12.3 nM), and hCA VII (KI = 22.6 nM) inhibitor, showing no significant activity against hCA I. CAII/VII-IN-1 shows excellent neuroprotective activity in vivo Pilocarpine (HY-B0726A)-induced seizure model. CAII/VII-IN-1 can upregulate KCC2 and inhibit mTOR, exerting neuroprotective effects. CAII/VII-IN-1 does not show any significant neurotoxic effects or alterations in liver and kidney function. CAII/VII-IN-1 can be used for the study of epilepsy. -
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PI3K/Akt/mTOR-IN-6
0 ImagesCat. No.: HY-180853PI3K/Akt/mTOR-IN-6 (Compound JW4) is an orally active PI3K/Akt/mTOR pathway inhibitor. PI3K/Akt/mTOR-IN-6 induces Apoptosis in cells via the mitochondrial pathway. PI3K/Akt/mTOR-IN-6 shows potent anti-NSCLC activity. -
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Acesulfame potassium (Standard)
0 ImagesAcesulfame potassium (Standard) is the analytical standard of Acesulfame potassium (HY-D0195). This product is intended for research and analytical applications. Acesulfame potassium is a synthetic sweetener. Long-term use of Acesulfame potassium can affect cognitive function, possibly by altering the neurometabolic functions in mice. Acesulfame potassium can suppress autophagic degradation of PD-L1 in RIL-175 and SK-Hep1 cells through the ERK1/2-mTORC1-ULK1 pathway, which may be related to immune evasion in cancer cells. Acesulfame potassium can be used in research on neurological diseases, metabolic disorders, cancer, and immune evasion. -
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- Royleanone
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α-Solanine (Standard)
0 ImagesCat. No.: HY-N6602RCAS No.: 20562-02-1α-Solanine (Standard) is the analytical standard of α-Solanine. This product is intended for research and analytical applications. α-solanine, a bioactive component and one of the major steroidal glycoalkaloids in Solanum nigrum, has been observed to inhibit growth and induce apoptosis in cancer cells. -
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- Thioether-cyclized helix B peptide, CHBP
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Sialorphin
0 ImagesCat. No.: HY-P11642CAS No.: 131748-26-0Sialorphin is a neutral endopeptidase (NEP) and aminopeptidase N (APN) inhibitor that responds to androgen signals. Sialorphin blocks the degradation of endogenous opioid peptides and interacts with μ-, δ-, κ-opioid receptors. Sialorphin regulates the ERK/mTOR signaling pathway by inducing cell cycle arrest, enhancing ERK1/2 activity, and reducing the phosphorylation levels of mTOR, 4E-BP1, p70S6K; accordingly, Sialorphin exhibits antiproliferative activity against colorectal cancer, glioma and prostate cancer cells without cytotoxicity. In addition, Sialorphin also produces antinociceptive responses, regulates sexual behavior, relaxes corpus cavernosum smooth muscle, and alleviates experimental colitis. Sialorphin is also a copper (II) ion-binding ligand. Sialorphin has been used in mechanistic studies related to cancer, pain management and inflammatory bowel disease. -
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Ciliatoside A
0 ImagesCat. No.: HY-N21694CAS No.: 303084-57-3Ciliatoside A is a naturally bioactive compound that exhibits significant anti-inflammatory, antiviral, and neuroprotective activities. Ciliatoside A serves as a mitophagy inducer and NLRP3 inflammasome inhibitor, activating AMPK, SIRT1, and the PINK1/Parkin axis, and inhibiting pyroptosis and apoptosis. Ciliatoside A promotes autophagic flux, autophagosome-lysosome fusion, mTOR inhibition, and p62-dependent HBc degradation; reduces Aβ aggregation, plaque deposition, microglial/astrocyte activation, and bacterial load; and maintains neuronal integrity, mitochondrial membrane potential, and ATP production. Ciliatoside A is used in research on Alzheimer's disease, Klebsiella pneumoniae-induced pneumonia, hepatitis B virus infection, and inflammation. -
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ALK-IN-31
0 ImagesCat. No.: HY-173493CAS No.: 3043840-25-8ALK-IN-31 (Compound Ld-10) is an orally active ALK inhibitor (IC50: 1135 nM). ALK-IN-31 exhibits excellent antiproliferative activity against lung cancer H2228 cells with an IC50 value of 1.35 μM. ALK-IN-31 induces apoptosis and arrests cell proliferation in the G0/G1 phase by affecting mitochondrial function. ALK-IN-31 exerts its anti-tumor effect by downregulating the expression of p-AKT and p-mTOR in the PI3K-AKT-mTOR signaling pathway downstream of ALK. ALK-IN-31 can be used in the study of non-small cell lung cancer (NSCLC). -
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ICSN3250
0 ImagesCat. No.: HY-112774CAS No.: 1561902-73-5ICSN3250 is a halitulin analogue and specific mTORC1 inhibitor. ICSN3250 directly binds to mTOR's FRB domain and displaces phosphatidic acid (PA), reversing mTORC1 activation. ICSN3250 shows high cytotoxicity in cancer cells (nanomolar concentration) through a caspase-independent cell death mechanism. ICSN3250 specifically inhibits the mTORC1 pathway, inducing autophagy and G0-G1 cell-cycle arrest in cancer cells. ICSN3250 can be used for the study of cancer. -
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mTOR inhibitor-27
0 ImagesCat. No.: HY-172789mTOR inhibitor-27 (Compound 7e) is a mammalian target of rapamycin (mTOR) inhibitor with an IC50 value of 5.47 μM. mTOR inhibitor-27 can induce tumor cell apoptosis and arrest the cell cycle in the S-phase, thereby inhibiting cancer cell growth. mTOR inhibitor-27 is promising for research of cancers, such as skin cancer. -
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4-O-Methyl-ascochlorin
0 ImagesCat. No.: HY-N15121CAS No.: 38561-40-94-O-Methyl-ascochlorin (Compound MAC) is a derivative of Ascochlorin (HY-101021). 4-O-Methyl-ascochlorin can selectively induce apoptosis of K562 leukemia cells, cause G1 phase arrest and downregulate c-Myc expression. 4-O-Methyl-ascochlorin can promote the phosphorylation of AMPK and inhibit the phosphorylation of mTOR and its target proteins, including p70S6 K and 4E-BP-1. 4-O-Methyl-ascochlorin can be used for research of leukemia. -
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mTOR inhibitor-18
0 ImagesCat. No.: HY-160548CAS No.: 2170358-67-3 -
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Daphnetin (Standard)
0 ImagesDaphnetin (Standard) is the analytical standard of Daphnetin. This product is intended for research and analytical applications. Daphnetin (7,8-dihydroxycoumarin), one coumarin derivative can be found in plants of the Genus Daphne, is a potent, oral active protein kinase inhibitor, with IC50s of 7.67 μM, 9.33 μM and 25.01 μM for EGFR, PKA and PKC in vitro, respectively. Daphnetin triggers ROS-induced cell apoptosis and induces cytoprotective autophagy by modulating the AMPK/Akt/mTOR pathway. Daphnetin has anti-inflammation activitity and inhibits TNF-α, IL-1 , ROS, and MDA production. Daphnetin has schizontocidal activity against malaria parasites. Daphnetin can be used for rheumatoid arthritis , cancer and anti-malarian research. -
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6-Methoxydihydrosanguinarine hydrochloride
0 ImagesCat. No.: HY-N3000A6-Methoxydihydrosanguinarine hydrochloride is an alkaloid with activity across multiple cancer cell types. 6-Methoxydihydrosanguinarine hydrochloride activates IRE1/JNK signaling, blocks Akt/mTOR and PI3K/AKT/mTOR pathways, reduces expression of Cdc25C, CyclinB1, Cdc2, YAP/TAZ, Survivin, GPX4, and EGFR, upregulates IRE1 and DR5, and activates JNK and caspases. 6-Methoxydihydrosanguinarine hydrochloride induces apoptosis, G2/M phase arrest, DNA damage, ROS generation, lipid peroxidation, ferroptosis, autophagy, and suppresses cancer cell growth. 6-Methoxydihydrosanguinarine hydrochloride disruptes the biofilm formation of Candida albicans (C. albicans). 6-Methoxydihydrosanguinarine hydrochloride can be used for the research of non-small cell lung cancer, hepatocellular carcinoma, melanoma, colon carcinoma, ovarian cancer and breast cancer. -
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Atractyloside potassium salt (Standard)
0 ImagesCat. No.: HY-N1462RCAS No.: 102130-43-8Atractyloside (potassium salt) (Standard) is the analytical standard of Atractyloside (potassium salt). This product is intended for use in research and analytical applications. Atractyloside potassium salt is a powerful and specific inhibitor of mitochondrial ADP/ATP transport. Atractyloside potassium salt inhibits chloride channels from mitochondrial membranes of rat heart. Atractyloside potassium salt activates autophagy, inhibits ANT2, mTOR and promotes the activation of p-AMPK. Atractyloside potassium salt has anti-cancer effects on non-small cell lung cancer and can inhibit liver steatosis. Atractylodesin potassium salt has nephrotoxicity. -
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PI3K/mTOR Inhibitor-6
0 ImagesCat. No.: HY-147613CAS No.: 2456295-59-1PI3K/mTOR Inhibitor-6 (Compound 19c) is a potent and dual inhibitor of PI3K/mTOR. PI3K/mTOR Inhibitor-6 displays better stability in artificial gastric fluids than gedatolisib. PI3K/mTOR Inhibitor-6 significantly suppresses the PI3K/Akt/mTOR signaling pathway at 10 μM. PI3K/mTOR Inhibitor-6 has the potential for the research of cancer diseases. -
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0 ImagesCat. No.:Synonyms:-
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